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  1. How to stop worrying about the frame problem even though it's computationally insoluble.Hubert L. Dreyfus & Stuart E. Dreyfus - 1987 - In Zenon W. Pylyshyn (ed.), The Robot's Dilemma: The Frame Problem in Artificial Intelligence. Ablex. pp. 95--112.
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  • Role of the Frame Problem in Fodor's Modularity Thesis.Eric Dietrich & Chris Fields - 1996 - In Kenneth M. Ford & Zenon W. Pylyshyn (eds.), The Robot's Dilemma Revisited: The Frame Problem in Artificial Intelligence. Ablex.
    It is shown that the Fodor's interpretation of the frame problem is the central indication that his version of the Modularity Thesis is incompatible with computationalism. Since computationalism is far more plausible than this thesis, the latter should be rejected.
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  • (6 other versions)Logic and Conversation.H. P. Grice - 1975 - In Donald Davidson (ed.), The logic of grammar. Encino, Calif.: Dickenson Pub. Co.. pp. 64-75.
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  • (1 other version)Some Philosophical Problems from the Standpoint of Artificial Intelligence.J. McCarthy & P. J. Hayes - 1969 - Machine Intelligence 4:463-502.
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  • Logical Foundations of Probability.Rudolf Carnap - 1950 - Mind 62 (245):86-99.
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  • Intelligence without representation.Rodney A. Brooks - 1991 - Artificial Intelligence 47 (1--3):139-159.
    Artificial intelligence research has foundered on the issue of representation. When intelligence is approached in an incremental manner, with strict reliance on interfacing to the real world through perception and action, reliance on representation disappears. In this paper we outline our approach to incrementally building complete intelligent Creatures. The fundamental decomposition of the intelligent system is not into independent information processing units which must interface with each other via representations. Instead, the intelligent system is decomposed into independent and parallel activity (...)
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  • (2 other versions)An Enquiry Concerning Human Understanding.David Hume - 1901 - The Monist 11:312.
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  • Efficient Induction of Logic Programs.S. Muggleton & C. Feng - 1990 - Turing Institute.
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  • A logic for default reasoning.Ray Reiter - 1980 - Artificial Intelligence 13 (1-2):81-137.
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  • Scientific reasoning: the Bayesian approach.Peter Urbach & Colin Howson - 1993 - Chicago: Open Court. Edited by Peter Urbach.
    Scientific reasoning is—and ought to be—conducted in accordance with the axioms of probability. This Bayesian view—so called because of the central role it accords to a theorem first proved by Thomas Bayes in the late eighteenth ...
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  • (1 other version)Animal intelligence.Edward L. Thorndike - 1899 - Psych Revmonog 8 (2):207-208.
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  • The Robot's Dilemma: The Frame Problem in Artificial Intelligence.Zenon W. Pylyshyn (ed.) - 1987 - Ablex.
    Each of the chapters in this volume devotes considerable attention to defining and elaborating the notion of the frame problem-one of the hard problems of artificial intelligence. Not only do the chapters clarify the problems at hand, they shed light on the different approaches taken by those in artificial intelligence and by certain philosophers who have been concerned with related problems in their field. The book should therefore not be read merely as a discussion of the frame problem narrowly conceived, (...)
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  • The Mathematical Theory of Communication.Claude E. Shannon & Warren Weaver - 1949 - University of Illinois Press.
    Scientific knowledge grows at a phenomenal pace--but few books have had as lasting an impact or played as important a role in our modern world as The Mathematical Theory of Communication, published originally as a paper on communication theory more than fifty years ago. Republished in book form shortly thereafter, it has since gone through four hardcover and sixteen paperback printings. It is a revolutionary work, astounding in its foresight and contemporaneity. The University of Illinois Press is pleased and honored (...)
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  • Statistical explanation & statistical relevance.Wesley C. Salmon - 1971 - [Pittsburgh]: University of Pittsburgh Press. Edited by Richard C. Jeffrey & James G. Greeno.
    Through his S–R model of statistical relevance, Wesley Salmon offers a solution to the scientific explanation of objectively improbable events.
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  • Artificial Intelligence and Scientific Method.Donald Gillies - 1996 - Oxford and New York: Oxford University Press.
    Artificial Intelligence and Scientific Method examines the remarkable advances made in the field of AI over the past twenty years, discussing their profound implications for philosophy. Taking a clear, non-technical approach, Donald Gillies shows how current views on scientific method are challenged by this recent research, and suggests a new framework for the study of logic. Finally, he draws on work by such seminal thinkers as Bacon, Gdel, Popper, Penrose, and Lucas, to address the hotly-contested question of whether computers might (...)
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  • (1 other version)The Robot's Dilemma Revisited: The Frame Problem in Artificial Intelligence.Kenneth M. Ford & Zenon W. Pylyshyn (eds.) - 1996 - Ablex.
    The chapters in this book have evolved from talks originally presented at The First International Workshop on Human and Machine Cognition.
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  • (1 other version)The theory of probability.Hans Reichenbach - 1949 - Berkeley,: University of California Press.
    We must restrict to mere probability not only statements of comparatively great uncertainty, like predictions about the weather, where we would cautiously ...
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  • (2 other versions)An enquiry concerning human understanding.David Hume - 2000 - In Steven M. Cahn (ed.), Exploring Philosophy: An Introductory Anthology. New York, NY, United States of America: Oxford University Press USA. pp. 112.
    David Hume's Enquiry concerning Human Understanding is the definitive statement of the greatest philosopher in the English language. His arguments in support of reasoning from experience, and against the "sophistry and illusion"of religiously inspired philosophical fantasies, caused controversy in the eighteenth century and are strikingly relevant today, when faith and science continue to clash. The Enquiry considers the origin and processes of human thought, reaching the stark conclusion that we can have no ultimate understanding of the physical world, or indeed (...)
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  • The Turing—Good Weight of Evidence Function and Popper's Measure of the Severity of a Test.Donald Gillies - 1990 - British Journal for the Philosophy of Science 41 (1):143-146.
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  • A critique of pure reason.Drew McDermott - 1987 - Computational Intelligence 3:151-60.
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  • The foundations of scientific inference.Wesley C. Salmon - 1967 - [Pittsburgh]: University of Pittsburgh Press.
    Not since Ernest Nagel’s 1939 monograph on the theory of probability has there been a comprehensive elementary survey of the philosophical problems of probablity and induction. This is an authoritative and up-to-date treatment of the subject, and yet it is relatively brief and nontechnical. Hume’s skeptical arguments regarding the justification of induction are taken as a point of departure, and a variety of traditional and contemporary ways of dealing with this problem are considered. The author then sets forth his own (...)
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  • (1 other version)In search of the philosopher's stone: Remarks on Humphreys and Freedman's critique of causal discovery.Kevin B. Korb & Chris S. Wallace - 1997 - British Journal for the Philosophy of Science 48 (4):543-553.
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  • The frame problem: Artificial intelligence meets David Hume.James H. Fetzer - 1990 - International Journal of Expert Systems 3:219-232.
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  • What the frame problem is and isn't.Patrick Hayes - 1987 - In Zenon W. Pylyshyn (ed.), The Robot's Dilemma: The Frame Problem in Artificial Intelligence. Ablex.
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  • An overview of the frame problem.John Haugeland - 1987 - In Zenon W. Pylyshyn (ed.), The Robot's Dilemma: The Frame Problem in Artificial Intelligence. Ablex.
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  • (2 other versions)Statistical explanation.Wesley C. Salmon - 1970 - In Robert G. Colodny (ed.), The Nature and Function of Scientific Theories: Essays in Contemporary Science and Philosophy. University of Pittsburgh Press. pp. 173--231.
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  • A Machine-Oriented Logic based on the Resolution Principle.J. A. Robinson - 1966 - Journal of Symbolic Logic 31 (3):515-516.
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  • Probabilistic causal structure.Kevin B. Korb - 1999 - In Howard Sankey (ed.), Causation and Laws of Nature. Kluwer Academic Publishers. pp. 265--311.
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