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  1. Mental models in Galileo’s early mathematization of nature.Paolo Palmieri - 2003 - Studies in History and Philosophy of Science Part A 34 (2):229-264.
  • Thought Experiments in Einstein's Work.John D. Norton - 1982 - In John Norton (ed.).
    Preface: This volume originated in a conference on "The Place of Thought Experiments in Science and Philosophy" which was organized by us and held at the Center for Philosophy of Science at the University of Pittsburgh, April 18-20, 1986. The idea behind this conference was to encourage philosophers and scientists to talk to each other about the role of thought experiments in their various disciplines. These papers were either written for the conference, or were written after it by commentators and (...)
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  • The evidential significance of thought experiment in science.James W. McAllister - 1996 - Studies in History and Philosophy of Science Part A 27 (2):233-250.
  • Thought Experiments in Science and Philosophy.Tamara Horowitz & Gerald J. Massey (eds.) - 1991 - Rowman & Littlefield Publishers.
    Despite their centrality and importance to both science and philosophy, relatively little has been written about thought experiments. This volume brings together a series of extremely interesting studies of the history, mechanics, and applications of this important intellectual resource. A distinguished list of philosophers and scientists consider the role of thought experiments in their various disciplines, and argue that an examination of thought experimentation goes to the heart of both science and philosophy.
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  • Thought Experiments in Science and Philosophy. [REVIEW]James Cargile - 1994 - Philosophy and Phenomenological Research 54 (2):479-482.
    Preface: This volume originated in a conference on "The Place of Thought Experiments in Science and Philosophy" which was organized by us and held at the Center for Philosophy of Science at the University of Pittsburgh, April 18-20, 1986. The idea behind this conference was to encourage philosophers and scientists to talk to each other about the role of thought experiments in their various disciplines. These papers were either written for the conference, or were written after it by commentators and (...)
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  • The Laboratory of the Mind: Thought Experiments in the Natural Sciences.James Robert Brown - 1991 - New York: Routledge.
    Newton's bucket, Einstein's elevator, Schrödinger's cat – these are some of the best-known examples of thought experiments in the natural sciences. But what function do these experiments perform? Are they really experiments at all? Can they help us gain a greater understanding of the natural world? How is it possible that we can learn new things just by thinking? In this revised and updated new edition of his classic text _The Laboratory of the Mind_, James Robert Brown continues to defend (...)
  • Why Thought Experiments Transcend Experience.James Robert Brown - 2004 - In Contemporary Debates in Philosophy of Science. Blackwell. pp. 23-43.
     
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  • Seeing the laws of nature [author's response to Norton, 1993].James Robert Brown - 1993 - Metascience 3:38-40.
     
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  • Seeing the laws of nature.John D. Norton - 1993 - Metascience 3:33-38.
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  • Why Empiricism Won't Work.James Robert Brown - 2004 - In C. Hitchcock (ed.), Contemporary Debates in Philosophy of Science.
    A defence of a priori knowledge of nature via thought experiments. The article is part of a pair, the counter-view argued by John Norton.
     
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  • In the Theoretician's Laboratory: Thought Experimenting as Mental Modeling.Nancy J. Nersessian - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992:291 - 301.
    Thought experiments have played a prominent role in numerous cases of conceptual change in science. I propose that research in cognitive psychology into the role of mental modeling in narrative comprehension can illuminate how and why thought experiments work. In thought experimenting a scientist constructs and manipulates a mental simulation of the experimental situation. During this process, she makes use of inferencing mechanisms, existing representations, and general world knowledge to make realistic transformations from one possible physical state to the next. (...)
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