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Note that this means directly above, i.e., if one object is &%Above another object, then the projections of the two objects overlap.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1919) (%3ASUO-name "Above")) ([AbsoluteMonarchy] of FormOfGovernment (%3Adocumentation "\"A monarchy in which the supreme power is held by the monarch, in contrast to ConstitutionalMonarchy, where the monarch's power is limited.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3482) (%3ASUO-name "AbsoluteMonarchy")) ([AbsoluteValueFn] of UnaryFunction (%3Adocumentation "\"The value of (&%AbsoluteValueFn ?NUMBER) is the absolute value of the &%RealNumber ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 497) (%3ASUO-name "AbsoluteValueFn")) ([AbsoluteValueFn_1] of TotalValuedRelation (%3Adocumentation "\"The value of (&%AbsoluteValueFn ?NUMBER) is the absolute value of the &%RealNumber ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 497) (%3ASUO-name "AbsoluteValueFn")) ([AbsoluteValueFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0197)\n(<=>\n (and\n (equal (AbsoluteValueFn ?NUMBER1) ?NUMBER2)\n (instance ?NUMBER1 RealNumber)\n (instance ?NUMBER2 RealNumber))\n (or\n (and\n (instance ?NUMBER1 NonnegativeRealNumber)\n (equal ?NUMBER1 ?NUMBER2))\n (and\n (instance ?NUMBER1 NegativeRealNumber)\n (equal ?NUMBER2 (SubtractionFn 0 ?NUMBER1)))))\n") (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 497) (%3ASUO-name "AbsoluteValueFn")) ([Abstract] of %3ASYN-CLASS (disjoint [Physical]) (disjointDecomposition [Quantity] [Attribute] [SetOrClass] [Relation] [Proposition] [Graph] [GraphElement]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 191) (%3ASLOT-CONSTRAINTS [UAX-0074])) ([AbstractionFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%Class into the instance of &%Attribute that specifies the condition(s) for membership in the &%Class.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 199) (%3ASUO-name "AbstractionFn")) ([AbstractionFn_1] of PartialValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%Class into the instance of &%Attribute that specifies the condition(s) for membership in the &%Class.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 199) (%3ASUO-name "AbstractionFn")) ([AbstractionFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0075)\n(<=>\n (equal (AbstractionFn ?CLASS) ?ATTR)\n (forall (?INST)\n (<=>\n (instance ?INST ?CLASS)\n (property ?INST ?ATTR))))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 199) (%3ASUO-name "AbstractionFn")) ([abstractionLevel] of BinaryPredicate (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 411) (%3ASUO-name "abstractionLevel")) ([abstractionLevel_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [property_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 411) (%3ASUO-name "abstractionLevel")) ([AbstractionLevelAttribute] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 409)) ([AcademicDegree] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2860) (%3ASLOT-CONSTRAINTS [UAX-1216])) ([Accelerating] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2914) (%3ASLOT-CONSTRAINTS [UAX-1237])) ([accountHolder] of BinaryPredicate (%3Adocumentation "\"(&%accountHolder ?Account ?Agent) means that ?Agent is the account holder of the &%FinancialAccount ?Account.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3289) (%3ASUO-name "accountHolder")) ([accountHolder_1] of TotalValuedRelation (%3Adocumentation "\"(&%accountHolder ?Account ?Agent) means that ?Agent is the account holder of the &%FinancialAccount ?Account.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3289) (%3ASUO-name "accountHolder")) ([accountHolder_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [agreementMember_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3289) (%3ASUO-name "accountHolder")) ([Acre] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2693)) ([Acre_1] of UnitOfMeasure (%3Adocumentation "A &%UnitOfMeasure equal to 4840 square yards.") 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This &%PositionalAttribute covers the following common sense notions: adjoins, abuts, is contiguous to, is juxtaposed, and is close to.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1923) (%3ASUO-name "Adjacent")) ([Adjective] of %3ASYN-CLASS (disjoint [Noun] [Verb] [Particle] [Adverb]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1698)) ([administrativeCenter] of BinaryPredicate (%3Adocumentation "\"(&%administrativeCenter ?CENTER ?REGION) means that ?CENTER is the &%City (or other area) from which the larger &%GeopoliticalArea ?REGION is administered.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3525) (%3ASUO-name "administrativeCenter")) ([administrativeCenter_1] of SpatialRelation (%3Adocumentation "\"(&%administrativeCenter ?CENTER ?REGION) means that ?CENTER is the &%City (or other area) from which the larger &%GeopoliticalArea ?REGION is administered.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3525) (%3ASUO-name "administrativeCenter")) ([administrativeCenter_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [geopoliticalSubdivision_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3525) (%3ASUO-name "administrativeCenter")) ([Adverb] of %3ASYN-CLASS (disjoint [Noun] [Verb] [Adjective] [Particle]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1699)) ([Advertising] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1417) (%3ASLOT-CONSTRAINTS [UAX-0605])) ([Aerator] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2191) (%3ASLOT-CONSTRAINTS [UAX-0920])) ([Africa] of Continent (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3458) (%3ASUO-name "Africa")) ([Afternoon] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3026) (%3ASLOT-CONSTRAINTS [UAX-1289])) ([age] of SingleValuedRelation (%3Adocumentation "\"Simply relates an &%Object to a &%ConstantQuantity specifying the age of the &%Object.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 832) (%3ASUO-name "age")) ([age_1] of BinaryPredicate (%3Adocumentation "\"Simply relates an &%Object to a &%ConstantQuantity specifying the age of the &%Object.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 832) (%3ASUO-name "age")) ([age_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [measure_S]) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 832) (%3ASUO-name "age")) ([AgeGroup] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1829) (%3ASLOT-CONSTRAINTS [UAX-0779])) ([Agent] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 183) (%3ASLOT-CONSTRAINTS [UAX-0072])) ([agent] of CaseRole (%3Adocumentation "\"(&%agent ?PROCESS ?AGENT) means that ?AGENT is an active determinant, either animate or inanimate, of the &%Process ?PROCESS, with or without voluntary intention. For example, water is the &%agent of erosion in the following proposition: the water eroded the coastline. For another example, Eve is an &%agent in the following proposition: Eve bit an apple.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 281) (%3ASUO-name "agent")) ([agent_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0099)\n(=>\n (instance ?PROCESS Process)\n (exists (?CAUSE)\n (agent ?PROCESS ?CAUSE)))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 281) (%3ASUO-name "agent")) ([agreementMember] of BinaryPredicate (%3Adocumentation "\"(&%agreementMember ?Agreement ?Agent) means that ?Agent is one of the participants of the &%Contract ?Agreement.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3259) (%3ASUO-name "agreementMember")) ([agreementMember_1] of TotalValuedRelation (%3Adocumentation "\"(&%agreementMember ?Agreement ?Agent) means that ?Agent is one of the participants of the &%Contract ?Agreement.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3259) (%3ASUO-name "agreementMember")) ([agreementMember_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3259) (%3ASUO-name "agreementMember")) ([Agriculture] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3431) (%3ASLOT-CONSTRAINTS [UAX-1439])) ([Air] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1641) (%3ASLOT-CONSTRAINTS [UAX-0689] [UAX-0690] [UAX-0691] [UAX-0692] [UAX-0693])) ([Aircraft] of %3ASYN-CLASS (partition [FixedWingAircraft] [Helicopter]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3608)) ([Airplane] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3610)) ([Airport] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3575) (%3ASLOT-CONSTRAINTS [UAX-1480])) ([AirStream] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3418)) ([AirTransportation] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2951) (%3ASLOT-CONSTRAINTS [UAX-1255] [UAX-1256])) ([Alaska] of AmericanState (%3AAXIOMS "\n(UAX-1509)\n(=>\n (and\n (subclass ?UNIT AreaMeasure)\n (measure Alaska (MeasureFn ?NUMBER1 ?UNIT))\n (measure ?STATE (MeasureFn ?NUMBER2 ?UNIT))\n (instance ?STATE AmericanState)\n (not (equal Alaska ?STATE)))\n (lessThan ?NUMBER2 ?NUMBER1))\n") (%3Adocumentation "\"The largest state in the &%UnitedStates.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3739) (%3ASUO-name "Alaska")) ([Alcohol] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2476)) ([AlcoholicBeverage] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2544) (%3ASLOT-CONSTRAINTS [UAX-1069])) ([AlethicAttribute] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1965)) ([Alga] of %3ASYN-CLASS (disjoint [Moss] [Fern] [Fungus]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1577) (%3ASLOT-CONSTRAINTS [UAX-0674])) ([altitude] of SingleValuedRelation (%3Adocumentation "\"A &%TernaryPredicate that is used to state the &%distance between the &%top of an &%Object and another point that is below the &%top of the &%Object (often this other point will be sea level). Note that this &%Predicate can be used to specify, for example, the height of geographic features, e.g. mountains, the altitude of aircraft, and the orbit of satellites around the Earth.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 837) (%3ASUO-name "altitude")) ([altitude_1] of SpatialRelation (%3Adocumentation "\"A &%TernaryPredicate that is used to state the &%distance between the &%top of an &%Object and another point that is below the &%top of the &%Object (often this other point will be sea level). Note that this &%Predicate can be used to specify, for example, the height of geographic features, e.g. mountains, the altitude of aircraft, and the orbit of satellites around the Earth.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 837) (%3ASUO-name "altitude")) ([altitude_2] of TernaryPredicate (%3Adocumentation "\"A &%TernaryPredicate that is used to state the &%distance between the &%top of an &%Object and another point that is below the &%top of the &%Object (often this other point will be sea level). Note that this &%Predicate can be used to specify, for example, the height of geographic features, e.g. mountains, the altitude of aircraft, and the orbit of satellites around the Earth.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 837) (%3ASUO-name "altitude")) ([altitude_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0311)\n(=>\n (altitude ?OBJ1 ?OBJ2 ?HEIGHT)\n (orientation ?OBJ1 ?OBJ2 Above))\n\n(UAX-0312)\n(=>\n (altitude ?OBJ1 ?OBJ2 ?HEIGHT)\n (exists (?TOP)\n (and\n (top ?TOP ?OBJ1)\n (distance ?TOP ?OBJ2 ?HEIGHT))))\n") (%3ADomain1Type Instance) (%3ADomain2Class Physical) (%3ADomain2Type Instance) (%3AisaSubrelationOf [distance_S]) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 837) (%3ASUO-name "altitude")) ([Ambulating] of %3ASYN-CLASS (partition [Walking] [Running]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1209)) ([AmericanCity] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2449) (%3ASLOT-CONSTRAINTS [UAX-1031])) ([AmericanState] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2447) (%3ASLOT-CONSTRAINTS [UAX-1030])) ([AmerindianEthnicity] of EthnicGroup (%3Adocumentation "\"A broad ethnic group encompassing any of the North, Central, or South American tribal peoples.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3707) (%3ASUO-name "AmerindianEthnicity")) ([amountDue] of TernaryPredicate (%3Adocumentation "\"(&%amountDue ?ACCOUNT ?AMOUNT ?DATE) means ?DATE is the date on which the amount of Money ?AMOUNT of a particular ?ACCOUNT is due and payable\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3369) (%3ASUO-name "amountDue")) ([amountDue_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-1416)\n(=>\n (and\n (amountDue ?Account ?Amount ?DueDate)\n (accountHolder ?Account ?Agent))\n (holdsObligation (exists (?Payment ?Date)\n (and\n (instance ?Payment Payment)\n (transactionAmount ?Payment ?Amount)\n (agent ?Payment ?Agent)\n (origin ?Payment ?Account)\n (date ?Payment ?Date)\n (beforeOrEqual (EndFn ?Date) (EndFn ?DueDate)))) ?Agent))\n") (%3ADomain1Type Instance) (%3ADomain2Class CurrencyMeasure) (%3ADomain2Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3369) (%3ASUO-name "amountDue")) ([Ampere] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 694)) ([Ampere_1] of SystemeInternationalUnit (%3Adocumentation "SI electric current measure. Symbol: A. It is one of the base units in SI. It is defined as follows: the &%Ampere is that constant current which, if maintained in two straight parallel conductors of infinite length, of negligible circular cross-section, and placed 1 &%Meter apart in a vacuum, would produce between these conductors a force equal to 2*10^(-7) &%Newton per &%Meter of length.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 694)) ([Amphibian] of %3ASYN-CLASS (disjoint [Reptile] [Fish]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1603)) ([Amu] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 762) (%3ASLOT-CONSTRAINTS [UAX-0284])) ([Amu_1] of UnitOfMeasure (%3Adocumentation "Atomic mass unit. Symbol: u. It is the mass of the twelfth part of an atom of the Carbon 12 isotope.") 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Symbol: Bq. It measures the amount of radioactivity contained in a given sample of matter. It is that quantity of a radioactive element in which there is one atomic disintegration per &%SecondDuration. &%Becquerel = s^(-1).") 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This predicate denotes maximal capacity, i.e. ?OBJ can hold no more than ?QUANTITY. Note, however, that this does not mean that &%capacity is a &%SingleValuedRelation, since an object may have various maximal capacities across different dimensions, e.g. a particular box may have a &%capacity of 3 pounds and a &%capacity of 1 liter.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2313) (%3ASUO-name "capacity")) ([capacity_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0971)\n(=>\n (and\n (measure ?OBJ1 ?MEAS)\n (contains ?OBJ2 ?OBJ1))\n (capacity ?OBJ2 ?MEAS))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2313) (%3ASUO-name "capacity")) ([capitalCity] of BinaryPredicate (%3Adocumentation "\"(&%capitalCity ?CITY ?REGION) means that the &%City ?CITY is the capital of the &%GeopoliticalArea ?REGION.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3524) (%3ASUO-name "capitalCity")) ([capitalCity_1] of SpatialRelation (%3Adocumentation "\"(&%capitalCity ?CITY ?REGION) means that the &%City ?CITY is the capital of the &%GeopoliticalArea ?REGION.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3524) (%3ASUO-name "capitalCity")) ([capitalCity_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [administrativeCenter_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3524) (%3ASUO-name "capitalCity")) ([CapitalistEconomy] of EconomicSystemAttribute (%3Adocumentation "\"&%CapitalistEconomy is the &%Attribute used to characterize a country whose economy is based on private ownership of the means of production and distribution, and on private accumulation of capital.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3634) (%3ASUO-name "CapitalistEconomy")) ([CaptainOfficer] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3010)) ([Carbohydrate] of %3ASYN-CLASS (disjoint [Protein] [Vitamin]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1631)) ([Carbon] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3234) (%3ASLOT-CONSTRAINTS [UAX-1367])) ([CardinalityFn] of UnaryFunction (%3Adocumentation "\"(CardinalityFn ?CLASS) returns the number of instances in the &%SetOrClass or &%Collection ?CLASS.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 572) (%3ASUO-name "CardinalityFn")) ([CardinalityFn_1] of TotalValuedRelation (%3Adocumentation "\"(CardinalityFn ?CLASS) returns the number of instances in the &%SetOrClass or &%Collection ?CLASS.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 572) (%3ASUO-name "CardinalityFn")) ([CardinalityFn_2] of AsymmetricRelation (%3Adocumentation "\"(CardinalityFn ?CLASS) returns the number of instances in the &%SetOrClass or &%Collection ?CLASS.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 572) (%3ASUO-name "CardinalityFn")) ([CardinalityFn_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 572) (%3ASUO-name "CardinalityFn")) ([CareOrganization] of %3ASYN-CLASS (partition [Hospital] [MedicalClinic]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2396) (%3ASLOT-CONSTRAINTS [UAX-1008])) ([Carnivore] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1611) (%3ASLOT-CONSTRAINTS [UAX-0682])) ([Carrying] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1222) (%3ASLOT-CONSTRAINTS [UAX-0510])) ([CaseRole] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 280)) ([CaseRole_1] of InheritableRelation (%3Adocumentation "\"The &%Class of &%Predicates relating the spatially distinguished parts of a &%Process. &%CaseRoles include, for example, the &%agent, &%patient or &%destination of an action, the flammable substance in a burning process, or the water that falls in rain.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 280)) ([Catching] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2910) (%3ASLOT-CONSTRAINTS [UAX-1235] [UAX-1236])) ([causes] of BinaryPredicate (%3Adocumentation "\"The causation relation between instances of &%Process. 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Note that it may or may not be the case that ?ARGUMENT &%entails ?PROPOSITION.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1888) (%3ASUO-name "conclusion")) ([conclusion_1] of SingleValuedRelation (%3Adocumentation "\"(&%conclusion ?ARGUMENT ?PROPOSITION) means that the &%Proposition ?PROPOSITION is the conclusion explicitly drawn from the &%Argument ?ARGUMENT. Note that it may or may not be the case that ?ARGUMENT &%entails ?PROPOSITION.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1888) (%3ASUO-name "conclusion")) ([conclusion_2] of TotalValuedRelation (%3Adocumentation "\"(&%conclusion ?ARGUMENT ?PROPOSITION) means that the &%Proposition ?PROPOSITION is the conclusion explicitly drawn from the &%Argument ?ARGUMENT. Note that it may or may not be the case that ?ARGUMENT &%entails ?PROPOSITION.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1888) (%3ASUO-name "conclusion")) ([conclusion_3] of BinaryPredicate (%3Adocumentation "\"(&%conclusion ?ARGUMENT ?PROPOSITION) means that the &%Proposition ?PROPOSITION is the conclusion explicitly drawn from the &%Argument ?ARGUMENT. Note that it may or may not be the case that ?ARGUMENT &%entails ?PROPOSITION.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2393) (%3ASUO-name "conclusion")) ([conclusion_4] of SingleValuedRelation (%3Adocumentation "\"(&%conclusion ?ARGUMENT ?PROPOSITION) means that the &%Proposition ?PROPOSITION is the conclusion explicitly drawn from the &%Argument ?ARGUMENT. Note that it may or may not be the case that ?ARGUMENT &%entails ?PROPOSITION.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2393) (%3ASUO-name "conclusion")) ([conclusion_5] of TotalValuedRelation (%3Adocumentation "\"(&%conclusion ?ARGUMENT ?PROPOSITION) means that the &%Proposition ?PROPOSITION is the conclusion explicitly drawn from the &%Argument ?ARGUMENT. Note that it may or may not be the case that ?ARGUMENT &%entails ?PROPOSITION.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2393) (%3ASUO-name "conclusion")) ([conclusion_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2393) (%3ASUO-name "conclusion")) ([Concrete] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3675) (%3ASLOT-CONSTRAINTS [UAX-1503] [UAX-1504] [UAX-1505])) ([Concurrency-FormOfAdaptation] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 373)) ([Condensing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1502) (%3ASLOT-CONSTRAINTS [UAX-0645] [UAX-0646])) ([conditionalProbability] of ProbabilityRelation (%3Adocumentation "\"One of the basic &%ProbabilityRelations. &%conditionalProbability is used to state the numeric value of a conditional probability. (&%conditionalProbability ?FORMULA1 ?FORMULA2 ?NUMBER) means that the probability of ?FORMULA2 being true given that ?FORMULA1 is true is ?NUMBER.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 293) (%3ASUO-name "conditionalProbability")) ([conditionalProbability_1] of TernaryPredicate (%3Adocumentation "\"One of the basic &%ProbabilityRelations. &%conditionalProbability is used to state the numeric value of a conditional probability. (&%conditionalProbability ?FORMULA1 ?FORMULA2 ?NUMBER) means that the probability of ?FORMULA2 being true given that ?FORMULA1 is true is ?NUMBER.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 293) (%3ASUO-name "conditionalProbability")) ([conditionalProbability_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class Formula) (%3ADomain2Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 293) (%3ASUO-name "conditionalProbability")) ([CondominiumBuilding] of %3ASYN-CLASS (disjoint [SingleFamilyResidence]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2351) (%3ASLOT-CONSTRAINTS [UAX-0986])) ([CondominiumUnit] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2345) (%3ASLOT-CONSTRAINTS [UAX-0983] [UAX-0984])) ([ConfederateSoldier] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3005)) ([confersObligation] of TernaryPredicate (%3Adocumentation "\"Expresses the relationship between a a &%Formula, an &%Entity, and a &%CognitiveAgent when the &%Entity obligates the &%CognitiveAgent to bring it about that the &%Formula is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 433) (%3ASUO-name "confersObligation")) ([confersObligation_S] of %3ATernarySlot (relatedInternalConcept [Second]) (%3AAXIOMS "\n(UAX-0170)\n(=>\n (confersObligation ?FORMULA ?AGENT1 ?AGENT2)\n (holdsObligation ?FORMULA ?AGENT2))\n") (%3ADomain1Type Instance) (%3ADomain2Class Entity) (%3ADomain2Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 433) (%3ASUO-name "confersObligation")) ([confersRight] of TernaryPredicate (%3Adocumentation "\"Expresses the relationship between a &%Formula, an &%Entity, and a &%CognitiveAgent when the &%Entity authorizes the &%CognitiveAgent to bring it about that the &%Formula is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 430) (%3ASUO-name "confersRight")) ([confersRight_S] of %3ATernarySlot (relatedInternalConcept [Second]) (%3AAXIOMS "\n(UAX-0169)\n(=>\n (confersRight ?FORMULA ?AGENT1 ?AGENT2)\n (holdsRight ?FORMULA ?AGENT2))\n") (%3ADomain1Type Instance) (%3ADomain2Class Entity) (%3ADomain2Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 430) (%3ASUO-name "confersRight")) ([Confining] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1324) (%3ASLOT-CONSTRAINTS [UAX-0559] [UAX-0560])) ([conjugate] of BinaryPredicate (%3Adocumentation "\"(&%conjugate ?COMPOUND1 ?COMPOUND2) means that ?COMPOUND1 and ?COMPOUND2 are identical &%CompoundSubstances except that one has one more &%Proton than the other.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2302) (%3ASUO-name "conjugate")) ([conjugate_1] of IrreflexiveRelation (%3Adocumentation "\"(&%conjugate ?COMPOUND1 ?COMPOUND2) means that ?COMPOUND1 and ?COMPOUND2 are identical &%CompoundSubstances except that one has one more &%Proton than the other.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2302) (%3ASUO-name "conjugate")) ([conjugate_2] of SymmetricRelation (%3Adocumentation "\"(&%conjugate ?COMPOUND1 ?COMPOUND2) means that ?COMPOUND1 and ?COMPOUND2 are identical &%CompoundSubstances except that one has one more &%Proton than the other.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2302) (%3ASUO-name "conjugate")) ([conjugate_3] of TransitiveRelation (%3Adocumentation "\"(&%conjugate ?COMPOUND1 ?COMPOUND2) means that ?COMPOUND1 and ?COMPOUND2 are identical &%CompoundSubstances except that one has one more &%Proton than the other.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2302) (%3ASUO-name "conjugate")) ([conjugate_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0966)\n(=>\n (conjugate ?COMPOUND1 ?COMPOUND2)\n (exists (?NUMBER1 ?NUMBER2)\n (and\n (protonNumber ?COMPOUND1 ?NUMBER1)\n (protonNumber ?COMPOUND2 ?NUMBER2)\n (or\n (equal ?NUMBER1 (AdditionFn ?NUMBER2 1))\n (equal ?NUMBER2 (AdditionFn ?NUMBER1 1))))))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2302) (%3ASUO-name "conjugate")) ([connected] of BinaryPredicate (%3Adocumentation "\"(connected ?OBJ1 ?OBJ2) means that ?OBJ1 &%meetsSpatially ?OBJ2 or that ?OBJ1 &%overlapsSpatially ?OBJ2.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1022) (%3ASUO-name "connected")) ([connected_1] of SpatialRelation (%3Adocumentation "\"(connected ?OBJ1 ?OBJ2) means that ?OBJ1 &%meetsSpatially ?OBJ2 or that ?OBJ1 &%overlapsSpatially ?OBJ2.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1022) (%3ASUO-name "connected")) ([connected_2] of ReflexiveRelation (%3Adocumentation "\"(connected ?OBJ1 ?OBJ2) means that ?OBJ1 &%meetsSpatially ?OBJ2 or that ?OBJ1 &%overlapsSpatially ?OBJ2.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1022) (%3ASUO-name "connected")) ([connected_3] of SymmetricRelation (%3Adocumentation "\"(connected ?OBJ1 ?OBJ2) means that ?OBJ1 &%meetsSpatially ?OBJ2 or that ?OBJ1 &%overlapsSpatially ?OBJ2.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1022) (%3ASUO-name "connected")) ([connected_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0417)\n(=>\n (connected ?OBJ1 ?OBJ2)\n (or\n (meetsSpatially ?OBJ1 ?OBJ2)\n (overlapsSpatially ?OBJ1 ?OBJ2)))\n\n(UAX-0418)\n(<=>\n (instance ?OBJ SelfConnectedObject)\n (forall (?PART1 ?PART2)\n (=>\n (equal ?OBJ (MereologicalSumFn ?PART1 ?PART2))\n (connected ?PART1 ?PART2))))\n") (%3ADomain1Type Instance) (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1022) (%3ASUO-name "connected")) ([connectedEngineeringComponents] of SymmetricRelation (%3Adocumentation "\"This is the most general connection relation between &%EngineeringComponents. If (&%connectedEngineeringComponents ?COMP1 ?COMP2), then neither ?COMP1 nor ?COMP2 can be an &%engineeringSubcomponent of the other. The relation &%connectedEngineeringComponents is a &%SymmetricRelation; there is no information in the direction of connection between two components. It is also an &%IrreflexiveRelation; no &%EngineeringComponent bears this relation to itself. Note that this relation does not associate a name or type with the connection.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1810) (%3ASUO-name "connectedEngineeringComponents")) ([connectedEngineeringComponents_1] of IrreflexiveRelation (%3Adocumentation "\"This is the most general connection relation between &%EngineeringComponents. If (&%connectedEngineeringComponents ?COMP1 ?COMP2), then neither ?COMP1 nor ?COMP2 can be an &%engineeringSubcomponent of the other. The relation &%connectedEngineeringComponents is a &%SymmetricRelation; there is no information in the direction of connection between two components. It is also an &%IrreflexiveRelation; no &%EngineeringComponent bears this relation to itself. Note that this relation does not associate a name or type with the connection.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1810) (%3ASUO-name "connectedEngineeringComponents")) ([connectedEngineeringComponents_3] of BinaryPredicate (%3Adocumentation "\"This is the most general connection relation between &%EngineeringComponents. If (&%connectedEngineeringComponents ?COMP1 ?COMP2), then neither ?COMP1 nor ?COMP2 can be an &%engineeringSubcomponent of the other. The relation &%connectedEngineeringComponents is a &%SymmetricRelation; there is no information in the direction of connection between two components. It is also an &%IrreflexiveRelation; no &%EngineeringComponent bears this relation to itself. Note that this relation does not associate a name or type with the connection.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1810) (%3ASUO-name "connectedEngineeringComponents")) ([connectedEngineeringComponents_4] of SpatialRelation (%3Adocumentation "\"This is the most general connection relation between &%EngineeringComponents. If (&%connectedEngineeringComponents ?COMP1 ?COMP2), then neither ?COMP1 nor ?COMP2 can be an &%engineeringSubcomponent of the other. The relation &%connectedEngineeringComponents is a &%SymmetricRelation; there is no information in the direction of connection between two components. It is also an &%IrreflexiveRelation; no &%EngineeringComponent bears this relation to itself. Note that this relation does not associate a name or type with the connection.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1810) (%3ASUO-name "connectedEngineeringComponents")) ([connectedEngineeringComponents_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0770)\n(=>\n (connectedEngineeringComponents ?COMP1 ?COMP2)\n (and\n (not\n (engineeringSubcomponent ?COMP1 ?COMP2))\n (not\n (engineeringSubcomponent ?COMP2 ?COMP1))))\n\n(UAX-0771)\n(=>\n (connectedEngineeringComponents ?COMP1 ?COMP2)\n (not\n (or\n (instance ?COMP1 EngineeringConnection)\n (instance ?COMP2 EngineeringConnection))))\n\n(UAX-0772)\n(<=>\n (connectedEngineeringComponents ?COMP1 ?COMP2)\n (exists (?CONNECTION)\n (connectsEngineeringComponents ?CONNECTION ?COMP1 ?COMP2)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [connected_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1810) (%3ASUO-name "connectedEngineeringComponents")) ([connects] of SpatialRelation (%3Adocumentation "\"The relationship between three things, when one of the three things connects the other two. More formally, (&%connects ?OBJ1 ?OBJ2 ?OBJ3) means that (&%connected ?OBJ1 ?OBJ2) and (&%connected ?OBJ1 ?OBJ3) and not (&%connected ?OBJ2 ?OBJ3).\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1025) (%3ASUO-name "connects")) ([connects_1] of TernaryPredicate (%3Adocumentation "\"The relationship between three things, when one of the three things connects the other two. More formally, (&%connects ?OBJ1 ?OBJ2 ?OBJ3) means that (&%connected ?OBJ1 ?OBJ2) and (&%connected ?OBJ1 ?OBJ3) and not (&%connected ?OBJ2 ?OBJ3).\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1025) (%3ASUO-name "connects")) ([connects_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0419)\n(<=>\n (connects ?OBJ1 ?OBJ2 ?OBJ3)\n (and\n (connected ?OBJ1 ?OBJ2)\n (connected ?OBJ1 ?OBJ3)\n (not\n (connected ?OBJ2 ?OBJ3))))\n") (%3ADomain1Type Instance) (%3ADomain2Class SelfConnectedObject) (%3ADomain2Type Instance) (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1025) (%3ASUO-name "connects")) ([connectsEngineeringComponents] of SpatialRelation (%3Adocumentation "\"&%connectsEngineeringComponents is a &%TernaryPredicate that maps from an &%EngineeringConnection to the &%EngineeringComponents it connects. Since &%EngineeringComponents cannot be connected to themselves and there cannot be an &%EngineeringConnection without a &%connectedEngineeringComponents &%Predicate, the second and third arguments of any &%connectsEngineeringComponents relationship will always be distinct for any given first argument.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1816) (%3ASUO-name "connectsEngineeringComponents")) ([connectsEngineeringComponents_1] of TernaryPredicate (%3Adocumentation "\"&%connectsEngineeringComponents is a &%TernaryPredicate that maps from an &%EngineeringConnection to the &%EngineeringComponents it connects. Since &%EngineeringComponents cannot be connected to themselves and there cannot be an &%EngineeringConnection without a &%connectedEngineeringComponents &%Predicate, the second and third arguments of any &%connectsEngineeringComponents relationship will always be distinct for any given first argument.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1816) (%3ASUO-name "connectsEngineeringComponents")) ([connectsEngineeringComponents_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class EngineeringComponent) (%3ADomain2Type Instance) (%3AisaSubrelationOf [connects_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1816) (%3ASUO-name "connectsEngineeringComponents")) ([ConsciousnessAttribute] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2101) (%3ASLOT-CONSTRAINTS [UAX-0883])) ([considers] of PropositionalAttitude (%3Adocumentation "\"(&%considers ?AGENT ?FORMULA) means that ?AGENT considers or wonders about the truth of the proposition expressed by ?FORMULA.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 319) (%3ASUO-name "considers")) ([considers_1] of BinaryPredicate (%3Adocumentation "\"(&%considers ?AGENT ?FORMULA) means that ?AGENT considers or wonders about the truth of the proposition expressed by ?FORMULA.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 319) (%3ASUO-name "considers")) ([considers_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [inScopeOfInterest_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 319) (%3ASUO-name "considers")) ([consistent] of BinaryPredicate (%3Adocumentation "\"(&%consistent ?PROP1 ?PROP2) means that the two &%Propositions ?PROP1 and ?PROP2 are consistent with one another, i.e. it is possible for both of them to be true at the same time.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1889) (%3ASUO-name "consistent")) ([consistent_1] of SymmetricRelation (%3Adocumentation "\"(&%consistent ?PROP1 ?PROP2) means that the two &%Propositions ?PROP1 and ?PROP2 are consistent with one another, i.e. it is possible for both of them to be true at the same time.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1889) (%3ASUO-name "consistent")) ([consistent_2] of BinaryPredicate (%3Adocumentation "\"(&%consistent ?PROP1 ?PROP2) means that the two &%Propositions ?PROP1 and ?PROP2 are consistent with one another, i.e. it is possible for both of them to be true at the same time.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2394) (%3ASUO-name "consistent")) ([consistent_3] of SymmetricRelation (%3Adocumentation "\"(&%consistent ?PROP1 ?PROP2) means that the two &%Propositions ?PROP1 and ?PROP2 are consistent with one another, i.e. it is possible for both of them to be true at the same time.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2394) (%3ASUO-name "consistent")) ([consistent_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2394) (%3ASUO-name "consistent")) ([ConsoleApplication] of ComputerProgram (%3Adocumentation "\"A Program which is started inside an Xterm or other console.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 134) (%3ASUO-name "ConsoleApplication")) ([ConstantQuantity] of %3ASYN-CLASS (disjoint [FunctionQuantity]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 235)) ([ConstitutionalDemocracy] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3495) (%3ASUO-name "ConstitutionalDemocracy")) ([ConstitutionalDemocraticRepublic] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3499) (%3ASUO-name "ConstitutionalDemocraticRepublic")) ([ConstitutionalGovernment] of FormOfGovernment (%3Adocumentation "\"&%ConstitutionalGovernment is the attribute of a government whose authority and rule are guided by principles expressed in a written &%Constitution.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3496) (%3ASUO-name "ConstitutionalGovernment")) ([ConstitutionalMonarchy] of FormOfGovernment (%3Adocumentation "\"A monarchy in which the power of the monarch is limited by a constitution, written or unwritten. The United Kingdom is an example.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3484) (%3ASUO-name "ConstitutionalMonarchy")) ([ConstitutionalParliamentaryDemocracy] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3498) (%3ASUO-name "ConstitutionalParliamentaryDemocracy")) ([ConstitutionalRepublic] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3497) (%3ASUO-name "ConstitutionalRepublic")) ([ConstrictorSnake] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2618)) ([ConstructedLanguage] of %3ASYN-CLASS (disjoint [NaturalLanguage]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 175) (%3ASLOT-CONSTRAINTS [UAX-0071])) ([Constructing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1390) (%3ASLOT-CONSTRAINTS [UAX-0591])) ([Container] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2256) (%3ASLOT-CONSTRAINTS [UAX-0944])) ([contains] of SpatialRelation (%3Adocumentation "\"The relation of spatial containment for two separable objects. When the two objects are not separable (e.g. an automobile and one of its seats), the relation of &%part should be used. (&%contains ?OBJ1 ?OBJ2) means that the &%SelfConnectedObject ?OBJ1 has a space (i.e. a &%Hole) which is at least partially filled by ?OBJ2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 127) (%3ASUO-name "contains")) ([contains_1] of AsymmetricRelation (%3Adocumentation "\"The relation of spatial containment for two separable objects. When the two objects are not separable (e.g. an automobile and one of its seats), the relation of &%part should be used. (&%contains ?OBJ1 ?OBJ2) means that the &%SelfConnectedObject ?OBJ1 has a space (i.e. a &%Hole) which is at least partially filled by ?OBJ2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 127) (%3ASUO-name "contains")) ([contains_3] of BinaryPredicate (%3Adocumentation "\"The relation of spatial containment for two separable objects. When the two objects are not separable (e.g. an automobile and one of its seats), the relation of &%part should be used. (&%contains ?OBJ1 ?OBJ2) means that the &%SelfConnectedObject ?OBJ1 has a space (i.e. a &%Hole) which is at least partially filled by ?OBJ2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 127) (%3ASUO-name "contains")) ([contains_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0054)\n(<=>\n (contains ?OBJ1 ?OBJ2)\n (exists (?HOLE)\n (and\n (hole ?HOLE ?OBJ1)\n (properlyFills ?OBJ2 ?HOLE))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [partlyLocated_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 127) (%3ASUO-name "contains")) ([containsInformation] of BinaryPredicate (relatedInternalConcept [ContentBearingObject]) (%3Adocumentation "\"A subrelation of &%represents. This predicate relates a &%ContentBearingObject to the &%Proposition that is expressed by the &%ContentBearingObject. Examples include the relationships between a physical novel and its story and between a printed score and its musical content.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 163) (%3ASUO-name "containsInformation")) ([containsInformation_1] of AsymmetricRelation (%3Adocumentation "\"A subrelation of &%represents. This predicate relates a &%ContentBearingObject to the &%Proposition that is expressed by the &%ContentBearingObject. Examples include the relationships between a physical novel and its story and between a printed score and its musical content.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 163) (%3ASUO-name "containsInformation")) ([containsInformation_S] of %3ASKIF-SLOT (relatedInternalConcept [ContentBearingObject] [Buying]) (%3ADomain1Type Instance) (%3AisaSubrelationOf [represents_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 163) (%3ASUO-name "containsInformation")) ([ContentBearingObject] of %3ASYN-CLASS (relatedInternalConcept [containsInformation] [disjointRelation] [disjoint] [containsInformation_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 159)) ([ContentDevelopment] of %3ASYN-CLASS (relatedInternalConcept [Communication]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1371) (%3ASLOT-CONSTRAINTS [UAX-0582])) ([Contest] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1450) (%3ASLOT-CONSTRAINTS [UAX-0620])) ([ContestAttribute] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1963) (%3ASLOT-CONSTRAINTS [UAX-0833])) ([contestParticipant] of TotalValuedRelation (%3Adocumentation "\"(&%contestParticipant ?CONTEST ?AGENT) means that ?AGENT is one of the sides in the &%Contest ?CONTEST. For example, if the ?CONTEST is a football game, then ?AGENT would be one of the opposing teams. For another example, if ?CONTEST is a &%Battle, then ?AGENT would be one of the sides fighting each other.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3108) (%3ASUO-name "contestParticipant")) ([contestParticipant_1] of CaseRole (%3Adocumentation "\"(&%contestParticipant ?CONTEST ?AGENT) means that ?AGENT is one of the sides in the &%Contest ?CONTEST. For example, if the ?CONTEST is a football game, then ?AGENT would be one of the opposing teams. For another example, if ?CONTEST is a &%Battle, then ?AGENT would be one of the sides fighting each other.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3108) (%3ASUO-name "contestParticipant")) ([contestParticipant_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [agent_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3108) (%3ASUO-name "contestParticipant")) ([Continent] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1532) (%3ASLOT-CONSTRAINTS [UAX-0657])) ([ContinuousFunction] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 379)) ([ContinuousPath] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 283)) ([ContractCarrier] of %3ASYN-CLASS (disjoint [CommonCarrier]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3615)) ([contraryAttribute] of Predicate (%3Adocumentation "\"A &%contraryAttribute is a set of &%Attributes such that something can not simultaneously have more than one of these &%Attributes. For example, (&%contraryAttribute &%Pliable &%Rigid) means that nothing can be both &%Pliable and &%Rigid.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 59) (%3ASUO-name "contraryAttribute")) ([contraryAttribute%247] of %3AProposition (%3AargumentList "contraryAttribute" "NakedPromise" "Contract") (%3Adocumentation "\"A &%Promise where nothing is promised in return, i.e. a nudum pactum.\"") (%3AisInModule [QUALITIES]) (%3AliteralTranscription "(contraryAttribute NakedPromise Contract)") (%3ALOAD-SEQUENCE 1982)) ([contraryAttribute_1] of VariableArityRelation (%3Adocumentation "\"A &%contraryAttribute is a set of &%Attributes such that something can not simultaneously have more than one of these &%Attributes. For example, (&%contraryAttribute &%Pliable &%Rigid) means that nothing can be both &%Pliable and &%Rigid.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 59) (%3ASUO-name "contraryAttribute")) ([contraryAttribute_S] of %3AVariableAritySlot (%3AAXIOMS "\n(UAX-0033)\n(=>\n (contraryAttribute @ROW)\n (=>\n (inList ?ELEMENT (ListFn @ROW))\n (instance ?ELEMENT Attribute)))\n\n(UAX-0034)\n(=>\n (contraryAttribute @ROW)\n (forall (?ATTR1 ?ATTR2)\n (=>\n (and\n (equal ?ATTR1 (ListOrderFn (ListFn @ROW) ?NUMBER1))\n (equal ?ATTR2 (ListOrderFn (ListFn @ROW) ?NUMBER2))\n (not (equal ?NUMBER1 ?NUMBER2)))\n (=>\n (property ?OBJ ?ATTR1)\n (not (property ?OBJ ?ATTR2))))))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 59) (%3ASUO-name "contraryAttribute")) ([ControlledSubstance] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3672)) ([cooccur] of BinaryPredicate (%3Adocumentation "\"(&%cooccur ?THING1 ?THING2) means that the &%Object or &%Process ?THING1 occurs at the same time as, together with, or jointly with the &%Object or &%Process ?THING2. This covers the following temporal relations: is co-incident with, is concurrent with, is contemporaneous with, and is concomitant with.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 901) (%3ASUO-name "cooccur")) ([cooccur_1] of TemporalRelation (%3Adocumentation "\"(&%cooccur ?THING1 ?THING2) means that the &%Object or &%Process ?THING1 occurs at the same time as, together with, or jointly with the &%Object or &%Process ?THING2. This covers the following temporal relations: is co-incident with, is concurrent with, is contemporaneous with, and is concomitant with.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 901) (%3ASUO-name "cooccur")) ([cooccur_2] of EquivalenceRelation (%3Adocumentation "\"(&%cooccur ?THING1 ?THING2) means that the &%Object or &%Process ?THING1 occurs at the same time as, together with, or jointly with the &%Object or &%Process ?THING2. This covers the following temporal relations: is co-incident with, is concurrent with, is contemporaneous with, and is concomitant with.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 901) (%3ASUO-name "cooccur")) ([cooccur_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0346)\n(<=>\n (cooccur ?PHYS1 ?PHYS2)\n (equal (WhenFn ?PHYS1) (WhenFn ?PHYS2)))\n") (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 901) (%3ASUO-name "cooccur")) ([Cooking] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1395) (%3ASLOT-CONSTRAINTS [UAX-0593])) ([Cooling] of %3ASYN-CLASS (disjoint [Heating]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1196) (%3ASLOT-CONSTRAINTS [UAX-0500])) ([Cooperation] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1445) (%3ASLOT-CONSTRAINTS [UAX-0617])) ([CoordinatedUniversalTimeZone] of TimeZone (%3Adocumentation "\"A &%TimeZone which functions as the standard time zone. It is also known as Zulu time (in the military), Greenwich Mean Time, and the Western European time zone. Note that whenever a &%TimeZone is not specified, the &%TimePosition is understood to be with respect to the &%CoordinatedUniversalTimeZone.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1936) (%3ASUO-name "CoordinatedUniversalTimeZone")) ([Copper] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3244) (%3ASLOT-CONSTRAINTS [UAX-1372])) ([copy] of BinaryPredicate (%3Adocumentation "\"relates an &%Object to an exact copy of the &%Object, where an exact copy is indistinguishable from the original with regard to every property except (possibly) spatial and/or temporal location.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 414) (%3ASUO-name "copy")) ([copy_1] of EquivalenceRelation (%3Adocumentation "\"relates an &%Object to an exact copy of the &%Object, where an exact copy is indistinguishable from the original with regard to every property except (possibly) spatial and/or temporal location.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 414) (%3ASUO-name "copy")) ([copy_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0162)\n(=>\n (copy ?OBJ1 ?OBJ2)\n (forall (?ATTR)\n (=>\n (attribute ?OBJ1 ?ATTR)\n (attribute ?OBJ2 ?ATTR))))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 414) (%3ASUO-name "copy")) ([Copying] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3161) (%3ASLOT-CONSTRAINTS [UAX-1342])) ([Corporation] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1819)) ([CorpuscularObject] of %3ASYN-CLASS (disjoint [Substance]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 150) (%3ASLOT-CONSTRAINTS [UAX-0063])) ([CosineFn] of UnaryFunction (%3Adocumentation "\"(&%CosineFn ?DEGREE) returns the cosine of the &%PlaneAngleMeasure ?DEGREE. The cosine of ?DEGREE is the ratio of the side next to ?DEGREE to the hypotenuse in a right-angled triangle.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 501) (%3ASUO-name "CosineFn")) ([CosineFn_1] of TotalValuedRelation (%3Adocumentation "\"(&%CosineFn ?DEGREE) returns the cosine of the &%PlaneAngleMeasure ?DEGREE. The cosine of ?DEGREE is the ratio of the side next to ?DEGREE to the hypotenuse in a right-angled triangle.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 501) (%3ASUO-name "CosineFn")) ([CosineFn_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 501) (%3ASUO-name "CosineFn")) ([Coulomb] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 721)) ([Coulomb_1] of SystemeInternationalUnit (%3Adocumentation "SI electric charge measure. Symbol: C. It is the quantity of electric charge transported through a cross section of a conductor in an electric circuit during each &%SecondDuration by a current of 1 &%Ampere. Coulomb = s*A.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 721)) ([Counting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1315) (%3ASLOT-CONSTRAINTS [UAX-0554])) ([County] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2445) (%3ASLOT-CONSTRAINTS [UAX-1029])) ([couponInterest] of BinaryPredicate (%3Adocumentation "\"(&%couponInterest ?BOND ?INTEREST) means that ?INTEREST is the periodic interest payment made to bondholders during the life of the ?BOND.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3358) (%3ASUO-name "couponInterest")) ([couponInterest_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3358) (%3ASUO-name "couponInterest")) ([CourtRoom] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2842) (%3ASLOT-CONSTRAINTS [UAX-1208])) ([Covering] of %3ASYN-CLASS (disjoint [Uncovering]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1229)) ([Cow] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3150)) ([CPU] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 31)) ([CPUUtilizationFn] of UnaryFunction (%3Adocumentation "\"(&%CPUUtilizationFn ?PROGRAM) refers to the percentage of time the CPU is used by an application ?PROGRAM.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 326) (%3ASUO-name "CPUUtilizationFn")) ([Creation] of %3ASYN-CLASS (relatedInternalConcept [Destruction] [IntervalFn_S] [RecurrentTimeIntervalFn_S]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1386) (%3ASLOT-CONSTRAINTS [UAX-0589] [UAX-0590])) ([CreditUnion] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3256)) ([CreoleLanguage] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3688)) ([CriminalAction] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2708) (%3ASLOT-CONSTRAINTS [UAX-1148])) ([criticalityLevel] of BinaryPredicate (%3Adocumentation "\"(&%criticalityLevel ?PROGRAM ?INTEGER) holds just in case ?INTEGER indicates the relative priority of ?PROGRAM with respect to other applications within the &%SoftwareSystem.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 144) (%3ASUO-name "criticalityLevel")) ([criticalityLevel_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 144) (%3ASUO-name "criticalityLevel")) ([crosses] of AsymmetricRelation (%3Adocumentation "\"(crosses ?OBJ1 ?OBJ2) means that &%Object ?OBJ1 &%traverses Object ?OBJ2, without being &%connected to it.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 446) (%3ASUO-name "crosses")) ([crosses_1] of TransitiveRelation (%3Adocumentation "\"(crosses ?OBJ1 ?OBJ2) means that &%Object ?OBJ1 &%traverses Object ?OBJ2, without being &%connected to it.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 446) (%3ASUO-name "crosses")) ([crosses_2] of BinaryRelation (%3Adocumentation "\"(crosses ?OBJ1 ?OBJ2) means that &%Object ?OBJ1 &%traverses Object ?OBJ2, without being &%connected to it.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 446) (%3ASUO-name "crosses")) ([crosses_3] of SpatialRelation (%3Adocumentation "\"(crosses ?OBJ1 ?OBJ2) means that &%Object ?OBJ1 &%traverses Object ?OBJ2, without being &%connected to it.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 446) (%3ASUO-name "crosses")) ([crosses_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [traverses_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 446) (%3ASUO-name "crosses")) ([Crustacean] of %3ASYN-CLASS (disjoint [Arachnid] [Myriapod] [Insect]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1600)) ([Cuba] of Nation (%3Adocumentation "\"An &%Island &%Nation in the Carribbean.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3737) (%3ASUO-name "Cuba")) ([Cuba_1] of Island (%3Adocumentation "\"An &%Island &%Nation in the Carribbean.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3737) (%3ASUO-name "Cuba")) ([CubicFoot] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3606) (%3ASLOT-CONSTRAINTS [UAX-1486])) ([CubicFoot_1] of UnitOfMeasure (%3Adocumentation "&%CubicFoot is a unit for measuring volume, equal to a volume of one foot length in each dimension of length, width, and height.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3606)) ([Cup] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2266) (%3ASLOT-CONSTRAINTS [UAX-0949])) ([CupMeasure] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 784) (%3ASLOT-CONSTRAINTS [UAX-0293])) ([CupMeasure_1] of UnitOfMeasure (%3Adocumentation "English unit of volume equal to 1/2 of a &%Pint.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 784)) ([Currency] of %3ASYN-CLASS (partition [CurrencyBill] [CurrencyCoin]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1748) (%3ASLOT-CONSTRAINTS [UAX-0741])) ([CurrencyBill] of %3ASYN-CLASS (disjoint [CurrencyCoin]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1750) (%3ASLOT-CONSTRAINTS [UAX-0742])) ([CurrencyCoin] of %3ASYN-CLASS (disjoint [CurrencyBill]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1752) (%3ASLOT-CONSTRAINTS [UAX-0743])) ([CurrencyMeasure] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 652)) ([currencyType] of BinaryPredicate (%3Adocumentation "\"(&%currencyType ?AREA ?UNIT) means that the official currency used in the &%GeopoliticalArea ?AREA is the &%UnitOfMeasure ?UNIT.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3669) (%3ASUO-name "currencyType")) ([currencyType_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3669) (%3ASUO-name "currencyType")) ([currentAccountBalance] of TernaryPredicate (%3Adocumentation "\"(&%currentAccountBalance ?Account ?Date ?Amount) means that ?Amount is the balance of the &%FinancialAccount ?Account as of the date ?Date.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3281) (%3ASUO-name "currentAccountBalance")) ([currentAccountBalance_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class Day) (%3ADomain2Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3281) (%3ASUO-name "currentAccountBalance")) ([customer] of IrreflexiveRelation (%3Adocumentation "\"A very general relation that exists whenever there is a &%CommercialService between an &%Agent and an &%Organization. (&%customer ?AGENT ?ORG) means that ?AGENT is a customer of the &%Corporation ?ORG.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3286) (%3ASUO-name "customer")) ([customer_1] of AsymmetricRelation (%3Adocumentation "\"A very general relation that exists whenever there is a &%CommercialService between an &%Agent and an &%Organization. (&%customer ?AGENT ?ORG) means that ?AGENT is a customer of the &%Corporation ?ORG.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3286) (%3ASUO-name "customer")) ([customer_2] of BinaryPredicate (%3Adocumentation "\"A very general relation that exists whenever there is a &%CommercialService between an &%Agent and an &%Organization. (&%customer ?AGENT ?ORG) means that ?AGENT is a customer of the &%Corporation ?ORG.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3286) (%3ASUO-name "customer")) ([customer_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1383)\n(<=>\n (customer ?Agent ?Org)\n (exists (?Service)\n (and\n (instance ?Service CommercialService)\n (agent ?Service ?Org)\n (destination ?Service ?Agent))))\n\n(UAX-1384)\n(=>\n (and\n (accountHolder ?Account ?Agent)\n (financialAccount ?Account ?Bank))\n (customer ?Agent ?Bank))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3286) (%3ASUO-name "customer")) ([CutSetFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that assigns a &%Graph the &%Class of &%GraphPaths that partition the graph into two separate graphs if cut. There may be more than one cutset for a given graph.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 635) (%3ASUO-name "CutSetFn")) ([CutSetFn_S] of %3ASKIF-SLOT (relatedInternalConcept [Reading]) (%3ADomain1Type Instance) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 635) (%3ASUO-name "CutSetFn")) ([Cutting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1343)) ([Cycle] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3595)) ([Dallas] of AmericanCity (%3Adocumentation "\"A large &%City in northeastern Texas.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3753) (%3ASUO-name "Dallas")) ([Damaging] of %3ASYN-CLASS (disjoint [Repairing]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1334)) ([Damp] of SaturationAttribute (%3Adocumentation "\"An &%Attribute which indicates that the associated &%Object contains some &%Liquid.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2058) (%3ASUO-name "Damp")) ([Dancing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1215)) ([Database] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 479)) ([DataCompression] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 491)) ([dataID] of BinaryPredicate (%3Adocumentation "\"(&%dataID ?PROGRAM ?NUMBER) holds if ?NUMBER is a small number associated with an instance of &%MonitoringProgram.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 203) (%3ASUO-name "dataID")) ([dataID_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 203) (%3ASUO-name "dataID")) ([dataProcessed] of CaseRole (%3Adocumentation "\"The data being processed during a &%ComputerProcess.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 481) (%3ASUO-name "dataProcessed")) ([dataProcessed_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [patient_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 481) (%3ASUO-name "dataProcessed")) ([DataSaving] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 488) (%3ASLOT-CONSTRAINTS [UAX-1590])) ([DataSink] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 435) (%3ASLOT-CONSTRAINTS [UAX-1579])) ([dataStreamSlack] of BinaryPredicate (%3Adocumentation "\"(&%dataStreamSlack ?PATH ?N) means that a continuous or quasicontinuous path ?PATH should be able to process ?N additional data items at any time.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 301) (%3ASUO-name "dataStreamSlack")) ([dataStreamSlack_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1566)\n(=>\n (dataStreamSlack ?Path ?Number)\n (or\n (property ?Path ContinuousPath)\n (property ?Path QuasicontinuousPath)))\n") (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 301) (%3ASUO-name "dataStreamSlack")) ([DataTransfer] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 33)) ([date] of BinaryPredicate (%3Adocumentation "\"A &%BinaryPredicate that specifies a &%TimePosition in absolute calendar time, at the resolution of one day, for a particular &%Object or &%Process.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 921) (%3ASUO-name "date")) ([date_1] of SingleValuedRelation (%3Adocumentation "\"A &%BinaryPredicate that specifies a &%TimePosition in absolute calendar time, at the resolution of one day, for a particular &%Object or &%Process.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 921) (%3ASUO-name "date")) ([date_2] of AsymmetricRelation (%3Adocumentation "\"A &%BinaryPredicate that specifies a &%TimePosition in absolute calendar time, at the resolution of one day, for a particular &%Object or &%Process.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 921) (%3ASUO-name "date")) ([date_4] of TemporalRelation (%3Adocumentation "\"A &%BinaryPredicate that specifies a &%TimePosition in absolute calendar time, at the resolution of one day, for a particular &%Object or &%Process.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 921) (%3ASUO-name "date")) ([date_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [time_S]) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 921) (%3ASUO-name "date")) ([DateFruit] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3217)) ([daughter] of BinaryPredicate (%3Adocumentation "\"The general relationship of daughterhood. (&%daughter ?CHILD ?PARENT) means that ?CHILD is the biological daughter of ?PARENT.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1567) (%3ASUO-name "daughter")) ([daughter_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [parent_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1567) (%3ASUO-name "daughter")) ([Day] of %3ASYN-CLASS (relatedInternalConcept [DayFn] [DayFn_S] [DayDuration] [successorAttributeClosure_S] [successorAttribute_S] [instance_S] [member_S]) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 979) (%3ASLOT-CONSTRAINTS [UAX-0392])) ([DayDuration] of %3ASYN-CLASS (relatedInternalConcept [Day] [Day]) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 751) (%3ASLOT-CONSTRAINTS [UAX-0279])) ([DayDuration_1] of UnitOfMeasure (%3Adocumentation "Time unit. 1 day = 24 hours.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 751)) ([DayFn] of TemporalRelation (relatedInternalConcept [Day]) (%3Adocumentation "\"A &%BinaryFunction that assigns a &%PositiveRealNumber and a subclass of &%Months to the &%Days within each &%Month corresponding to that &%PositiveRealNumber. For example, (&%DayFn 16 &%August) is the &%Class of all sixteenth days of August. For another example, (&%DayFn 9 &%Month) would return the class of all ninth days of any month. For still another example, (&%DayFn 18 (&%MonthFn 8 (YearFn 1912))) denotes the 18th day of August 1912.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 924) (%3ASUO-name "DayFn")) ([DayFn_1] of BinaryFunction (%3Adocumentation "\"A &%BinaryFunction that assigns a &%PositiveRealNumber and a subclass of &%Months to the &%Days within each &%Month corresponding to that &%PositiveRealNumber. For example, (&%DayFn 16 &%August) is the &%Class of all sixteenth days of August. For another example, (&%DayFn 9 &%Month) would return the class of all ninth days of any month. For still another example, (&%DayFn 18 (&%MonthFn 8 (YearFn 1912))) denotes the 18th day of August 1912.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 924) (%3ASUO-name "DayFn")) ([DayFn_S] of %3ATernarySlot (relatedInternalConcept [Day]) (%3AAXIOMS "\n(UAX-0356)\n(=>\n (instance ?DAY (DayFn ?NUMBER ?MONTH))\n (lessThanOrEqualTo ?NUMBER 31))\n\n(UAX-0357)\n(=>\n (and\n (instance ?DAY1 (DayFn ?NUMBER1 ?MONTH))\n (instance ?DAY2 (DayFn ?NUMBER2 ?MONTH))\n (equal (SubtractionFn ?NUMBER2 ?NUMBER1) 1))\n (meetsTemporally ?DAY1 ?DAY2))\n") (%3ADomain1Type Instance) (%3ADomain2Class Month) (%3ADomain2Type Class) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 924) (%3ASUO-name "DayFn")) ([DayTime] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3021) (%3ASLOT-CONSTRAINTS [UAX-1286] [UAX-1287])) ([Dead] of AnimacyAttribute (%3AAXIOMS "\n(UAX-0871)\n(=>\n (instance ?ORG Organism)\n (exists (?ATTR)\n (and\n (instance ?ATTR AnimacyAttribute)\n (attribute ?ORG ?ATTR))))\n") (%3Adocumentation "\"This &%Attribute applies to &%Organisms that are not alive.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2076) (%3ASUO-name "Dead")) ([DeafSignLanguage] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3687)) ([Death] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1121) (%3ASLOT-CONSTRAINTS [UAX-0464] [UAX-0465])) ([Debating] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3111)) ([Debt] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3275) (%3ASLOT-CONSTRAINTS [UAX-1379])) ([Decade] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3014) (%3ASLOT-CONSTRAINTS [UAX-1282])) ([December] of %3ASYN-CLASS (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 976) (%3ASLOT-CONSTRAINTS [UAX-0390] [UAX-0391])) ([Deciding] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1304) (%3ASLOT-CONSTRAINTS [UAX-0549])) ([Declaring] of %3ASYN-CLASS (disjoint [Stating] [Supposing] [Directing] [Committing] [ExpressingInLanguage]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1439) (%3ASLOT-CONSTRAINTS [UAX-0614])) ([Decoding] of %3ASYN-CLASS (disjoint [Encoding]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1377) (%3ASLOT-CONSTRAINTS [UAX-0584])) ([decreasesLikelihood] of ProbabilityRelation (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%decreasesLikelihood ?FORMULA1 ?FORMULA2) means that ?FORMULA2 is less likely to be true if ?FORMULA1 is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 296) (%3ASUO-name "decreasesLikelihood")) ([decreasesLikelihood_1] of BinaryPredicate (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%decreasesLikelihood ?FORMULA1 ?FORMULA2) means that ?FORMULA2 is less likely to be true if ?FORMULA1 is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 296) (%3ASUO-name "decreasesLikelihood")) ([decreasesLikelihood_2] of IrreflexiveRelation (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%decreasesLikelihood ?FORMULA1 ?FORMULA2) means that ?FORMULA2 is less likely to be true if ?FORMULA1 is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 296) (%3ASUO-name "decreasesLikelihood")) ([decreasesLikelihood_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0101)\n(=>\n (and\n (decreasesLikelihood ?FORMULA1 ?FORMULA2)\n (equal (ProbabilityFn ?FORMULA2) ?NUMBER1)\n (conditionalProbability ?FORMULA1 ?FORMULA2 ?NUMBER2))\n (lessThan ?NUMBER2 ?NUMBER1))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 296) (%3ASUO-name "decreasesLikelihood")) ([Decreasing] of %3ASYN-CLASS (disjoint [Increasing]) (relatedInternalConcept [Removing] [prevents_S] [inhibits_S]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1194) (%3ASLOT-CONSTRAINTS [UAX-0499])) ([DeductiveArgument] of %3ASYN-CLASS (partition [ValidDeductiveArgument] [InvalidDeductiveArgument]) (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1880)) ([DefaultModule] of %3AModule (%3Adocumentation "The DefaulModule is the module to which input data blocks are assigned until the first module definition block is encountered.") (%3AinputFile "CCTsupm.kif") (%3AStartingBlock 0) (%3ASUO-name "DefaultModule")) ([defaultNetwork] of BinaryPredicate (%3Adocumentation "\"(&%defaultNetwork ?SYSTEM ?NET) holds if ?NET is the default network of the &%HardwareSystem ?SYSTEM.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 238) (%3ASUO-name "defaultNetwork")) ([defaultNetwork_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 238) (%3ASUO-name "defaultNetwork")) ([DefensiveManeuver] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1467) (%3ASLOT-CONSTRAINTS [UAX-0628] [UAX-0629] [UAX-0630])) ([Democracy] of FormOfGovernment (%3Adocumentation "\"&%Democracy is the attribute of a government whose authority and rule are based in the will of the people governed. The will of the people is usually expressed through &%Elections, direct or indirect.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3503) (%3ASUO-name "Democracy")) ([DemocraticSocialism] of EconomicSystemAttribute (%3AAXIOMS "\n(UAX-1490)\n(=>\n (attribute ?AREA DemocraticSocialism)\n (governmentType ?AREA Democracy))\n") (%3Adocumentation "\"&%DemocraticSocialism is an &%Attribute that describes a country in which socialism is promoted by a political party or parties within a democratic government. Under &%DemocraticSocialism, the government participates in central planning of the economy and may also manage nationalized industries.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3640) (%3ASUO-name "DemocraticSocialism")) ([Demonstrating] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1414) (%3ASLOT-CONSTRAINTS [UAX-0604])) ([DenominatorFn] of UnaryFunction (%3Adocumentation "\"(&%DenominatorFn ?NUMBER) returns the denominator of the canonical reduced form of the &%RealNumber ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 502) (%3ASUO-name "DenominatorFn")) ([DenominatorFn_1] of TotalValuedRelation (%3Adocumentation "\"(&%DenominatorFn ?NUMBER) returns the denominator of the canonical reduced form of the &%RealNumber ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 502) (%3ASUO-name "DenominatorFn")) ([DenominatorFn_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 502) (%3ASUO-name "DenominatorFn")) ([DensityFn] of TotalValuedRelation (%3Adocumentation "\"&%DensityFn maps an instance of &%MassMeasure and an instance of &%VolumeMeasure to the density represented by this proportion of mass and volume. For example, (&%DensityFn (&%MeasureFn 3 &%Gram) (&%MeasureFn 1 &%Liter)) represents the density of 3 grams per liter.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 681) (%3ASUO-name "DensityFn")) ([DensityFn_1] of BinaryFunction (%3Adocumentation "\"&%DensityFn maps an instance of &%MassMeasure and an instance of &%VolumeMeasure to the density represented by this proportion of mass and volume. For example, (&%DensityFn (&%MeasureFn 3 &%Gram) (&%MeasureFn 1 &%Liter)) represents the density of 3 grams per liter.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 681) (%3ASUO-name "DensityFn")) ([DensityFn_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class VolumeMeasure) (%3ADomain2Type Instance) (%3AisaSubrelationOf [PerFn_S]) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 681) (%3ASUO-name "DensityFn")) ([DeonticAttribute] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1970)) ([dependencyDelay] of BinaryPredicate (%3Adocumentation "\"if the dependency type is &%StartupBlock, then (&%dependencyDelay ?PROGRAM ?TIME) means that the application ?PROGRAM can only be started after a dependency delay of ?TIME after the startup of the application. If the dependency type is &%ShutdownBlock, then (&%dependencyDelay ?PROGRAM ?TIME) means that the application ?PROGRAM can only be stopped after a dependency delay of ?TIME after the application is stopped.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 311) (%3ASUO-name "dependencyDelay")) ([dependencyDelay_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 311) (%3ASUO-name "dependencyDelay")) ([dependencyType] of BinaryPredicate (%3AAXIOMS "\n(UAX-1567)\n(=>\n (dependencyType ?Program ?Type)\n (or\n (equal ?Type StartupBlock)\n (equal ?Type ShutdownBlock)))\n") (%3Adocumentation "\"(&%dependencyType ?PROGRAM ?TYPE) means that ?PROGRAM has a dependency type ?TYPE, where ?TYPE can be either &%StartupBlock or &%ShutdownBlock.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 304) (%3ASUO-name "dependencyType")) ([Dependent-TaskRelation] of TaskRelationAttribute (%3Adocumentation "\"An instance of &%RealtimeSystem is described as &%Dependent-TaskRelation if it depends on at least one other function in the system; that is, its correct execution depends on the input from another function, the execution state of another function, or the acceptance of its outputs by another function.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 363) (%3ASUO-name "Dependent-TaskRelation")) ([dependentGeopoliticalArea] of AsymmetricRelation (%3Adocumentation "\"(&%dependentGeopoliticalArea ?AREA1 ?AREA2) means that ?AREA1 is a geopolitical possession of the &%GeopoliticalArea ?AREA2 and is not a &%geopoliticalSubdivision of ?AREA2. For example, (&%dependentGeopoliticalArea &%Guam &%UnitedStates), because Guam is a territory of the &%UnitedStates, not one of the fifty U.S. states. Contrast &%primaryGeopoliticalSubdivision.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3469) (%3ASUO-name "dependentGeopoliticalArea")) ([dependentGeopoliticalArea_1] of TransitiveRelation (%3Adocumentation "\"(&%dependentGeopoliticalArea ?AREA1 ?AREA2) means that ?AREA1 is a geopolitical possession of the &%GeopoliticalArea ?AREA2 and is not a &%geopoliticalSubdivision of ?AREA2. For example, (&%dependentGeopoliticalArea &%Guam &%UnitedStates), because Guam is a territory of the &%UnitedStates, not one of the fifty U.S. states. Contrast &%primaryGeopoliticalSubdivision.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3469) (%3ASUO-name "dependentGeopoliticalArea")) ([dependentGeopoliticalArea_3] of BinaryPredicate (%3Adocumentation "\"(&%dependentGeopoliticalArea ?AREA1 ?AREA2) means that ?AREA1 is a geopolitical possession of the &%GeopoliticalArea ?AREA2 and is not a &%geopoliticalSubdivision of ?AREA2. For example, (&%dependentGeopoliticalArea &%Guam &%UnitedStates), because Guam is a territory of the &%UnitedStates, not one of the fifty U.S. states. Contrast &%primaryGeopoliticalSubdivision.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3469) (%3ASUO-name "dependentGeopoliticalArea")) ([dependentGeopoliticalArea_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1452)\n(=>\n (dependentGeopoliticalArea ?AREA ?COUNTRY)\n (possesses ?COUNTRY ?AREA))\n\n(UAX-1453)\n(=>\n (dependentGeopoliticalArea ?AREA ?COUNTRY)\n (not\n (geopoliticalSubdivision ?AREA ?COUNTRY)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [claimedTerritory_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3469) (%3ASUO-name "dependentGeopoliticalArea")) ([Deposit] of %3ASYN-CLASS (disjoint [Withdrawal]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3338) (%3ASLOT-CONSTRAINTS [UAX-1405] [UAX-1406])) ([DepositAccount] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3329)) ([DepositingACheck] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3321) (%3ASLOT-CONSTRAINTS [UAX-1398] [UAX-1399])) ([depth] of SingleValuedRelation (%3Adocumentation "\"A &%TernaryPredicate that is used to state the &%distance between the &%top of an &%Object and another point that is above the &%top of the &%Object (often this other point will be sea level). Note that this &%Predicate can be used to specify, for example, the depth of marine life or submarines, for example.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 840) (%3ASUO-name "depth")) ([depth_1] of SpatialRelation (%3Adocumentation "\"A &%TernaryPredicate that is used to state the &%distance between the &%top of an &%Object and another point that is above the &%top of the &%Object (often this other point will be sea level). Note that this &%Predicate can be used to specify, for example, the depth of marine life or submarines, for example.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 840) (%3ASUO-name "depth")) ([depth_2] of TernaryPredicate (%3Adocumentation "\"A &%TernaryPredicate that is used to state the &%distance between the &%top of an &%Object and another point that is above the &%top of the &%Object (often this other point will be sea level). Note that this &%Predicate can be used to specify, for example, the depth of marine life or submarines, for example.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 840) (%3ASUO-name "depth")) ([depth_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0313)\n(=>\n (depth ?OBJ1 ?OBJ2 ?DEPTH)\n (orientation ?OBJ1 ?OBJ2 Below))\n\n(UAX-0314)\n(=>\n (depth ?OBJ1 ?OBJ2 ?DEPTH)\n (exists (?BOTTOM)\n (and\n (bottom ?BOTTOM ?OBJ1)\n (distance ?BOTTOM ?OBJ2 ?DEPTH))))\n") (%3ADomain1Type Instance) (%3ADomain2Class Physical) (%3ADomain2Type Instance) (%3AisaSubrelationOf [distance_S]) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 840) (%3ASUO-name "depth")) ([DescendantsFn] of UnaryFunction (%3Adocumentation "\"(&%DescendantsFn ?PERSON) denotes all and only the descendants of ?PERSON, i.e. the &%Group consisting of ?OFFSPRING who satisfy the following formula: (&%ancestor ?OFFSPRING ?PERSON).\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2384) (%3ASUO-name "DescendantsFn")) ([DescendantsFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1003)\n(=>\n (and\n (instance ?PERSON Human)\n (equal (DescendantsFn ?PERSON) ?DESCENDANTS))\n (forall (?MEMBER)\n (<=>\n (member ?MEMBER ?DESCENDANTS)\n (ancestor ?MEMBER ?PERSON))))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2384) (%3ASUO-name "DescendantsFn")) ([Designing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1186)) ([designPattern] of BinaryPredicate (%3Adocumentation "\"(&%designPattern ?System ?Attribute) holds if ?Attribute is a &%DesignPatternAttribute which describes the &%RealtimeSystem ?System.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 347) (%3ASUO-name "designPattern")) ([designPattern_S] of %3ASKIF-SLOT (%3AAXIOMS "null\n(UAX-1571)\n(=>\n (designPattern ?System Guidance-DesignPattern)\n (systemBehavior ?System Transient-SystemBehavior))\n\n(UAX-1572)\n(=>\n (designPattern ?System Initiation-DesignPattern)\n (systemBehavior ?System Transient-SystemBehavior))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [property_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 347) (%3ASUO-name "designPattern")) ([DesignPatternAttribute] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 345)) ([desires] of PropositionalAttitude (%3Adocumentation "\"(&%desires ?AGENT ?FORMULA) means that ?AGENT wants to bring about the state of affairs expressed by ?FORMULA. Note that there is no implication that what is desired by the agent is not already true. Note too that &%desires is distinguished from &%wants only in that the former is a &%PropositionalAttitude, while &%wants is an &%ObjectAttitude.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 318) (%3ASUO-name "desires")) ([desires_1] of BinaryPredicate (%3Adocumentation "\"(&%desires ?AGENT ?FORMULA) means that ?AGENT wants to bring about the state of affairs expressed by ?FORMULA. Note that there is no implication that what is desired by the agent is not already true. Note too that &%desires is distinguished from &%wants only in that the former is a &%PropositionalAttitude, while &%wants is an &%ObjectAttitude.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 318) (%3ASUO-name "desires")) ([desires_S] of %3ASKIF-SLOT (relatedInternalConcept [Hour] [Minute]) (%3ADomain1Type Instance) (%3AisaSubrelationOf [inScopeOfInterest_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 318) (%3ASUO-name "desires")) ([Desk] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2247)) ([destination] of CaseRole (%3Adocumentation "\"(destination ?PROCESS ?GOAL) means that ?GOAL is the target or goal of the Process ?PROCESS. For example, Danbury would be the destination in the following proposition: Bob went to Danbury. Note that this is a very general &%CaseRole and, in particular, that it covers the concepts of 'recipient' and 'beneficiary'. Thus, John would be the &%destination in the following proposition: Tom gave a book to John.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 283) (%3ASUO-name "destination")) ([destination_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 283) (%3ASUO-name "destination")) ([Destruction] of %3ASYN-CLASS (relatedInternalConcept [Creation] [Creation]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1335) (%3ASLOT-CONSTRAINTS [UAX-0564])) ([Detaching] of %3ASYN-CLASS (disjoint [Attaching]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1346) (%3ASLOT-CONSTRAINTS [UAX-0570])) ([Detergent] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2484) (%3ASLOT-CONSTRAINTS [UAX-1044])) ([DeterministicDataStream] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 279) (%3ASLOT-CONSTRAINTS [UAX-1562] [UAX-1563])) ([DevelopmentalAttribute] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2085)) ([developmentalForm] of BinaryPredicate (%3Adocumentation "\"(&%developmentalForm ?OBJECT ?FORM) means that ?FORM is an earlier stage in the individual maturation of ?OBJECT. For example, tadpole and caterpillar are &%developmentalForms of frogs and butterflies, respectively.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1548) (%3ASUO-name "developmentalForm")) ([developmentalForm_1] of AsymmetricRelation (%3Adocumentation "\"(&%developmentalForm ?OBJECT ?FORM) means that ?FORM is an earlier stage in the individual maturation of ?OBJECT. For example, tadpole and caterpillar are &%developmentalForms of frogs and butterflies, respectively.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1548) (%3ASUO-name "developmentalForm")) ([developmentalForm_2] of TransitiveRelation (%3Adocumentation "\"(&%developmentalForm ?OBJECT ?FORM) means that ?FORM is an earlier stage in the individual maturation of ?OBJECT. For example, tadpole and caterpillar are &%developmentalForms of frogs and butterflies, respectively.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1548) (%3ASUO-name "developmentalForm")) ([developmentalForm_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0663)\n(=>\n (and\n (holdsDuring ?TIME1 (developmentalForm ?OBJ ?ATTR1))\n (successorAttributeClosure ?ATTR2 ?ATTR1))\n (exists (?TIME2)\n (and\n (earlier ?TIME2 ?TIME1)\n (holdsDuring ?TIME2 (developmentalForm ?OBJ ?ATTR2)))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [attribute_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1548) (%3ASUO-name "developmentalForm")) ([Device] of %3ASYN-CLASS (disjoint [Furniture]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1787) (%3ASLOT-CONSTRAINTS [UAX-0757] [UAX-0758])) ([DeviceAttribute] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2696) (%3ASLOT-CONSTRAINTS [UAX-1142])) ([DiagnosticProcess] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1404) (%3ASLOT-CONSTRAINTS [UAX-0599])) ([Dialysis] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3085) (%3ASLOT-CONSTRAINTS [UAX-1314])) ([diameter] of BinaryPredicate (%3Adocumentation "\"&%BinaryPredicate that is used to state the measure of a circular &%Object from side to side. (&%diameter ?CIRCLE ?LENGTH) means that the diameter of the &%Circle ?CIRCLE has a length of ?LENGTH.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2048) (%3ASUO-name "diameter")) ([diameter_1] of SingleValuedRelation (%3Adocumentation "\"&%BinaryPredicate that is used to state the measure of a circular &%Object from side to side. (&%diameter ?CIRCLE ?LENGTH) means that the diameter of the &%Circle ?CIRCLE has a length of ?LENGTH.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2048) (%3ASUO-name "diameter")) ([diameter_2] of TotalValuedRelation (%3Adocumentation "\"&%BinaryPredicate that is used to state the measure of a circular &%Object from side to side. (&%diameter ?CIRCLE ?LENGTH) means that the diameter of the &%Circle ?CIRCLE has a length of ?LENGTH.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2048) (%3ASUO-name "diameter")) ([diameter_3] of BinaryPredicate (%3Adocumentation "\"(&%diameter ?CIRCLE ?LENGTH) means that the diameter of the &%Circle ?CIRCLE has a length of ?LENGTH.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3104) (%3ASUO-name "diameter")) ([diameter_4] of SingleValuedRelation (%3Adocumentation "\"(&%diameter ?CIRCLE ?LENGTH) means that the diameter of the &%Circle ?CIRCLE has a length of ?LENGTH.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3104) (%3ASUO-name "diameter")) ([diameter_5] of TotalValuedRelation (%3Adocumentation "\"(&%diameter ?CIRCLE ?LENGTH) means that the diameter of the &%Circle ?CIRCLE has a length of ?LENGTH.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3104) (%3ASUO-name "diameter")) ([diameter_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0861)\n(=>\n (diameter ?CIRCLE ?LENGTH)\n (exists (?HALF)\n (and\n (radius ?CIRCLE ?HALF)\n (equal (MultiplicationFn ?HALF 2) ?LENGTH))))\n\n(UAX-1320)\n(=>\n (diameter ?CIRCLE ?LENGTH)\n (exists (?HALF)\n (and\n (radius ?CIRCLE ?HALF)\n (equal (MultiplicationFn ?HALF 2) ?LENGTH))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [width_S]) (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2048) (%3ASUO-name "diameter")) ([Dictatorship] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3510) (%3ASUO-name "Dictatorship")) ([Dictionary] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2751)) ([Digesting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1130) (%3ASLOT-CONSTRAINTS [UAX-0468] [UAX-0469])) ([DigitCharacter] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3073)) ([DirectedGraph] of %3ASYN-CLASS (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 591) (%3ASLOT-CONSTRAINTS [UAX-0238])) ([Directing] of %3ASYN-CLASS (disjoint [Stating] [Supposing] [Declaring] [Committing] [ExpressingInLanguage]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1429)) ([direction] of CaseRole (%3Adocumentation "\"(&%direction ?PROC ?ATTR) means that the &%Process ?PROC is moving in the direction ?ATTR. For example, one would use this &%Predicate to represent the fact that Max is moving &%North.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1892) (%3ASUO-name "direction")) ([direction_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0800)\n(=>\n (holdsDuring ?TIME (direction ?PROC ?ATTR1))\n (forall (?ATTR2)\n (=>\n (holdsDuring ?TIME (direction ?PROC ?ATTR2))\n (equal ?ATTR2 ?ATTR1))))\n") (%3ADomain1Type Instance) (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1892) (%3ASUO-name "direction")) ([DirectionalAttribute] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1906) (%3ASLOT-CONSTRAINTS [UAX-0805] [UAX-0806])) ([DirectionChange] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1218) (%3ASLOT-CONSTRAINTS [UAX-0508])) ([directoryOf] of BinaryPredicate (%3Adocumentation "\"(&%directoryOf ?FILE ?DIRECTORY) means that the &%ComputerFile ?FILE is in the &%ComputerDirectory ?DIRECTORY.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 51) (%3ASUO-name "directoryOf")) ([directoryOf_S] of %3ASKIF-SLOT (relatedInternalConcept [filename_S]) (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 51) (%3ASUO-name "directoryOf")) ([disapproves] of PropositionalAttitude (%3Adocumentation "\"(&%disapproves ?AGENT ?FORMULA) means that ?AGENT has a feeling of antipathy to the state of affairs represented by ?FORMULA, i.e. ?AGENT believes that the realization of ?FORMULA will thwart one of his/her goals. Note that there is no implication that what is disapproved of by an agent is not already true.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2378) (%3ASUO-name "disapproves")) ([disapproves_1] of BinaryPredicate (%3Adocumentation "\"(&%disapproves ?AGENT ?FORMULA) means that ?AGENT has a feeling of antipathy to the state of affairs represented by ?FORMULA, i.e. ?AGENT believes that the realization of ?FORMULA will thwart one of his/her goals. Note that there is no implication that what is disapproved of by an agent is not already true.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2378) (%3ASUO-name "disapproves")) ([disapproves_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1000)\n(=>\n (dislikes ?AGENT ?OBJECT)\n (desires ?AGENT (not (possesses ?AGENT ?OBJECT))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [inScopeOfInterest_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2378) (%3ASUO-name "disapproves")) ([Discovering] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1297) (%3ASLOT-CONSTRAINTS [UAX-0546] [UAX-0547])) ([DiseaseOrSyndrome] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2095)) ([disjoint] of %3ASKIF-SLOT (relatedInternalConcept [ContentBearingObject] [Year]) (%3AAXIOMS "(UAX: SUMAX-25)\n(<=>\n (disjoint ?CLASS1 ?CLASS2)\n (and\n (instance ?CLASS1 NonNullSet)\n (instance ?CLASS2 NonNullSet)\n (forall (?INST)\n (not\n (and\n (instance ?INST ?CLASS1)\n (instance ?INST ?CLASS2))))))\n(UAX-0025)\n(<=>\n (disjoint ?CLASS1 ?CLASS2)\n (and\n (instance ?CLASS1 NonNullSet)\n (instance ?CLASS2 NonNullSet)\n (forall (?INST)\n (not\n (and\n (instance ?INST ?CLASS1)\n (instance ?INST ?CLASS2))))))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 48) (%3ASUO-name "disjoint")) ([disjoint_1] of BinaryPredicate (%3Adocumentation "\"&%Classes are &%disjoint only if they share no instances, i.e. just in case the result of applying &%IntersectionFn to them is empty.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 48) (%3ASUO-name "disjoint")) ([disjoint_2] of SymmetricRelation (%3Adocumentation "\"&%Classes are &%disjoint only if they share no instances, i.e. just in case the result of applying &%IntersectionFn to them is empty.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 48) (%3ASUO-name "disjoint")) ([disjointDecomposition] of %3AVariableAritySlot (relatedInternalConcept [Year] [Year]) (%3AAXIOMS "(UAX: SUMAX-38)\n(=>\n (disjointDecomposition @ROW)\n (=>\n (inList ?ELEMENT (ListFn @ROW))\n (instance ?ELEMENT Class)))\n\n(UAX: SUMAX-119)\n(=>\n (disjointDecomposition ?CLASS @ROW)\n (forall (?ITEM)\n (=>\n (inList ?ITEM (ListFn @ROW))\n (subclass ?ITEM ?CLASS))))\n\n(UAX: SUMAX-120)\n(=>\n (disjointDecomposition ?CLASS @ROW)\n (forall (?ITEM1 ?ITEM2)\n (=>\n (and\n (inList ?ITEM1 (ListFn @ROW))\n (inList ?ITEM2 (ListFn @ROW))\n (not\n (equal ?ITEM1 ?ITEM2)))\n (disjoint ?ITEM1 ?ITEM2))))\n(UAX-0038)\n(=>\n (disjointDecomposition @ROW)\n (=>\n (inList ?ELEMENT (ListFn @ROW))\n (instance ?ELEMENT Class)))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 67) (%3ASUO-name "disjointDecomposition")) ([disjointDecomposition_1] of Predicate (%3Adocumentation "\"A &%disjointDecomposition of a &%Class C is a set of subclasses of C that are mutually &%disjoint.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 67) (%3ASUO-name "disjointDecomposition")) ([disjointDecomposition_2] of VariableArityRelation (%3Adocumentation "\"A &%disjointDecomposition of a &%Class C is a set of subclasses of C that are mutually &%disjoint.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 67) (%3ASUO-name "disjointDecomposition")) ([disjointRelation] of %3AVariableAritySlot (relatedInternalConcept [ContentBearingObject]) (%3AASSOCIATED-FACET [SKIFcore4_00381]) (%3AAXIOMS "(UAX: SUMAX-26)\n(=>\n (and\n (disjointRelation @ROW)\n (inList ?REL (ListFn @ROW)))\n (instance ?REL Relation))\n\n(UAX: SUMAX-27)\n(=>\n (and\n (disjointRelation @ROW)\n (inList ?REL1 (ListFn @ROW))\n (inList ?REL2 (ListFn @ROW))\n (valence ?REL1 ?NUMBER))\n (valence ?REL2 ?NUMBER))\n\n(UAX: SUMAX-32)\n(=>\n (and\n (disjointRelation @ROW1)\n (inList ?REL1 (ListFn @ROW1))\n (inList ?REL2 (ListFn @ROW1))\n (not (equal ?REL1 ?REL2))\n (holds ?REL1 @ROW2))\n (not (holds ?REL2 @ROW2)))\n(UAX-0026)\n(=>\n (and\n (disjointRelation @ROW)\n (inList ?REL (ListFn @ROW)))\n (instance ?REL Relation))\n\n(UAX-0027)\n(=>\n (and\n (disjointRelation @ROW)\n (inList ?REL1 (ListFn @ROW))\n (inList ?REL2 (ListFn @ROW))\n (valence ?REL1 ?NUMBER))\n (valence ?REL2 ?NUMBER))\n\n(UAX-0028)\n(=>\n (and\n (domain ?REL1 ?NUMBER ?CLASS1)\n (domain ?REL2 ?NUMBER ?CLASS2)\n (disjoint ?CLASS1 ?CLASS2))\n (disjointRelation ?REL1 ?REL2))\n\n(UAX-0029)\n(=>\n (and\n (domainSubclass ?REL1 ?NUMBER ?CLASS1)\n (domainSubclass ?REL2 ?NUMBER ?CLASS2)\n (disjoint ?CLASS1 ?CLASS2))\n (disjointRelation ?REL1 ?REL2))\n\n(UAX-0030)\n(=>\n (and\n (range ?REL1 ?CLASS1)\n (range ?REL2 ?CLASS2)\n (disjoint ?CLASS1 ?CLASS2))\n (disjointRelation ?REL1 ?REL2))\n\n(UAX-0031)\n(=>\n (and\n (rangeSubclass ?REL1 ?CLASS1)\n (rangeSubclass ?REL2 ?CLASS2)\n (disjoint ?CLASS1 ?CLASS2))\n (disjointRelation ?REL1 ?REL2))\n\n(UAX-0032)\n(=>\n (and\n (disjointRelation @ROW1)\n (inList ?REL1 (ListFn @ROW1))\n (inList ?REL2 (ListFn @ROW1))\n (not (equal ?REL1 ?REL2))\n (holds ?REL1 @ROW2))\n (not (holds ?REL2 @ROW2)))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 50) (%3ASUO-name "disjointRelation")) ([disjointRelation_1] of Predicate (%3Adocumentation "\"This predicate relates any number of &%Relations. (&%disjointRelation @ROW) means that any two relations in @ROW have no tuples in common. As a consequence, the intersection of all of the relations in @ROW is the null set.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 50) (%3ASUO-name "disjointRelation")) ([disjointRelation_2] of VariableArityRelation (%3Adocumentation "\"This predicate relates any number of &%Relations. (&%disjointRelation @ROW) means that any two relations in @ROW have no tuples in common. As a consequence, the intersection of all of the relations in @ROW is the null set.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 50) (%3ASUO-name "disjointRelation")) ([dislikes] of ObjectAttitude) ([dislikes_1] of BinaryPredicate (%3Adocumentation "\"(&%dislikes ?AGENT ?OBJECT) means that ?AGENT has a feeling of antipathy to ?OBJECT, i.e. ?AGENT believes that ?OBJECT will thwart one of his/her goals. Note that there is no implication that what is hated by an agent is not already possessed by the agent.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2376) (%3ASUO-name "dislikes")) ([dislikes_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0999)\n(=>\n (dislikes ?AGENT ?OBJECT)\n (desires ?AGENT (not (possesses ?AGENT ?OBJECT))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [inScopeOfInterest_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2376) (%3ASUO-name "dislikes")) ([DisplayBoard] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2226) (%3ASLOT-CONSTRAINTS [UAX-0932])) ([Disseminating] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1412) (%3ASLOT-CONSTRAINTS [UAX-0603])) ([distance] of SingleValuedRelation (%3Adocumentation "\"(&%distance ?OBJ1 ?OBJ2 ?QUANT) means that the shortest distance between the two objects ?OBJ1 and ?OBJ2 is ?QUANT. Note that the difference between the predicates &%length and &%distance is that the &%length is used to state the &%LengthMeasure of one of the dimensions of a single object, while &%distance is used to state the &%LengthMeasure that separates two distinct objects.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 835) (%3ASUO-name "distance")) ([distance_1] of SpatialRelation (%3Adocumentation "\"(&%distance ?OBJ1 ?OBJ2 ?QUANT) means that the shortest distance between the two objects ?OBJ1 and ?OBJ2 is ?QUANT. Note that the difference between the predicates &%length and &%distance is that the &%length is used to state the &%LengthMeasure of one of the dimensions of a single object, while &%distance is used to state the &%LengthMeasure that separates two distinct objects.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 835) (%3ASUO-name "distance")) ([distance_2] of TernaryPredicate (%3Adocumentation "\"(&%distance ?OBJ1 ?OBJ2 ?QUANT) means that the shortest distance between the two objects ?OBJ1 and ?OBJ2 is ?QUANT. Note that the difference between the predicates &%length and &%distance is that the &%length is used to state the &%LengthMeasure of one of the dimensions of a single object, while &%distance is used to state the &%LengthMeasure that separates two distinct objects.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 835) (%3ASUO-name "distance")) ([distance_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0310)\n(=>\n (distance ?OBJ1 ?OBJ2 ?QUANT)\n (distance ?OBJ2 ?OBJ1 ?QUANT))\n") (%3ADomain1Type Instance) (%3ADomain2Class Physical) (%3ADomain2Type Instance) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 835) (%3ASUO-name "distance")) ([DistilledAlcoholicBeverage] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2546) (%3ASLOT-CONSTRAINTS [UAX-1070])) ([distributes] of BinaryPredicate (%3Adocumentation "\"A &%BinaryFunction ?FUNCTION1 is distributive over another &%BinaryFunction ?FUNCTION2 just in case (?FUNCTION1 ?INST1 (?FUNCTION2 ?INST2 ?INST3)) is equal to (?FUNCTION2 (?FUNCTION1 ?INST1 ?INST2) (?FUNCTION1 ?INST1 ?INST3)), for all ?INST1, ?INST2, and ?INST3.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 408) (%3ASUO-name "distributes")) ([distributes_1] of BinaryRelation (%3Adocumentation "\"A &%BinaryFunction ?FUNCTION1 is distributive over another &%BinaryFunction ?FUNCTION2 just in case (?FUNCTION1 ?INST1 (?FUNCTION2 ?INST2 ?INST3)) is equal to (?FUNCTION2 (?FUNCTION1 ?INST1 ?INST2) (?FUNCTION1 ?INST1 ?INST3)), for all ?INST1, ?INST2, and ?INST3.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 408) (%3ASUO-name "distributes")) ([distributes_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0159)\n(=>\n (distributes ?FUNCTION1 ?FUNCTION2)\n (forall (?INST1 ?INST2 ?INST3)\n (=>\n (and\n (domain ?FUNCTION1 1 ?CLASS1)\n (instance ?INST1 ?CLASS1)\n (instance ?INST2 ?CLASS1)\n (instance ?INST3 ?CLASS1)\n (domain ?FUNCTION2 1 ?CLASS2)\n (instance ?INST1 ?CLASS2)\n (instance ?INST2 ?CLASS2)\n (instance ?INST3 ?CLASS2))\n (equal (AssignmentFn ?FUNCTION1 ?INST1\n (AssignmentFn ?FUNCTION2 ?INST2 ?INST3))\n (AssignmentFn ?FUNCTION2\n (AssignmentFn ?FUNCTION1 ?INST1 ?INST2)\n (AssignmentFn ?FUNCTION1 ?INST1 ?INST3))))))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 408) (%3ASUO-name "distributes")) ([DivisionFn] of BinaryFunction (%3Adocumentation "\"If ?NUMBER1 and ?NUMBER2 are &%Numbers, then (&%DivisionFn ?NUMBER1 ?NUMBER2) is the result of dividing ?NUMBER1 by ?NUMBER2. An exception occurs when ?NUMBER1 = 1, in which case (&%DivisionFn ?NUMBER1 ?NUMBER2) is the reciprocal of ?NUMBER2.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 495) (%3ASUO-name "DivisionFn")) ([DivisionFn_1] of AssociativeFunction (%3Adocumentation "\"If ?NUMBER1 and ?NUMBER2 are &%Numbers, then (&%DivisionFn ?NUMBER1 ?NUMBER2) is the result of dividing ?NUMBER1 by ?NUMBER2. An exception occurs when ?NUMBER1 = 1, in which case (&%DivisionFn ?NUMBER1 ?NUMBER2) is the reciprocal of ?NUMBER2.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 495) (%3ASUO-name "DivisionFn")) ([DivisionFn_2] of RelationExtendedToQuantities (%3Adocumentation "\"If ?NUMBER1 and ?NUMBER2 are &%Numbers, then (&%DivisionFn ?NUMBER1 ?NUMBER2) is the result of dividing ?NUMBER1 by ?NUMBER2. An exception occurs when ?NUMBER1 = 1, in which case (&%DivisionFn ?NUMBER1 ?NUMBER2) is the reciprocal of ?NUMBER2.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 495) (%3ASUO-name "DivisionFn")) ([DivisionFn_3] of PartialValuedRelation (%3Adocumentation "\"If ?NUMBER1 and ?NUMBER2 are &%Numbers, then (&%DivisionFn ?NUMBER1 ?NUMBER2) is the result of dividing ?NUMBER1 by ?NUMBER2. An exception occurs when ?NUMBER1 = 1, in which case (&%DivisionFn ?NUMBER1 ?NUMBER2) is the reciprocal of ?NUMBER2.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 495) (%3ASUO-name "DivisionFn")) ([DivisionFn_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0196)\n(=>\n (instance ?NUMBER RationalNumber)\n (exists (?INT1 ?INT2)\n (and\n (instance ?INT1 Integer)\n (instance ?INT2 Integer)\n (equal ?NUMBER (DivisionFn ?INT1 ?INT2)))))\n") (%3ADomain1Type Instance) (%3ADomain2Class Quantity) (%3ADomain2Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 495) (%3ASUO-name "DivisionFn")) ([DocsBlock%3A00000] of %3ASKIFdocs (%3AcommentLines ";; sam156a. txt the combined SUMO plus MILO ontologies," ";; minus the duplications -- PJC 2004" ";;" ";; ================================================" ";; SUMO (Suggested Upper Merged Ontology)" ";; from merge.txt version 1.566 for Ontolog ontology" ";; version merg156a -- modified for import into Protege" ";; by P. Cassidy January 2004" ";; ================================================") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 1)) ([DocsBlock%3A00001] of %3ASKIFdocs (%3AcommentLines ";; This is the source file for the SUMO (Suggested Upper Merged Ontology)," ";; an ontology that was developed within the SUO Working Group by merging" ";; the SUO \"candidate content\" sources and refining and extending this content on" ";; the basis of various knowledge engineering projects and input from the SUO" ";; Working Group.") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 2)) ([DocsBlock%3A00002] of %3ASKIFdocs (%3AcommentLines ";; The SUMO incorporates elements of John Sowa's upper ontology (as described at" ";; http://www.bestweb.net/~sowa/ontology/toplevel.htm and in Chapter 2 of his" ";; book _Knowledge Representation_, Brooks/Cole, 2000), Russell and Norvig's" ";; ontology, PSL (Process Specification Language), Casati and Varzi's theory of" ";; holes, Allen's temporal axioms, the relatively noncontroversial elements of" ";; Smith's and Guarino's respective mereotopologies, the KIF formalization of the" ";; CPR (Core Plan Representation), the ontologies available on the Ontolingua" ";; server maintained by Stanford University's Knowledge Systems Laboratory, the" ";; ontologies developed by ITBM-CNR, some of the spatial relations from an" ";; unpublished paper by Iris Tommelein and Anil Gupta entitled \"Conceptual" ";; Structures for Spatial Reasoning\", and a \"Structural Ontology\" proposed by" ";; David Whitten and substantially revised and extended by Chris Menzel." ";; Note that some of the subclasses of 'Process' in the SUMO were originally" ";; inspired by some of the verb classes from the second part of Beth Levin's book" ";; \"English Verb Classes and Alternations: A Preliminary Investigation.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 3)) ([DocsBlock%3A00003] of %3ASKIFdocs (%3AcommentLines ";; The knowledge representation language in which the SUMO is expressed is SUO-KIF," ";; which stands for \"Standard Upper Ontology - Knowledge Interchange Format\". SUO-KIF" ";; is a simplified form of the popular KIF knowledge representation language. A" ";; specification of SUO-KIF can be found at: http://suo.ieee.org/suo-kif.html. It" ";; should be noted that some of the axioms in the SUMO make use of row variables" ";; (indicated with a \"@\" prefix). Such variables are not currently part of the SUO-" ";; KIF specification, but they simplify matters significantly in some cases. Details" ";; about row variables can be found in the following paper:" ";; http://reliant.teknowledge.com/IJCAI01/HayesMenzel-SKIF-IJCAI2001.pdf.") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 4)) ([DocsBlock%3A00004] of %3ASKIFdocs (%3AcommentLines ";; The SUMO is a modular ontology. That is, the ontology is divided into" ";; self-contained subontologies. Each subontology is indicated by a section" ";; header, and the dependencies between the subontologies are specified with" ";; statements of the form \";; INCLUDES ''\". These statements are" ";; found at the beginning of each section. The dependencies between the" ";; various subontologies can also be graphed informally as follows:" ";;" ";; STRUCTURAL ONTOLOGY" ";; +" ";; |" ";; |" ";; +" ";; BASE ONTOLOGY" ";; / | | \\" ";; / | | \\" ";; / | | \\" ";; / | | \\" ";; / | | \\" ";; + + + +" ";; SET/CLASS THEORY NUMERIC TEMPORAL MEREOTOPOLOGY" ";; / | | |" ";; / | | |" ";; / | | |" ";; + + + +" ";; GRAPH MEASURE PROCESSES +--+ OBJECTS" ";; + +" ";; \\ /" ";; \\ /" ";; \\ /" ";; + +" ";; QUALITIES" ";;" ";;" ";; Note that the \"+\" sign at the end of an arc indicates the direction of" ";; dependency - the node near the sign includes the subontology at the other" ";; end of the arc. Note too that in some cases the dependency is" ";; bidirectional. Separating ontologies in cases like these is useful when" ";; their respective topics can be cleanly differentiated.") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 5)) ([DocsBlock%3A00005] of %3ASKIFdocs (%3AcommentLines ";; The SUMO is copyrighted by Teknowledge (c) 2002. It is released under the" ";; GNU Public License . Users of this" ";; code also consent, by use of this material, to credit Teknowledge in any writings," ";; briefings, publications, presentations, or other representations of any code" ";; or other product which incorporates, builds on, or uses this material.") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 6)) ([DocsBlock%3A00006] of %3ASKIFdocs (%3AcommentLines ";; STRUCTURAL_ONTOLOGY" ";; BEGIN FILE") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 7)) ([DocsBlock%3A00007] of %3ASKIFdocs (%3AcommentLines ";;;;;;;;;;;;;;;;;;;;;;;;;;;;;" ";; STRUCTURAL ONTOLOGY ;;" ";;;;;;;;;;;;;;;;;;;;;;;;;;;;;") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 8)) ([DocsBlock%3A00008] of %3ASKIFdocs (%3AcommentLines ";; INCLUDES 'BASE ONTOLOGY'") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 9)) ([DocsBlock%3A00009] of %3ASKIFdocs (%3AcommentLines ";; The Structural Ontology consists of definitions of certain syntactic" ";; abbreviations that can be both heuristically useful and computationally" ";; advantageous.") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 10)) ([DocsBlock%3A00010] of %3ASKIFdocs (%3AcommentLines ";; the domain 1 statement was added to contraryAttribute for the" ";; Protege conversion 1-16-04") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 58)) ([DocsBlock%3A00011] of %3ASKIFdocs (%3AcommentLines ";; The following axiom is commented out, because it is rejected by the" ";; inference engine's parser.") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 92)) ([DocsBlock%3A00012] of %3ASKIFdocs (%3AcommentLines ";;(=>" ";; (entails ?FORMULA1 ?FORMULA2)" ";; (=> ?FORMULA1 ?FORMULA2))") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 93)) ([DocsBlock%3A00013] of %3ASKIFdocs (%3AcommentLines ";; The following two relations, minimumCardinality and maximumCardinality," ";; were suggested by Ian Niles 17-Jan-2004 to enable the" ";; SKIF representation of minimum and maximum cardinalities" ";; as used in Protege and other frame-based representations." ";; Note that being an instance of TotalValuedRelation means that" ";; the minimum cardinality is always 1, and being an instance" ";; of SingleValuedRelation means that the maximum cardinality is" ";; always 1. Those restrictions have not yet been related to" ";; the relations below.") 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(%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 107)) ([DocsBlock%3A00019] of %3ASKIFdocs (%3AcommentLines ";; (instance ?THING Entity)") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 109)) ([DocsBlock%3A00020] of %3ASKIFdocs (%3AcommentLines ";; The following ground facts incorporate the 'Agent' hierarchy from the" ";; corresponding ontology on the Ontolingua server. It also includes" ";; predicates defined in the ITBM-CNR ontology \"Actors\".") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 182)) ([DocsBlock%3A00021] of %3ASKIFdocs (%3AcommentLines ";; Something is Abstract just in case it has neither a spatial nor temporal" ";; location.") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 192)) ([DocsBlock%3A00022] of %3ASKIFdocs (%3AcommentLines ";; The following formulas incorporate the Number hierarchy from the" ";; ontology 'kif-numbers' on the Ontolingua server.") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 205)) ([DocsBlock%3A00023] of %3ASKIFdocs (%3AcommentLines ";; The following part of the ontology covers the various classes under" ";; 'Relation'. Most of the content here is taken from frame-ontology," ";; abstract-algebra, kif-relations, and kif-extensions (ontologies" ";; available on the Ontolingua server).") 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";;" ";; Schema 1: (KappaFn )" ";;" ";; Schema 2: (exists (?LIST)" ";; (and" ";; (instance ?LIST UniqueList)" ";; (forall ()" ";; (<=>" ";; (inList ?LIST)" ";; ))))" ";;") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 584)) ([DocsBlock%3A00034] of %3ASKIFdocs (%3AcommentLines ";; END FILE") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 585)) ([DocsBlock%3A00035] of %3ASKIFdocs (%3AcommentLines ";; GRAPH_THEORY" ";; BEGIN FILE") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 586)) ([DocsBlock%3A00036] of %3ASKIFdocs (%3AcommentLines ";;;;;;;;;;;;;;;;;;;;;" ";; GRAPH THEORY ;;" ";;;;;;;;;;;;;;;;;;;;;") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 587)) ([DocsBlock%3A00037] of %3ASKIFdocs (%3AcommentLines ";; END FILE") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 640)) ([DocsBlock%3A00038] of %3ASKIFdocs (%3AcommentLines ";; UNITS_OF_MEASURE" ";; BEGIN FILE") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 641)) ([DocsBlock%3A00039] of %3ASKIFdocs (%3AcommentLines ";;;;;;;;;;;;;;;;;;;;;;;;;" ";; UNITS OF MEASURE ;;" ";;;;;;;;;;;;;;;;;;;;;;;;;") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 642)) ([DocsBlock%3A00040] of %3ASKIFdocs (%3AcommentLines ";; INCLUDES 'NUMERIC FUNCTIONS'") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 643)) ([DocsBlock%3A00041] of %3ASKIFdocs (%3AcommentLines ";; This section was originally based on the relations in the Quantities" ";; ontology (developed by ITBM-CNR) and the units of measure in the" ";; \"Standard Units\" and \"Standard Dimensions\" ontologies on the Ontolingua" ";; server. This content has been extensively revised by Helena Sofia Pinto" ";; of the Instituto Superior Tecnico in Portugal. The sources for these" ";; revisions were:" ";; - Barry Taylor, NIST Special Publication 811, Guide for the Use of the" ";; International System of Units (SI), 1995." ";; - Encyclopaedia Britannica (on-line version at http://www.britannica.com)") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 644)) ([DocsBlock%3A00042] of %3ASKIFdocs (%3AcommentLines ";; Now the units of measure:") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 685)) ([DocsBlock%3A00043] of %3ASKIFdocs (%3AcommentLines ";; First base units for the SI system. No conversion functions are" ";; provided for these units.") 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(%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 704)) ([DocsBlock%3A00052] of %3ASKIFdocs (%3AcommentLines ";; Plane angle unit") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 705)) ([DocsBlock%3A00053] of %3ASKIFdocs (%3AcommentLines ";; Solid angle unit") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 707)) ([DocsBlock%3A00054] of %3ASKIFdocs (%3AcommentLines ";; Frequency units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 709)) ([DocsBlock%3A00055] of %3ASKIFdocs (%3AcommentLines "; Force Unit") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 711)) ([DocsBlock%3A00056] of %3ASKIFdocs (%3AcommentLines "; Pressure unit") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 713)) ([DocsBlock%3A00057] of %3ASKIFdocs (%3AcommentLines "; Energy Unit") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 715)) ([DocsBlock%3A00058] of %3ASKIFdocs (%3AcommentLines "; Power Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 717)) ([DocsBlock%3A00059] of %3ASKIFdocs (%3AcommentLines ";;; Note: According to SI one should not use the expression \"per unit of.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 719)) ([DocsBlock%3A00060] of %3ASKIFdocs (%3AcommentLines "; Electric Charge Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 720)) ([DocsBlock%3A00061] of %3ASKIFdocs (%3AcommentLines "; Electric Potential Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 722)) ([DocsBlock%3A00062] of %3ASKIFdocs (%3AcommentLines "; Capacitance Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 724)) ([DocsBlock%3A00063] of %3ASKIFdocs (%3AcommentLines ";Electric Resistance Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 726)) ([DocsBlock%3A00064] of %3ASKIFdocs (%3AcommentLines "; Electric Conductance Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 728)) ([DocsBlock%3A00065] of %3ASKIFdocs (%3AcommentLines "; Magnetic Flux Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 730)) ([DocsBlock%3A00066] of %3ASKIFdocs (%3AcommentLines "; Magnetic Flux Density Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 732)) ([DocsBlock%3A00067] of %3ASKIFdocs (%3AcommentLines "; Inductance Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 734)) ([DocsBlock%3A00068] of %3ASKIFdocs (%3AcommentLines "; Celsius Temperature unit") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 736)) ([DocsBlock%3A00069] of %3ASKIFdocs (%3AcommentLines "; Luminous Flux Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 740)) ([DocsBlock%3A00070] of %3ASKIFdocs (%3AcommentLines "; Illuminance Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 742)) ([DocsBlock%3A00071] of %3ASKIFdocs (%3AcommentLines "; Activity Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 744)) ([DocsBlock%3A00072] of %3ASKIFdocs (%3AcommentLines "; Absorbed Dose Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 746)) ([DocsBlock%3A00073] of %3ASKIFdocs (%3AcommentLines "; Dose Equivalent Units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 748)) ([DocsBlock%3A00074] of %3ASKIFdocs (%3AcommentLines "; Units that are accepted for -use- with SI") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 750)) ([DocsBlock%3A00075] of %3ASKIFdocs (%3AcommentLines ";; What follows are units that are also accepted for use with SI. The" ";; SI equivalents for these units are obtained experimentally.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 761)) ([DocsBlock%3A00076] of %3ASKIFdocs (%3AcommentLines ";; The following units have been temporarily accepted for use with" ";; SI units.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 766)) ([DocsBlock%3A00077] of %3ASKIFdocs (%3AcommentLines ";; The following units are unacceptable in SI but are part of other" ";; systems of measurement that are widely used.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 769)) ([DocsBlock%3A00078] of %3ASKIFdocs (%3AcommentLines ";; More Length units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 770)) ([DocsBlock%3A00079] of %3ASKIFdocs (%3AcommentLines ";; More Volume units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 777)) ([DocsBlock%3A00080] of %3ASKIFdocs (%3AcommentLines ";; More Mass units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 790)) ([DocsBlock%3A00081] of %3ASKIFdocs (%3AcommentLines ";; More Temperature units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 796)) ([DocsBlock%3A00082] of %3ASKIFdocs (%3AcommentLines ";; More Force units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 800)) ([DocsBlock%3A00083] of %3ASKIFdocs (%3AcommentLines ";; More Energy units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 803)) ([DocsBlock%3A00084] of %3ASKIFdocs (%3AcommentLines ";; More plane angle units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 808)) ([DocsBlock%3A00085] of %3ASKIFdocs (%3AcommentLines "; Other interesting units of measure") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 813)) ([DocsBlock%3A00086] of %3ASKIFdocs (%3AcommentLines "; Currency units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 814)) ([DocsBlock%3A00087] of %3ASKIFdocs (%3AcommentLines "; Information units") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 821)) ([DocsBlock%3A00088] of %3ASKIFdocs (%3AcommentLines ";; The following content was inspired by the Quantities ontology" ";; developed by ITBM-CNR.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 830)) ([DocsBlock%3A00089] of %3ASKIFdocs (%3AcommentLines ";; END FILE") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 849)) ([DocsBlock%3A00090] of %3ASKIFdocs (%3AcommentLines ";; TEMPORAL_CONCEPTS" ";; BEGIN FILE") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 850)) ([DocsBlock%3A00091] of %3ASKIFdocs (%3AcommentLines ";;;;;;;;;;;;;;;;;;;;;;;" ";; TEMPORAL CONCEPTS ;;" ";;;;;;;;;;;;;;;;;;;;;;;") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 851)) ([DocsBlock%3A00092] of %3ASKIFdocs (%3AcommentLines ";; INCLUDES 'STRUCTURAL ONTOLOGY'" ";; INCLUDES 'BASE ONTOLOGY'") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 852)) ([DocsBlock%3A00093] of %3ASKIFdocs (%3AcommentLines ";; The first part of this section contains definitions relations involving" ";; temporal notions. Most of these definitions and axioms were derived from" ";; James Allen's work. This part of the section was extensively revised on" ";; the basis of comments from Pat Hayes. The second part of this section" ";; is an attempt to incorporate the Simple-Time ontology from the" ";; Ontolingua server into the SUMO.") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 853)) ([DocsBlock%3A00094] of %3ASKIFdocs (%3AcommentLines ";; An Object exists (and, hence, retains its identity) over time, i.e.," ";; an object exists at every point over some interval of time.") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 880)) ([DocsBlock%3A00095] of %3ASKIFdocs (%3AcommentLines ";; The following functions generate &%TimeIntervals.") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 903)) ([DocsBlock%3A00096] of %3ASKIFdocs (%3AcommentLines ";; The following definitions and axioms (down to the next section break)" ";; cover the content in the Simple-Time ontology on the Ontolingua server.") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 920)) ([DocsBlock%3A00097] of %3ASKIFdocs (%3AcommentLines ";; END FILE") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 1017)) ([DocsBlock%3A00098] of %3ASKIFdocs (%3AcommentLines ";; MEREOTOPOLOGY" ";; BEGIN FILE") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1018)) ([DocsBlock%3A00099] of %3ASKIFdocs (%3AcommentLines ";;;;;;;;;;;;;;;;;;;" ";; MEREOTOPOLOGY ;;" ";;;;;;;;;;;;;;;;;;;") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1019)) ([DocsBlock%3A00100] of %3ASKIFdocs (%3AcommentLines ";; INCLUDES 'STRUCTURAL ONTOLOGY'" ";; INCLUDES 'BASE ONTOLOGY'") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1020)) ([DocsBlock%3A00101] of %3ASKIFdocs (%3AcommentLines ";; Most of this content is taken from Barry Smith's and Nicola Guarino's" ";; papers on the subject.") 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(%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1067)) ([DocsBlock%3A00107] of %3ASKIFdocs (%3AcommentLines ";; No hole is atomic") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1069)) ([DocsBlock%3A00108] of %3ASKIFdocs (%3AcommentLines ";; Topological Definitions") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1071)) ([DocsBlock%3A00109] of %3ASKIFdocs (%3AcommentLines ";; Definition of 'PrincipalHostFn'") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1072)) ([DocsBlock%3A00110] of %3ASKIFdocs (%3AcommentLines ";; Holes are connected with their hosts.") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1075)) ([DocsBlock%3A00111] of %3ASKIFdocs (%3AcommentLines ";; No hole can have a proper part that is externally connected" ";; with exactly the same things as the hole itself.") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1077)) ([DocsBlock%3A00112] of %3ASKIFdocs (%3AcommentLines ";; Something is fillable just in case it is part of a hole; i.e.," ";; fillability is an exclusive property of holes and their parts.") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1081)) ([DocsBlock%3A00113] of %3ASKIFdocs (%3AcommentLines ";; Perfect fillers and fillable entities have no parts in common (rather," ";; they may occupy the same spatial region).") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1090)) ([DocsBlock%3A00114] of %3ASKIFdocs (%3AcommentLines ";; A complete filler of (a part of) a hole is connected with everything" ";; with which (that part of) the hole itself is connected.") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1092)) ([DocsBlock%3A00115] of %3ASKIFdocs (%3AcommentLines ";; Every hole is connected with everything with which a proper filler" ";; of the hole is connected.") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1094)) ([DocsBlock%3A00116] of %3ASKIFdocs (%3AcommentLines ";; A perfect filler of (a part of) a hole completely fills every proper" ";; part of (that part of) that hole.") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1096)) ([DocsBlock%3A00117] of %3ASKIFdocs (%3AcommentLines ";; Every proper part of a perfect filler of (a part of) a hole properly" ";; fills (that part of) that hole.") 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For simplicity, we leave in the" ";; disjoint proposition -- PJC 01-19-04" ";;(subclass GeologicalProcess (ComplementFn IntentionalProcess))") (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1216)) ([DocsBlock%3A00125] of %3ASKIFdocs (%3AcommentLines ";; NOTE THAT the axiom below was changed from the original to" ";; use CommercialAgent rather than Corporation as the" ";; Agent") (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1286)) ([DocsBlock%3A00126] of %3ASKIFdocs (%3AcommentLines ";; END FILE") (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1508)) ([DocsBlock%3A00127] of %3ASKIFdocs (%3AcommentLines ";; OBJECTS" ";; BEGIN FILE") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1509)) ([DocsBlock%3A00128] of %3ASKIFdocs (%3AcommentLines ";;;;;;;;;;;;;;;;;;;" ";; OBJECTS ;;" ";;;;;;;;;;;;;;;;;;;") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1510)) ([DocsBlock%3A00129] of %3ASKIFdocs (%3AcommentLines ";; INCLUDES 'MEREOTOPOLOGY'" ";; INCLUDES 'PROCESSES'" ";; INCLUDES 'QUALITIES'") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1511)) ([DocsBlock%3A00130] of %3ASKIFdocs (%3AcommentLines ";; PREDICATE:") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1514)) ([DocsBlock%3A00131] of %3ASKIFdocs (%3AcommentLines ";; The following formulas incorporate the content in the Natural-Kinds" ";; ontology developed by ITBM-CNR. This content is essentially a set of" ";; high-level biological categories.") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1573)) ([DocsBlock%3A00132] of %3ASKIFdocs (%3AcommentLines ";; The following formulas cover biologically related &%Classes under" ";; &%Substance.") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1626)) ([DocsBlock%3A00133] of %3ASKIFdocs (%3AcommentLines ";; The following part of the ontology will eventually encompass all" ";; artifacts. For the time being, it is mostly restricted to the content" ";; of the Ontolingua ontology component-assemblies, which covers the types" ";; of elements used to construct engineering systems.") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1763)) ([DocsBlock%3A00134] of %3ASKIFdocs (%3AcommentLines ";; This following part contains definitions and axioms relating to social" ";; groups and the relations between them.") 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It contains axioms that relate" ";; to other sections of the ontology but that should not be used by the inference" ";; engine, because they can be used to construct arbitrarily complex terms that often" ";; appear in proofs with unhelpful conclusions. Before this file is loaded into the" ";; inference engine, the axioms in this section should be commented out.") (%3AisInModule [Sequestered_Axioms]) (%3ALOAD-SEQUENCE 2112)) ([DocsBlock%3A00143] of %3ASKIFdocs (%3AcommentLines ";; MidLevel" ";;" ";; ==============================" ";; MILO (MId-Level Ontology)" ";; ==============================") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2120)) ([DocsBlock%3A00144] of %3ASKIFdocs (%3AcommentLines ";; This is the source file for the MILO (MId-Level Ontology), an ontology that" ";; is being developed as a bridge between the abstract content of the SUMO and" ";; the rich detail of the various Teknowledge domain ontologies. The MILO is" ";; at this point in time (April 2003) provisional and incomplete. It will be" ";; actively modified and greatly enlarged at least through the end of 2003." ";; Those who are interested in making use of this ontology are urged" ";; to contact Adam Pease (apease@ks.teknowledge.com) or Ian Niles" ";; (iniles@teknowledge.com) for the latest version.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2121)) ([DocsBlock%3A00145] of %3ASKIFdocs (%3AcommentLines ";; The MILO (MId-Level Ontology) is copyrighted by Teknowledge (c)" ";; 2003. It is released under the GNU Public License" ";; . Users of this code also consent, by" ";; use of this material, to credit Teknowledge in any writings, briefings," ";; publications, presentations, or other representations of any code or other" ";; product which incorporates, builds on, or uses this material.") 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(%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3368)) ([DocsBlock%3A00177] of %3ASKIFdocs (%3AcommentLines ";; definition of securedBy") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3371)) ([DocsBlock%3A00178] of %3ASKIFdocs (%3AcommentLines ";; ==================" ";; Geography Ontology" ";; ==================") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3374)) ([DocsBlock%3A00179] of %3ASKIFdocs (%3AcommentLines ";; The following content is borrowed from the Geography Ontology.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3375)) ([DocsBlock%3A00180] of %3ASKIFdocs (%3AcommentLines ";; ===================" ";; Government Ontology" ";; ===================") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3466)) ([DocsBlock%3A00181] of %3ASKIFdocs (%3AcommentLines ";; The following content is borrowed from the Government Ontology.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3467)) ([DocsBlock%3A00182] of %3ASKIFdocs (%3AcommentLines ";; =======================" ";; Transportation Ontology" ";; =======================") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3573)) ([DocsBlock%3A00183] of %3ASKIFdocs (%3AcommentLines ";; The following content is borrowed from the Transportation Ontology.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3574)) ([DocsBlock%3A00184] of %3ASKIFdocs (%3AcommentLines ";; =======================" ";; Communications Ontology" ";; =======================") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3616)) ([DocsBlock%3A00185] of %3ASKIFdocs (%3AcommentLines ";; The following content is borrowed from the Communications Ontology.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3617)) ([DocsBlock%3A00186] of %3ASKIFdocs (%3AcommentLines ";; ================" ";; Economy Ontology" ";; ================") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3628)) ([DocsBlock%3A00187] of %3ASKIFdocs (%3AcommentLines ";; The following content is borrowed from the Economy Ontology.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3629)) ([DocsBlock%3A00188] of %3ASKIFdocs (%3AcommentLines ";; ===============" ";; People Ontology" ";; ===============") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3679)) ([DocsBlock%3A00189] of %3ASKIFdocs (%3AcommentLines ";; The following content is borrowed from the People Ontology.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3680)) ([DocsBlock%3A00190] of %3ASKIFdocs (%3AcommentLines ";; The &%List in the domain 1 of &%average may only have list elements that" ";; are &%RealNumbers." "(=>" "(average ?LIST ?AVERAGE)" "(forall (?LISTITEM)" "(=>" "(inList ?LISTITEM ?LIST)" "(instance ?LISTITEM RealNumber))))") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3684)) ([DocsBlock%3A00191] of %3ASKIFdocs (%3AcommentLines ";; Calculation of the average of the elements of the list involves the" ";; stipulation of a second list described as a running total of the elements" ";; in the original list. The average of the first list is equal to the final" ";; element in the running total divided by the number of list elements." "(<=>" "(average ?LIST1 ?AVERAGE)" "(exists (?LIST2)" "(and" "(equal (ListLengthFn ?LIST2) (ListLengthFn ?LIST1))" "(equal (ListOrderFn ?LIST2 1) (ListOrderFn ?LIST1 1))" "(forall (?ITEMFROM2)" "(=>" "(inList ?ITEMFROM2 ?LIST2)" "(exists (?POSITION ?POSITIONMINUSONE ?ITEMFROM1 ?PRIORFROM2)" "(and" "(greaterThan ?POSITION 1)" "(lessThanOrEqualTo ?POSITION (ListLengthFn ?LIST2))" "(equal (ListOrderFn ?LIST2 ?ITEMFROM2) ?POSITION)" "(inList ?ITEMFROM1 ?LIST1)" "(equal ?POSITION (ListOrderFn ?LIST1 ?ITEMFROM1))" "(inList ?PRIORFROM2 ?LIST2)" "(equal ?POSITIONMINUSONE (SubtractionFn ?POSITION 1))" "(equal ?POSITIONMINUSONE (ListOrderFn ?LIST2 ?PRIORFROM2))" "(equal ?ITEMFROM2 (AdditionFn ?ITEMFROM1 ?PRIORFROM2))))))" "(equal ?LASTPLACE (ListLengthFn ?LIST2))" "(equal ?AVERAGE (DivisionFn (ListOrderFn ?LIST2 ?LASTPLACE) ?LASTPLACE)))))") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3685)) ([DocsBlock%3A00192] of %3ASKIFdocs (%3AcommentLines ";; " ";; Real-world assertions about planets") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3693)) ([DocsBlock%3A00193] of %3ASKIFdocs (%3AcommentLines ";; Real-world assertions about ethnicity and religion") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3704)) ([DocsBlock%3A00194] of %3ASKIFdocs (%3AcommentLines ";; fields of study") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3713)) ([DocsBlock%3A00195] of %3ASKIFdocs (%3AcommentLines ";; geography") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3730)) ([DocsBlock%3A00196] of %3ASKIFdocs (%3AcommentLines ";; ") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3779)) ([DocsBlock%3A00197] of %3ASKIFdocs (%3AcommentLines ";; Access to and use of these products is governed by the GNU General Public" ";; License . Use outside of the terms of" ";; the GPL would require a separate license negotiated with Teknowledge" ";; Corporation. By using these products, you agree to be bound by the terms" ";; of the GPL.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 1)) ([DocsBlock%3A00198] of %3ASKIFdocs (%3AcommentLines ";; NOTE: some minor corrections of apparent typose were made by P. Cassidy 7-05-2004") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 2)) ([DocsBlock%3A00199] of %3ASKIFdocs (%3AcommentLines ";; definition of Product") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 3)) ([DocsBlock%3A00200] of %3ASKIFdocs (%3AcommentLines ";; definition of productModel") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 7)) ([DocsBlock%3A00201] of %3ASKIFdocs (%3AcommentLines ";; definition of ComputationalSystem") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 9)) ([DocsBlock%3A00202] of %3ASKIFdocs (%3AcommentLines ";; definition of Computer") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 11)) ([DocsBlock%3A00203] of %3ASKIFdocs (%3AcommentLines ";; definition of ComputerNetwork") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 13)) ([DocsBlock%3A00204] of %3ASKIFdocs (%3AcommentLines ";; definition of LAN") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 15)) ([DocsBlock%3A00205] of %3ASKIFdocs (%3AcommentLines ";; definition of BusNetwork") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 17)) ([DocsBlock%3A00206] of %3ASKIFdocs (%3AcommentLines ";; definition of StarNetwork") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 19)) ([DocsBlock%3A00207] of %3ASKIFdocs (%3AcommentLines ";; definition of RingNetwork") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 21)) ([DocsBlock%3A00208] of %3ASKIFdocs (%3AcommentLines ";; definition of ComputerHardware") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 23)) ([DocsBlock%3A00209] of %3ASKIFdocs (%3AcommentLines ";; definition of ComputerMemory") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 26)) ([DocsBlock%3A00210] of %3ASKIFdocs (%3AcommentLines ";; definition of HardDiskDrive") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 28)) ([DocsBlock%3A00211] of %3ASKIFdocs (%3AcommentLines ";; definition of CPU") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 30)) ([DocsBlock%3A00212] of %3ASKIFdocs (%3AcommentLines ";; definition of DataTransfer") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 32)) ([DocsBlock%3A00213] of %3ASKIFdocs (%3AcommentLines ";;definition of ComputerProcess") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 35)) ([DocsBlock%3A00214] of %3ASKIFdocs (%3AcommentLines ";; definition of ComputerFile") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 39)) ([DocsBlock%3A00215] of %3ASKIFdocs (%3AcommentLines ";; definition of ComputerDirectory") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 41)) ([DocsBlock%3A00216] of %3ASKIFdocs (%3AcommentLines ";; definition of runningOn") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 43)) ([DocsBlock%3A00217] of %3ASKIFdocs (%3AcommentLines ";; definition of computerRunning") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 46)) ([DocsBlock%3A00218] of %3ASKIFdocs (%3AcommentLines ";; definition of programRunning") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 48)) ([DocsBlock%3A00219] of %3ASKIFdocs (%3AcommentLines ";; definition of directoryOf") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 50)) ([DocsBlock%3A00220] of %3ASKIFdocs (%3AcommentLines ";; definition of PhysicalAddress.") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 52)) ([DocsBlock%3A00221] of %3ASKIFdocs (%3AcommentLines ";; definition of AddressFn .") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 54)) ([DocsBlock%3A00222] of %3ASKIFdocs (%3AcommentLines "; \"ComputerDirectories contain information about the physical addresses" "; of ComputerFiles which are listed in these directories\" .") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 56)) ([DocsBlock%3A00223] of %3ASKIFdocs (%3AcommentLines ";; definition of BitsPerSecond") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 58)) ([DocsBlock%3A00224] of %3ASKIFdocs (%3AcommentLines ";; definition of PacketsPerSecond") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 60)) ([DocsBlock%3A00225] of %3ASKIFdocs (%3AcommentLines ";; definition of Packet") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 62)) ([DocsBlock%3A00226] of %3ASKIFdocs (%3AcommentLines ";; The following constants are specific to the Quite project") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 64)) ([DocsBlock%3A00227] of %3ASKIFdocs (%3AcommentLines ";; definition of SoftwareSystem") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 65)) ([DocsBlock%3A00228] of %3ASKIFdocs (%3AcommentLines "; \"A software system is a group of computer programs for a single" "; general purpose\" .") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 67)) ([DocsBlock%3A00229] of %3ASKIFdocs (%3AcommentLines ";; definition of HardwareSystem") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 69)) ([DocsBlock%3A00230] of %3ASKIFdocs (%3AcommentLines "; \"A software system requires a hardware system to execute\" .") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 71)) ([DocsBlock%3A00231] of %3ASKIFdocs (%3AcommentLines "; \"A hardware system consists of three physical modules: processors," "; memory, and networks\" .") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 73)) ([DocsBlock%3A00232] of %3ASKIFdocs (%3AcommentLines "; \"When the data is sent from HardwareSystems, it is send via" "; ComputerNetworks\" .") 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(%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 115)) ([DocsBlock%3A00251] of %3ASKIFdocs (%3AcommentLines "; \"The program of the process contains information about the standard" "; error device of the process\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 117)) ([DocsBlock%3A00252] of %3ASKIFdocs (%3AcommentLines ";; definition of hostOf") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 119)) ([DocsBlock%3A00253] of %3ASKIFdocs (%3AcommentLines ";; definition of ProcessState") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 121)) ([DocsBlock%3A00254] of %3ASKIFdocs (%3AcommentLines ";; definition of stateOfProcess") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 124)) ([DocsBlock%3A00255] of %3ASKIFdocs (%3AcommentLines ";; definition of AutomaticApplication .") 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This means that one does not quote the names when associating them with their documentation.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 47) (%3ASUO-name "documentation")) ([documentation_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 47) (%3ASUO-name "documentation")) ([DocumentFn] of UnaryFunction (%3Adocumentation "\"(&%DocumentFn ?PROP) denotes the class of &%ContentBearingObjects that contain the information ?PROP.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3389) (%3ASUO-name "DocumentFn")) ([DocumentFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1424)\n(=>\n (instance ?TEXT (DocumentFn ?PROP))\n (containsInformation ?TEXT ?PROP))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3389) (%3ASUO-name "DocumentFn")) ([domain] of TernaryPredicate (%3Adocumentation "\"Provides a computationally and heuristically convenient mechanism for declaring the argument types of a given relation. The formula (&%domain ?REL ?INT ?CLASS) means that the ?INT'th element of each tuple in the relation ?REL must be an instance of ?CLASS. Specifying argument types is very helpful in maintaining ontologies. Representation systems can use these specifications to classify terms and check integrity constraints. If the restriction on the argument type of a &%Relation is not captured by a &%SetOrClass already defined in the ontology, one can specify a &%SetOrClass compositionally with the functions &%UnionFn, &%IntersectionFn, etc.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 25) (%3ASUO-name "domain")) ([domain_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0009)\n(=>\n (and\n (domain ?REL ?NUMBER ?CLASS1)\n (domain ?REL ?NUMBER ?CLASS2))\n (or\n (subclass ?CLASS1 ?CLASS2)\n (subclass ?CLASS2 ?CLASS1)))\n") (%3ADomain1Type Instance) (%3ADomain2Class PositiveInteger) (%3ADomain2Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 25) (%3ASUO-name "domain")) ([domainSubclass] of TernaryPredicate (%3Adocumentation "\"&%Predicate used to specify argument type restrictions of &%Predicates. The formula (&%domainSubclass ?REL ?INT ?CLASS) means that the ?INT'th element of each tuple in the relation ?REL must be a subclass of ?CLASS.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 27) (%3ASUO-name "domainSubclass")) ([domainSubclass_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0010)\n(=>\n (and\n (subrelation ?REL1 ?REL2)\n (domainSubclass ?REL2 ?NUMBER ?CLASS1))\n (domainSubclass ?REL1 ?NUMBER ?CLASS1))\n\n(UAX-0011)\n(=>\n (and\n (domainSubclass ?REL ?NUMBER ?CLASS1)\n (domainSubclass ?REL ?NUMBER ?CLASS2))\n (or\n (subclass ?CLASS1 ?CLASS2)\n (subclass ?CLASS2 ?CLASS1)))\n") (%3ADomain1Type Instance) (%3ADomain2Class PositiveInteger) (%3ADomain2Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 27) (%3ASUO-name "domainSubclass")) ([DomesticAnimal] of %3ASYN-CLASS (disjoint [Human]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3141) (%3ASLOT-CONSTRAINTS [UAX-1334] [UAX-1335])) ([Donkey] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3145)) ([Door] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2765) (%3ASLOT-CONSTRAINTS [UAX-1170])) ([Doorway] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2767) (%3ASLOT-CONSTRAINTS [UAX-1171])) ([doubts] of PropositionalAttitude (%3Adocumentation "\"(&%doubts ?AGENT ?FORMULA) means that ?AGENT is unsure about the truth of ?FORMULA, in particular ?AGENT does not believe that ?FORMULA is true.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2374) (%3ASUO-name "doubts")) ([doubts_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0998)\n(=>\n (doubts ?AGENT ?FORMULA)\n (not (believes ?AGENT ?FORMULA)))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2374) (%3ASUO-name "doubts")) ([Downstairs] of PositionalAttribute (%3AAXIOMS "\n(UAX-1300)\n(=>\n (orientation ?OBJ1 ?OBJ2 Downstairs)\n (exists (?LEVEL1 ?LEVEL2 ?BUILDING)\n (and\n (instance ?LEVEL1 BuildingLevel)\n (instance ?LEVEL2 BuildingLevel)\n (instance ?BUILDING Building)\n (part ?LEVEL1 ?BUILDING)\n (part ?LEVEL2 ?BUILDING)\n (located ?OBJ1 ?LEVEL1)\n (located ?OBJ2 ?LEVEL2)\n (orientation ?LEVEL1 ?LEVEL2 Below))))\n") (%3Adocumentation "\"A &%PositionalAttribute to indicate that one thing is one or more floors below a second thing in the same building.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3047) (%3ASUO-name "Downstairs")) ([Downtown] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2441)) ([DramaticActing] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2826)) ([DramaticCast] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2827) (%3ASLOT-CONSTRAINTS [UAX-1201])) ([DramaticDirecting] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2991) (%3ASLOT-CONSTRAINTS [UAX-1276])) ([DramaticPlay] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2755) (%3ASLOT-CONSTRAINTS [UAX-1165])) ([Drawing] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2224) (%3ASLOT-CONSTRAINTS [UAX-0931])) ([DrawingACheck] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3318) (%3ASLOT-CONSTRAINTS [UAX-1397])) ([Dreaming] of %3ASYN-CLASS (disjoint [IntentionalProcess]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2979) (%3ASLOT-CONSTRAINTS [UAX-1270])) ([Dress] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2281) (%3ASLOT-CONSTRAINTS [UAX-0956])) ([Dressing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1230) (%3ASLOT-CONSTRAINTS [UAX-0513])) ([Drilling] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2976) (%3ASLOT-CONSTRAINTS [UAX-1269])) ([Drinking] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1129)) ([Dripping] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2939)) ([Dry] of SaturationAttribute (%3AAXIOMS "\n(UAX-0864)\n(=>\n (attribute ?OBJ Dry)\n (not\n (exists (?SUBOBJ)\n (and\n (part ?SUBOBJ ?OBJ)\n (attribute ?SUBOBJ Liquid)))))\n") (%3Adocumentation "\"An &%Attribute which indicates that the associated &%Object contains no &%Liquid.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2056) (%3ASUO-name "Dry")) ([Drying] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1384) (%3ASLOT-CONSTRAINTS [UAX-0588])) ([DualObjectProcess] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 189) (%3ASLOT-CONSTRAINTS [UAX-0073])) ([Ducking] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2665) (%3ASLOT-CONSTRAINTS [UAX-1129])) ([duration] of BinaryPredicate (%3Adocumentation "\"(&%duration ?POS ?TIME) means that the duration of the &%TimePosition ?POS is ?TIME. Note that this &%Predicate can be used in conjunction with the &%Function &%WhenFn to specify the duration of any instance of &%Physical.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 860) (%3ASUO-name "duration")) ([duration_1] of AsymmetricRelation (%3Adocumentation "\"(&%duration ?POS ?TIME) means that the duration of the &%TimePosition ?POS is ?TIME. Note that this &%Predicate can be used in conjunction with the &%Function &%WhenFn to specify the duration of any instance of &%Physical.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 860) (%3ASUO-name "duration")) ([duration_2] of TotalValuedRelation (%3Adocumentation "\"(&%duration ?POS ?TIME) means that the duration of the &%TimePosition ?POS is ?TIME. Note that this &%Predicate can be used in conjunction with the &%Function &%WhenFn to specify the duration of any instance of &%Physical.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 860) (%3ASUO-name "duration")) ([duration_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 860) (%3ASUO-name "duration")) ([during] of TransitiveRelation (%3Adocumentation "\"(&%during ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 starts after and ends before ?INTERVAL2.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 894) (%3ASUO-name "during")) ([during_1] of IrreflexiveRelation (%3Adocumentation "\"(&%during ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 starts after and ends before ?INTERVAL2.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 894) (%3ASUO-name "during")) ([during_3] of BinaryPredicate (%3Adocumentation "\"(&%during ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 starts after and ends before ?INTERVAL2.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 894) (%3ASUO-name "during")) ([during_4] of TemporalRelation (%3Adocumentation "\"(&%during ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 starts after and ends before ?INTERVAL2.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 894) (%3ASUO-name "during")) ([during_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0342)\n(=>\n (during ?INTERVAL1 ?INTERVAL2)\n (and\n (before (EndFn ?INTERVAL1) (EndFn ?INTERVAL2))\n (before (BeginFn ?INTERVAL2) (BeginFn ?INTERVAL1))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [temporalPart_S] [overlapsTemporally_S]) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 894) (%3ASUO-name "during")) ([DutyTax] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3296) (%3ASLOT-CONSTRAINTS [UAX-1387])) ([DynamicDataStream] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 275)) ([Ear] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2599) (%3ASLOT-CONSTRAINTS [UAX-1097] [UAX-1098])) ([earlier] of BinaryPredicate (%3Adocumentation "\"(&%earlier ?INTERVAL1 ?INTERVAL2) means that the &%TimeInterval ?INTERVAL1 ends before the &%TimeInterval ?INTERVAL2 begins.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 899) (%3ASUO-name "earlier")) ([earlier_1] of TemporalRelation (%3Adocumentation "\"(&%earlier ?INTERVAL1 ?INTERVAL2) means that the &%TimeInterval ?INTERVAL1 ends before the &%TimeInterval ?INTERVAL2 begins.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 899) (%3ASUO-name "earlier")) ([earlier_2] of TransitiveRelation (%3Adocumentation "\"(&%earlier ?INTERVAL1 ?INTERVAL2) means that the &%TimeInterval ?INTERVAL1 ends before the &%TimeInterval ?INTERVAL2 begins.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 899) (%3ASUO-name "earlier")) ([earlier_3] of IrreflexiveRelation (%3Adocumentation "\"(&%earlier ?INTERVAL1 ?INTERVAL2) means that the &%TimeInterval ?INTERVAL1 ends before the &%TimeInterval ?INTERVAL2 begins.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 899) (%3ASUO-name "earlier")) ([earlier_S] of %3ASKIF-SLOT (relatedInternalConcept [Communication]) (%3AAXIOMS "\n(UAX-0345)\n(<=>\n (earlier ?INTERVAL1 ?INTERVAL2)\n (before (EndFn ?INTERVAL1) (BeginFn ?INTERVAL2)))\n") (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 899) (%3ASUO-name "earlier")) ([Earthquake] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3384) (%3ASLOT-CONSTRAINTS [UAX-1422])) ([EarthsAtmosphere] of Atmosphere (%3Adocumentation "\"The envelope of air surrounding the Earth, extending about 100 miles and thinning gradually outward.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3413) (%3ASUO-name "EarthsAtmosphere")) ([EarthsMoon] of Moon (%3Adocumentation "\"The natural moon that orbits planet Earth.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3694) (%3ASUO-name "EarthsMoon")) ([EarthTremor] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3386)) ([East] of DirectionalAttribute (%3Adocumentation "\"The compass direction of &%East.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1912) (%3ASUO-name "East")) ([EasternTimeZone] of TimeZone (%3AAXIOMS "\n(UAX-0823)\n(=>\n (equal (RelativeTimeFn ?TIME1 EasternTimeZone) ?TIME2)\n (equal ?TIME2 (AdditionFn ?TIME1 5)))\n") (%3Adocumentation "\"A &%TimeZone that covers much of the eastern United States.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1943) (%3ASUO-name "EasternTimeZone")) ([Eating] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1127) (%3ASLOT-CONSTRAINTS [UAX-0467])) ([EcclesiasticalGovernment] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3519) (%3ASUO-name "EcclesiasticalGovernment")) ([EconomicActivity] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3313)) ([EconomicAttribute] of %3ASYN-CLASS (disjoint [FormOfGovernment]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3632)) ([EconomicRelation] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2880) (%3ASLOT-CONSTRAINTS [UAX-1223])) ([Economics] of SocialScience (%3Adocumentation "\"The field of economics.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3715) (%3ASUO-name "Economics")) ([EconomicSystemAttribute] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3633)) ([economyType] of BinaryPredicate (%3Adocumentation "\"(&%economyType ?POLITY ?TYPE) means that the &%GeopoliticalArea ?POLITY has an economic system of &%TYPE.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3630) (%3ASUO-name "economyType")) ([economyType_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1489)\n(=>\n (economyType ?AGENT ?ATTRIBUTE)\n (or\n (instance ?AGENT GeopoliticalArea)\n (instance ?AGENT Organization)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [attribute_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3630) (%3ASUO-name "economyType")) ([EditionFn] of BinaryFunction (%3Adocumentation "\"A &%BinaryFunction that maps a type of text (e.g. Agatha Christie's Murder_on_the_Orient_Express) and a number to the edition of the text type corresponding to the number.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1729) (%3ASUO-name "EditionFn")) ([EditionFn_1] of PartialValuedRelation (%3Adocumentation "\"A &%BinaryFunction that maps a type of text (e.g. Agatha Christie's Murder_on_the_Orient_Express) and a number to the edition of the text type corresponding to the number.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1729) (%3ASUO-name "EditionFn")) ([EditionFn_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0732)\n(=>\n (and\n (equal (EditionFn ?TEXT ?INT1) ?EDITION1)\n (equal (EditionFn ?TEXT ?INT2) ?EDITION2)\n (greaterThan ?INT2 ?INT1)\n (instance ?PUB1 Publication)\n (instance ?PUB2 Publication)\n (patient ?PUB1 ?EDITION1)\n (patient ?PUB2 ?EDITION2)\n (date ?PUB1 ?DATE1)\n (date ?PUB2 ?DATE2))\n (before (EndFn ?DATE1) (EndFn ?DATE2)))\n\n(UAX-0733)\n(=>\n (equal (EditionFn ?TEXT1 ?NUMBER) ?TEXT2)\n (subsumesContentClass ?TEXT1 ?TEXT2))\n") (%3ADomain1Type Class) (%3ADomain2Class PositiveInteger) (%3ADomain2Type Instance) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1729) (%3ASUO-name "EditionFn")) ([editor] of BinaryPredicate (%3Adocumentation "\"(&%editor ?AGENT ?TEXT) means that ?AGENT is an editor of ?TEXT.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1726) (%3ASUO-name "editor")) ([editor_1] of AsymmetricRelation (%3Adocumentation "\"(&%editor ?AGENT ?TEXT) means that ?AGENT is an editor of ?TEXT.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1726) (%3ASUO-name "editor")) ([editor_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1726) (%3ASUO-name "editor")) ([EducationalCourse] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2864) (%3ASLOT-CONSTRAINTS [UAX-1218])) ([EducationalOrganization] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1863)) ([EducationalProcess] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1256) (%3ASLOT-CONSTRAINTS [UAX-0524])) ([EducationalProgram] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2862) (%3ASLOT-CONSTRAINTS [UAX-1217])) ([Egg] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1672)) ([Election] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1161) (%3ASLOT-CONSTRAINTS [UAX-0485] [UAX-0486])) ([electionForPosition] of BinaryPredicate (%3Adocumentation "\"(&%electionForPosition ?ELECTION ?POSITION) means that in the &%Election ?ELECTION, candidates run for election to the role(s) ?POSITION.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3554) (%3ASUO-name "electionForPosition")) ([electionForPosition_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1471)\n(=>\n (electionForPosition ?ELECTION ?ROLE)\n (exists (?CANDIDATE)\n (and\n (instance ?CANDIDATE Human)\n (candidateForPosition ?ELECTION ?ROLE ?CANDIDATE))))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3554) (%3ASUO-name "electionForPosition")) ([electionWinner] of TernaryPredicate (%3Adocumentation "\"(&%electionWinner ?ELECTION ?POSITION ?CONTENDER) means that in the &%Election ?ELECTION, ?POSITION was won by the &%Agent ?CONTENDER. Contenders may be either persons or political parties.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3561) (%3ASUO-name "electionWinner")) ([electionWinner_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-1475)\n(=>\n (and\n (instance ?ELECTION PopularElection)\n (electionWinner ?ELECTION ?POSITION ?PERSON1)\n (voteFractionReceived ?ELECTION ?POSITION ?PERSON1 ?NUMBER1))\n (not\n (exists (?PERSON2 ?NUMBER2)\n (and\n (voteFractionReceived ?ELECTION ?POSITION ?PERSON2 ?NUMBER2)\n (not (equal ?PERSON1 ?PERSON2))\n (greaterThanOrEqualTo ?NUMBER2 ?NUMBER1)))))\n\n(UAX-1476)\n(=>\n (and\n (instance ?ELECTION PopularElection)\n (electionWinner ?ELECTION ?POSITION ?PERSON1)\n (voteFractionReceived ?ELECTION ?POSITION ?PERSON1 ?NUMBER1)\n (voteFractionReceived ?ELECTION ?POSITION ?PERSON2 ?NUMBER2)\n (not (equal ?PERSON1 ?PERSON2)))\n (greaterThan ?NUMBER1 ?NUMBER2))\n") (%3ADomain1Type Instance) (%3ADomain2Class SocialRole) (%3ADomain2Type Instance) (%3AisaSubrelationOf [candidateForPosition_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3561) (%3ASUO-name "electionWinner")) ([ElectricDevice] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2197)) ([Electron] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 142)) ([Electronics] of Science (%3Adocumentation "\"The branch of &%Physics that deals with the theory and applications of electron emissions.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3724) (%3ASUO-name "Electronics")) ([electronNumber] of BinaryPredicate (%3Adocumentation "\"(&%electronNumber ?SUBSTANCE ?NUMBER) means that the &%PureSubstance ?SUBSTANCE has the number of &%Electrons ?NUMBER.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3221) (%3ASUO-name "electronNumber")) ([electronNumber_1] of SingleValuedRelation (%3Adocumentation "\"(&%electronNumber ?SUBSTANCE ?NUMBER) means that the &%PureSubstance ?SUBSTANCE has the number of &%Electrons ?NUMBER.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3221) (%3ASUO-name "electronNumber")) ([electronNumber_2] of TotalValuedRelation (%3Adocumentation "\"(&%electronNumber ?SUBSTANCE ?NUMBER) means that the &%PureSubstance ?SUBSTANCE has the number of &%Electrons ?NUMBER.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3221) (%3ASUO-name "electronNumber")) ([electronNumber_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1362)\n(=>\n (electronNumber ?TYPE ?NUMBER)\n (=>\n (and\n (part ?ATOM ?SUBSTANCE)\n (or\n (instance ?ATOM Atom)\n (instance ?ATOM Molecule)))\n (equal ?NUMBER (CardinalityFn (KappaFn ?ELECTRON\n (and\n (part ?ELECTRON ?ATOM)\n (instance ?ELECTRON Electron)))))))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3221) (%3ASUO-name "electronNumber")) ([ElectronVolt] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 764) (%3ASLOT-CONSTRAINTS [UAX-0285])) ([ElectronVolt_1] of UnitOfMeasure (%3Adocumentation "The &%ElectronVolt is an energy measure. Symbol: eV. It is the kinetic energy acquired by an electron in passing through a potential difference of 1 &%Volt in a vacuum.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 764)) ([element] of BinaryPredicate (%3Adocumentation "\"(element ?ENTITY ?SET) is true just in case ?ENTITY is contained in the &%Set ?SET. An &%Entity can be an &%element of another &%Entity only if the latter is a &%Set.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 564) (%3ASUO-name "element")) ([element_1] of AsymmetricRelation (%3Adocumentation "\"(element ?ENTITY ?SET) is true just in case ?ENTITY is contained in the &%Set ?SET. An &%Entity can be an &%element of another &%Entity only if the latter is a &%Set.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 564) (%3ASUO-name "element")) ([element_2] of IntransitiveRelation (%3Adocumentation "\"(element ?ENTITY ?SET) is true just in case ?ENTITY is contained in the &%Set ?SET. An &%Entity can be an &%element of another &%Entity only if the latter is a &%Set.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 564) (%3ASUO-name "element")) ([element_S] of %3ASKIF-SLOT (relatedInternalConcept [Hour]) (%3AAXIOMS "\n(UAX-0230)\n(=>\n (forall (?ELEMENT)\n (<=>\n (element ?ELEMENT ?SET1)\n (element ?ELEMENT ?SET2)))\n (equal ?SET1 ?SET2))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [instance_S]) (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 564) (%3ASUO-name "element")) ([ElementalSubstance] of %3ASYN-CLASS (disjoint [CompoundSubstance]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 133)) ([Embryonic] of DevelopmentalAttribute (%3AAXIOMS "\n(UAX-0879)\n(=>\n (attribute ?ORG Embryonic)\n (exists (?BODY)\n (and\n (instance ?BODY ReproductiveBody)\n (located ?ORG ?BODY))))\n\n(UAX-0880)\n(=>\n (holdsDuring ?TIME (attribute ?ORG Embryonic))\n (holdsDuring ?TIME (not (exists (?BIRTH) (and (instance ?BIRTH Birth) (experiencer ?BIRTH ?ORG))))))\n") (%3Adocumentation "\"The stage of an &%Organism or an &%AnatomicalStructure that exists only before the &%Organism is born. &%Mammals, for example, have this &%Attribute only prior to their birth.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2092) (%3ASUO-name "Embryonic")) ([EmergingDemocracy] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3506) (%3ASUO-name "EmergingDemocracy")) ([EmotionalState] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2100)) ([employs] of BinaryPredicate (%3Adocumentation "\"(&%employs ?ORG ?PERSON) means that ?ORG has hired ?PERSON and currently retains ?PERSON, on a salaried or contractual basis, to provide services in exchange for monetary compensation.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1850) (%3ASUO-name "employs")) ([employs_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0788)\n(=>\n (employs ?ORG ?PERSON)\n (member ?PERSON ?ORG))\n") (%3ADomain1Type Instance) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1850) (%3ASUO-name "employs")) ([Encoding] of %3ASYN-CLASS (disjoint [Decoding]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1376)) ([EncodingProcedure] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 15)) ([EndFn] of TemporalRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimeInterval to the &%TimePoint at which the interval ends.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 872) (%3ASUO-name "EndFn")) ([EndFn_1] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimeInterval to the &%TimePoint at which the interval ends.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 872) (%3ASUO-name "EndFn")) ([EndFn_2] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimeInterval to the &%TimePoint at which the interval ends.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 872) (%3ASUO-name "EndFn")) ([EndFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0329)\n(=>\n (equal (EndFn ?INTERVAL) ?POINT)\n (forall (?OTHERPOINT)\n (=>\n (and\n (temporalPart ?OTHERPOINT ?INTERVAL)\n (not (equal ?OTHERPOINT ?POINT)))\n (before ?OTHERPOINT ?POINT))))\n\n(UAX-0330)\n(=>\n (and\n (resource ?PROC ?OBJ)\n (holdsDuring (BeginFn (WhenFn ?PROC)) (measure ?OBJ ?QUANT1))\n (holdsDuring (EndFn (WhenFn ?PROC)) (measure ?OBJ ?QUANT2)))\n (greaterThan ?QUANT1 ?QUANT2))\n") (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 872) (%3ASUO-name "EndFn")) ([EndNodeFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%GraphPath to the &%GraphNode that is the end of the &%GraphPath. Note that, unlike &%TerminalNodeFn (which relates a &%GraphArc to a &%GraphNode), &%EndNodeFn is a total function - every &%GraphPath has a end.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 622) (%3ASUO-name "EndNodeFn")) ([EndNodeFn_1] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%GraphPath to the &%GraphNode that is the end of the &%GraphPath. Note that, unlike &%TerminalNodeFn (which relates a &%GraphArc to a &%GraphNode), &%EndNodeFn is a total function - every &%GraphPath has a end.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 622) (%3ASUO-name "EndNodeFn")) ([EndNodeFn_S] of %3ASKIF-SLOT (relatedInternalConcept [Attaching]) (%3ADomain1Type Instance) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 622) (%3ASUO-name "EndNodeFn")) ([Engineering] of Science (%3Adocumentation "\"The application of instances of &%Science to the solution of practical problems, i.e. the creation of various forms of technology.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3723) (%3ASUO-name "Engineering")) ([EngineeringComponent] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1807) (%3ASLOT-CONSTRAINTS [UAX-0769])) ([EngineeringConnection] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1814) (%3ASLOT-CONSTRAINTS [UAX-0773])) ([engineeringSubcomponent] of SpatialRelation (%3Adocumentation "\"(&%engineeringSubcomponent ?SUB ?SUPER) means that the &%EngineeringComponent ?SUB is structurally a &%properPart ?SUPER. This relation is an &%AsymmetricRelation, since two &%EngineeringComponents cannot be subcomponents of each other.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1809) (%3ASUO-name "engineeringSubcomponent")) ([engineeringSubcomponent_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [properPart_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1809) (%3ASUO-name "engineeringSubcomponent")) ([English] of %3ANaturalLanguage) ([EnglishLanguage] of NaturalLanguage (%3Adocumentation "\"A Germanic language that incorporates many roots from the Romance languages. It is the official language of the &%UnitedStates, the &%UnitedKingdomOfGreatBritainAndNorthernIreland, and many other countries.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2759) (%3ASUO-name "EnglishLanguage")) ([enjoys] of BinaryPredicate (%3Adocumentation "\"(&%enjoys ?AGENT ?PROCESS) means that the &%CognitiveAgent ?AGENT tends to enjoy actions of type ?PROCESS, i.e. tends to enjoy being the &%agent or &%experiencer of such actions.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2366) (%3ASUO-name "enjoys")) ([enjoys_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0994)\n(=>\n (enjoys ?AGENT ?PROCESS)\n (desires ?AGENT (exists (?INSTANCE)\n (and\n (instance ?INSTANCE ?PROCESS)\n (or\n (agent ?INSTANCE ?AGENT)\n (experiencer ?INSTANCE ?AGENT))))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [inScopeOfInterest_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2366) (%3ASUO-name "enjoys")) ([entails] of BinaryPredicate (%3Adocumentation "\"The operator of logical entailment. (&%entails ?FORMULA1 ?FORMULA2) means that ?FORMULA2 can be derived from ?FORMULA1 by means of the proof theory of SUO-KIF.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 91) (%3ASUO-name "entails")) ([entails_1] of LogicalOperator (%3Adocumentation "\"The operator of logical entailment. (&%entails ?FORMULA1 ?FORMULA2) means that ?FORMULA2 can be derived from ?FORMULA1 by means of the proof theory of SUO-KIF.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 91) (%3ASUO-name "entails")) ([entails_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 91) (%3ASUO-name "entails")) ([Entity] of %3ASYN-CLASS (partition [Physical] [Abstract]) (%3AisInModule [KIF-core]) (%3ALOAD-SEQUENCE 0)) ([environmentAttributes] of BinaryPredicate (%3Adocumentation "\"(&%environmentAttributes ?Program ?Attribute) holds if ?Attribute is an &%EnvironmentSoftwareAttribute which describes the &%ComputerProgram ?Program.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 102) (%3ASUO-name "environmentAttributes")) ([environmentAttributes_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [property_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 102) (%3ASUO-name "environmentAttributes")) ([EnvironmentSoftwareAttribute] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 100)) ([Enzyme] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1630)) ([Epoch] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 544)) ([equal] of BinaryPredicate (%3Adocumentation "\"(equal ?ENTITY1 ?ENTITY2) is true just in case ?ENTITY1 is identical with ?ENTITY2.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 30) (%3ASUO-name "equal")) ([equal_1] of EquivalenceRelation (%3Adocumentation "\"(equal ?ENTITY1 ?ENTITY2) is true just in case ?ENTITY1 is identical with ?ENTITY2.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 30) (%3ASUO-name "equal")) ([equal_2] of RelationExtendedToQuantities (%3Adocumentation "\"(equal ?ENTITY1 ?ENTITY2) is true just in case ?ENTITY1 is identical with ?ENTITY2.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 30) (%3ASUO-name "equal")) ([equal_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0012)\n(=>\n (equal ?THING1 ?THING2)\n (forall (?ATTR)\n (<=>\n (property ?THING1 ?ATTR)\n (property ?THING2 ?ATTR))))\n\n(UAX-0013)\n(=>\n (equal ?ATTR1 ?ATTR2)\n (forall (?THING)\n (<=>\n (property ?THING ?ATTR1)\n (property ?THING ?ATTR2))))\n\n(UAX-0014)\n(=>\n (equal ?THING1 ?THING2)\n (forall (?CLASS)\n (<=>\n (instance ?THING1 ?CLASS)\n (instance ?THING2 ?CLASS))))\n\n(UAX-0015)\n(=>\n (equal ?CLASS1 ?CLASS2)\n (forall (?THING)\n (<=>\n (instance ?THING ?CLASS1)\n (instance ?THING ?CLASS2))))\n\n(UAX-0016)\n(=>\n (equal ?REL1 ?REL2)\n (forall (@ROW)\n (<=>\n (holds ?REL1 @ROW)\n (holds ?REL2 @ROW))))\n\n(UAX-0017)\n(=>\n (equal (ListFn @ROW1) (ListFn @ROW2))\n (<=>\n (holds @ROW1)\n (holds @ROW2)))\n\n(UAX-0018)\n(=>\n (equal ?LIST1 ?LIST2)\n (=>\n (and\n (equal ?LIST1 (ListFn @ROW1))\n (equal ?LIST2 (ListFn @ROW2)))\n (forall (?NUMBER)\n (equal (ListOrderFn (ListFn @ROW1) ?NUMBER) (ListOrderFn (ListFn @ROW2) ?NUMBER)))))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 30) (%3ASUO-name "equal")) ([EquivalenceRelation] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 279)) ([equivalenceRelationOn] of BinaryPredicate (%3Adocumentation "\"A &%BinaryRelation is an &%equivalenceRelationOn a &%SetOrClass only if the relation is &%reflexiveOn the &%SetOrClass and it is both a &%TransitiveRelation and a &%SymmetricRelation.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 406) (%3ASUO-name "equivalenceRelationOn")) ([equivalenceRelationOn_1] of AsymmetricRelation (%3Adocumentation "\"A &%BinaryRelation is an &%equivalenceRelationOn a &%SetOrClass only if the relation is &%reflexiveOn the &%SetOrClass and it is both a &%TransitiveRelation and a &%SymmetricRelation.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 406) (%3ASUO-name "equivalenceRelationOn")) ([equivalenceRelationOn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0158)\n(=>\n (equivalenceRelationOn ?RELATION ?CLASS)\n (and\n (instance ?RELATION TransitiveRelation)\n (instance ?RELATION SymmetricRelation)\n (reflexiveOn ?RELATION ?CLASS)))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 406) (%3ASUO-name "equivalenceRelationOn")) ([equivalentContentClass] of EquivalenceRelation (%3Adocumentation "\"A &%BinaryPredicate that relates two subclasses of &%ContentBearingObject. (&%equivalentContentClass ?CLASS1 ?CLASS2) means that the content expressed by each instance of ?CLASS1 is also expressed by each instance of ?CLASS2, and vice versa. An example would be the relationship between English and Russian editions of Agatha Christie's 'Murder on the Orient Express'. Note that (&%equivalentContentClass ?CLASS1 ?CLASS2) implies (&%subsumesContentClass ?CLASS1 ?CLASS2) and (&%subsumesContentClass ?CLASS2 ?CLASS1).\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 469) (%3ASUO-name "equivalentContentClass")) ([equivalentContentClass_1] of BinaryPredicate (%3Adocumentation "\"A &%BinaryPredicate that relates two subclasses of &%ContentBearingObject. (&%equivalentContentClass ?CLASS1 ?CLASS2) means that the content expressed by each instance of ?CLASS1 is also expressed by each instance of ?CLASS2, and vice versa. An example would be the relationship between English and Russian editions of Agatha Christie's 'Murder on the Orient Express'. Note that (&%equivalentContentClass ?CLASS1 ?CLASS2) implies (&%subsumesContentClass ?CLASS1 ?CLASS2) and (&%subsumesContentClass ?CLASS2 ?CLASS1).\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 469) (%3ASUO-name "equivalentContentClass")) ([equivalentContentClass_S] of %3ASKIF-SLOT (relatedInternalConcept [Transportation]) (%3AAXIOMS "\n(UAX-0186)\n(<=>\n (and\n (subsumesContentClass ?CLASS1 ?CLASS2)\n (subsumesContentClass ?CLASS2 ?CLASS1))\n (equivalentContentClass ?CLASS1 ?CLASS2))\n") (%3ADomain1Type Class) (%3AisaSubrelationOf [subsumesContentClass_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 469) (%3ASUO-name "equivalentContentClass")) ([equivalentContentInstance] of EquivalenceRelation (%3Adocumentation "\"A &%BinaryPredicate relating two instances of &%ContentBearingObject. (&%equivalentContentInstance ?OBJ1 ?OBJ2) means that the content expressed by ?OBJ1 is identical to the content expressed by ?OBJ2. An example would be the relationship between a handwritten draft of a letter to one's lawyer and a typed copy of the same letter. Note that (&%equivalentContentInstance ?OBJ1 ?OBJ2) implies (&%subsumesContentInstance ?OBJ1 ?OBJ2) and (&%subsumesContentInstance ?OBJ2 ?OBJ2).\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 473) (%3ASUO-name "equivalentContentInstance")) ([equivalentContentInstance_1] of BinaryPredicate (%3Adocumentation "\"A &%BinaryPredicate relating two instances of &%ContentBearingObject. (&%equivalentContentInstance ?OBJ1 ?OBJ2) means that the content expressed by ?OBJ1 is identical to the content expressed by ?OBJ2. An example would be the relationship between a handwritten draft of a letter to one's lawyer and a typed copy of the same letter. Note that (&%equivalentContentInstance ?OBJ1 ?OBJ2) implies (&%subsumesContentInstance ?OBJ1 ?OBJ2) and (&%subsumesContentInstance ?OBJ2 ?OBJ2).\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 473) (%3ASUO-name "equivalentContentInstance")) ([equivalentContentInstance_S] of %3ASKIF-SLOT (relatedInternalConcept [Transportation] [UnilateralGetting]) (%3AAXIOMS "\n(UAX-0188)\n(<=>\n (and\n (subsumesContentInstance ?OBJ1 ?OBJ2)\n (subsumesContentInstance ?OBJ2 ?OBJ1))\n (equivalentContentInstance ?OBJ1 ?OBJ2))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [subsumesContentInstance_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 473) (%3ASUO-name "equivalentContentInstance")) ([Escaping] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2924) (%3ASLOT-CONSTRAINTS [UAX-1242] [UAX-1243])) ([EthnicGroup] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1844)) ([EuroCent] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 819) (%3ASLOT-CONSTRAINTS [UAX-0306])) ([EuroCent_1] of UnitOfMeasure (%3Adocumentation "A currency measure. 1 &%EuroCent is equal to .01 &%EuroDollars.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 819)) ([EuroDollar] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 818)) ([EuroDollar_1] of UnitOfMeasure (%3Adocumentation "A currency measure of most European Union countries. It is based on the &%UnitedStatesDollar.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 818)) ([Europe] of Continent (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3462) (%3ASUO-name "Europe")) ([Europe_1] of Continent (%3Adocumentation "\"The second smallest &%Continent.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3761) (%3ASUO-name "Europe")) ([EuropeanCity] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2451) (%3ASLOT-CONSTRAINTS [UAX-1032])) ([EvenInteger] of %3ASYN-CLASS (disjoint [OddInteger]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 225)) ([exactlyLocated] of BinaryPredicate (%3Adocumentation "\"The actual, minimal location of an Object. This is a subrelation of the more general &%Predicate &%located.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 441) (%3ASUO-name "exactlyLocated")) ([exactlyLocated_1] of SpatialRelation (%3Adocumentation "\"The actual, minimal location of an Object. This is a subrelation of the more general &%Predicate &%located.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 441) (%3ASUO-name "exactlyLocated")) ([exactlyLocated_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0175)\n(=>\n (exactlyLocated ?OBJ ?REGION)\n (not\n (exists (?OTHEROBJ)\n (and\n (exactlyLocated ?OTHEROBJ ?REGION)\n (not\n (equal ?OTHEROBJ ?OBJ))))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [located_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 441) (%3ASUO-name "exactlyLocated")) ([Executable] of Attribute (%3Adocumentation "\"Able to be run in its current format.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 231) (%3ASUO-name "Executable")) ([ExecutiveBranchFn] of UnaryFunction (%3Adocumentation "\"(&%ExecutiveBranchFn ?ORG) denotes the executive branch of ?ORG, with all its officials and agencies, considered as a whole.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3530) (%3ASUO-name "ExecutiveBranchFn")) ([ExecutiveBranchFn_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3530) (%3ASUO-name "ExecutiveBranchFn")) ([ExecutiveResidence] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2340) (%3ASLOT-CONSTRAINTS [UAX-0980])) ([exhaustiveAttribute] of Predicate (%3Adocumentation "\"This predicate relates a &%Class to a set of &%Attributes, and it means that the elements of this set exhaust the instances of the &%Class. For example, (&%exhaustiveAttribute &%PhysicalState &%Solid &%Liquid &%Gas) means that there are only three instances of the class &%PhysicalState, viz. &%Solid, &%Liquid, and &%Gas.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 62) (%3ASUO-name "exhaustiveAttribute")) ([exhaustiveAttribute_1] of VariableArityRelation (%3Adocumentation "\"This predicate relates a &%Class to a set of &%Attributes, and it means that the elements of this set exhaust the instances of the &%Class. For example, (&%exhaustiveAttribute &%PhysicalState &%Solid &%Liquid &%Gas) means that there are only three instances of the class &%PhysicalState, viz. &%Solid, &%Liquid, and &%Gas.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 62) (%3ASUO-name "exhaustiveAttribute")) ([exhaustiveAttribute_S] of %3AVariableAritySlot (%3AAXIOMS "\n(UAX-0035)\n(=>\n (exhaustiveAttribute ?CLASS @ROW)\n (=>\n (inList ?ATTR (ListFn @ROW))\n (instance ?ATTR Attribute)))\n\n(UAX-0036)\n(=>\n (exhaustiveAttribute ?CLASS @ROW)\n (forall (?OBJ)\n (=>\n (instance ?ATTR1 ?CLASS)\n (exists (?ATTR2)\n (and\n (inList ?ATTR2 (ListFn @ROW))\n (equal ?ATTR1 ?ATTR2))))))\n") (%3ADomain1Type Class) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 62) (%3ASUO-name "exhaustiveAttribute")) ([exhaustiveDecomposition] of Predicate (%3Adocumentation "\"An &%exhaustiveDecomposition of a &%Class C is a set of subclasses of C such that every subclass of C either is an element of the set or is a subclass of an element of the set. Note: this does not necessarily mean that the elements of the set are disjoint (see &%partition - a &%partition is a disjoint exhaustive decomposition.)\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 65) (%3ASUO-name "exhaustiveDecomposition")) ([exhaustiveDecomposition_1] of VariableArityRelation (%3Adocumentation "\"An &%exhaustiveDecomposition of a &%Class C is a set of subclasses of C such that every subclass of C either is an element of the set or is a subclass of an element of the set. Note: this does not necessarily mean that the elements of the set are disjoint (see &%partition - a &%partition is a disjoint exhaustive decomposition.)\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 65) (%3ASUO-name "exhaustiveDecomposition")) ([exhaustiveDecomposition_S] of %3AVariableAritySlot (relatedInternalConcept [UnitedStatesGallon] [Year]) (%3AAXIOMS "\n(UAX-0037)\n(=>\n (exhaustiveDecomposition @ROW)\n (=>\n (inList ?ELEMENT (ListFn @ROW))\n (instance ?ELEMENT Class)))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 65) (%3ASUO-name "exhaustiveDecomposition")) ([exists] of BinaryPredicate (%3Adocumentation "\"The existential quantifier of predicate logic.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 90) (%3ASUO-name "exists")) ([exists_1] of LogicalOperator (%3Adocumentation "\"The existential quantifier of predicate logic.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 90) (%3ASUO-name "exists")) ([exists_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 90) (%3ASUO-name "exists")) ([expects] of PropositionalAttitude (%3Adocumentation "\"Any belief about the future. (&%expects ?AGENT ?BELIEF) means that (&%believes ?AGENT ?BELIEF) and, if ?BELIEF happens, it will happen in the future, i.e. after the expectation.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2368) (%3ASUO-name "expects")) ([expects_1] of BinaryPredicate (%3Adocumentation "\"Any belief about the future. (&%expects ?AGENT ?BELIEF) means that (&%believes ?AGENT ?BELIEF) and, if ?BELIEF happens, it will happen in the future, i.e. after the expectation.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2368) (%3ASUO-name "expects")) ([expects_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0995)\n(=>\n (and\n (holdsDuring ?TIME1 (expects ?AGENT ?FORMULA))\n (holdsDuring ?TIME2 (true ?FORMULA True)))\n (earlier ?TIME1 ?TIME2))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [believes_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2368) (%3ASUO-name "expects")) ([experiencer] of CaseRole (%3Adocumentation "\"(&%experiencer ?PROCESS ?AGENT) means that ?AGENT experiences the &%Process ?PROCESS. For example, Yojo is the &%experiencer of seeing in the following proposition: Yojo sees the fish. Note that &%experiencer, unlike &%agent, does not entail a causal relation between its arguments.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 284) (%3ASUO-name "experiencer")) ([experiencer_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 284) (%3ASUO-name "experiencer")) ([Experimenting] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2993)) ([Explanation] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1884)) ([exploits] of BinaryPredicate (%3Adocumentation "\"(&%exploits ?OBJ ?AGENT) means that ?OBJ is used by ?AGENT as a &%resource in an unspecified instance of &%Process. This &%Predicate, as its corresponding axiom indicates, is a composition of the relations &%agent and &%resource.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 422) (%3ASUO-name "exploits")) ([exploits_1] of AsymmetricRelation (%3Adocumentation "\"(&%exploits ?OBJ ?AGENT) means that ?OBJ is used by ?AGENT as a &%resource in an unspecified instance of &%Process. This &%Predicate, as its corresponding axiom indicates, is a composition of the relations &%agent and &%resource.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 422) (%3ASUO-name "exploits")) ([exploits_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0166)\n(=>\n (exploits ?OBJ ?AGENT)\n (exists (?PROCESS)\n (and\n (agent ?PROCESS ?AGENT)\n (resource ?PROCESS ?OBJ))))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 422) (%3ASUO-name "exploits")) ([Explosion] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2817) (%3ASLOT-CONSTRAINTS [UAX-1196] [UAX-1197])) ([ExponentiationFn] of BinaryFunction (%3Adocumentation "\"(&%ExponentiationFn ?NUMBER ?INT) returns the &%RealNumber ?NUMBER raised to the power of the &%Integer ?INT.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 503) (%3ASUO-name "ExponentiationFn")) ([ExponentiationFn_1] of RelationExtendedToQuantities (%3Adocumentation "\"(&%ExponentiationFn ?NUMBER ?INT) returns the &%RealNumber ?NUMBER raised to the power of the &%Integer ?INT.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 503) (%3ASUO-name "ExponentiationFn")) ([ExponentiationFn_2] of TotalValuedRelation (%3Adocumentation "\"(&%ExponentiationFn ?NUMBER ?INT) returns the &%RealNumber ?NUMBER raised to the power of the &%Integer ?INT.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 503) (%3ASUO-name "ExponentiationFn")) ([ExponentiationFn_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class Integer) (%3ADomain2Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 503) (%3ASUO-name "ExponentiationFn")) ([Exporting] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3660) (%3ASLOT-CONSTRAINTS [UAX-1495] [UAX-1496] [UAX-1497] [UAX-1498] [UAX-1499] [UAX-1500] [UAX-1501] [UAX-1502])) ([expressedInLanguage] of BinaryPredicate (%3Adocumentation "\"(&%expressedInLanguage ?EXPRESS ?LANG) means that ?EXPRESS is expressed in &%Language ?LANG.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 479) (%3ASUO-name "expressedInLanguage")) ([expressedInLanguage_1] of AsymmetricRelation (%3Adocumentation "\"(&%expressedInLanguage ?EXPRESS ?LANG) means that ?EXPRESS is expressed in &%Language ?LANG.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 479) (%3ASUO-name "expressedInLanguage")) ([expressedInLanguage_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0191)\n(<=> \n (expressedInLanguage ?EXPRESS ?LANGUAGE)\n (exists (?PROP)\n (representsInLanguage ?EXPRESS ?PROP ?LANGUAGE)))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 479) (%3ASUO-name "expressedInLanguage")) ([Expressing] of %3ASYN-CLASS (disjointDecomposition [ExpressingApproval] [ExpressingDisapproval]) (partition [Gesture] [ExpressingInLanguage]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1419) (%3ASLOT-CONSTRAINTS [UAX-0606])) ([ExpressingApproval] of %3ASYN-CLASS (disjoint [ExpressingDisapproval]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2646) (%3ASLOT-CONSTRAINTS [UAX-1120])) ([ExpressingDisapproval] of %3ASYN-CLASS (disjoint [ExpressingApproval]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2648) (%3ASLOT-CONSTRAINTS [UAX-1121])) ([ExpressingInLanguage] of %3ASYN-CLASS (disjoint [Gesture] [Stating] [Supposing] [Directing] [Committing] [Declaring]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1423)) ([Expressway] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3583)) ([ExtensionFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps an &%Attribute into the &%Class whose condition for membership is the &%Attribute.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 201) (%3ASUO-name "ExtensionFn")) ([ExtensionFn_1] of PartialValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps an &%Attribute into the &%Class whose condition for membership is the &%Attribute.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 201) (%3ASUO-name "ExtensionFn")) ([ExtensionFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0076)\n(<=>\n (equal (ExtensionFn ?ATTRIBUTE) ?CLASS)\n (equal (AbstractionFn ?CLASS) ?ATTRIBUTE))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 201) (%3ASUO-name "ExtensionFn")) ([Eye] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2596) (%3ASLOT-CONSTRAINTS [UAX-1095] [UAX-1096])) ([Fabric] of %3ASYN-CLASS (disjoint [StationaryArtifact]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1782)) ([Face] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2640) (%3ASLOT-CONSTRAINTS [UAX-1116] [UAX-1117])) ([faces] of BinaryPredicate (%3Adocumentation "\"(&%faces ?OBJ ?DIRECTION) means that the front of ?OBJ (see &%FrontFn) is positioned towards the compass direction ?DIRECTION. More precisely, it means that if a line were extended from the center of ?DIRECTION, the line would intersect with the front of ?OBJ before it intersected with its back (see &%BackFn).\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1894) (%3ASUO-name "faces")) ([faces_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0801)\n(=>\n (holdsDuring ?TIME (faces ?PROC ?ATTR1))\n (forall (?ATTR2)\n (=>\n (holdsDuring ?TIME (faces ?PROC ?ATTR2))\n (equal ?ATTR2 ?ATTR1))))\n") (%3ADomain1Type Instance) (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1894) (%3ASUO-name "faces")) ([FacialExpression] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2650) (%3ASLOT-CONSTRAINTS [UAX-1122])) ([Fact] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2712) (%3ASLOT-CONSTRAINTS [UAX-1150])) ([Factionalism] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3507) (%3ASUO-name "Factionalism")) ([FactualText] of %3ASYN-CLASS (disjoint [FictionalText]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1717) (%3ASLOT-CONSTRAINTS [UAX-0726])) ([FahrenheitDegree] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 799)) ([FahrenheitDegree_1] of UnitOfMeasure (%3Adocumentation "A &%TemperatureMeasure that is commonly used in the United States. On the Fahrenheit scale, the freezing point of water is 32 &%FahrenheitDegrees, and the boiling point of water is 212 &%FahrenheitDegrees.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 799)) ([Falling] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3419) (%3ASLOT-CONSTRAINTS [UAX-1433])) ([FallingAsleep] of %3ASYN-CLASS (disjoint [WakingUp]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2856) (%3ASLOT-CONSTRAINTS [UAX-1214])) ([Fallout] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2497) (%3ASLOT-CONSTRAINTS [UAX-1050])) ([FallSeason] of %3ASYN-CLASS (disjoint [WinterSeason] [SpringSeason] [SummerSeason]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3042) (%3ASLOT-CONSTRAINTS [UAX-1297] [UAX-1298])) ([False] of TruthValue (%3Adocumentation "\"The &%TruthValue of being false.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1899) (%3ASUO-name "False")) ([FamilyGroup] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1831) (%3ASLOT-CONSTRAINTS [UAX-0780])) ([familyRelation] of BinaryPredicate (%3Adocumentation "\"A very general &%Predicate for biological relationships. (&%familyRelation ?ORGANISM1 ?ORGANISM2) means that ?ORGANISM1 and ?ORGANISM2 are biologically derived from a common ancestor.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1837) (%3ASUO-name "familyRelation")) ([familyRelation_1] of EquivalenceRelation (%3Adocumentation "\"A very general &%Predicate for biological relationships. (&%familyRelation ?ORGANISM1 ?ORGANISM2) means that ?ORGANISM1 and ?ORGANISM2 are biologically derived from a common ancestor.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1837) (%3ASUO-name "familyRelation")) ([familyRelation_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0783)\n(=>\n (familyRelation ?ORGANISM1 ?ORGANISM2)\n (exists (?ORGANISM3)\n (and\n (familyRelation ?ORGANISM3 ?ORGANISM1)\n (familyRelation ?ORGANISM3 ?ORGANISM2))))\n") (%3ADomain1Type Instance) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1837) (%3ASUO-name "familyRelation")) ([Farad] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 725)) ([Farad_1] of SystemeInternationalUnit (%3Adocumentation "SI capacitance measure. Symbol: F. It is the capacitance of a capacitator between the plates of which there appears a difference of potential of 1 &%Volt when it is charged by a quantity of electricity equal to 1 Coulomb. &%Farad = C/V = m^(-2)*kg(-1)*s^4*A^2.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 725)) ([Farm] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2801)) ([Farming] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3166) (%3ASLOT-CONSTRAINTS [UAX-1344])) ([father] of SingleValuedRelation (%3Adocumentation "\"The general relationship of fatherhood. (&%father ?CHILD ?FATHER) means that ?FATHER is the biological father of ?CHILD.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1563) (%3ASUO-name "father")) ([father_1] of BinaryPredicate (%3Adocumentation "\"The general relationship of fatherhood. (&%father ?CHILD ?FATHER) means that ?FATHER is the biological father of ?CHILD.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1563) (%3ASUO-name "father")) ([father_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0671)\n(=>\n (father ?CHILD ?FATHER)\n (attribute ?FATHER Male))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [parent_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1563) (%3ASUO-name "father")) ([FatTissue] of %3ASYN-CLASS (disjoint [Bone] [Muscle]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1695)) ([fears] of PropositionalAttitude (%3Adocumentation "\"(&%fears ?AGENT ?FORMULA) means that ?AGENT fears that the proposition ?FORMULA will be true, i.e. he/she believes that it will come to pass in the future and that it will be undesirable for ?AGENT.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2370) (%3ASUO-name "fears")) ([fears_1] of BinaryPredicate (%3Adocumentation "\"(&%fears ?AGENT ?FORMULA) means that ?AGENT fears that the proposition ?FORMULA will be true, i.e. he/she believes that it will come to pass in the future and that it will be undesirable for ?AGENT.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2370) (%3ASUO-name "fears")) ([fears_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0996)\n(=>\n (fears ?AGENT ?FORMULA)\n (not (desires ?AGENT ?FORMULA)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [expects_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2370) (%3ASUO-name "fears")) ([February] of %3ASYN-CLASS (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 945) (%3ASLOT-CONSTRAINTS [UAX-0369] [UAX-0370] [UAX-0371])) ([FederalDemocraticRepublic] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used in Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3487) (%3ASUO-name "FederalDemocraticRepublic")) ([FederalGovernment] of FormOfGovernment (%3Adocumentation "\"&%FederalGovernment is the attribute of a government that is formed by agreement between a collection of political units that agree to give up some of their power to the central government, while reserving some powers to themselves. The government of the &%UnitedStates is a federal government, in which power is shared between the states and the central goverment, as set out in the U.S. Constitution.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3500) (%3ASUO-name "FederalGovernment")) ([FederalParliamentaryDemocracy] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used in Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3493) (%3ASUO-name "FederalParliamentaryDemocracy")) ([FederalRepublic] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used in Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3486) (%3ASUO-name "FederalRepublic")) ([Federation] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3501) (%3ASUO-name "Federation")) ([Feedback] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 150) (%3ASLOT-CONSTRAINTS [UAX-1540])) ([Feline] of %3ASYN-CLASS (disjoint [Canine]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1614)) ([Female] of SexAttribute (%3AAXIOMS "\n(UAX-0872)\n(=>\n (and\n (instance ?BODY ReproductiveBody)\n (part ?BODY ?ORG)\n (instance ?ORG Organism))\n(attribute ?ORG Female))\n\n(UAX-0873)\n(=>\n (instance ?WOMAN Woman)\n (attribute ?WOMAN Female))\n") (%3Adocumentation "\"An &%Attribute indicating that an &%Organism is female in nature.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2079) (%3ASUO-name "Female")) ([FemaleCow] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3151) (%3ASLOT-CONSTRAINTS [UAX-1338])) ([Fence] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2793)) ([Fern] of %3ASYN-CLASS (disjoint [Alga] [Moss] [Fungus]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1582)) ([FictionalText] of %3ASYN-CLASS (disjoint [FactualText] [HistoricalAccount]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1719) (%3ASLOT-CONSTRAINTS [UAX-0727])) ([Field] of %3ASYN-CLASS (disjoint [Forest]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2504) (%3ASLOT-CONSTRAINTS [UAX-1054])) ([FieldOfLaw] of FieldOfStudy (%3Adocumentation "\"The study of legal principles and the framework of national and/or international laws.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3729) (%3ASUO-name "FieldOfLaw")) ([FieldOfStudy] of %3ASYN-CLASS (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1871)) ([FileDevice] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2195) (%3ASLOT-CONSTRAINTS [UAX-0922])) ([filename_S] of %3ASKIF-SLOT (relatedInternalConcept [directoryOf_S]) (%3ADomain1Type Instance) (%3AisInModule [SMQCCv2_Instance_2]) (%3ALOAD-SEQUENCE 0) (%3ASUO-name "filename")) ([Fillable] of ShapeAttribute (%3AAXIOMS "\n(UAX-0446)\n(=>\n (exists (?TIME)\n (holdsDuring ?TIME\n (fills ?OBJ ?HOLE)))\n (attribute ?HOLE Fillable))\n\n(UAX-0447)\n(<=>\n (attribute ?HOLE1 Fillable)\n (exists (?HOLE2)\n (and\n (instance ?HOLE2 Hole)\n (part ?HOLE1 ?HOLE2))))\n") (%3Adocumentation "\"Something is &%Fillable if it can be filled by something else. Note that 'filled' here means perfectly filled.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1079) (%3ASUO-name "Fillable")) ([FillingAnOrder] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3278) (%3ASLOT-CONSTRAINTS [UAX-1380])) ([fills] of AsymmetricRelation (%3Adocumentation "\"Holes can be filled. (&%fills ?OBJ ?HOLE) means that the &%Object ?OBJ fills the &%Hole ?HOLE. Note that &%fills here means perfectly filled.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1089) (%3ASUO-name "fills")) ([fills_1] of SpatialRelation (%3Adocumentation "\"Holes can be filled. (&%fills ?OBJ ?HOLE) means that the &%Object ?OBJ fills the &%Hole ?HOLE. Note that &%fills here means perfectly filled.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1089) (%3ASUO-name "fills")) ([fills_3] of BinaryPredicate (%3Adocumentation "\"Holes can be filled. (&%fills ?OBJ ?HOLE) means that the &%Object ?OBJ fills the &%Hole ?HOLE. Note that &%fills here means perfectly filled.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1089) (%3ASUO-name "fills")) ([fills_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0451)\n(=>\n (and\n (fills ?OBJ1 ?HOLE)\n (attribute ?OBJ2 Fillable))\n (not\n (overlapsSpatially ?OBJ1 ?OBJ2)))\n\n(UAX-0452)\n(=>\n (completelyFills ?OBJ1 ?HOLE)\n (forall (?OBJ2)\n (=>\n (connected ?OBJ2 ?HOLE)\n (connected ?OBJ2 ?OBJ1))))\n\n(UAX-0453)\n(=>\n (and\n (properlyFills ?OBJ1 ?HOLE)\n (connected ?OBJ2 ?OBJ1))\n (connected ?HOLE ?OBJ2))\n\n(UAX-0454)\n(=>\n (and\n (fills ?OBJ ?HOLE1)\n (properPart ?HOLE2 ?HOLE1))\n (completelyFills ?OBJ ?HOLE2))\n\n(UAX-0455)\n(=>\n (and\n (fills ?OBJ1 ?HOLE)\n (properPart ?OBJ2 ?OBJ1))\n (properlyFills ?OBJ2 ?HOLE))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [completelyFills_S] [properlyFills_S]) (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1089) (%3ASUO-name "fills")) ([Filter] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2193) (%3ASLOT-CONSTRAINTS [UAX-0921])) ([FinancialAccount] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3258)) ([financialAccount] of BinaryPredicate (%3Adocumentation "\"A formal banking, brokerage, or business relationship established to provide for regular services, dealings, and other financial transactions. (&%accountAt ?ACCOUNT ?ORG) means that ?ACCOUNT is a financial account opened at the &%FinancialOrganization ?ORG.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3260) (%3ASUO-name "financialAccount")) ([financialAccount_1] of TotalValuedRelation (%3Adocumentation "\"A formal banking, brokerage, or business relationship established to provide for regular services, dealings, and other financial transactions. (&%accountAt ?ACCOUNT ?ORG) means that ?ACCOUNT is a financial account opened at the &%FinancialOrganization ?ORG.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3260) (%3ASUO-name "financialAccount")) ([financialAccount_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [agreementMember_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3260) (%3ASUO-name "financialAccount")) ([financialAsset] of BinaryPredicate (%3Adocumentation "\"A predicate that relates an &%Agent to any item of economic value owned by the &%Agent. Examples of financial assets are cash, securities, accounts receivable, inventory, office equipment, a house, a car, and other property.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3267) (%3ASUO-name "financialAsset")) ([financialAsset_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1376)\n(=>\n (financialAsset ?Agent ?Asset)\n (exists (?Value)\n (monetaryValue ?Asset ?Value)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [possesses_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3267) (%3ASUO-name "financialAsset")) ([FinancialBill] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2749)) ([FinancialInstrument] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1747)) ([FinancialOrganization] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3254)) ([FinancialService] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3284) (%3ASLOT-CONSTRAINTS [UAX-1382])) ([FinancialText] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2748)) ([FinancialTransaction] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1279) (%3ASLOT-CONSTRAINTS [UAX-0536])) ([Finger] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2612) (%3ASLOT-CONSTRAINTS [UAX-1104])) ([finishes] of BinaryPredicate (%3Adocumentation "\"(&%finishes ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 and ?INTERVAL2 are both &%TimeIntervals that have the same ending &%TimePoint and that ?INTERVAL2 begins before ?INTERVAL1.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 877) (%3ASUO-name "finishes")) ([finishes_1] of TemporalRelation (%3Adocumentation "\"(&%finishes ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 and ?INTERVAL2 are both &%TimeIntervals that have the same ending &%TimePoint and that ?INTERVAL2 begins before ?INTERVAL1.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 877) (%3ASUO-name "finishes")) ([finishes_2] of TransitiveRelation (%3Adocumentation "\"(&%finishes ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 and ?INTERVAL2 are both &%TimeIntervals that have the same ending &%TimePoint and that ?INTERVAL2 begins before ?INTERVAL1.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 877) (%3ASUO-name "finishes")) ([finishes_3] of IrreflexiveRelation (%3Adocumentation "\"(&%finishes ?INTERVAL1 ?INTERVAL2) means that ?INTERVAL1 and ?INTERVAL2 are both &%TimeIntervals that have the same ending &%TimePoint and that ?INTERVAL2 begins before ?INTERVAL1.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 877) (%3ASUO-name "finishes")) ([finishes_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0332)\n(<=>\n (finishes ?INTERVAL1 ?INTERVAL2)\n (and\n (before\n (BeginFn ?INTERVAL2)\n (BeginFn ?INTERVAL1))\n (equal\n (EndFn ?INTERVAL2)\n (EndFn ?INTERVAL1))))\n") (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 877) (%3ASUO-name "finishes")) ([FiniteQuantity] of %3ASYN-CLASS (disjoint [InfiniteQuantity]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2205)) ([FiniteSet] of %3ASYN-CLASS (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 577) (%3ASLOT-CONSTRAINTS [UAX-0233])) ([Firearm] of %3ASYN-CLASS (disjoint [ArtilleryGun]) (partition [Rifle] [Pistol]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2183)) ([Firm-Strictness] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 398)) ([FirstFn] of UnaryFunction (%3Adocumentation "\"(&%FirstFn ?LIST) returns the first item in the &%List ?LIST. For example, (&%FirstFn (&%ListFn &%Monday &%Tuesday &%Wednesday)) would return the value of &%Monday.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2318) (%3ASUO-name "FirstFn")) ([FirstFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0973)\n(=>\n (instance ?LIST List)\n (equal (FirstFn ?LIST) (ListOrderFn ?LIST 1)))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2318) (%3ASUO-name "FirstFn")) ([fiscalYearPeriod] of BinaryPredicate (%3Adocumentation "\"The predicate &%fiscalYearPeriod indicates the period that an &%Agent or &%Organization uses as its 12-month accounting period. (&%fiscalYearPeriod ?AGENT &%Year) means that ?AGENT observes its 12-month accounting period during the regular calendar year (CY), from &%January to &%December. For fiscal years with other beginning and ending months (FYs), use (&%fiscalYearPeriod ?AGENT (&%RecurrentTimeIntervalFn ?STARTMONTH ?ENDMONTH)). For example, (&%fiscalYearPeriod (&%GovernmentFn &%UnitedStates) (&%RecurrentTimeIntervalFn &%October &%September)). For FYs that begin or end mid-month, days may be specified within &%RecurrentTimeIntervalFn.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3670) (%3ASUO-name "fiscalYearPeriod")) ([fiscalYearPeriod_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3670) (%3ASUO-name "fiscalYearPeriod")) ([Fish] of %3ASYN-CLASS (disjoint [Amphibian] [Reptile]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1605) (%3ASLOT-CONSTRAINTS [UAX-0681])) ([Fishing] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3376) (%3ASLOT-CONSTRAINTS [UAX-1417])) ([Fist] of BodyPosition (%3AAXIOMS "\n(UAX-1329)\n(=>\n (attribute ?HAND Fist)\n (instance ?HAND Hand))\n") (%3Adocumentation "\"The &%BodyPosition of having the fingers drawn into the palm so that the hand can be used for striking something.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3127) (%3ASUO-name "Fist")) ([FixedHoliday] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3528)) ([FixedWingAircraft] of %3ASYN-CLASS (disjoint [Helicopter]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3609)) ([Flag] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2678) (%3ASLOT-CONSTRAINTS [UAX-1135] [UAX-1136])) ([Floor] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2773) (%3ASLOT-CONSTRAINTS [UAX-1174])) ([FloorFn] of UnaryFunction (%3Adocumentation "\"(&%FloorFn ?NUMBER) returns the largest &%Integer less than or equal to the &%RealNumber ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 504) (%3ASUO-name "FloorFn")) ([FloorFn_1] of TotalValuedRelation (%3Adocumentation "\"(&%FloorFn ?NUMBER) returns the largest &%Integer less than or equal to the &%RealNumber ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 504) (%3ASUO-name "FloorFn")) ([FloorFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0199)\n(=>\n (equal (FloorFn ?NUMBER) ?INT)\n (not\n (exists (?OTHERINT)\n (and\n (instance ?OTHERINT Integer)\n (lessThanOrEqualTo ?OTHERINT ?NUMBER)\n (greaterThan ?OTHERINT ?INT)))))\n") (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 504) (%3ASUO-name "FloorFn")) ([Flower] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2532) (%3ASLOT-CONSTRAINTS [UAX-1064])) ([FloweringPlant] of %3ASYN-CLASS (disjoint [NonFloweringPlant]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1575)) ([FlowRegion] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3416) (%3ASLOT-CONSTRAINTS [UAX-1432])) ([Fluid] of PhysicalState (%3Adocumentation "\"&%Fluid is the &%PhysicalState attribute of an &%Object that does not have a fixed shape and thus tends to flow or to conform to the shape of a container.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1985) (%3ASUO-name "Fluid")) ([FluidContainer] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2261) (%3ASLOT-CONSTRAINTS [UAX-0946])) ([Flying] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2916) (%3ASLOT-CONSTRAINTS [UAX-1238])) ([Fodder] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3673)) ([Fog] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2499) (%3ASLOT-CONSTRAINTS [UAX-1051])) ([Food] of %3ASYN-CLASS (disjointDecomposition [Meat] [Beverage]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1651) (%3ASLOT-CONSTRAINTS [UAX-0695] [UAX-0696])) ([Foot] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2627) (%3ASLOT-CONSTRAINTS [UAX-1110])) ([FootLength] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 771) (%3ASLOT-CONSTRAINTS [UAX-0287])) ([FootLength_1] of UnitOfMeasure (%3Adocumentation "English length unit of feet.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 771)) ([forall] of BinaryPredicate (%3Adocumentation "\"The universal quantifier of predicate logic.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 89) (%3ASUO-name "forall")) ([forall_1] of LogicalOperator (%3Adocumentation "\"The universal quantifier of predicate logic.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 89) (%3ASUO-name "forall")) ([forall_S] of %3ASKIF-SLOT (%3AAXIOMS "null\n(UAX-0825)\n(<=>\n (forall (?ORG)\n (not (employs ?ORG ?PERSON)))\n (attribute ?PERSON Unemployed))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 89) (%3ASUO-name "forall")) ([Forest] of %3ASYN-CLASS (disjoint [Field]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3429) (%3ASLOT-CONSTRAINTS [UAX-1438])) ([Form] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2727)) ([FormalMeeting] of %3ASYN-CLASS (disjoint [SocialParty]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2830) (%3ASLOT-CONSTRAINTS [UAX-1202])) ([formOfAdaptation] of BinaryPredicate (%3Adocumentation "\"(&%formOfAdaptation ?System ?Attribute) holds if ?Attribute is a &%FormOfAdaptationAttribute which describes the &%RealtimeSystem ?System.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 367) (%3ASUO-name "formOfAdaptation")) ([formOfAdaptation_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [property_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 367) (%3ASUO-name "formOfAdaptation")) ([FormOfAdaptationAttribute] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 365)) ([FormOfGovernment] of %3ASYN-CLASS (disjoint [EconomicAttribute]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3477)) ([Formula] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 181)) ([Founding] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2170) (%3ASLOT-CONSTRAINTS [UAX-0913])) ([Fragile] of BreakabilityAttribute (%3Adocumentation "\"An &%Attribute which indicates that the associated &%Object is very breakable.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2062) (%3ASUO-name "Fragile")) ([France] of Nation (%3Adocumentation "\"A large, industrialized European &%Nation.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3764) (%3ASUO-name "France")) ([Freezing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1505) (%3ASLOT-CONSTRAINTS [UAX-0647] [UAX-0648])) ([French] of %3ANaturalLanguage) ([frequency] of BinaryPredicate (%3Adocumentation "\"(frequency ?PROC ?TIME) means that the &%Process type of ?PROC recurs after every interval of ?TIME.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 861) (%3ASUO-name "frequency")) ([frequency_1] of AsymmetricRelation (%3Adocumentation "\"(frequency ?PROC ?TIME) means that the &%Process type of ?PROC recurs after every interval of ?TIME.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 861) (%3ASUO-name "frequency")) ([frequency_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0321)\n(=>\n (frequency ?PROC ?TIME1)\n (forall (?TIME2)\n (=>\n (duration ?TIME2 ?TIME1)\n (exists (?POSITION)\n (and\n (temporalPart ?POSITION ?TIME2)\n (holdsDuring ?POSITION (exists (?INST) (instance ?INST ?PROC))))))))\n") (%3ADomain1Type Class) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 861) (%3ASUO-name "frequency")) ([FreshWaterArea] of %3ASYN-CLASS (disjoint [SaltWaterArea]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1527)) ([Friday] of %3ASYN-CLASS (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 988) (%3ASLOT-CONSTRAINTS [UAX-0396])) ([Frightening] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2981) (%3ASLOT-CONSTRAINTS [UAX-1271])) ([FrontFn] of SpatialRelation (%3Adocumentation "\"A &%Function that maps an &%Object to the side that generally receives the most attention or that typically faces the direction in which the &%Object moves. Note that this is a partial function, since some &%Objects do not have sides, e.g. apples and spheres. Note too that the &%range of this &%Function is indefinite in much the way that &%ImmediateFutureFn and &%ImmediatePastFn are indefinite. Although this indefiniteness is undesirable from a theoretical standpoint, it does not have significant practical implications, since there is widespread intersubjective agreement about the most common cases.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 116) (%3ASUO-name "FrontFn")) ([FrontFn_1] of PartialValuedRelation (%3Adocumentation "\"A &%Function that maps an &%Object to the side that generally receives the most attention or that typically faces the direction in which the &%Object moves. Note that this is a partial function, since some &%Objects do not have sides, e.g. apples and spheres. Note too that the &%range of this &%Function is indefinite in much the way that &%ImmediateFutureFn and &%ImmediatePastFn are indefinite. Although this indefiniteness is undesirable from a theoretical standpoint, it does not have significant practical implications, since there is widespread intersubjective agreement about the most common cases.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 116) (%3ASUO-name "FrontFn")) ([FrontFn_2] of UnaryFunction (%3Adocumentation "\"A &%Function that maps an &%Object to the side that generally receives the most attention or that typically faces the direction in which the &%Object moves. Note that this is a partial function, since some &%Objects do not have sides, e.g. apples and spheres. Note too that the &%range of this &%Function is indefinite in much the way that &%ImmediateFutureFn and &%ImmediatePastFn are indefinite. Although this indefiniteness is undesirable from a theoretical standpoint, it does not have significant practical implications, since there is widespread intersubjective agreement about the most common cases.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 116) (%3ASUO-name "FrontFn")) ([FrontFn_3] of AsymmetricRelation (%3Adocumentation "\"A &%Function that maps an &%Object to the side that generally receives the most attention or that typically faces the direction in which the &%Object moves. Note that this is a partial function, since some &%Objects do not have sides, e.g. apples and spheres. Note too that the &%range of this &%Function is indefinite in much the way that &%ImmediateFutureFn and &%ImmediatePastFn are indefinite. Although this indefiniteness is undesirable from a theoretical standpoint, it does not have significant practical implications, since there is widespread intersubjective agreement about the most common cases.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 116) (%3ASUO-name "FrontFn")) ([FrontFn_4] of IrreflexiveRelation (%3Adocumentation "\"A &%Function that maps an &%Object to the side that generally receives the most attention or that typically faces the direction in which the &%Object moves. Note that this is a partial function, since some &%Objects do not have sides, e.g. apples and spheres. Note too that the &%range of this &%Function is indefinite in much the way that &%ImmediateFutureFn and &%ImmediatePastFn are indefinite. Although this indefiniteness is undesirable from a theoretical standpoint, it does not have significant practical implications, since there is widespread intersubjective agreement about the most common cases.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 116) (%3ASUO-name "FrontFn")) ([FrontFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0050)\n(=>\n (instance ?OBJ SelfConnectedObject)\n (side (FrontFn ?OBJ) ?OBJ))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 116) (%3ASUO-name "FrontFn")) ([Frowning] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2654) (%3ASLOT-CONSTRAINTS [UAX-1124])) ([FruitOrVegetable] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1678)) ([FullTimePosition] of %3ASYN-CLASS (disjoint [PartTimePosition]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3000)) ([FullyFormed] of DevelopmentalAttribute (%3AAXIOMS "\n(UAX-0876)\n(=>\n (attribute ?OBJ FullyFormed)\n (exists (?GROWTH)\n (and\n (instance ?GROWTH Growth)\n (experiencer ?GROWTH ?OBJ)\n (holdsDuring (BeginFn (WhenFn ?OBJ)) (attribute ?OBJ NonFullyFormed)))))\n") (%3Adocumentation "\"The stage of an &%Organism when it has reached the end of its growth phase.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2086) (%3ASUO-name "FullyFormed")) ([Function] of %3ASYN-CLASS (disjoint [Predicate] [List]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 362)) ([Function_1] of InheritableRelation (%3Adocumentation "\"A &%Function is a term-forming &%Relation that maps from a n-tuple of arguments to a range and that associates this n-tuple with at most one range element. Note that the range is a &%SetOrClass, and each element of the range is an instance of the &%SetOrClass.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 362)) ([Functioning] of DeviceAttribute (%3AAXIOMS "\n(UAX-1143)\n(=>\n (and\n (attribute ?DEVICE Functioning)\n (hasPurpose ?DEVICE ?PROP))\n (true ?PROP True))\n") (%3Adocumentation "\"Indicates that a &%Device is performing its intended function.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2698) (%3ASUO-name "Functioning")) ([FunctionQuantity] of %3ASYN-CLASS (disjoint [ConstantQuantity]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 241)) ([Funding] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1264) (%3ASLOT-CONSTRAINTS [UAX-0529])) ([Fungus] of %3ASYN-CLASS (disjoint [Alga] [Fern] [Moss]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1579) (%3ASLOT-CONSTRAINTS [UAX-0675])) ([Furniture] of %3ASYN-CLASS (disjoint [Device]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2239)) ([FutureFn] of TemporalRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to the &%TimeInterval which it meets and which ends at &%PositiveInfinity.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 915) (%3ASUO-name "FutureFn")) ([FutureFn_1] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to the &%TimeInterval which it meets and which ends at &%PositiveInfinity.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 915) (%3ASUO-name "FutureFn")) ([FutureFn_2] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to the &%TimeInterval which it meets and which ends at &%PositiveInfinity.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 915) (%3ASUO-name "FutureFn")) ([FutureFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0353)\n(=>\n (instance ?INTERVAL TimeInterval)\n (meetsTemporally ?INTERVAL (FutureFn ?INTERVAL)))\n\n(UAX-0354)\n(=>\n (instance ?INTERVAL TimeInterval)\n (equal (FutureFn ?INTERVAL) (TimeIntervalFn (EndFn ?INTERVAL) PositiveInfinity)))\n") (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 915) (%3ASUO-name "FutureFn")) ([Game] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1459)) ([GameArtifact] of %3ASYN-CLASS (disjointDecomposition [GameBoard] [GamePiece]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2887) (%3ASLOT-CONSTRAINTS [UAX-1226])) ([GameAttribute] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3076) (%3ASLOT-CONSTRAINTS [UAX-1310])) ([GameBoard] of %3ASYN-CLASS (disjoint [GamePiece]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2889) (%3ASLOT-CONSTRAINTS [UAX-1227])) ([GameCall] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2850) (%3ASLOT-CONSTRAINTS [UAX-1211])) ([GameGoal] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2898) (%3ASLOT-CONSTRAINTS [UAX-1231])) ([GamePiece] of %3ASYN-CLASS (disjoint [GameBoard]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2891)) ([GameShot] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2893) (%3ASLOT-CONSTRAINTS [UAX-1228] [UAX-1229] [UAX-1230])) ([Garage] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2781) (%3ASLOT-CONSTRAINTS [UAX-1178] [UAX-1179])) ([Gas] of PhysicalState (%3AAXIOMS "\n(UAX-0841)\n(<=>\n (instance ?OBJ Substance)\n (exists (?ATTR)\n (and\n (instance ?ATTR PhysicalState)\n (attribute ?OBJ ?ATTR))))\n\n(UAX-0842)\n(=>\n (and\n (instance ?MOTION GasMotion)\n (patient ?MOTION ?OBJ))\n (attribute ?OBJ Gas))\n") (%3Adocumentation "\"An &%Object has the &%Attribute of &%Gas if it has neither a fixed volume nor a fixed shape.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1989) (%3ASUO-name "Gas")) ([GasMixture] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1633)) ([GasMotion] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2944) (%3ASLOT-CONSTRAINTS [UAX-1251])) ([GeneralizedIntersectionFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that takes a &%SetOrClass of &%Classes as its single argument and returns a &%SetOrClass which is the intersection of all of the &%Classes in the original &%SetOrClass, i.e. the &%SetOrClass containing just those instances which are instances of all instances of the original &%SetOrClass.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 571) (%3ASUO-name "GeneralizedIntersectionFn")) ([GeneralizedIntersectionFn_1] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that takes a &%SetOrClass of &%Classes as its single argument and returns a &%SetOrClass which is the intersection of all of the &%Classes in the original &%SetOrClass, i.e. the &%SetOrClass containing just those instances which are instances of all instances of the original &%SetOrClass.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 571) (%3ASUO-name "GeneralizedIntersectionFn")) ([GeneralizedIntersectionFn_S] of %3ASKIF-SLOT (%3ADomain1Type Class) (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 571) (%3ASUO-name "GeneralizedIntersectionFn")) ([GeneralizedUnionFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that takes a &%SetOrClass of &%Classes as its single argument and returns a &%SetOrClass which is the merge of all of the &%Classes in the original &%SetOrClass, i.e. the &%SetOrClass containing just those instances which are instances of an instance of the original &%SetOrClass.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 570) (%3ASUO-name "GeneralizedUnionFn")) ([GeneralizedUnionFn_1] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that takes a &%SetOrClass of &%Classes as its single argument and returns a &%SetOrClass which is the merge of all of the &%Classes in the original &%SetOrClass, i.e. the &%SetOrClass containing just those instances which are instances of an instance of the original &%SetOrClass.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 570) (%3ASUO-name "GeneralizedUnionFn")) ([GeneralizedUnionFn_S] of %3ASKIF-SLOT (%3ADomain1Type Class) (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 570) (%3ASUO-name "GeneralizedUnionFn")) ([GeographicArea] of %3ASYN-CLASS (disjoint [SpaceRegion] [AstronomicalBody]) (partition [WaterArea] [LandArea]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1513)) ([geographicSubregion] of BinaryPredicate (%3Adocumentation "\"(&%geographicSubregion ?PART ?WHOLE) means that the &%GeographicArea ?PART is part of the &%GeographicArea ?WHOLE.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1515) (%3ASUO-name "geographicSubregion")) ([geographicSubregion_1] of TransitiveRelation (%3Adocumentation "\"(&%geographicSubregion ?PART ?WHOLE) means that the &%GeographicArea ?PART is part of the &%GeographicArea ?WHOLE.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1515) (%3ASUO-name "geographicSubregion")) ([geographicSubregion_2] of AsymmetricRelation (%3Adocumentation "\"(&%geographicSubregion ?PART ?WHOLE) means that the &%GeographicArea ?PART is part of the &%GeographicArea ?WHOLE.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1515) (%3ASUO-name "geographicSubregion")) ([geographicSubregion_4] of SpatialRelation (%3Adocumentation "\"(&%geographicSubregion ?PART ?WHOLE) means that the &%GeographicArea ?PART is part of the &%GeographicArea ?WHOLE.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1515) (%3ASUO-name "geographicSubregion")) ([geographicSubregion_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0649)\n(=>\n (and\n (partlyLocated ?PLACE ?SUBAREA)\n (instance ?SUBAREA GeographicArea)\n (geographicSubregion ?SUBAREA ?AREA))\n (partlyLocated ?PLACE ?AREA))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [properPart_S] [located_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1515) (%3ASUO-name "geographicSubregion")) ([GeologicalProcess] of %3ASYN-CLASS (disjoint [IntentionalProcess]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1217)) ([geometricDistance] of TernaryPredicate (%3Adocumentation "\"(&%geometricDistance ?POINT1 ?POINT2 ?LENGTH) means that ?LENGTH is the distance between the two &%GeometricPoints ?POINT1 and ?POINT2.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2044) (%3ASUO-name "geometricDistance")) ([geometricDistance_1] of SingleValuedRelation (%3Adocumentation "\"(&%geometricDistance ?POINT1 ?POINT2 ?LENGTH) means that ?LENGTH is the distance between the two &%GeometricPoints ?POINT1 and ?POINT2.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2044) (%3ASUO-name "geometricDistance")) ([geometricDistance_2] of TotalValuedRelation (%3Adocumentation "\"(&%geometricDistance ?POINT1 ?POINT2 ?LENGTH) means that ?LENGTH is the distance between the two &%GeometricPoints ?POINT1 and ?POINT2.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2044) (%3ASUO-name "geometricDistance")) ([geometricDistance_3] of TernaryPredicate (%3Adocumentation "\"(&%geometricDistance ?POINT1 ?POINT2 ?LENGTH) means that ?LENGTH is the distance between the two &%GeometricPoints ?POINT1 and ?POINT2.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3100) (%3ASUO-name "geometricDistance")) ([geometricDistance_4] of SingleValuedRelation (%3Adocumentation "\"(&%geometricDistance ?POINT1 ?POINT2 ?LENGTH) means that ?LENGTH is the distance between the two &%GeometricPoints ?POINT1 and ?POINT2.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3100) (%3ASUO-name "geometricDistance")) ([geometricDistance_5] of TotalValuedRelation (%3Adocumentation "\"(&%geometricDistance ?POINT1 ?POINT2 ?LENGTH) means that ?LENGTH is the distance between the two &%GeometricPoints ?POINT1 and ?POINT2.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3100) (%3ASUO-name "geometricDistance")) ([geometricDistance_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0859)\n(=>\n (geometricDistance ?POINT1 ?POINT2 ?LENGTH)\n (geometricDistance ?POINT2 ?POINT1 ?LENGTH))\n\n(UAX-1318)\n(=>\n (geometricDistance ?POINT1 ?POINT2 ?LENGTH)\n (geometricDistance ?POINT2 ?POINT1 ?LENGTH))\n") (%3ADomain1Type Instance) (%3ADomain2Class GeometricPoint) (%3ADomain2Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3100) (%3ASUO-name "geometricDistance")) ([GeometricFigure] of %3ASYN-CLASS (partition [GeometricPoint] [OneDimensionalFigure] [TwoDimensionalFigure] [ThreeDimensionalFigure]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3090)) ([geometricPart] of BinaryPredicate (%3Adocumentation "\"(&%geometricPart ?PART ?WHOLE) means that the &%GeometricFigure ?PART is part of the &%GeometricFigure ?WHOLE.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2034) (%3ASUO-name "geometricPart")) ([geometricPart_1] of PartialOrderingRelation (%3Adocumentation "\"(&%geometricPart ?PART ?WHOLE) means that the &%GeometricFigure ?PART is part of the &%GeometricFigure ?WHOLE.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 2034) (%3ASUO-name "geometricPart")) ([geometricPart_2] of BinaryPredicate (%3Adocumentation "\"(&%geometricPart ?PART ?WHOLE) means that the &%GeometricFigure ?PART is part of the &%GeometricFigure ?WHOLE.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3095) (%3ASUO-name "geometricPart")) ([geometricPart_3] of PartialOrderingRelation (%3Adocumentation "\"(&%geometricPart ?PART ?WHOLE) means that the &%GeometricFigure ?PART is part of the &%GeometricFigure ?WHOLE.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3095) (%3ASUO-name "geometricPart")) ([geometricPart_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3095) (%3ASUO-name "geometricPart")) ([GeometricPoint] of %3ASYN-CLASS (disjoint [ThreeDimensionalFigure] [OneDimensionalFigure] [TwoDimensionalFigure]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3091)) ([GeopoliticalArea] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1517) (%3ASLOT-CONSTRAINTS [UAX-0650] [UAX-0651] [UAX-0652] [UAX-0653])) ([geopoliticalSubdivision] of AsymmetricRelation (%3Adocumentation "\"(&%geopoliticalSubdivision ?AREA1 ?AREA2) means that ?AREA1 is any geopolitical part of ?AREA2; that is, ?AREA1 is an integral &%geographicSubregion of ?AREA2 (not a &%DependencyOrSpecialSovereigntyArea), having its own associated &%GovernmentOrganization which is subordinated to or constrained by the government of ?AREA2. Cf. &%dependentGeopoliticalArea.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1522) (%3ASUO-name "geopoliticalSubdivision")) ([geopoliticalSubdivision_1] of TransitiveRelation (%3Adocumentation "\"(&%geopoliticalSubdivision ?AREA1 ?AREA2) means that ?AREA1 is any geopolitical part of ?AREA2; that is, ?AREA1 is an integral &%geographicSubregion of ?AREA2 (not a &%DependencyOrSpecialSovereigntyArea), having its own associated &%GovernmentOrganization which is subordinated to or constrained by the government of ?AREA2. Cf. &%dependentGeopoliticalArea.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1522) (%3ASUO-name "geopoliticalSubdivision")) ([geopoliticalSubdivision_3] of BinaryPredicate (%3Adocumentation "\"(&%geopoliticalSubdivision ?AREA1 ?AREA2) means that ?AREA1 is any geopolitical part of ?AREA2; that is, ?AREA1 is an integral &%geographicSubregion of ?AREA2 (not a &%DependencyOrSpecialSovereigntyArea), having its own associated &%GovernmentOrganization which is subordinated to or constrained by the government of ?AREA2. Cf. &%dependentGeopoliticalArea.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1522) (%3ASUO-name "geopoliticalSubdivision")) ([geopoliticalSubdivision_4] of SpatialRelation (%3Adocumentation "\"(&%geopoliticalSubdivision ?AREA1 ?AREA2) means that ?AREA1 is any geopolitical part of ?AREA2; that is, ?AREA1 is an integral &%geographicSubregion of ?AREA2 (not a &%DependencyOrSpecialSovereigntyArea), having its own associated &%GovernmentOrganization which is subordinated to or constrained by the government of ?AREA2. Cf. &%dependentGeopoliticalArea.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1522) (%3ASUO-name "geopoliticalSubdivision")) ([geopoliticalSubdivision_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0654)\n(=>\n (geopoliticalSubdivision ?SUB ?AREA)\n (not (instance ?SUB Nation)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [geographicSubregion_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1522) (%3ASUO-name "geopoliticalSubdivision")) ([Georgia] of AmericanState (%3Adocumentation "\"A state in the southeastern &%UnitedStates.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3747) (%3ASUO-name "Georgia")) ([German] of %3ANaturalLanguage) ([Germany] of Nation (%3Adocumentation "\"A large European &%Nation.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3771) (%3ASUO-name "Germany")) ([Gesture] of %3ASYN-CLASS (disjoint [ExpressingInLanguage]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1421) (%3ASLOT-CONSTRAINTS [UAX-0607])) ([Getting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1272) (%3ASLOT-CONSTRAINTS [UAX-0533])) ([GigaFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%UnitOfMeasure into a &%UnitOfMeasure that is equal to 1,000,000,000 units of the original &%UnitOfMeasure. For example, (&%GigaFn &%Hertz) is 1,000,000,000 &%Hertz.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 664) (%3ASUO-name "GigaFn")) ([GigaFn_1] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%UnitOfMeasure into a &%UnitOfMeasure that is equal to 1,000,000,000 units of the original &%UnitOfMeasure. For example, (&%GigaFn &%Hertz) is 1,000,000,000 &%Hertz.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 664) (%3ASUO-name "GigaFn")) ([GigaFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0267)\n(=>\n (instance ?UNIT UnitOfMeasure)\n (equal (GigaFn ?UNIT) (MeasureFn 1000000000 ?UNIT)))\n") (%3ADomain1Type Instance) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 664) (%3ASUO-name "GigaFn")) ([Girl] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2139)) ([Giving] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1261) (%3ASLOT-CONSTRAINTS [UAX-0527] [UAX-0528])) ([GivingBack] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1270) (%3ASLOT-CONSTRAINTS [UAX-0532])) ([Gland] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1688)) ([Glass] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2488)) ([Glue] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2486) (%3ASLOT-CONSTRAINTS [UAX-1045])) ([Government] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1856)) ([GovernmentDeputy] of Position (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3541) (%3ASUO-name "GovernmentDeputy")) ([GovernmentFn] of UnaryFunction (%3Adocumentation "\"(&%GovernmentFn ?AREA) denotes the &%Government of the &%GeopoliticalArea ?AREA. For example, (&%GovernmentFn &%UnitedStates) denotes the Federal-level government of the United States; (&%GovernmentFn &%PuertoRico) denotes the government of the Commonwealth of Puerto Rico.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1857) (%3ASUO-name "GovernmentFn")) ([GovernmentFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0791)\n(<=>\n (instance ?COUNTRY Nation)\n (instance (GovernmentFn ?COUNTRY) NationalGovernment))\n") (%3ADomain1Type Instance) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1857) (%3ASUO-name "GovernmentFn")) ([GovernmentOrganization] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1854) (%3ASLOT-CONSTRAINTS [UAX-0790])) ([GovernmentRegulatedEconomy] of EconomicSystemAttribute (%3Adocumentation "\"&%GovernmentRegulatedEconomy is an &%Attribute that describes the economy of a country in which the government determines prices, production, wages, allocation of resources, or other economic factors. An economy that is wholly government planned is a &%CentrallyPlannedEconomy.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3646) (%3ASUO-name "GovernmentRegulatedEconomy")) ([GovernmentSecretary] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2453)) ([GovernmentSubsidizedEconomy] of EconomicSystemAttribute (%3Adocumentation "\"&%GovernmentSubsidizedEconomy is an &%Attribute describing an economy in which the government provides subsidies to various industries, workers, or other groups as part of its economic policy.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3651) (%3ASUO-name "GovernmentSubsidizedEconomy")) ([governmentType] of BinaryPredicate (%3Adocumentation "\"(&%governmentType ?BODY ?FORM) means that the &%GeopoliticalArea or &%Organization ?BODY has a government with characteristic(s) of the type ?FORM.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3473) (%3ASUO-name "governmentType")) ([governmentType_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1454)\n(=>\n (governmentType ?AGENT ?TYPE)\n (or\n (instance ?AGENT Organization)\n (instance ?AGENT GeopoliticalArea)))\n\n(UAX-1455)\n(=>\n (and\n (instance ?AREA GeopoliticalArea)\n (governmentType ?AREA ?TYPE))\n (attribute (GovernmentFn ?AREA) ?TYPE))\n\n(UAX-1456)\n(=>\n (and\n (attribute (GovernmentFn ?AREA) ?TYPE)\n (instance ?TYPE FormOfGovernment))\n (governmentType ?AREA ?TYPE))\n\n(UAX-1460)\n(=>\n (governmentType ?PLACE MilitaryDictatorship)\n (leaderPosition ?PLACE MilitaryCommander))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [attribute_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3473) (%3ASUO-name "governmentType")) ([Grabbing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1243) (%3ASLOT-CONSTRAINTS [UAX-0518])) ([Graduation] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1170) (%3ASLOT-CONSTRAINTS [UAX-0490])) ([Gram] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 690)) ([Gram_1] of SystemeInternationalUnit (%3Adocumentation "Submultiple of kilogram. Symbol: g. 1 kilogram = 1000 &%Grams.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 690)) ([granularity] of BinaryPredicate (%3Adocumentation "\"Granularity is a sub-property of the timing requirements property of real-time systems. Granularity is defined by how a timing requirement is specified in units of time.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 379) (%3ASUO-name "granularity")) ([granularity_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 379) (%3ASUO-name "granularity")) ([Graph] of %3ASYN-CLASS (disjoint [Quantity] [Attribute] [SetOrClass] [Relation] [Proposition] [GraphElement]) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 588) (%3ASLOT-CONSTRAINTS [UAX-0236] [UAX-0237])) ([GRAPH_THEORY] of %3AModule (%3AinputFile "sam156.txt") (%3AStartingBlock 586) (%3ASUO-name "GRAPH_THEORY")) ([GraphArc] of %3ASYN-CLASS (disjoint [GraphNode]) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 608) (%3ASLOT-CONSTRAINTS [UAX-0247])) ([GraphCircuit] of %3ASYN-CLASS (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 598) (%3ASLOT-CONSTRAINTS [UAX-0242])) ([GraphElement] of %3ASYN-CLASS (disjoint [Quantity] [Attribute] [SetOrClass] [Relation] [Proposition] [Graph]) (partition [GraphNode] [GraphArc]) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 604) (%3ASLOT-CONSTRAINTS [UAX-0245])) ([GraphIcon] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2676) (%3ASLOT-CONSTRAINTS [UAX-1134])) ([GraphLoop] of %3ASYN-CLASS (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 610) (%3ASLOT-CONSTRAINTS [UAX-0248] [UAX-0249])) ([GraphNode] of %3ASYN-CLASS (disjoint [GraphArc]) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 606) (%3ASLOT-CONSTRAINTS [UAX-0246])) ([graphPart] of BinaryPredicate (%3Adocumentation "\"A basic relation for &%Graphs and their parts. (&%graphPart ?PART ?GRAPH) means that ?PART is a &%GraphArc or &%GraphNode of the &%Graph ?GRAPH.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 615) (%3ASUO-name "graphPart")) ([graphPart_1] of AsymmetricRelation (%3Adocumentation "\"A basic relation for &%Graphs and their parts. (&%graphPart ?PART ?GRAPH) means that ?PART is a &%GraphArc or &%GraphNode of the &%Graph ?GRAPH.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 615) (%3ASUO-name "graphPart")) ([graphPart_2] of IrreflexiveRelation (%3Adocumentation "\"A basic relation for &%Graphs and their parts. (&%graphPart ?PART ?GRAPH) means that ?PART is a &%GraphArc or &%GraphNode of the &%Graph ?GRAPH.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 615) (%3ASUO-name "graphPart")) ([graphPart_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 615) (%3ASUO-name "graphPart")) ([GraphPath] of %3ASYN-CLASS (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 595) (%3ASLOT-CONSTRAINTS [UAX-0240] [UAX-0241])) ([GraphPathFn] of BinaryFunction (%3Adocumentation "\"A &%BinaryFunction that maps two &%GraphNodes to the &%Class of &%GraphPaths between those two nodes. Note that the two &%GraphNodes must belong to the same &%Graph.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 633) (%3ASUO-name "GraphPathFn")) ([GraphPathFn_1] of TotalValuedRelation (%3Adocumentation "\"A &%BinaryFunction that maps two &%GraphNodes to the &%Class of &%GraphPaths between those two nodes. Note that the two &%GraphNodes must belong to the same &%Graph.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 633) (%3ASUO-name "GraphPathFn")) ([GraphPathFn_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0258)\n(=>\n (and\n (graphPart ?PATH ?GRAPH)\n (not (instance ?GRAPH DirectedGraph)))\n (<=>\n (equal (GraphPathFn ?NODE1 ?NODE2) ?PATH)\n (equal (GraphPathFn ?NODE2 ?NODE1) ?PATH)))\n") (%3ADomain1Type Instance) (%3ADomain2Class GraphNode) (%3ADomain2Type Instance) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 633) (%3ASUO-name "GraphPathFn")) ([grasps] of BinaryPredicate (%3Adocumentation "\"The state of grasping an &%Object. (&%grasps ?ANIMAL ?OBJ) means that the &%Animal ?ANIMAL is intentionally holding on to the &%Object ?OBJ.\"") (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1242) (%3ASUO-name "grasps")) ([grasps_1] of SpatialRelation (%3Adocumentation "\"The state of grasping an &%Object. (&%grasps ?ANIMAL ?OBJ) means that the &%Animal ?ANIMAL is intentionally holding on to the &%Object ?OBJ.\"") (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1242) (%3ASUO-name "grasps")) ([grasps_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [meetsSpatially_S]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1242) (%3ASUO-name "grasps")) ([Grass] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2520)) ([Gray] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 747)) ([Gray_1] of SystemeInternationalUnit (%3Adocumentation "SI absorbed dose measure. Symbol: Gy. It measures the dose of radiation absorbed in living tissue. It is equal approximately to the absorbed dose delivered when the energy per unit mass imparted to matter by ionizing radiation is 1 &%Joule per kilogram. &%Gray = J/kg = m^2*s^(-2).") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 747)) ([Gray_2] of SecondaryColor (%3Adocumentation "\"A &%SecondaryColor that results from mixing &%Black and &%White.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3062) (%3ASUO-name "Gray")) ([greaterThan] of BinaryPredicate (%3Adocumentation "\"(&%greaterThan ?NUMBER1 ?NUMBER2) is true just in case the &%Quantity ?NUMBER1 is greater than the &%Quantity ?NUMBER2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 208) (%3ASUO-name "greaterThan")) ([greaterThan_1] of TransitiveRelation (%3Adocumentation "\"(&%greaterThan ?NUMBER1 ?NUMBER2) is true just in case the &%Quantity ?NUMBER1 is greater than the &%Quantity ?NUMBER2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 208) (%3ASUO-name "greaterThan")) ([greaterThan_2] of IrreflexiveRelation (%3Adocumentation "\"(&%greaterThan ?NUMBER1 ?NUMBER2) is true just in case the &%Quantity ?NUMBER1 is greater than the &%Quantity ?NUMBER2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 208) (%3ASUO-name "greaterThan")) ([greaterThan_3] of RelationExtendedToQuantities (%3Adocumentation "\"(&%greaterThan ?NUMBER1 ?NUMBER2) is true just in case the &%Quantity ?NUMBER1 is greater than the &%Quantity ?NUMBER2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 208) (%3ASUO-name "greaterThan")) ([greaterThan_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 208) (%3ASUO-name "greaterThan")) ([greaterThanOrEqualTo] of BinaryPredicate (%3Adocumentation "\"(&%greaterThanOrEqualTo ?NUMBER1 ?NUMBER2) is true just in case the &%Quantity ?NUMBER1 is greater than the &%Quantity ?NUMBER2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 211) (%3ASUO-name "greaterThanOrEqualTo")) ([greaterThanOrEqualTo_1] of PartialOrderingRelation (%3Adocumentation "\"(&%greaterThanOrEqualTo ?NUMBER1 ?NUMBER2) is true just in case the &%Quantity ?NUMBER1 is greater than the &%Quantity ?NUMBER2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 211) (%3ASUO-name "greaterThanOrEqualTo")) ([greaterThanOrEqualTo_2] of RelationExtendedToQuantities (%3Adocumentation "\"(&%greaterThanOrEqualTo ?NUMBER1 ?NUMBER2) is true just in case the &%Quantity ?NUMBER1 is greater than the &%Quantity ?NUMBER2.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 211) (%3ASUO-name "greaterThanOrEqualTo")) ([greaterThanOrEqualTo_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0078)\n(<=>\n (greaterThanOrEqualTo ?NUMBER1 ?NUMBER2)\n (or\n (equal ?NUMBER1 ?NUMBER2)\n (greaterThan ?NUMBER1 ?NUMBER2)))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 211) (%3ASUO-name "greaterThanOrEqualTo")) ([GreatestCommonDivisorFn] of Function (%3Adocumentation "\"(&%GreatestCommonDivisorFn ?NUMBER1 ?NUMBER2 ... ?NUMBER) returns the greatest common divisor of ?NUMBER1 through ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 506) (%3ASUO-name "GreatestCommonDivisorFn")) ([GreatestCommonDivisorFn_1] of VariableArityRelation (%3Adocumentation "\"(&%GreatestCommonDivisorFn ?NUMBER1 ?NUMBER2 ... ?NUMBER) returns the greatest common divisor of ?NUMBER1 through ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 506) (%3ASUO-name "GreatestCommonDivisorFn")) ([GreatestCommonDivisorFn_2] of PartialValuedRelation (%3Adocumentation "\"(&%GreatestCommonDivisorFn ?NUMBER1 ?NUMBER2 ... ?NUMBER) returns the greatest common divisor of ?NUMBER1 through ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 506) (%3ASUO-name "GreatestCommonDivisorFn")) ([GreatestCommonDivisorFn_S] of %3AVariableAritySlot (%3AAXIOMS "\n(UAX-0200)\n(=>\n (equal (GreatestCommonDivisorFn @ROW) ?NUMBER)\n (forall (?ELEMENT)\n (=>\n (inList ?ELEMENT (ListFn @ROW))\n (equal (RemainderFn ?ELEMENT ?NUMBER) 0))))\n\n(UAX-0201)\n(=>\n (equal (GreatestCommonDivisorFn @ROW) ?NUMBER)\n (not (exists (?GREATER)\n (and\n (greaterThan ?GREATER ?NUMBER)\n (forall (?ELEMENT)\n (=>\n (inList ?ELEMENT (ListFn @ROW))\n (equal (RemainderFn ?ELEMENT ?GREATER) 0)))))))\n") (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 506) (%3ASUO-name "GreatestCommonDivisorFn")) ([Greece] of Nation (%3Adocumentation "\"A small Balkan &%Nation that is known primarily for the literature, philosophy, and art produced there during the ancient period.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3770) (%3ASUO-name "Greece")) ([Green] of SecondaryColor (%3Adocumentation "\"A &%SecondaryColor that resembles the color of fresh grass.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3065) (%3ASUO-name "Green")) ([Greeting] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2669)) ([GroceryStore] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2414) (%3ASLOT-CONSTRAINTS [UAX-1015])) ([Group] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1825) (%3ASLOT-CONSTRAINTS [UAX-0777])) ([groupMember] of SpatialRelation (%3Adocumentation "\"A &%subrelation of &%member, &%groupMember is used to relate a &%Human to a &%GroupOfPeople of which he/she is a &%member.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2395) (%3ASUO-name "groupMember")) ([groupMember_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [member_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2395) (%3ASUO-name "groupMember")) ([GroupOfAnimals] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2386) (%3ASLOT-CONSTRAINTS [UAX-1004])) ([GroupOfPeople] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1827) (%3ASLOT-CONSTRAINTS [UAX-0778])) ([Growth] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1133)) ([Guam] of Island (%3Adocumentation "\"An &%Island in the &%PacificOcean that is a protectorate of the &%UnitedStates.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3736) (%3ASUO-name "Guam")) ([Guidance-DesignPattern] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 349) (%3ASLOT-CONSTRAINTS [UAX-1571])) ([Guiding] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1253)) ([Gun] of %3ASYN-CLASS (partition [ArtilleryGun] [Firearm]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2177) (%3ASLOT-CONSTRAINTS [UAX-0916] [UAX-0917])) ([GunStock] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2180) (%3ASLOT-CONSTRAINTS [UAX-0918])) ([Gymnastics] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3117)) ([Hair] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2587) (%3ASLOT-CONSTRAINTS [UAX-1091])) ([HairRemoval] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2589) (%3ASLOT-CONSTRAINTS [UAX-1092])) ([half] of SpatialRelation (%3Adocumentation "\"(&%half ?HALF ?WHOLE) means that ?HALF is one half of ?WHOLE.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2670) (%3ASUO-name "half")) ([half_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1131)\n(=>\n (half ?HALF ?WHOLE)\n (exists (?OTHER)\n (and\n (half ?OTHER ?WHOLE)\n (not (equal ?OTHER ?HALF))\n (equal ?WHOLE (MereologicalSumFn ?HALF ?OTHER)))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [part_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2670) (%3ASUO-name "half")) ([Hand] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2610) (%3ASLOT-CONSTRAINTS [UAX-1103])) ([Hanging] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2985)) ([Happiness] of EmotionalState (%3AAXIOMS "\n(UAX-1301)\n(=>\n (attribute ?PERSON Happiness)\n (not (exists (?PROP)\n (fears ?PERSON ?PROP))))\n") (%3Adocumentation "\"The state of being happy, experiencing pleasure, joy or contentment. Note that this &%Attribute covers both active enjoyment, as well as the emotional state of simply being free from anxiety or fear.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3049) (%3ASUO-name "Happiness")) ([Hard-Strictness] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 396)) ([HardDiskDrive] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 29)) ([HardwareSystem] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 70) (%3ASLOT-CONSTRAINTS [UAX-1525] [UAX-1526])) ([hardwareType] of BinaryPredicate (%3Adocumentation "\"(&%hardwareType ?TYPE ?COMPUTER) means that TYPE represents the computer vendor model name, as well as the version of the product.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 244) (%3ASUO-name "hardwareType")) ([hardwareType_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1557)\n(=>\n (and\n (hardwareType ?Type ?Computer)\n (productModel ?Model ?Computer))\n (subsumesContentInstance ?Type ?Model))\n\n(UAX-1558)\n(=>\n (and\n (hardwareType ?Type ?Computer)\n (version ?Version ?Computer))\n (subsumesContentInstance ?Type ?Version))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [represents_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 244) (%3ASUO-name "hardwareType")) ([hasAccount] of AsymmetricRelation (%3Adocumentation "\"(&%hasAccount ?User ?Account) holds if ?User is assigned the &%UserAccount ?Account.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 525) (%3ASUO-name "hasAccount")) ([hasAccount_1] of BinaryPredicate (%3Adocumentation "\"(&%hasAccount ?User ?Account) holds if ?User is assigned the &%UserAccount ?Account.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 525) (%3ASUO-name "hasAccount")) ([hasAccount_S] of %3ASKIF-SLOT (%3AAXIOMS "null\n(UAX-1598)\n(=>\n (hasAccount ?User ?Account)\n (exists (?Name)\n (userName ?User ?Name)))\n\n(UAX-1599)\n(=>\n (hasAccount ?User ?Account)\n (exists (?Password)\n (password ?Password ?User)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [possesses_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 525) (%3ASUO-name "hasAccount")) ([hasDependency] of BinaryPredicate (%3Adocumentation "\"(&%hasDependency ?PROGRAM1 ?PROGRAM2) holds if ?PROGRAM1 is dependent on the application ?PROGRAM2.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 309) (%3ASUO-name "hasDependency")) ([hasDependency_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 309) (%3ASUO-name "hasDependency")) ([hasExpertise] of BinaryPredicate (%3Adocumentation "\"(&%hasExpertise ?PERSON ?FIELD) means that ?PERSON has studied the &%FieldOfStudy ?FIELD and is regarded as an expert.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3196) (%3ASUO-name "hasExpertise")) ([hasExpertise_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1352)\n(=>\n (hasExpertise ?PERSON ?FIELD)\n (exists (?LEARN)\n (and\n (instance ?LEARN Learning)\n (agent ?LEARN ?PERSON)\n (realization ?LEARN ?FIELD))))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3196) (%3ASUO-name "hasExpertise")) ([hasOccupation] of BinaryPredicate (%3Adocumentation "\"(&%hasOccupation ?PERSON ?WORK) means that ?PERSON engages in activities of the class ?WORK as a means of earning a living.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3198) (%3ASUO-name "hasOccupation")) ([hasOccupation_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1353)\n(=>\n (hasOccupation ?PERSON ?WORK)\n (exists (?INST)\n (and\n (instance ?INST ?WORK)\n (instance ?INST Working)\n (agent ?INST ?PERSON))))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3198) (%3ASUO-name "hasOccupation")) ([hasPurpose] of BinaryPredicate (%3Adocumentation "\"This &%Predicate expresses the concept of a conventional goal, i.e. a goal with a neutralized agent's intention. Accordingly, (&%hasPurpose ?THING ?FORMULA) means that the instance of &%Physical ?THING has, as its purpose, the &%Proposition expressed by ?FORMULA. Note that there is an important difference in meaning between the &%Predicates &%hasPurpose and &%result. Although the second argument of the latter can satisfy the second argument of the former, a conventional goal is an expected and desired outcome, while a result may be neither expected nor desired. For example, a machine process may have outcomes but no goals, aimless wandering may have an outcome but no goal; a learning process may have goals with no outcomes, and so on.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 424) (%3ASUO-name "hasPurpose")) ([hasPurpose_1] of AsymmetricRelation (%3Adocumentation "\"This &%Predicate expresses the concept of a conventional goal, i.e. a goal with a neutralized agent's intention. Accordingly, (&%hasPurpose ?THING ?FORMULA) means that the instance of &%Physical ?THING has, as its purpose, the &%Proposition expressed by ?FORMULA. Note that there is an important difference in meaning between the &%Predicates &%hasPurpose and &%result. Although the second argument of the latter can satisfy the second argument of the former, a conventional goal is an expected and desired outcome, while a result may be neither expected nor desired. For example, a machine process may have outcomes but no goals, aimless wandering may have an outcome but no goal; a learning process may have goals with no outcomes, and so on.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 424) (%3ASUO-name "hasPurpose")) ([hasPurpose_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 424) (%3ASUO-name "hasPurpose")) ([hasPurposeForAgent] of TernaryPredicate (%3Adocumentation "\"Expresses a cognitive attitude of an agent with respect to a particular instance of Physical. More precisely, (&%hasPurposeForAgent ?THING ?FORMULA ?AGENT) means that the purpose of ?THING for ?AGENT is the proposition expressed by ?FORMULA. Very complex issues are involved here. In particular, the rules of inference of the first order predicate calculus are not truth-preserving for the second argument position of this &%Predicate.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 425) (%3ASUO-name "hasPurposeForAgent")) ([hasPurposeForAgent_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-0167)\n(=>\n (hasPurpose ?THING ?PURPOSE)\n (exists (?AGENT)\n (hasPurposeForAgent ?THING ?PURPOSE ?AGENT)))\n") (%3ADomain1Type Instance) (%3ADomain2Class Formula) (%3ADomain2Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 425) (%3ASUO-name "hasPurposeForAgent")) ([hasSkill] of BinaryPredicate (%3Adocumentation "\"Similar to the &%capability &%Predicate with the additional restriction that the ability be practised/ demonstrated to some measurable degree.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 427) (%3ASUO-name "hasSkill")) ([hasSkill_1] of AsymmetricRelation (%3Adocumentation "\"Similar to the &%capability &%Predicate with the additional restriction that the ability be practised/ demonstrated to some measurable degree.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 427) (%3ASUO-name "hasSkill")) ([hasSkill_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0168)\n(=>\n (hasSkill ?PROC ?AGENT)\n (capability ?PROC agent ?AGENT))\n") (%3ADomain1Type Class) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 427) (%3ASUO-name "hasSkill")) ([Hat] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2274) (%3ASLOT-CONSTRAINTS [UAX-0953])) ([Hay] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3159) (%3ASLOT-CONSTRAINTS [UAX-1341])) ([Head] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2637)) ([headOfGovernment] of TernaryPredicate (%3Adocumentation "\"(&%headOfGovernment ?POLITY ?ROLE ?PERSON) means that ?PERSON is the top administrative leader of the &%Government of the &%GeopoliticalArea ?POLITY, with authority for managing its day-to-day functions. The office held by this person is the &%Position ?ROLE (e.g., President, Prime Minister, Governor). Note: this term is defined as in the CIA World Fact Book.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3551) (%3ASUO-name "headOfGovernment")) ([headOfGovernment_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-1469)\n(=>\n (and\n (headOfGovernment ?AREA ?POSITION ?PERSON)\n (instance ?AREA Nation))\n (citizen ?PERSON ?AREA))\n\n(UAX-1470)\n(=>\n (headOfGovernment ?AREA ?POSITION ?PERSON)\n (occupiesPosition ?PERSON ?POSITION (GovernmentFn ?AREA)))\n") (%3ADomain1Type Instance) (%3ADomain2Class Position) (%3ADomain2Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3551) (%3ASUO-name "headOfGovernment")) ([Hearing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1481) (%3ASLOT-CONSTRAINTS [UAX-0636])) ([Heart] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2565) (%3ASLOT-CONSTRAINTS [UAX-1079])) ([heartBeatRate] of BinaryPredicate (%3Adocumentation "\"(&%heartBeatRate ?Program ?Period) holds if ?Period is the period at which the ComputerProgram ?Program sends its heartbeat to a monitoring process.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 213) (%3ASUO-name "heartBeatRate")) ([heartBeatRate_S] of %3ASKIF-SLOT (%3ADomain1Type Class) (%3AisaSubrelationOf [frequency_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 213) (%3ASUO-name "heartBeatRate")) ([Heating] of %3ASYN-CLASS (disjoint [Cooling]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1192) (%3ASLOT-CONSTRAINTS [UAX-0498])) ([height] of BinaryPredicate (%3Adocumentation "\"The height of an &%Object is the distance between its &%top and its &%bottom.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1047) (%3ASUO-name "height")) ([height_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0431)\n(=>\n (and\n (height ?OBJECT ?HEIGHT)\n (top ?TOP ?OBJECT)\n (bottom ?BOTTOM ?OBJECT))\n (distance ?TOP ?BOTTOM ?HEIGHT))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [length_S]) (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1047) (%3ASUO-name "height")) ([Helicopter] of %3ASYN-CLASS (disjoint [FixedWingAircraft]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2954)) ([Helium] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3240) (%3ASLOT-CONSTRAINTS [UAX-1370])) ([Hen] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3154) (%3ASLOT-CONSTRAINTS [UAX-1339])) ([Henry] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 735)) ([Henry_1] of SystemeInternationalUnit (%3Adocumentation "SI inductance measure. Symbol: H. One &%Henry is equivalent to one &%Volt divided by one &%Ampere per &%SecondDuration. If a current changing at the rate of one &%Ampere per &%SecondDuration induces an electromotive force of one &%Volt, the circuit has an inductance of one &%Henry. &%Henry = Wb/A = m^2*kg*s^(-2)*A^(-2).") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 735)) ([HereditaryMonarchy] of FormOfGovernment (%3Adocumentation "\"A monarchy in which the position of monarch is inherited.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3481) (%3ASUO-name "HereditaryMonarchy")) ([Hertz] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 710)) ([Hertz_1] of SystemeInternationalUnit (%3Adocumentation "SI frequency measure. Symbol: Hz. It is the number of cycles per second. &%Hertz = s^(-1). Note that &%Hertz does not have a conversion function.") 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NK) is true just in case the tuple of objects denoted by N1,..., NK is an element of the &%Relation P.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 95) (%3ASUO-name "holds")) ([holds_1] of VariableArityRelation (%3Adocumentation "\"(holds P N1 ... NK) is true just in case the tuple of objects denoted by N1,..., NK is an element of the &%Relation P.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 95) (%3ASUO-name "holds")) ([holds_S] of %3AVariableAritySlot (%3AAXIOMS "\n(UAX-0044)\n(=>\n (instance ?REL Function)\n (<=>\n (equal (AssignmentFn ?REL @ROW) ?INST)\n (holds ?REL @ROW ?INST)))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 95) (%3ASUO-name "holds")) ([holdsDuring] of BinaryPredicate (%3Adocumentation "\"(&%holdsDuring ?TIME ?FORMULA) means that the proposition denoted by ?FORMULA is true in the time frame ?TIME. Note that this implies that ?FORMULA is true at every &%TimePoint which is a &%temporalPart of ?TIME.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 417) (%3ASUO-name "holdsDuring")) ([holdsDuring_1] of AsymmetricRelation (%3Adocumentation "\"(&%holdsDuring ?TIME ?FORMULA) means that the proposition denoted by ?FORMULA is true in the time frame ?TIME. Note that this implies that ?FORMULA is true at every &%TimePoint which is a &%temporalPart of ?TIME.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 417) (%3ASUO-name "holdsDuring")) ([holdsDuring_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0163)\n(=>\n (and\n (holdsDuring ?TIME ?SITUATION1)\n (entails ?SITUATION1 ?SITUATION2))\n (holdsDuring ?TIME ?SITUATION2))\n\n(UAX-0164)\n(=>\n (holdsDuring ?TIME (not ?SITUATION))\n (not (holdsDuring ?TIME ?SITUATION)))\n\n(UAX-0878)\n(=>\n (holdsDuring ?TIME (attribute ?ORG Larval))\n (holdsDuring (PastFn ?TIME) (exists (?BIRTH) (and (instance ?BIRTH Birth) (experiencer ?BIRTH ?ORG)))))\n\n(UAX-0880)\n(=>\n (holdsDuring ?TIME (attribute ?ORG Embryonic))\n (holdsDuring ?TIME (not (exists (?BIRTH) (and (instance ?BIRTH Birth) (experiencer ?BIRTH ?ORG))))))\n\n(UAX-1056)\n(=>\n (holdsDuring ?TIME (instance ?AREA MilitaryFront))\n (exists (?BATTLE)\n (and\n (instance ?BATTLE Battle)\n (located ?BATTLE ?AREA)\n (temporalPart ?TIME ?BATTLE))))\n\n(UAX-1145)\n(=>\n (holdsDuring ?TIME1 (modalAttribute ?TEXT Law))\n (exists (?TIME2)\n (and\n (holdsDuring ?TIME2 (attribute ?TEXT LegislativeBill))\n (earlier ?TIME2 ?TIME1))))\n\n(UAX-1304)\n(=>\n (holdsDuring ?TIME (attribute ?AGENT Surprise))\n (exists (?PART ?PROP)\n (and\n (temporalPart ?PART (PastFn ?TIME))\n (holdsDuring ?PART (expects ?AGENT ?PROP))\n (holdsDuring ?TIME (true ?PROP False)))))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 417) (%3ASUO-name "holdsDuring")) ([holdsObligation] of BinaryPredicate (%3Adocumentation "\"Expresses a relationship between a &%Formula and a &%CognitiveAgent whereby the &%CognitiveAgent has the obligation to bring it about that the &%Formula is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 432) (%3ASUO-name "holdsObligation")) ([holdsObligation_1] of AsymmetricRelation (%3Adocumentation "\"Expresses a relationship between a &%Formula and a &%CognitiveAgent whereby the &%CognitiveAgent has the obligation to bring it about that the &%Formula is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 432) (%3ASUO-name "holdsObligation")) ([holdsObligation_S] of %3ASKIF-SLOT (relatedInternalConcept [Second]) (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 432) (%3ASUO-name "holdsObligation")) ([holdsRight] of BinaryPredicate (%3Adocumentation "\"Expresses a relationship between a &%Formula and a &%CognitiveAgent whereby the &%CognitiveAgent has the right to bring it about that the &%Formula is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 429) (%3ASUO-name "holdsRight")) ([holdsRight_1] of AsymmetricRelation (%3Adocumentation "\"Expresses a relationship between a &%Formula and a &%CognitiveAgent whereby the &%CognitiveAgent has the right to bring it about that the &%Formula is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 429) (%3ASUO-name "holdsRight")) ([holdsRight_S] of %3ASKIF-SLOT (relatedInternalConcept [Second]) (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 429) (%3ASUO-name "holdsRight")) ([Hole] of %3ASYN-CLASS (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1057) (%3ASLOT-CONSTRAINTS [UAX-0435] [UAX-0436] [UAX-0437] [UAX-0438] [UAX-0439] [UAX-0440] [UAX-0441] [UAX-0442])) ([hole] of BinaryPredicate (%3Adocumentation "\"(&%hole ?HOLE ?OBJ) means that ?HOLE is a &%Hole in ?OBJ. A &%Hole is a fillable body located at the &%surface an &%Object.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1056) (%3ASUO-name "hole")) ([hole_1] of SpatialRelation (%3Adocumentation "\"(&%hole ?HOLE ?OBJ) means that ?HOLE is a &%Hole in ?OBJ. A &%Hole is a fillable body located at the &%surface an &%Object.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1056) (%3ASUO-name "hole")) ([hole_2] of AsymmetricRelation (%3Adocumentation "\"(&%hole ?HOLE ?OBJ) means that ?HOLE is a &%Hole in ?OBJ. A &%Hole is a fillable body located at the &%surface an &%Object.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1056) (%3ASUO-name "hole")) ([hole_S] of %3ASKIF-SLOT (%3AAXIOMS "null\n(UAX-0436)\n(=>\n (hole ?HOLE ?OBJ)\n (not\n (instance ?OBJ Hole)))\n\n(UAX-0437)\n(=>\n (hole ?HOLE ?OBJ)\n (not\n (overlapsSpatially ?HOLE ?OBJ)))\n") (%3ADomain1Type Instance) (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1056) (%3ASUO-name "hole")) ([Holiday] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3527)) ([HolyBible] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2420)) ([home] of BinaryPredicate (%3Adocumentation "\"The relation between a &%Human and a home of the &%Human.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1555) (%3ASUO-name "home")) ([home_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [inhabits_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1555) (%3ASUO-name "home")) ([HomeRun] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2905)) ([Hominid] of %3ASYN-CLASS (disjoint [Ape] [Monkey]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1619)) ([HoofedMammal] of %3ASYN-CLASS (disjoint [AquaticMammal] [Primate] [Marsupial] [Rodent]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1609)) ([hopes] of PropositionalAttitude (%3Adocumentation "\"(&%hopes ?AGENT ?FORMULA) means that ?AGENT hopes that the proposition ?FORMULA will be true, i.e. he/she believes that it will come to pass in the future and that it will be desirable for ?AGENT.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2372) (%3ASUO-name "hopes")) ([hopes_1] of BinaryPredicate (%3Adocumentation "\"(&%hopes ?AGENT ?FORMULA) means that ?AGENT hopes that the proposition ?FORMULA will be true, i.e. he/she believes that it will come to pass in the future and that it will be desirable for ?AGENT.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2372) (%3ASUO-name "hopes")) ([hopes_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0997)\n(=>\n (hopes ?AGENT ?FORMULA)\n (desires ?AGENT ?FORMULA))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [expects_S]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2372) (%3ASUO-name "hopes")) ([Horizontal] of PositionalAttribute (%3AAXIOMS "\n(UAX-0810)\n(<=>\n (orientation ?OBJ1 ?OBJ2 Horizontal)\n (orientation ?OBJ2 ?OBJ1 Horizontal))\n") (%3Adocumentation "\"Attribute used to indicate that an &%Object is positioned width-wise with respect to another &%Object.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1917) (%3ASUO-name "Horizontal")) ([Hormone] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1648) (%3ASLOT-CONSTRAINTS [UAX-0694])) ([HormoneTSH] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2606) (%3ASLOT-CONSTRAINTS [UAX-1101])) ([Horse] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3144)) ([Hospital] of %3ASYN-CLASS (disjoint [MedicalClinic]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2398)) ([HostDown] of ComputerStatus (%3Adocumentation "\"An attribute which applies to a computer that ceases to operate due to hardware or software failure.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 538) (%3ASUO-name "HostDown")) ([hostJitter] of BinaryPredicate (%3Adocumentation "\"Interference on an analog line caused by a variation of a signal from its reference timing slots. Jitter can cause problems in the receipt of data and any subsequent processing of that data.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 542) (%3ASUO-name "hostJitter")) ([hostOf] of BinaryPredicate (%3Adocumentation "\"(hostOf ?SYSTEM ?COMPUTER) means that ?COMPUTER is the host of the computational system ?SYSTEM.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 120) (%3ASUO-name "hostOf")) ([hostOf_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 120) (%3ASUO-name "hostOf")) ([HostReady] of ComputerStatus (%3Adocumentation "\"An attribute which applies to a computer that is functional, operating properly, and ready to receive work requests.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 540) (%3ASUO-name "HostReady")) ([hostStatus] of BinaryPredicate (%3Adocumentation "\"(&%hostStatus ?Computer ?Status) means that ?Status describes the status of the Computer, such as &%HostDown, &%HostReady.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 534) (%3ASUO-name "hostStatus")) ([hostStatus_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [attribute_S]) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 534) (%3ASUO-name "hostStatus")) ([Hotel] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1777)) ([Hour] of %3ASYN-CLASS (relatedInternalConcept [HourFn] [HourFn_S] [HourDuration] [member_S] [element_S] [desires_S] [wants_S]) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 997) (%3ASLOT-CONSTRAINTS [UAX-0401])) ([HourDuration] of %3ASYN-CLASS (relatedInternalConcept [Hour] [Hour]) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 753) (%3ASLOT-CONSTRAINTS [UAX-0280])) ([HourDuration_1] of UnitOfMeasure (%3Adocumentation "Time unit. 1 hour = 60 minutes.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 753)) ([HourFn] of TemporalRelation (relatedInternalConcept [Hour]) (%3Adocumentation "\"A &%BinaryFunction that assigns a &%PositiveRealNumber and a subclass of &%Days to the &%Hours within each &%Day corresponding to that &%PositiveRealNumber. For example, (&%HourFn 12 &%Thursday) is the &%Class of all instances of noon Thursday. For another example, (&%HourFn 24 &%Day) would return the class of all instances of midnight. For still another example, (&%HourFn 14 (&%DayFn 18 (&%MonthFn 8 (YearFn 1912)))) denotes 2 PM on the 18th day of August 1912.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 927) (%3ASUO-name "HourFn")) ([HourFn_1] of BinaryFunction (%3Adocumentation "\"A &%BinaryFunction that assigns a &%PositiveRealNumber and a subclass of &%Days to the &%Hours within each &%Day corresponding to that &%PositiveRealNumber. For example, (&%HourFn 12 &%Thursday) is the &%Class of all instances of noon Thursday. For another example, (&%HourFn 24 &%Day) would return the class of all instances of midnight. For still another example, (&%HourFn 14 (&%DayFn 18 (&%MonthFn 8 (YearFn 1912)))) denotes 2 PM on the 18th day of August 1912.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 927) (%3ASUO-name "HourFn")) ([HourFn_S] of %3ATernarySlot (relatedInternalConcept [Hour]) (%3AAXIOMS "\n(UAX-0358)\n(=>\n (instance ?HOUR (HourFn ?NUMBER ?DAY))\n (lessThan ?NUMBER 24))\n\n(UAX-0359)\n(=>\n (and\n (instance ?HOUR1 (HourFn ?NUMBER1 ?DAY))\n (instance ?HOUR2 (HourFn ?NUMBER2 ?DAY))\n (equal (SubtractionFn ?NUMBER2 ?NUMBER1) 1))\n (meetsTemporally ?HOUR1 ?HOUR2))\n") (%3ADomain1Type Instance) (%3ADomain2Class Day) (%3ADomain2Type Class) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 927) (%3ASUO-name "HourFn")) ([House] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2348)) ([Human] of %3ASYN-CLASS (disjoint [DomesticAnimal]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1620)) ([HumanAdult] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2129) (%3ASLOT-CONSTRAINTS [UAX-0894])) ([HumanBaby] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2140) (%3ASLOT-CONSTRAINTS [UAX-0899])) ([humanCapacity] of BinaryPredicate (%3Adocumentation "\"(&%humanCapacity ?CONSTRUCT ?NUMBER) means that the &%StationaryArtifact ?CONSTRUCT, e.g. a &%Building or a &%Room, can hold a maximum of ?NUMBER &%Humans without crowding.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2315) (%3ASUO-name "humanCapacity")) ([humanCapacity_1] of SingleValuedRelation (%3Adocumentation "\"(&%humanCapacity ?CONSTRUCT ?NUMBER) means that the &%StationaryArtifact ?CONSTRUCT, e.g. a &%Building or a &%Room, can hold a maximum of ?NUMBER &%Humans without crowding.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2315) (%3ASUO-name "humanCapacity")) ([humanCapacity_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2315) (%3ASUO-name "humanCapacity")) ([HumanChild] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2133) (%3ASLOT-CONSTRAINTS [UAX-0896] [UAX-0897])) ([HumanCorpse] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2125) (%3ASLOT-CONSTRAINTS [UAX-0892])) ([HumanLanguage] of %3ASYN-CLASS (disjoint [AnimalLanguage] [ComputerLanguage]) (partition [NaturalLanguage] [ConstructedLanguage]) (partition2 [SpokenHumanLanguage] [ManualHumanLanguage]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 173) (%3ASLOT-CONSTRAINTS [UAX-0070])) ([HumanSlave] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2127) (%3ASLOT-CONSTRAINTS [UAX-0893])) ([HumanYouth] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2131) (%3ASLOT-CONSTRAINTS [UAX-0895])) ([Humus] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3452) (%3ASLOT-CONSTRAINTS [UAX-1449])) ([Hunting] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3378) (%3ASLOT-CONSTRAINTS [UAX-1418] [UAX-1419] [UAX-1420])) ([husband] of AsymmetricRelation (%3Adocumentation "\"(&%husband ?MAN ?WOMAN) means that ?MAN is the husband of ?WOMAN.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1842) (%3ASUO-name "husband")) ([husband_1] of IrreflexiveRelation (%3Adocumentation "\"(&%husband ?MAN ?WOMAN) means that ?MAN is the husband of ?WOMAN.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1842) (%3ASUO-name "husband")) ([husband_3] of BinaryPredicate (%3Adocumentation "\"(&%husband ?MAN ?WOMAN) means that ?MAN is the husband of ?WOMAN.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1842) (%3ASUO-name "husband")) ([husband_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [spouse_S]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1842) (%3ASUO-name "husband")) ([Hybrid-Strictness] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 406) (%3ASLOT-CONSTRAINTS [UAX-1576])) ([Hybrid-SystemBehavior] of %3ASYN-CLASS (%3AClassPredicates "(subAttribute Hybrid-SystemBehavior Transient-SystemBehavior)" "(subAttribute Hybrid-SystemBehavior Periodic-SystemBehavior)") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 343)) ([Hydrogen] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3232) (%3ASLOT-CONSTRAINTS [UAX-1366])) ([Hypothalamus] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2594) (%3ASLOT-CONSTRAINTS [UAX-1094])) ([Ice] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2501) (%3ASLOT-CONSTRAINTS [UAX-1052] [UAX-1053])) ([Icon] of %3ASYN-CLASS (disjoint [LinguisticExpression]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 164)) ([identityElement] of BinaryPredicate (%3Adocumentation "\"An object ?ID is the identity element for BinaryFunction ?FUNCTION just in case, for every instance ?INST, applying ?FUNCTION to ?INST and ?ID results in ?INST.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 545) (%3ASUO-name "identityElement")) ([identityElement_1] of AsymmetricRelation (%3Adocumentation "\"An object ?ID is the identity element for BinaryFunction ?FUNCTION just in case, for every instance ?INST, applying ?FUNCTION to ?INST and ?ID results in ?INST.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 545) (%3ASUO-name "identityElement")) ([identityElement_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0220)\n(=>\n (identityElement ?FUNCTION ?ID)\n (forall (?INST)\n (=>\n (and\n (domain ?FUNCTION 1 ?CLASS)\n (instance ?INST ?CLASS))\n (equal (AssignmentFn ?FUNCTION ?ID ?INST) ?INST))))\n") (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 545) (%3ASUO-name "identityElement")) ([Illuminated] of VisualAttribute (%3Adocumentation "\"The &%Attribute of &%Regions that are illuminated to some degree, i.e. in which some shapes are visually discernable.\"") (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1998) (%3ASUO-name "Illuminated")) ([Image] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 477)) ([ImageFile] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 5)) ([imagenResolution] of BinaryPredicate (%3Adocumentation "\"The degree of sharpness of a displayed or printed image.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 509) (%3ASUO-name "imagenResolution")) ([ImaginaryNumber] of %3ASYN-CLASS (disjoint [RealNumber] [ComplexNumber]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 214) (%3ASLOT-CONSTRAINTS [UAX-0079])) ([ImaginaryPartFn] of UnaryFunction (%3Adocumentation "\"(&%ImaginaryPartFn ?NUMBER) returns the part of ?NUMBER that has the square root of -1 as its factor.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 509) (%3ASUO-name "ImaginaryPartFn")) ([ImaginaryPartFn_1] of TotalValuedRelation (%3Adocumentation "\"(&%ImaginaryPartFn ?NUMBER) returns the part of ?NUMBER that has the square root of -1 as its factor.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 509) (%3ASUO-name "ImaginaryPartFn")) ([ImaginaryPartFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0202)\n(=>\n (instance ?NUMBER ComplexNumber)\n (exists (?PART1 ?PART2)\n (and\n (equal ?PART1 (RealNumberFn ?NUMBER))\n (equal ?PART2 (ImaginaryPartFn ?NUMBER)))))\n") (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 509) (%3ASUO-name "ImaginaryPartFn")) ([Imagining] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2978)) ([ImmediateFamilyFn] of UnaryFunction (%3Adocumentation "\"(&%ImmediateFamilyFn ?PERSON) denotes the immediate family of ?PERSON, i.e. the &%Group consisting of the &%parents of ?PERSON and anyone of whom ?PERSON is a &%parent.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1835) (%3ASUO-name "ImmediateFamilyFn")) ([ImmediateFamilyFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0782)\n(=>\n (and\n (instance ?PERSON Human)\n (equal (ImmediateFamilyFn ?PERSON) ?FAMILY))\n (forall (?MEMBER)\n (<=>\n (member ?MEMBER ?FAMILY)\n (or\n (parent ?MEMBER ?PERSON)\n (parent ?PERSON ?MEMBER)))))\n") (%3ADomain1Type Instance) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1835) (%3ASUO-name "ImmediateFamilyFn")) ([ImmediateFutureFn] of TemporalRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to a short, indeterminate &%TimeInterval that immediately follows the &%TimePosition.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 918) (%3ASUO-name "ImmediateFutureFn")) ([ImmediateFutureFn_1] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to a short, indeterminate &%TimeInterval that immediately follows the &%TimePosition.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 918) (%3ASUO-name "ImmediateFutureFn")) ([ImmediateFutureFn_2] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to a short, indeterminate &%TimeInterval that immediately follows the &%TimePosition.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 918) (%3ASUO-name "ImmediateFutureFn")) ([ImmediateFutureFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0355)\n(=>\n (instance ?INTERVAL TimeInterval)\n (starts (ImmediateFutureFn ?INTERVAL) (FutureFn ?INTERVAL)))\n") (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 918) (%3ASUO-name "ImmediateFutureFn")) ([immediateInstance] of AsymmetricRelation (%3Adocumentation "\"An object is an &%immediateInstance of a &%SetOrClass if it is an instance of the &%SetOrClass and there does not exist a subclass of &%SetOrClass such that it is an instance of the subclass.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 12) (%3ASUO-name "immediateInstance")) ([immediateInstance_1] of IntransitiveRelation (%3Adocumentation "\"An object is an &%immediateInstance of a &%SetOrClass if it is an instance of the &%SetOrClass and there does not exist a subclass of &%SetOrClass such that it is an instance of the subclass.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 12) (%3ASUO-name "immediateInstance")) ([immediateInstance_2] of BinaryPredicate (%3Adocumentation "\"An object is an &%immediateInstance of a &%SetOrClass if it is an instance of the &%SetOrClass and there does not exist a subclass of &%SetOrClass such that it is an instance of the subclass.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 12) (%3ASUO-name "immediateInstance")) ([immediateInstance_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0001)\n(=>\n (immediateInstance ?ENTITY ?CLASS)\n (not (exists (?SUBCLASS)\n (and\n (subclass ?SUBCLASS ?CLASS)\n (instance ?ENTITY ?SUBCLASS)))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [instance_S]) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 12) (%3ASUO-name "immediateInstance")) ([ImmediatePastFn] of TemporalRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to a short, indeterminate &%TimeInterval that immediately precedes the &%TimePosition.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 913) (%3ASUO-name "ImmediatePastFn")) ([ImmediatePastFn_1] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to a short, indeterminate &%TimeInterval that immediately precedes the &%TimePosition.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 913) (%3ASUO-name "ImmediatePastFn")) ([ImmediatePastFn_2] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%TimePosition to a short, indeterminate &%TimeInterval that immediately precedes the &%TimePosition.\"") (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 913) (%3ASUO-name "ImmediatePastFn")) ([ImmediatePastFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0352)\n(=>\n (instance ?INTERVAL TimeInterval)\n (finishes (ImmediatePastFn ?INTERVAL) (PastFn ?INTERVAL)))\n") (%3ADomain1Type Instance) (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 913) (%3ASUO-name "ImmediatePastFn")) ([immediateSubclass] of AsymmetricRelation (%3Adocumentation "\"A &%SetOrClass ?CLASS1 is an &%immediateSubclass of another &%SetOrClass ?CLASS2 just in case ?CLASS1 is a subclass of ?CLASS2 and there is no other subclass of ?CLASS2 such that ?CLASS1 is also a subclass of it.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 18) (%3ASUO-name "immediateSubclass")) ([immediateSubclass_1] of IntransitiveRelation (%3Adocumentation "\"A &%SetOrClass ?CLASS1 is an &%immediateSubclass of another &%SetOrClass ?CLASS2 just in case ?CLASS1 is a subclass of ?CLASS2 and there is no other subclass of ?CLASS2 such that ?CLASS1 is also a subclass of it.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 18) (%3ASUO-name "immediateSubclass")) ([immediateSubclass_2] of BinaryPredicate (%3Adocumentation "\"A &%SetOrClass ?CLASS1 is an &%immediateSubclass of another &%SetOrClass ?CLASS2 just in case ?CLASS1 is a subclass of ?CLASS2 and there is no other subclass of ?CLASS2 such that ?CLASS1 is also a subclass of it.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 18) (%3ASUO-name "immediateSubclass")) ([immediateSubclass_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0004)\n(=>\n (immediateSubclass ?CLASS1 ?CLASS2)\n (not (exists (?CLASS3)\n (and\n (subclass ?CLASS3 ?CLASS2)\n (subclass ?CLASS1 ?CLASS3)\n (not (equal ?CLASS2 ?CLASS3))\n (not (equal ?CLASS1 ?CLASS3))))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [subclass_S]) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 18) (%3ASUO-name "immediateSubclass")) ([Impacting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1247) (%3ASLOT-CONSTRAINTS [UAX-0520])) ([Impelling] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1238)) ([Importance-Strictness] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 402)) ([Inch] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 773) (%3ASLOT-CONSTRAINTS [UAX-0288])) ([Inch_1] of UnitOfMeasure (%3Adocumentation "English length unit of inches.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 773)) ([InchMercury] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3409)) ([InchMercury_1] of UnitOfMeasure (%3Adocumentation "&%InchMercury is a &%UnitOfMeasure for &%barometricPressure. It is used to express the number of inches of mercury supported in a mercurial barometer by the surrounding air pressure.") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3409)) ([income] of TernaryPredicate (%3Adocumentation "\"(&%income ?Agent ?Money ?Period) means that ?Money is the amount of money or its equivalent received during a period of time in exchange for labor or services, from the sale of goods or property, or as profit from financial investments\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3290) (%3ASUO-name "income")) ([income_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class CurrencyMeasure) (%3ADomain2Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3290) (%3ASUO-name "income")) ([incomeEarned] of TernaryPredicate (%3Adocumentation "\"(&%incomeEarned ?Agent ?Money ?Action) means that ?Agent earned the amount of money ?Money from performing ?Action. Note that &%incomeEarned denotes that amount of money made before taxes are deducted.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3291) (%3ASUO-name "incomeEarned")) ([incomeEarned_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-1385)\n(=>\n (incomeEarned ?Agent ?Money ?Activity)\n (agent ?Activity ?Agent))\n") (%3ADomain1Type Instance) (%3ADomain2Class CurrencyMeasure) (%3ADomain2Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3291) (%3ASUO-name "incomeEarned")) ([increasesLikelihood] of ProbabilityRelation (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%increasesLikelihood ?FORMULA1 ?FORMULA2) means that ?FORMULA2 is more likely to be true if ?FORMULA1 is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 294) (%3ASUO-name "increasesLikelihood")) ([increasesLikelihood_1] of BinaryPredicate (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%increasesLikelihood ?FORMULA1 ?FORMULA2) means that ?FORMULA2 is more likely to be true if ?FORMULA1 is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 294) (%3ASUO-name "increasesLikelihood")) ([increasesLikelihood_2] of IrreflexiveRelation (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%increasesLikelihood ?FORMULA1 ?FORMULA2) means that ?FORMULA2 is more likely to be true if ?FORMULA1 is true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 294) (%3ASUO-name "increasesLikelihood")) ([increasesLikelihood_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0100)\n(=>\n (and\n (increasesLikelihood ?FORMULA1 ?FORMULA2)\n (equal (ProbabilityFn ?FORMULA2) ?NUMBER1)\n (conditionalProbability ?FORMULA1 ?FORMULA2 ?NUMBER2))\n (greaterThan ?NUMBER2 ?NUMBER1))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 294) (%3ASUO-name "increasesLikelihood")) ([Increasing] of %3ASYN-CLASS (disjoint [Decreasing]) (relatedInternalConcept [Putting] [WhereFn_S] [WhenFn_S]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1190) (%3ASLOT-CONSTRAINTS [UAX-0497])) ([Independent-TaskRelation] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 361)) ([independentProbability] of ProbabilityRelation (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%independentProbability ?FORMULA1 ?FORMULA2) means that the probabilities of ?FORMULA1 and ?FORMULA2 being true are independent.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 298) (%3ASUO-name "independentProbability")) ([independentProbability_1] of BinaryPredicate (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%independentProbability ?FORMULA1 ?FORMULA2) means that the probabilities of ?FORMULA1 and ?FORMULA2 being true are independent.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 298) (%3ASUO-name "independentProbability")) ([independentProbability_2] of SymmetricRelation (%3Adocumentation "\"One of the basic &%ProbabilityRelations. (&%independentProbability ?FORMULA1 ?FORMULA2) means that the probabilities of ?FORMULA1 and ?FORMULA2 being true are independent.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 298) (%3ASUO-name "independentProbability")) ([independentProbability_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0102)\n(=>\n (and\n (independentProbability ?FORMULA1 ?FORMULA2)\n (equal (ProbabilityFn ?FORMULA2) ?NUMBER1)\n (conditionalProbability ?FORMULA1 ?FORMULA2 ?NUMBER2))\n (equal ?NUMBER2 ?NUMBER1))\n\n(UAX-0103)\n(=>\n (and\n (instance ?FORMULA1 Formula)\n (instance ?FORMULA2 Formula))\n (or\n (increasesLikelihood ?FORMULA1 ?FORMULA2)\n (decreasesLikelihood ?FORMULA1 ?FORMULA2)\n (independentProbability ?FORMULA1 ?FORMULA2)))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 298) (%3ASUO-name "independentProbability")) ([Indicating] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2172)) ([IndustrialPlant] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2796) (%3ASLOT-CONSTRAINTS [UAX-1186] [UAX-1187])) ([Industry] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2760) (%3ASLOT-CONSTRAINTS [UAX-1167])) ([IndustryAttribute] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3653)) ([industryOfArea] of BinaryPredicate (%3Adocumentation "\"(&%industryOfArea ?AREA ?SECTOR) means that the &%GeopoliticalArea ?AREA produces goods or services in the economic area ?SECTOR.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3654) (%3ASUO-name "industryOfArea")) ([industryOfArea_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3654) (%3ASUO-name "industryOfArea")) ([industryProductType] of BinaryPredicate (%3Adocumentation "\"(&%industryProductType ?INDUSTRY ?TYPE) means that organizations with the &%IndustryAttribute ?INDUSTRY produce products of the kind ?TYPE.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3655) (%3ASUO-name "industryProductType")) ([industryProductType_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-1492)\n(=>\n (and\n (instance ?ORG Organization)\n (attribute ?ORG ?INDUSTRY)\n (industryProductType ?INDUSTRY ?TYPE))\n (exists (?EVENT ?ITEM)\n (and\n (instance ?EVENT Making)\n (instance ?ITEM ?TYPE)\n (agent ?EVENT ?ORG)\n (result ?EVENT ?ITEM))))\n") (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3655) (%3ASUO-name "industryProductType")) ([InfantryUnit] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2459)) ([InfiniteQuantity] of %3ASYN-CLASS (disjoint [FiniteQuantity]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2206)) ([InformationMeasure] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 822)) ([Ingesting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1125) (%3ASLOT-CONSTRAINTS [UAX-0466])) ([inhabits] of BinaryPredicate (%3Adocumentation "\"A very basic notion of living within something else. (&%inhabits ?ORGANISM ?OBJECT) means that ?OBJECT is the residence, nest, home, etc. of ?ORGANISM.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1553) (%3ASUO-name "inhabits")) ([inhabits_1] of AsymmetricRelation (%3Adocumentation "\"A very basic notion of living within something else. (&%inhabits ?ORGANISM ?OBJECT) means that ?OBJECT is the residence, nest, home, etc. of ?ORGANISM.\"") (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1553) (%3ASUO-name "inhabits")) ([inhabits_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0665)\n(=>\n (inhabits ?ORGANISM ?OBJ)\n (exists (?TIME)\n (holdsDuring ?TIME (located ?ORGANISM ?OBJ))))\n") (%3ADomain1Type Instance) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1553) (%3ASUO-name "inhabits")) ([InheritableRelation] of %3AClass (%3AisInModule [KIF-core] [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 290)) ([InheritableRelation_1] of Class (%3Adocumentation "\"This is a &%Class of &%Classes. Each &%instance of &%InheritableRelation is a &%subclass of &%Relation whose properties can be inherited downward in the class hierarchy via the &%subrelation &%Predicate.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 290) (%3ASUO-name "InheritableRelation")) ([Inheriting] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2998) (%3ASLOT-CONSTRAINTS [UAX-1279])) ([inhibits] of BinaryPredicate (%3Adocumentation "\"A very general &%Predicate. (&%inhibits ?PROC1 ?PROC2) means that the &%Process ?PROC1 inhibits or hinders the occurrence of the &%Process ?PROC2. For example, obstructing an object inhibits moving it. Note that this is a relation between types of &%Processes, not between instances.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 457) (%3ASUO-name "inhibits")) ([inhibits_1] of IrreflexiveRelation (%3Adocumentation "\"A very general &%Predicate. (&%inhibits ?PROC1 ?PROC2) means that the &%Process ?PROC1 inhibits or hinders the occurrence of the &%Process ?PROC2. For example, obstructing an object inhibits moving it. Note that this is a relation between types of &%Processes, not between instances.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 457) (%3ASUO-name "inhibits")) ([inhibits_S] of %3ASKIF-SLOT (relatedInternalConcept [Decreasing]) (%3AAXIOMS "\n(UAX-0182)\n(=>\n (inhibits ?PROC1 ?PROC2)\n (forall (?TIME ?PLACE)\n (decreasesLikelihood\n (holdsDuring ?TIME (exists (?INST1) (and (instance ?INST1 ?PROC1) (located ?INST1 ?PLACE))))\n (holdsDuring ?TIME (exists (?INST2) (and (instance ?INST2 ?PROC2) (located ?INST2 ?PLACE)))))))\n") (%3ADomain1Type Class) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 457) (%3ASUO-name "inhibits")) ([initialList] of BinaryPredicate (%3Adocumentation "\"(&%initialList ?LIST1 ?LIST2) means that ?LIST1 is a &%subList of ?LIST2 and (&%ListOrderFn ?LIST1 ?NUMBER) returns the same value as (&%ListOrderFn ?LIST2 ?NUMBER) for all of the values of ?NUMBER over which (&%ListOrderFn ?LIST1 ?NUMBER) is defined.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 358) (%3ASUO-name "initialList")) ([initialList_1] of PartialOrderingRelation (%3Adocumentation "\"(&%initialList ?LIST1 ?LIST2) means that ?LIST1 is a &%subList of ?LIST2 and (&%ListOrderFn ?LIST1 ?NUMBER) returns the same value as (&%ListOrderFn ?LIST2 ?NUMBER) for all of the values of ?NUMBER over which (&%ListOrderFn ?LIST1 ?NUMBER) is defined.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 358) (%3ASUO-name "initialList")) ([initialList_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0136)\n(=>\n (initialList ?LIST1 ?LIST2)\n (forall (?NUMBER1 ?NUMBER2)\n (=>\n (and\n (equal (ListLengthFn ?LIST1) ?NUMBER1)\n (lessThanOrEqualTo ?NUMBER2 ?NUMBER1))\n (equal (ListOrderFn ?LIST1 ?NUMBER2) (ListOrderFn ?LIST2 ?NUMBER2)))))\n\n(UAX-0137)\n(=>\n (instance (ListFn @ROW ?ITEM) List)\n (initialList (ListFn @ROW) (ListFn @ROW ?ITEM)))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [subList_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 358) (%3ASUO-name "initialList")) ([InitialNodeFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%GraphArc to the initial node of the &%GraphArc. Note that this is a partial function. In particular, the function is undefined for &%GraphArcs that are not part of a &%DirectedGraph.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 619) (%3ASUO-name "InitialNodeFn")) ([InitialNodeFn_1] of PartialValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%GraphArc to the initial node of the &%GraphArc. Note that this is a partial function. In particular, the function is undefined for &%GraphArcs that are not part of a &%DirectedGraph.\"") (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 619) (%3ASUO-name "InitialNodeFn")) ([InitialNodeFn_S] of %3ASKIF-SLOT (relatedInternalConcept [Repairing]) (%3ADomain1Type Instance) (%3AisInModule [GRAPH_THEORY]) (%3ALOAD-SEQUENCE 619) (%3ASUO-name "InitialNodeFn")) ([InitialProfileFn] of UnaryFunction (%3Adocumentation "\"The function which returns as its value the initial profile of the program, i.e. a report of its execution characteristics.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 324) (%3ASUO-name "InitialProfileFn")) ([Initiation-DesignPattern] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 352) (%3ASLOT-CONSTRAINTS [UAX-1572])) ([Injecting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1234) (%3ASLOT-CONSTRAINTS [UAX-0515])) ([Injuring] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1147) (%3ASLOT-CONSTRAINTS [UAX-0477] [UAX-0478])) ([Inlet] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3433) (%3ASLOT-CONSTRAINTS [UAX-1440] [UAX-1441] [UAX-1442] [UAX-1443])) ([inList] of BinaryPredicate (%3Adocumentation "\"The analog of &%element and &%instance for &%Lists. (&%inList ?OBJ ?LIST) means that ?OBJ is in the &%List ?LIST. For example, (&%inList &%Tuesday (&%ListFn &%Monday &%Tuesday &%Wednesday)) would be true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 353) (%3ASUO-name "inList")) ([inList_1] of IrreflexiveRelation (%3Adocumentation "\"The analog of &%element and &%instance for &%Lists. (&%inList ?OBJ ?LIST) means that ?OBJ is in the &%List ?LIST. For example, (&%inList &%Tuesday (&%ListFn &%Monday &%Tuesday &%Wednesday)) would be true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 353) (%3ASUO-name "inList")) ([inList_2] of AsymmetricRelation (%3Adocumentation "\"The analog of &%element and &%instance for &%Lists. (&%inList ?OBJ ?LIST) means that ?OBJ is in the &%List ?LIST. For example, (&%inList &%Tuesday (&%ListFn &%Monday &%Tuesday &%Wednesday)) would be true.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 353) (%3ASUO-name "inList")) ([inList_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0133)\n(=>\n (inList ?ITEM ?LIST)\n (exists (?NUMBER)\n (equal (ListOrderFn ?LIST ?NUMBER) ?ITEM)))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 353) (%3ASUO-name "inList")) ([inScopeOfInterest] of BinaryPredicate (%3Adocumentation "\"A very general &%Predicate. (&%inScopeOfInterest ?AGENT ?ENTITY) means that ?ENTITY is within the scope of interest of ?AGENT. Note that the interest indicated can be either positive or negative, i.e. the ?AGENT can have an interest in avoiding or promoting ?ENTITY.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 311) (%3ASUO-name "inScopeOfInterest")) ([inScopeOfInterest_1] of IntentionalRelation) ([inScopeOfInterest_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0108)\n(=>\n (and\n (instance ?PROCESS IntentionalProcess)\n (agent ?PROCESS ?AGENT)\n (patient ?PROCESS ?OBJECT))\n (inScopeOfInterest ?AGENT ?OBJECT))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 311) (%3ASUO-name "inScopeOfInterest")) ([Insect] of %3ASYN-CLASS (disjoint [Arachnid] [Myriapod] [Crustacean]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1599)) ([Inserting] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1232) (%3ASLOT-CONSTRAINTS [UAX-0514])) ([Installing] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2968) (%3ASLOT-CONSTRAINTS [UAX-1264] [UAX-1265])) ([instance] of BinaryPredicate (%3Adocumentation "\"An object is an &%instance of a &%SetOrClass if it is included in that &%SetOrClass. An individual may be an instance of many classes, some of which may be subclasses of others. Thus, there is no assumption in the meaning of &%instance about specificity or uniqueness.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 11) (%3ASUO-name "instance")) ([instance_S] of %3ASKIF-SLOT (relatedInternalConcept [Day]) (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 11) (%3ASUO-name "instance")) ([instrument] of CaseRole (%3Adocumentation "\"(instrument ?EVENT ?TOOL) means that ?TOOL is used by an agent in bringing about ?EVENT and that ?TOOL is not changed by ?EVENT. For example, the key is an &%instrument in the following proposition: The key opened the door. Note that &%instrument and &%resource cannot be satisfied by the same ordered pair.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 285) (%3ASUO-name "instrument")) ([Instrument-AbstractionLevel] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 413)) ([instrument_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisaSubrelationOf [patient_S]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 285) (%3ASUO-name "instrument")) ([InstrumentalMusic] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2148) (%3ASLOT-CONSTRAINTS [UAX-0903])) ([InsurancePolicy] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2877)) ([Integer] of %3ASYN-CLASS (partition [OddInteger] [EvenInteger]) (partition2 [NegativeInteger] [NonnegativeInteger]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 224)) ([IntegerSquareRootFn] of UnaryFunction (%3Adocumentation "\"(&%IntegerSquareRootFn ?NUMBER) returns the integer square root of ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 511) (%3ASUO-name "IntegerSquareRootFn")) ([IntegerSquareRootFn_1] of PartialValuedRelation (%3Adocumentation "\"(&%IntegerSquareRootFn ?NUMBER) returns the integer square root of ?NUMBER.\"") (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 511) (%3ASUO-name "IntegerSquareRootFn")) ([IntegerSquareRootFn_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [NUMERIC_FUNCTIONS]) (%3ALOAD-SEQUENCE 511) (%3ASUO-name "IntegerSquareRootFn")) ([IntentionalProcess] of %3ASYN-CLASS (disjoint [AutonomicProcess] [GeologicalProcess] [Dreaming] [Trembling]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1153) (%3ASLOT-CONSTRAINTS [UAX-0481] [UAX-0482] [UAX-0483])) ([IntentionalPsychologicalProcess] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1157)) ([IntentionalRelation] of %3ASKIF-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 303) (%3ASLOT-CONSTRAINTS [UAX-0104])) ([IntentionalRelation_1] of InheritableRelation (%3Adocumentation "\"The &%Class of &%Relations between an &%Agent and one or more &%Entities, where the &%Relation requires that the &%Agent have awareness of the &%Entity.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 303)) ([interestEarned] of TernaryPredicate (%3Adocumentation "\"(&%interestEarned ?Account ?Interest ?Period) means that ?Interest is the amount earned on the &%FinancialAccount ?Account, for the &%TimeInterval ?Period.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3282) (%3ASUO-name "interestEarned")) ([interestEarned_S] of %3ATernarySlot (%3AAXIOMS "\n(UAX-1381)\n(=>\n (and\n (interestEarned ?Account ?Interest ?Time)\n (currentAccountBalance ?Account (BeginFn ?Time) ?Balance))\n (currentAccountBalance ?Account (EndFn ?Time) (AdditionFn ?Balance ?Interest)))\n") (%3ADomain1Type Instance) (%3ADomain2Class CurrencyMeasure) (%3ADomain2Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3282) (%3ASUO-name "interestEarned")) ([interiorPart] of AsymmetricRelation (%3Adocumentation "\"(&%interiorPart ?OBJ1 ?OBJ2) means that ?OBJ1 is part ?OBJ2 and there is no overlap between ?OBJ1 and any &%superficialPart ?OBJ2.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1038) (%3ASUO-name "interiorPart")) ([interiorPart_1] of TransitiveRelation (%3Adocumentation "\"(&%interiorPart ?OBJ1 ?OBJ2) means that ?OBJ1 is part ?OBJ2 and there is no overlap between ?OBJ1 and any &%superficialPart ?OBJ2.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1038) (%3ASUO-name "interiorPart")) ([interiorPart_2] of SpatialRelation (%3Adocumentation "\"(&%interiorPart ?OBJ1 ?OBJ2) means that ?OBJ1 is part ?OBJ2 and there is no overlap between ?OBJ1 and any &%superficialPart ?OBJ2.\"") (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1038) (%3ASUO-name "interiorPart")) ([interiorPart_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0426)\n(=>\n (interiorPart ?OBJ1 ?OBJ2)\n (forall (?PART)\n (=>\n (superficialPart ?PART ?OBJ2)\n (not\n (overlapsSpatially ?OBJ1 ?PART)))))\n") (%3ADomain1Type Instance) (%3AisaSubrelationOf [part_S]) (%3AisInModule [MEREOTOPOLOGY]) (%3ALOAD-SEQUENCE 1038) (%3ASUO-name "interiorPart")) ([InternalAttribute] of %3ASYN-CLASS (disjoint [RelationalAttribute]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 203)) ([InternalChange] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1360) (%3ASLOT-CONSTRAINTS [UAX-0577])) ([Interpreting] of %3ASYN-CLASS (relatedInternalConcept [Reading] [Reading]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1187) (%3ASLOT-CONSTRAINTS [UAX-0496])) ([IntersectionFn] of BinaryFunction (%3Adocumentation "\"A &%BinaryFunction that maps two %SetOrClasses to the intersection of these &%SetOrClasses. An object is an instance of the intersection of two &%SetOrClasses just in case it is an instance of both of those &%SetOrClasses.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 567) (%3ASUO-name "IntersectionFn")) ([IntersectionFn_1] of TotalValuedRelation (%3Adocumentation "\"A &%BinaryFunction that maps two %SetOrClasses to the intersection of these &%SetOrClasses. An object is an instance of the intersection of two &%SetOrClasses just in case it is an instance of both of those &%SetOrClasses.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 567) (%3ASUO-name "IntersectionFn")) ([IntersectionFn_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class SetOrClass) (%3ADomain2Type Instance) (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 567) (%3ASUO-name "IntersectionFn")) ([IntervalFn] of BinaryFunction (%3Adocumentation "\"A &%BinaryFunction that maps two &%ConstantQuantities to the &%Class of &%ConstantQuantities that comprise the interval from the first &%ConstantQuantity to the second &%ConstantQuantity. For example, (&%IntervalFn (&%MeasureFn 8 &%Meter) (&%MeasureFn 14 &%Meter)) would return the &%Class of &%ConstantQuantities between 8 and 14 meters in length.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 676) (%3ASUO-name "IntervalFn")) ([IntervalFn_S] of %3ATernarySlot (relatedInternalConcept [Creation]) (%3AAXIOMS "\n(UAX-0273)\n(<=>\n (instance ?QUANTITY (IntervalFn ?FROM ?TO))\n (and\n (greaterThanOrEqualTo ?QUANTITY ?FROM)\n (lessThanOrEqualTo ?QUANTITY ?TO)))\n") (%3ADomain1Type Instance) (%3ADomain2Class ConstantQuantity) (%3ADomain2Type Instance) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 676) (%3ASUO-name "IntervalFn")) ([IntransitiveRelation] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 274) (%3ASLOT-CONSTRAINTS [UAX-0097])) ([InvalidDeductiveArgument] of %3ASYN-CLASS (disjoint [ValidDeductiveArgument]) (%3AisInModule [QUALITIES]) (%3ALOAD-SEQUENCE 1883)) ([inverse] of BinaryPredicate (%3Adocumentation "\"The inverse of a &%BinaryRelation is a relation in which all the tuples of the original relation are reversed. In other words, one &%BinaryRelation is the inverse of another if they are equivalent when their arguments are swapped.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 14) (%3ASUO-name "inverse")) ([inverse_1] of IrreflexiveRelation (%3Adocumentation "\"The inverse of a &%BinaryRelation is a relation in which all the tuples of the original relation are reversed. In other words, one &%BinaryRelation is the inverse of another if they are equivalent when their arguments are swapped.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 14) (%3ASUO-name "inverse")) ([inverse_2] of IntransitiveRelation (%3Adocumentation "\"The inverse of a &%BinaryRelation is a relation in which all the tuples of the original relation are reversed. In other words, one &%BinaryRelation is the inverse of another if they are equivalent when their arguments are swapped.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 14) (%3ASUO-name "inverse")) ([inverse_3] of SymmetricRelation (%3Adocumentation "\"The inverse of a &%BinaryRelation is a relation in which all the tuples of the original relation are reversed. In other words, one &%BinaryRelation is the inverse of another if they are equivalent when their arguments are swapped.\"") (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 14) (%3ASUO-name "inverse")) ([inverse_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0002)\n(=>\n (inverse ?REL1 ?REL2)\n (forall (?INST1 ?INST2)\n (<=>\n (holds ?REL1 ?INST1 ?INST2)\n (holds ?REL2 ?INST2 ?INST1))))\n") (%3ADomain1Type Instance) (%3AisInModule [STRUCTURAL_ONTOLOGY]) (%3ALOAD-SEQUENCE 14) (%3ASUO-name "inverse")) ([Invertebrate] of %3ASYN-CLASS (disjoint [Vertebrate]) (disjointDecomposition [Worm] [Mollusk] [Arthropod]) (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1593)) ([Investigating] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1401) (%3ASLOT-CONSTRAINTS [UAX-0597] [UAX-0598])) ([Investing] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3351) (%3ASLOT-CONSTRAINTS [UAX-1410])) ([Iodine] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3236) (%3ASLOT-CONSTRAINTS [UAX-1368])) ([IPAddress] of %3ASYN-CLASS (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 167)) ([ipAddressOf] of BinaryPredicate (%3Adocumentation "\"(&%ipAddressOf ?HOST ?ADDRESS) holds if ?ADDRESS is the &%IPAddress of the computer ?HOST.\"") (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 169) (%3ASUO-name "ipAddressOf")) ([ipAddressOf_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [DefaultModule]) (%3ALOAD-SEQUENCE 169) (%3ASUO-name "ipAddressOf")) ([Ireland] of Nation (%3Adocumentation "\"An independent &%Nation that borders on the Irish Sea.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3767) (%3ASUO-name "Ireland")) ([Iron] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3238) (%3ASLOT-CONSTRAINTS [UAX-1369])) ([IrrationalNumber] of %3ASYN-CLASS (disjoint [RationalNumber]) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 217)) ([irreflexiveOn] of BinaryPredicate (%3Adocumentation "\"A &%BinaryRelation is irreflexive on a &%SetOrClass only if no instance of the &%SetOrClass bears the relation to itself.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 398) (%3ASUO-name "irreflexiveOn")) ([irreflexiveOn_1] of AsymmetricRelation (%3Adocumentation "\"A &%BinaryRelation is irreflexive on a &%SetOrClass only if no instance of the &%SetOrClass bears the relation to itself.\"") (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 398) (%3ASUO-name "irreflexiveOn")) ([irreflexiveOn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0154)\n(=>\n (irreflexiveOn ?RELATION ?CLASS)\n (forall (?INST)\n (=>\n (instance ?INST ?CLASS)\n (not\n (holds ?RELATION ?INST ?INST)))))\n") (%3ADomain1Type Instance) (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 398) (%3ASUO-name "irreflexiveOn")) ([IrreflexiveRelation] of %3ASYN-CLASS (%3AisInModule [BASE_ONTOLOGY]) (%3ALOAD-SEQUENCE 262) (%3ASLOT-CONSTRAINTS [UAX-0091])) ([IslamicGovernment] of FormOfGovernment (%3Adocumentation "\"From Mid-Level Ontology used for Ontolog.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3520) (%3ASUO-name "IslamicGovernment")) ([Island] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1534) (%3ASLOT-CONSTRAINTS [UAX-0658] [UAX-0659] [UAX-0660])) ([issuedBy] of BinaryPredicate (%3Adocumentation "\"(&%issuedBy ?Instrument ?Agent) means that a &%FinancialInstrument ?Instrument is produced and offered by ?Agent.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3346) (%3ASUO-name "issuedBy")) ([issuedBy_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3346) (%3ASUO-name "issuedBy")) ([January] of %3ASYN-CLASS (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 942) (%3ASLOT-CONSTRAINTS [UAX-0367] [UAX-0368])) ([Japan] of Nation (%3Adocumentation "\"A large industrialized Asian &%Nation.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3772) (%3ASUO-name "Japan")) ([Japan_1] of Island (%3Adocumentation "\"A large industrialized Asian &%Nation.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3772) (%3ASUO-name "Japan")) ([JoiningAnOrganization] of %3ASYN-CLASS (disjoint [LeavingAnOrganization]) (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1166) (%3ASLOT-CONSTRAINTS [UAX-0488])) ([Joule] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 716)) ([Joule_1] of SystemeInternationalUnit (%3Adocumentation "SI energy measure. Symbol: J. It is the work done when the point of application of 1 &%Newton is displaced a distance of 1 &%Meter in the direction of the force. &%Joule = N*m = m^2*kg*s^(-2).") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 716)) ([Judaism] of BeliefGroup (%3Adocumentation "\"The religion developed among the ancient Hebrews and characterized by belief in one transcendent God who has revealed Himself to Abraham, Moses, and the Hebrew prophets and by a religious life in accordance with Scriptures and rabbinic traditions.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3708) (%3ASUO-name "Judaism")) ([JudicialOrganization] of %3ASYN-CLASS (%3AisInModule [OBJECTS]) (%3ALOAD-SEQUENCE 1861) (%3ASLOT-CONSTRAINTS [UAX-0792])) ([JudicialProcess] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1180) (%3ASLOT-CONSTRAINTS [UAX-0495])) ([JudiciaryFn] of UnaryFunction (%3Adocumentation "\"(&%JudiciaryFn ?AREA) denotes the judicial branch of the &%GeopoliticalArea ?AREA, that is, the &%JudicialOrganization(s) associated with the government of ?AREA, considered as a whole.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3568) (%3ASUO-name "JudiciaryFn")) ([JudiciaryFn_S] of %3ASKIF-SLOT (%3ADomain1Type Instance) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3568) (%3ASUO-name "JudiciaryFn")) ([July] of %3ASYN-CLASS (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 961) (%3ASLOT-CONSTRAINTS [UAX-0380] [UAX-0381])) ([June] of %3ASYN-CLASS (%3AisInModule [TEMPORAL_CONCEPTS]) (%3ALOAD-SEQUENCE 958) (%3ASLOT-CONSTRAINTS [UAX-0378] [UAX-0379])) ([JuniorCollege] of %3ASYN-CLASS (disjoint [University] [College]) (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2870)) ([Jury] of GroupOfPeople (%3AAXIOMS "\n(UAX-1205)\n(=>\n (instance ?JURY Jury)\n (holdsRight (exists (?DECISION)\n (and\n (instance ?DECISION LegalDecision)\n (agent ?DECISION ?JURY))) ?JURY))\n") (%3Adocumentation "\"A &%GroupOfPeople who are given the duty of rendering a verdict with respect to a &%LegalAction.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2836) (%3ASUO-name "Jury")) ([KansasCityMissouri] of AmericanCity (%3Adocumentation "\"A large &%City at the western edge of Missouri.\"") (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3754) (%3ASUO-name "KansasCityMissouri")) ([KappaFn] of BinaryFunction (%3Adocumentation "\"A class-forming operator that takes two arguments: a variable and a formula containing at least one unbound occurrence of the variable. The result of applying &%KappaFn to a variable and a formula is the &%SetOrClass of things that satisfy the formula. For example, we can denote the &%SetOrClass of prime numbers that are less than 100 with the following expression: (KappaFn ?NUMBER (and (instance ?NUMBER PrimeNumber) (lessThan ?NUMBER 100))). Note that the use of this function is discouraged, since there is currently no axiomatic support for it.\"") (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 583) (%3ASUO-name "KappaFn")) ([KappaFn_S] of %3ATernarySlot (%3ADomain1Type Instance) (%3ADomain2Class Formula) (%3ADomain2Type Instance) (%3AisInModule [SET%2FCLASS_THEORY]) (%3ALOAD-SEQUENCE 583) (%3ASUO-name "KappaFn")) ([KAX-001] of %3AKIF-AXIOM (%3APAL-DESCRIPTION "isRestrictedTo allows one to specify that a relation’s values may be restricted when that relation is applied to some subclass of the original domain 1. This can help to make the relation more clear, and may limit the range of necessary inferences. Such restrictions are realized in Protege by modifying the allowed class of a value of a relation at the level of some particular class which is a subclass of the higher-level class on which the relation is defined. This provision in Protege distinguishes between the opt-level definition of a slot and its application at lower levels.\n\n The axiom specifies that when the given relation is asserted on an instance of CLASS1 as argument 1, the argument 2 must bean instance of CLASS2.") (%3APAL-NAME "KAX-001") (%3APAL-STATEMENT "(=>\n (:isRestrictedTo ?REL ?CLASS1 ?CLASS2)\n (forall (?ENT1 ?ENT2)\n (=>\n (and\n (?REL ?ENT1 ?ENT2)\n (instance ?ENT1 ?CLASS1))\n (instance ?ENT2 ?CLASS2))))\n")) ([KAX-002] of %3AKIF-AXIOM (%3APAL-DESCRIPTION ":hasClassValue ?CLASS ?REL ?ENT) is used to assert that every instance of class ?CLASS is related by relation ?REL to some instance ?ENT. The parent class of instance ?ENT must be a subclass of an allowed class for the values of relation ?REL.\n\n This allows one to specify, for example, that all instances of a particular class have a specific property value.") (%3APAL-NAME "KAX-002") (%3APAL-STATEMENT "(=>\n (:hasClassValue ?CLASS ?REL ?VAL)\n (and\n (instance ?REL BinaryPredicate)\n (forall (?INST)\n (=>\n (instance ?INST ?CLASS)\n (?REL ?INST ?VAL)))))\n")) ([KAX-003] of %3AKIF-AXIOM (%3APAL-DESCRIPTION "Unless there is a specific overide at a subclass by another :hasDefaultValue or :hasDefaultValue proposition, (:hasDefaultValue ?REL ?CLASS ?VAL) will assign the value ?VAL to the relation ?REL for every instance of class ?CLASS\n\n\"(:hasDefaultValue ?REL ?CLASS ?VAL) is used to specify that, for every instance of a particular class, the value of the relation ?REL for every instance of class ?CLASS is ?VAL, unless it is overridden by an explicit assignment of the value. In Protege, such overrides can be accomplished by simply changing the value of the instance. For the SKIF files, we need an explicit override relation so that the condition for using the default can be described logically rather than programmatically. The override relation is 'hasClassValue'.\"") (%3APAL-NAME "KAX-003") (%3APAL-STATEMENT "(=>\n (:hasDefaultValue ?CLASS ?REL ?VAL)\n (forall (?INST)\n (=>\n (and\n (instance ?INST ?CLASS)\n (not\n (exists (?CLASS2 ?VAL2)\n (and\n (instance ?INST ?CLASS2)\n (or\n (:hasClassValue ?CLASS2 ?REL ?VAL2)\n (:hasDefaultValue ?CLASS2 ?REL ?VAL2))\n (subclass ?CLASS2 ?CLASS)\n (not (equal ?CLASS2 ?CLASS))\n (not (equal ?VAL2 ?VAL)))))\n (?REL ?INST ?VAL))))\n")) ([KAX-004] of %3AKIF-AXIOM (%3APAL-DESCRIPTION ":hasRestrictedVal is the companion slot to :isRestrictedTo, with args 1 and 2 reversed, so that it is displayed in the class window for arg2 of :isRestrictedTo.") (%3APAL-NAME "KAX-004") (%3APAL-STATEMENT "(<=>\n (:hasRestrictedVal ?CLASS1 ?REL ?CLASS2)\n (:isRestrictedTo ?REL ?CLASS1 ?CLASS2))")) ([KAX-005] of %3AKIF-AXIOM (%3APAL-DESCRIPTION "This axiom specifies the meaning of the :hasValueClass relation -- used to associate a value necessarily with all instance of a class, when the relation has the instance as argument 1 -- the inverse of the relation :hasClassValue, where the value instance is in argument 3.") (%3APAL-NAME "KAX-005") (%3APAL-STATEMENT "(=>\n (:hasValueClass ?VAL ?REL ?CLASS)\n (and\n (instance ?REL BinaryPredicate)\n (forall (?INST)\n (=>\n (instance ?INST ?CLASS)\n (?REL ?VAL ?INST)))))\n")) ([KAX-006] of %3AKIF-AXIOM (%3APAL-DESCRIPTION "defines relation :hasRequiredAttribute.\nWhen every instance of a class has a specific attribute, this relaion will point to the attribute possessed by each instance of the class.") (%3APAL-NAME "KAX-006") (%3APAL-STATEMENT "(=>\n (:hasRequiredAttribute ?CLASS ?ATTRIB)\n (forall (?ENT)\n (=>\n (instance ?ENT ?CLASS)\n (property ?ENT ?ATTRIB))))\n")) ([Keeping] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1321) (%3ASLOT-CONSTRAINTS [UAX-0557] [UAX-0558])) ([KelvinDegree] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 696)) ([KelvinDegree_1] of SystemeInternationalUnit (%3Adocumentation "SI &%TemperatureMeasure. Symbol: K. It is one of the base units in SI (it is also a unit in the ITS system). Kelvin differs from the Celsius scale in that the triple point of water is defined to be 273.16 &%KelvinDegrees while it is 0 &%CelsiusDegrees. The magnitudes of intervals in the two scales are the same. By definition the conversion constant is 273.15.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 696)) ([Key] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2202) (%3ASLOT-CONSTRAINTS [UAX-0924])) ([Kicking] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 2308) (%3ASLOT-CONSTRAINTS [UAX-0969])) ([KIF-core] of %3AModule (%3Adocumentation "SKIF-core is the module to which we assign the base internal concepts of the core Protege Knowledge base, present in the protege file before a SKIF file is loaded. These concpets are not usually exported to an output SKIF file.") (%3ASUO-name "SKIF-core")) ([KIFcore2_00373] of %3ASTANDARD-FACET (%3AASSOCIATED-SLOT [%3ASUO-name])) ([Killing] of %3ASYN-CLASS (%3AisInModule [PROCESSES]) (%3ALOAD-SEQUENCE 1337) (%3ASLOT-CONSTRAINTS [UAX-0565] [UAX-0566] [UAX-0567])) ([KiloByte] of %3ASYN-CLASS (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 826) (%3ASLOT-CONSTRAINTS [UAX-0308])) ([KiloByte_1] of UnitOfMeasure (%3Adocumentation "One &%KiloByte (KB) of information. One &%KiloByte is 1024 &%Bytes. Note that this sense of 'kilo' is different from the one accepted in the SI system.") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 826)) ([KiloFn] of UnaryFunction (%3Adocumentation "\"A &%UnaryFunction that maps a &%UnitOfMeasure into a &%UnitOfMeasure that is equal to 1,000 units of the original &%UnitOfMeasure. For example, (&%KiloFn &%Gram) is 1,000 &%Grams.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 660) (%3ASUO-name "KiloFn")) ([KiloFn_1] of TotalValuedRelation (%3Adocumentation "\"A &%UnaryFunction that maps a &%UnitOfMeasure into a &%UnitOfMeasure that is equal to 1,000 units of the original &%UnitOfMeasure. For example, (&%KiloFn &%Gram) is 1,000 &%Grams.\"") (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 660) (%3ASUO-name "KiloFn")) ([KiloFn_S] of %3ASKIF-SLOT (%3AAXIOMS "\n(UAX-0265)\n(=>\n (instance ?UNIT UnitOfMeasure)\n (equal (KiloFn ?UNIT) (MeasureFn 1000 ?UNIT)))\n") (%3ADomain1Type Instance) (%3AisInModule [UNITS_OF_MEASURE]) (%3ALOAD-SEQUENCE 660) (%3ASUO-name "KiloFn")) ([KilowattHour] of %3ASYN-CLASS (%3AisInModule [MidLevel]) (%3ALOAD-SEQUENCE 3657) (%3ASLOT-CONSTRAINTS [UAX-1493] [UAX-1494])) ([KilowattHour_1] of UnitOfMeasure (%3Adocumentation "&%KilowattHour is a &%UnitOfMeasure for energy that represents 1000 &%Watts (1 kW) of power expended over one hour (1 h) of time.