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HotelFrontDesk
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| appearance as argument number 1 |
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| (subclass HotelFrontDesk Organization) | Hotel.kif 1752-1752 | Front desk is a subclass of organization |
| (documentation HotelFrontDesk EnglishLanguage "HotelFrontDesk is a subOrganization of a TravelerAccommodation that takes charge of all CheckInService and CheckOutService transactions. They often do other miscellaneous things too at the request of the hotel guest") | Hotel.kif 1753-1756 | Front desk is a subclass of organization |
| appearance as argument number 2 |
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| (termFormat EnglishLanguage HotelFrontDesk "front desk") | Hotel.kif 1757-1757 |
| antecedent |
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| (=> (instance ?X HotelFrontDesk) (exists (?ORG) (and (attribute ?ORG TravelerAccommodation) (subOrganization ?X ?ORG)))) |
Hotel.kif 1759-1764 | If X is an instance of front desk, then there exists Y such that traveler accommodation is an attribute of Y and X is a part of the organization Y |
| (=> (instance ?X HotelFrontDesk) (hasPurpose ?X (exists (?CHECK) (and (or (instance ?CHECK CheckInService) (instance ?CHECK CheckOutService)) (agent ?CHECK ?X))))) |
Hotel.kif 1766-1774 | If X is an instance of front desk, then X has the purpose there exists Y such that Y is an instance of check-in service or Y is an instance of check-out service and X is an agent of Y |
| consequent |
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| (=> (and (element ?ROOM (PropertyFn ?HOTEL)) (attribute ?ROOM AnnexRoom) (instance ?ROOM HotelRoom)) (exists (?BLDG1 ?BLDG2 ?FRNT) (and (subOrganization ?FRNT ?HOTEL) (instance ?FRNT HotelFrontDesk) (located ?FRNT ?BLDG1) (element ?BLDG1 (PropertyFn ?HOTEL)) (element ?BLDG2 (PropertyFn ?HOTEL)) (part ?ROOM ?BLDG2) (not (equal ?BLDG1 ?BLDG2))))) |
Hotel.kif 1135-1148 | If X is an element of belongings of Y, annex room is an attribute of X, and X is an instance of hotel room, then All of the following hold: (1) there exist Z, W (2) V such that V is a part of the organization Y (3) V is an instance of front desk (4) V is located at Z (5) Z is an element of belongings of Y (6) W is an element of belongings of Y (7) X is a part of W (8) equal Z (9) W |