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  1. Knowledge and Belief: An Introduction to the Logic of the Two Notions.Jaakko Hintikka - 1962 - Studia Logica 16:119-122.
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  • Computation and cognition: Issues in the foundation of cognitive science.Zenon W. Pylyshyn - 1980 - Behavioral and Brain Sciences 3 (1):111-32.
    The computational view of mind rests on certain intuitions regarding the fundamental similarity between computation and cognition. We examine some of these intuitions and suggest that they derive from the fact that computers and human organisms are both physical systems whose behavior is correctly described as being governed by rules acting on symbolic representations. Some of the implications of this view are discussed. It is suggested that a fundamental hypothesis of this approach is that there is a natural domain of (...)
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  • (1 other version)Knowledge and the Flow of Information.Fred I. Dretske - 1981 - Revue Philosophique de la France Et de l'Etranger 175 (1):69-70.
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  • (1 other version)Situations and Attitudes.Jon Barwise - 1981 - Journal of Philosophy 78 (11):668.
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  • Universal grammar.Richard Montague - 1970 - Theoria 36 (3):373--398.
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  • Minimal Rationality.Christopher Cherniak - 1988 - Behaviorism 16 (1):89-92.
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  • An assumption-based TMS.Johan de Kleer - 1986 - Artificial Intelligence 28 (2):127-162.
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  • Logic and the complexity of reasoning.Hector J. Levesque - 1988 - Journal of Philosophical Logic 17 (4):355 - 389.
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  • (1 other version)Intensional isomorphism and identity of belief.Alonzo Church - 1954 - Philosophical Studies 5 (5):65 - 73.
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  • Languages with self-reference I: Foundations.Donald Perlis - 1985 - Artificial Intelligence 25 (3):301-322.
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  • Making believers out of computers.Hector J. Levesque - 1986 - Artificial Intelligence 30 (1):81-108.
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  • (1 other version)Logical foundations for belief representation.William J. Rapaport - 1986 - Cognitive Science 10 (4):371-422.
    This essay presents a philosophical and computational theory of the representation of de re, de dicto, nested, and quasi-indexical belief reports expressed in natural language. The propositional Semantic Network Processing System (SNePS) is used for representing and reasoning about these reports. In particular, quasi-indicators (indexical expressions occurring in intentional contexts and representing uses of indicators by another speaker) pose problems for natural-language representation and reasoning systems, because--unlike pure indicators--they cannot be replaced by coreferential NPs without changing the meaning of the (...)
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  • Intensional Concepts in Propositional Semantic Networks.Anthony S. Maida & Stuart C. Shapiro - 1982 - Cognitive Science 6 (4):291-330.
    An integrated statement is made concerning the semantic status of nodes in a propositional semantic network, claiming that such nodes represent only intensions. Within the network, the only reference to extensionality is via a mechanism to assert that two intensions have the same extension in same world. This framework is employed in three application problems to illustrate the nature of its solutions.The formalism used here utilizes only assertional information and no structural, or definitional, information. This restriction corresponds to many of (...)
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  • A syntactic theory of belief and action.Andrew R. Haas - 1986 - Artificial Intelligence 28 (3):245-292.
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  • A Defaultā€Oriented Theory of Procedural Semantics.Robert F. Hadley - 1989 - Cognitive Science 13 (1):107-137.
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  • Making computational sense of Montague's intensional logic.Jerry R. Hobbs & Stanley J. Rosenschein - 1977 - Artificial Intelligence 9 (3):287-306.
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