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  1. The Logic of Modern Physics.Percy Williams Bridgman - 1927 - New York, NY, USA: Arno Press.
  • Language, truth and logic.Alfred Jules Ayer - 1936 - London,: V. Gollancz.
  • Logic, semantics, metamathematics.Alfred Tarski - 1956 - Oxford,: Clarendon Press. Edited by John Corcoran & J. H. Woodger.
    I ON THE PRIMITIVE TERM OF LOGISTICf IN this article I propose to establish a theorem belonging to logistic concerning some connexions, not widely known, ...
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  • The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
  • Models and Analogies in Science.Mary B. Hesse - 1963 - [Notre Dame, Ind.]: University of Notre Dame Press.
  • Painting as an Art.Joseph Margolis - 1989 - Journal of Aesthetics and Art Criticism 47 (3):281-284.
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  • The structure of ill structured problems.Herbert A. Simon - 1973 - Artificial Intelligence 4 (3-4):181--201.
  • The axiomatization of classical mechanics.Herbert A. Simon - 1954 - Philosophy of Science 21 (4):340-343.
    The purpose of this note is to examine a recent axiomatization of classical particle mechanics, and its relation to an alternative axiomatization I had earlier proposed. A comparison of the two proposals casts some interesting light on the problems of operationalism in classical celestial mechanics.1. Comparison of the Two Axiomatizations. The basic differences between the two proposals arise from the nature of the undefined terms. Both systems take the set of particles, time, and position as primitive notions. Both systems assume (...)
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  • Rational choice and the structure of the environment.Herbert A. Simon - 1956 - Psychological Review 63 (2):129-138.
  • Artificial intelligence: an empirical science.Herbert A. Simon - 1995 - Artificial Intelligence 77 (1):95-127.
  • Herbert A. Simon as a cyborg scientist.Esther-Mirjam Sent - 2000 - Perspectives on Science 8 (4):380-406.
    : This paper discusses how Herbert Simon's initial interest in decision making became transformed into a focus on understanding human problem solving in response to the concrete conditions of the Cold War and the practical goals of the military. In particular, it suggests a connection between the seachange in Simon's interest and his shift in patronage. As a result, Simon is portrayed as a component of the scientific-military World War II cyborg that further evolved during the Cold War. Moving from (...)
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  • Behavior, purpose and teleology.Arturo Rosenblueth, Norbert Wiener & Julian Bigelow - 1943 - Philosophy of Science 10 (1):18-24.
    This essay has two goals. The first is to define the behavioristic study of natural events and to classify behavior. The second is to stress the importance of the concept of purpose.Given any object, relatively abstracted from its surroundings for study, the behavioristic approach consists in the examination of the output of the object and of the relations of this output to the input. By output is meant any change produced in the surroundings by the object. By input, conversely, is (...)
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  • Physical symbol systems.Allen Newell - 1980 - Cognitive Science 4 (2):135-83.
    On the occasion of a first conference on Cognitive Science, it seems appropriate to review the basis of common understanding between the various disciplines. In my estimate, the most fundamental contribution so far of artificial intelligence and computer science to the joint enterprise of cognitive science has been the notion of a physical symbol system, i.e., the concept of a broad class of systems capable of having and manipulating symbols, yet realizable in the physical universe. The notion of symbol so (...)
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  • Elements of a theory of human problem solving.Allen Newell, J. C. Shaw & Herbert A. Simon - 1958 - Psychological Review 65 (3):151-166.
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  • Laudan's Progress and Its ProblemsProgress and Its Problems. Larry Laudan.Ernan McMullin - 1979 - Philosophy of Science 46 (4):623-644.
  • Progress and its Problems: Toward a Theory of Scientific Growth.Larry Laudan - 1977 - University of California Press.
    (This insularity was further promoted by the guileless duplicity of scholars in other fields, who were all too prepared to bequeath "the problem of ...
  • 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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  • The analysis of pictorial style.Jason Gaiger - 2002 - British Journal of Aesthetics 42 (1):20-36.
    Drawing on recent attempts to critically reconstruct the ideas of Heinrich Wölfflin, this paper argues that there is a specific ‘logic of depiction’ that is distinctive to visual as opposed to verbal forms of representation. The aim is to provide a set of objective parameters that can allow a comparative analysis of the formal organization of pictures despite differences in period, subject matter, format, etc. The paper seeks to show that such an analysis is possible and that it possesses explanatory (...)
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  • Informal social communication.Leon Festinger - 1950 - Psychological Review 57 (5):271-282.
  • Models of Herbert A. Simon.Mie Augier - 2000 - Perspectives on Science 8 (4):407-443.
    : The work of Herbert A. Simon has drawn increasing attention from modern scholars who argue that Simon's work changed during the Cold War. This is due to the fact that Simon seemingly changed the substance of his research in the 1950s. This paper argues that Simon did not change in any significant way, but was lead by his interest in decision making and rationality into areas of economics, political science, sociology, psychology, organization theory, and computer science. He used elements (...)
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  • The sciences of the artificial.Herbert Alexander Simon - 1969 - [Cambridge,: M.I.T. Press.
    Continuing his exploration of the organization of complexity and the science of design, this new edition of Herbert Simon's classic work on artificial ...
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  • Reason in Human Affairs.Herbert A. Simon - 1983 - Stanford, Calif.: Stanford University Press.
    What can reason do for us and what can't it do? This is the question examined by Herbert A. Simon, who received the 1978 Nobel Prize in Economic Sciences "for his pioneering work on decision-making processes in economic organizations." The ability to apply reason to the choice of actions is supposed to be one of the defining characteristics of our species. In the first two chapters, the author explores the nature and limits of human reason, comparing and evaluating the major (...)
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  • Computational Philosophy of Science.Paul Thagard - 1988 - MIT Press.
    By applying research in artificial intelligence to problems in the philosophy of science, Paul Thagard develops an exciting new approach to the study of scientific reasoning. This approach uses computational ideas to shed light on how scientific theories are discovered, evaluated, and used in explanations. Thagard describes a detailed computational model of problem solving and discovery that provides a conceptually rich yet rigorous alternative to accounts of scientific knowledge based on formal logic, and he uses it to illuminate such topics (...)
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  • Mental Leaps: Analogy in Creative Thought.Keith J. Holyoak & Paul Thagard - 1995 - MIT Press.
    Keith Holyoak and Paul Thagard provide a unified, comprehensive account of the diverse operations and applications of analogy, including problem solving, ...
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  • Language, Truth, and Logic.A. J. Ayer - 1936 - Philosophy 23 (85):173-176.
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  • Cybernetics.N. Wiener - 1952 - Scientia 46 (87):234.
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  • Models and Analogies in Science.Mary B. Hesse - 1966 - Philosophy and Rhetoric 3 (3):190-191.
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  • The Act of Creation.Arthur Koestler - 1964 - British Journal for the Philosophy of Science 16 (63):255-257.
  • The Logic of Modern Physics.P. W. Bridgman - 1927 - Mind 37 (147):355-361.
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  • Computer Science as Empirical Inquiry: Symbols and Search.Allen Newell & H. A. Simon - 1976 - Communications of the Acm 19:113-126.
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  • Scientific discovery.Pat Langley, Herbert A. Simon, Gary L. Bradshaw & Jan M. Zytkow - 1993 - In Alvin Goldman (ed.), Readings in Philosophy and Cognitive Science. Cambridge: MIT Press.
  • Computer science as empirical inquiry: Symbols and search.Allen Newell & Herbert A. Simon - 1981 - Communications of the Association for Computing Machinery 19:113-26.
  • The Act of Creation: A Study of the Conscious and Unconscious Processes of Humor, Scientific Discovery and Art.A. Koestler - 1964
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  • Cybernetics.Norbert Wiener - 1949 - Philosophy of Science 16 (2):159-160.
     
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  • Axiomatic Foundations of Classical Particle Mechanics.J. C. C. Mckinsey, A. C. Sugar & Patrick Suppes - 1978 - Critica 10 (28):143-148.
  • Computing and cognitive science.Zenon W. Pylyshyn - 1989 - In Michael I. Posner (ed.), Foundations of Cognitive Science. MIT Press.
    influence. One of the principal characteristics that distinguishes Cognitive Science from more traditional studies of cognition within Psychology, is the extent to which it has been influenced by both the ideas and the techniques of computing. It may come as a surprise to the outsider, then, to discover that there is no unanimity within the discipline on either (a) the nature (and in some cases the desireabilty) of the influence and (b) what computing is –- or at least on its.
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