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  1. (1 other version)Epistemology and Cognition.Fred Dretske - 1988 - Journal of Philosophy 85 (5):265-270.
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  • (2 other versions)Philosophy and the Mirror of Nature.Richard Rorty - 1979 - Revue Philosophique de la France Et de l'Etranger 170 (4):463-464.
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  • (1 other version)Consequences of Pragmatism.Richard Rorty - 1984 - Erkenntnis 21 (3):423-431.
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  • (1 other version)Naturalizing Epistemology.Murray Clarke - 1988 - Philosophy of Science 55 (1):152-153.
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  • Scientific Discovery: Computational Explorations of the Creative Process. Pat Langley, Herbert A. Simon, Gary L. Bradshaw, Jan M. Zytkow.Malcolm R. Forster - 1990 - Philosophy of Science 57 (2):336-338.
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  • (1 other version)Cognitive science and naturalized epistemology: A review of Alvin I. Goldman's Epistemology and Cognition[REVIEW]Gerald W. Glaser - 1989 - Behaviorism 17 (2):161-164.
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  • Stephen P. Stich: The Fragmentation of Reason.Stephen P. Stich - 1991 - Philosophy and Phenomenological Research 51 (1):189-193.
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  • Richard Rorty, Philosophy and the Mirror of Nature[REVIEW]Alvin I. Goldman - 1981 - Philosophical Review 90 (3):424-429.
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  • The Effects of Graduate.Darrin R. Lehman Richard E. Nisbett & Richard O. Lempert - 1993 - In Richard E. Nisbett (ed.), Rules for reasoning. Hillsdale, N.J.: L. Erlbaum Associates.
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  • (1 other version)Variability and Confirmation.Paul R. Thagard & Richard E. Nisbett - 1993 - In Richard E. Nisbett (ed.), Rules for reasoning. Hillsdale, N.J.: L. Erlbaum Associates. pp. 55.
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  • Mechanizing Hypothesis Formation.Bruce G. Buchanan - 1983 - In P. D. Asquith & T. Nickles (eds.), Psa 1982. Philosophy of Science Association. pp. 2--129.
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  • (1 other version)The nature of natural knowledge.Willard V. Quine - 1975 - In Samuel D. Guttenplan (ed.), Mind and language. Oxford [Eng.]: Clarendon Press. pp. 1975--67.
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  • Verbal Dispositions.W. V. O. Quine - 1975 - In Samuel D. Guttenplan (ed.), Mind and language. Oxford [Eng.]: Clarendon Press.
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  • Stephen P Stich: The Fragmentation of Reason: Preface to a Pragmatic Theory of Cognitive Evaluation. [REVIEW]E. J. Lowe - 1992 - Philosophical Quarterly 42 (166):98.
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  • The Processes of Scientific Discovery: The Strategy of Experimentation.Deepak Kulkarni & Herbert A. Simon - 1988 - Cognitive Science 12 (2):139-175.
    Hans Krebs' discovery, in 1932, of the urea cycle was a major event in biochemistry. This article describes a program, KEKADA, which models the heuristics Hans Krebs used in this discovery. KEKADA reacts to surprises, formulates explanations, and carries out experiments in the same manner as the evidence in the form of laboratory notebooks and interviews indicates Hans Krebs did. Furthermore, we answer a number of questions about the nature of the heuristics used by Krebs, in particular: How domain‐specific are (...)
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  • (2 other versions)Epistemology Naturalized.W. V. Quine - 1969 - In Willard Van Orman Quine (ed.), Ontological Relativity and Other Essays. New York: Columbia University Press.
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  • Normative systems of discovery and logic of search.Jan M. Zytkow & Herbert A. Simon - 1988 - Synthese 74 (1):65 - 90.
    New computer systems of discovery create a research program for logic and philosophy of science. These systems consist of inference rules and control knowledge that guide the discovery process. Their paths of discovery are influenced by the available data and the discovery steps coincide with the justification of results. The discovery process can be described in terms of fundamental concepts of artificial intelligence such as heuristic search, and can also be interpreted in terms of logic. The traditional distinction that places (...)
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  • (1 other version)Representation, social practise, and truth.Richard Rorty - 1988 - Philosophical Studies 54 (2):215 - 228.
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  • (2 other versions)Does scientific discovery have a logic?Herbert A. Simon - 1973 - Philosophy of Science 40 (4):471-480.
    It is often claimed that there can be no such thing as a logic of scientific discovery, but only a logic of verification. By 'logic of discovery' is usually meant a normative theory of discovery processes. The claim that such a normative theory is impossible is shown to be incorrect; and two examples are provided of domains where formal processes of varying efficacy for discovering lawfulness can be constructed and compared. The analysis shows how one can treat operationally and formally (...)
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  • The division of cognitive labor.Philip Kitcher - 1990 - Journal of Philosophy 87 (1):5-22.
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  • The naturalists return.Philip Kitcher - 1992 - Philosophical Review 101 (1):53-114.
    This article reviews the transition between post-Fregean anti-naturalistic epistemology and contemporary naturalistic epistemologies. It traces the revival of naturalism to Quine’s critique of the "a priori", and Kuhn’s defense of historicism, and use the arguments of Quine and Kuhn to identify a position, "traditional naturalism", that combines naturalistic themes with the claim that epistemology is a normative enterprise. Pleas for more radical versions of naturalism are articulated, and briefly confronted.
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  • (2 other versions)What is "naturalized epistemology?".Jaegwon Kim - 1988 - Philosophical Perspectives 2:381-405.
    This paper analyzes and evaluates quine's influential thesis that epistemology should become a chapter of empirical psychology. quine's main point, it is argued, is that normativity must be banished from epistemology and, more generally, philosophy. i claim that without a normative concept of justification, we lose the very concept of knowledge, and that belief ascription itself becomes impossible without a normative concept of rationality. further, the supervenience of concepts of epistemic appraisal shows that normative epistemology is indeed possible.
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  • Laboratory Replication of Scientific Discovery Processes.Yulin Qin & Herbert A. Simon - 1990 - Cognitive Science 14 (2):281-312.
    Fourteen subjects were tape‐recorded while they undertook to find a law to summarize numerical data they were given. The source of the data was not identified, nor were the variables labeled semantically. Unknown to the subjects, the data were measurements of the distances of the planets from the sun and the periods of their revolutions about it—equivalent to the data used by Johannes Kepler to discover his third law of planetary motion.Four of the 14 subjects discovered the same law as (...)
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