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  1. Galilean Idealization.Ernan McMullin - 1985 - Studies in History and Philosophy of Science Part A 16 (3):247.
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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.
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  • Representing and Intervening: Introductory Topics in the Philosophy of Natural Science.Ian Hacking - 1983 - New York: Cambridge University Press.
    This 1983 book is a lively and clearly written introduction to the philosophy of natural science, organized around the central theme of scientific realism. It has two parts. 'Representing' deals with the different philosophical accounts of scientific objectivity and the reality of scientific entities. The views of Kuhn, Feyerabend, Lakatos, Putnam, van Fraassen, and others, are all considered. 'Intervening' presents the first sustained treatment of experimental science for many years and uses it to give a new direction to debates about (...)
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  • (4 other versions)The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • (1 other version)The Logic of Scientific Discovery.Karl R. Popper - 1935 - London, England: Routledge.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside _The Open Society and Its Enemies_ as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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  • Thought Experiment: On the Powers and Limits of Imaginary Cases.Tamar Gendler - 2000 - New York: Routledge.
    This book offers a novel analysis of the widely-used but ill-understood technique of thought experiment. The author argues that the powers and limits of this methodology can be traced to the fact that when the contemplation of an imaginary scenario brings us to new knowledge, it does so by forcing us to make sense of exceptional cases.
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  • Explaining Science: A Cognitive Approach by Ronald N. Giere. [REVIEW]Philip Kitcher - 1991 - Journal of Philosophy 88 (3):163-167.
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  • What is the logic of experimental inquiry?Jaakko Hintikka - 1988 - Synthese 74 (2):173-90.
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  • Aspects of Scientific Explanation and Other Essays in the Philosophy of Science.Carl Gustav Hempel - 1965 - New York: The Free Press.
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  • Representing and Intervening: Introductory Topics in the Philosophy of Natural Science.Davis Baird - 1988 - Noûs 22 (2):299-307.
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  • The self-vindication of the laboratory sciences.Ian Hacking - 1992 - In Andrew Pickering (ed.), Science as practice and culture. Chicago: University of Chicago Press. pp. 29--64.
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  • Review: Imaginary Science. [REVIEW]David Gooding - 1994 - British Journal for the Philosophy of Science 45 (4):1029 - 1045.
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  • Imaginary science. [REVIEW]David Gooding - 1994 - British Journal for the Philosophy of Science 45 (4):1029-1045.
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  • (1 other version)Empiricism in Practice: Teleology, Economy, and Observation in Faraday's Physics.David Gooding - 1982 - Isis 73 (1):46-67.
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  • Explaining Science: A Cognitive Approach. [REVIEW]Jeffrey S. Poland - 1988 - Philosophical Review 100 (4):653-656.
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  • Galileo and the indispensability of scientific thought experiment.Tamar Szabó Gendler - 1998 - British Journal for the Philosophy of Science 49 (3):397-424.
    By carefully examining one of the most famous thought experiments in the history of science—that by which Galileo is said to have refuted the Aristotelian theory that heavier bodies fall faster than lighter ones—I attempt to show that thought experiments play a distinctive role in scientific inquiry. Reasoning about particular entities within the context of an imaginary scenario can lead to rationally justified concluusions that—given the same initial information—would not be rationally justifiable on the basis of a straightforward argument.
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  • History, Philosophy, and the Central Metaphor.Peter Galison - 1988 - Science in Context 2 (1):197-212.
    The ArgumentBehind the dispute over the relative priority of theory and experiment lie conflicting philosophical images of the nature of scientific inquiry. One crucial image arose in the 1920s, when the logical positivists agitated for a “unity of science” that would ground all meaningful scientific activity on an observational foundation. Their goals and rhetoric dovetailed with the larger movements of architectural, literary, and philosophical modernism. Historians of science followed the positivists by tracking experimental science as the basis for scientific progress. (...)
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  • (1 other version)Review of H ow Experiments End.Ian Hacking - 1990 - Journal of Philosophy 87 (2):103-106.
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  • Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?Albert Einstein, Boris Podolsky & Nathan Rosen - 1935 - Physical Review (47):777-780.
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  • Die Methode des Gedankenexperiments.Ulrich Kühne - 2005 - Frankfurt am Main: Suhrkamp.
    Ein Gespenst geht um in den Wissenschaften - das Gespenst des Gedankenexperiments. Gedankenexperimente verheißen Erkenntnisgewinn ohne empirische Arbeit - was vor dem Selbstverständnis der modernen Naturwissenschaften jedoch einer Unmöglichkeit gleichkommt. Und doch zieht sich das Forschen mit Gedankenexperimenten wie ein roter Faden durch die lange Tradition in den empirischen Wissenschaften von ihren Anfängen bei Stevin, Galilei und Newton bis heute.
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  • What is Experimental about Thought Experiments?David C. Gooding - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992:280 - 290.
    I argue that thought experiments are a form of experimental reasoning similar to real experiments. They require the same ability to participate by following a narrative as real experiments do. Participation depends in turn on using what we already know to visualize, manipulate and understand what is unfamiliar or problematic. I defend the claim that visualization requires embodiment by an example which shows how tacit understanding of the properties of represented objects and relations enables us to work out how such (...)
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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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  • Die Methode der Physik. [REVIEW]Lewis W. Beck - 1940 - Philosophical Review 49 (4):473-474.
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  • A Function for Thought Experiments.T. Kuhn - 1981 - In David Zaret (ed.), Review of Thomas S. Kuhn The Essential Tension: Selected Studies in Scientific Tradition and Change. Duke University Press. pp. 240-265.
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  • How do Scientists Think? Capturing the Dynamics of Conceptual Change in Science.Nancy Nersessian - 1992 - In R. Giere & H. Feigl (eds.), Cognitive Models of Science. University of Minnesota Press. pp. 3--45.
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  • (4 other versions)The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. Research (...)
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  • The social construction of what?Ian Hacking - 1999 - Cambridge, Mass: Harvard University Press.
    Especially troublesome in this dispute is the status of the natural sciences, and this is where Hacking finds some of his most telling cases, from the conflict ...
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  • (1 other version)The logic of scientific discovery.Karl Raimund Popper - 1934 - New York: Routledge. Edited by Hutchinson Publishing Group.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside The Open Society and Its Enemies as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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  • Nature's capacities and their measurement.Nancy Cartwright - 1989 - New York: Oxford University Press.
    Ever since David Hume, empiricists have barred powers and capacities from nature. In this book Cartwright argues that capacities are essential in our scientific world, and, contrary to empiricist orthodoxy, that they can meet sufficiently strict demands for testability. Econometrics is one discipline where probabilities are used to measure causal capacities, and the technology of modern physics provides several examples of testing capacities (such as lasers). Cartwright concludes by applying the lessons of the book about capacities and probabilities to the (...)
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  • How the laws of physics lie.Nancy Cartwright - 1983 - New York: Oxford University Press.
    In this sequence of philosophical essays about natural science, the author argues that fundamental explanatory laws, the deepest and most admired successes of modern physics, do not in fact describe regularities that exist in nature. Cartwright draws from many real-life examples to propound a novel distinction: that theoretical entities, and the complex and localized laws that describe them, can be interpreted realistically, but the simple unifying laws of basic theory cannot.
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  • Why Thought Experiments Do Not Transcend Empiricism.John D. Norton - 2004 - In Christopher Hitchcock (ed.), Contemporary debates in philosophy of science. Malden, MA: Blackwell. pp. 44-66.
    Thought experiments are ordinary argumentation disguised in a vivid pictorial or narrative form. This account of their nature will allow me to show that empiricism has nothing to fear from thought experiments. They perform no epistemic magic. In so far as they tell us about the world, thought experiments draw upon what we already know of it, either explicitly or tacitly; they then transform that knowledge by disguised argumentation. They can do nothing more epistemically than can argumentation. I defend my (...)
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  • Proofs and pictures.James Robert Brown - 1997 - British Journal for the Philosophy of Science 48 (2):161-180.
    Everyone appreciates a clever mathematical picture, but the prevailing attitude is one of scepticism: diagrams, illustrations, and pictures prove nothing; they are psychologically important and heuristically useful, but only a traditional verbal/symbolic proof provides genuine evidence for a purported theorem. Like some other recent writers (Barwise and Etchemendy [1991]; Shin [1994]; and Giaquinto [1994]) I take a different view and argue, from historical considerations and some striking examples, for a positive evidential role for pictures in mathematics.
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  • Why Thought Experiments are Not Arguments.Michael A. Bishop - 1999 - Philosophy of Science 66 (4):534-541.
    Are thought experiments nothing but arguments? I argue that it is not possible to make sense of the historical trajectory of certain thought experiments if one takes them to be arguments. Einstein and Bohr disagreed about the outcome of the clock-in-the-box thought experiment, and so they reconstructed it using different arguments. This is to be expected whenever scientists disagree about a thought experiment's outcome. Since any such episode consists of two arguments but just one thought experiment, the thought experiment cannot (...)
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  • Erkenntnistheoretische und ontologische probleme der theoretischen begriffe.Marco Buzzoni - 1997 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 28 (1):19-53.
    Operationalism and theoretical entities. The thesis of the“theory ladenness” of observation leads to an antinomy. In order to solve this antinomy a technical operationalism is sketched, according to which theories should in principle not contain anything that cannot be reduced to technical procedures. This implies the rejection of Quine's underdeterminacy thesis and of many views about the theoretical-observational distinction, e.g. neopositivistic views, van Fraassen's view, Sneed-Stegmüller's view. Then I argue for the following theses: 1. All scientific concepts are theory laden (...)
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  • The logic of thought experiments.Martin Bunzl - 1996 - Synthese 106 (2):227 - 240.
    In this paper I argue that (at least many) philosophical thought experiments are unreliable. But I argue that this notion of unreliability has to be understood relative to the goal of thought experiments as knowledge producing. And relative to that goal many thought experiments in science are just as unreliable. But in fact thought experiments in science play a varied role and I will suggest that knowledge production is a goal only under quite limited circumstances. I defend the view that (...)
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  • Thought experiments since the scientific revolution.James Robert Brown - 1986 - International Studies in the Philosophy of Science 1 (1):1 – 15.
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  • On a unified theory of models and thought experiments in natural sciences.Giovanni Boniolo - 1997 - International Studies in the Philosophy of Science 11 (2):121 – 142.
    In this paper a unified theory of models and thought experiments is proposed by considering them as fictions, la Vaihinger. In order to reach this aim, the Hertzian and Botzmannian interpretation of theories as Bilder is reconsidered.
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  • Galileo and prior philosophy.David Atkinson & Jeanne Peijnenburg - 2004 - Studies in History and Philosophy of Science Part A 35 (1):115-136.
    Galileo claimed inconsistency in the Aristotelian dogma concerning falling bodies and stated that all bodies must fall at the same rate. However, there is an empirical situation where the speeds of falling bodies are proportional to their weights; and even in vacuo all bodies do not fall at the same rate under terrestrial conditions. The reason for the deficiency of Galileo’s reasoning is analyzed, and various physical scenarios are described in which Aristotle’s claim is closer to the truth than is (...)
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  • On thought experiments as a priori science.Richard Arthur - 1999 - International Studies in the Philosophy of Science 13 (3):215 – 229.
    Against Norton's claim that all thought experiments can be reduced to explicit arguments, I defend Brown's position that certain thought experiments yield a priori knowledge. They do this, I argue, not by allowing us to perceive “Platonic universals” (Brown), even though they may contain non-propositional components that are epistemically indispensable, but by helping to identify certain tacit presuppositions or “natural interpretations” (Feyerabend's term) that lead to a contradiction when the phenomenon is described in terms of them, and by suggesting a (...)
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  • Data, Instruments and Theory: A Dialectical Approach to Understanding Science. [REVIEW]Ian Hacking - 1987 - Philosophical Review 96 (3):444-447.
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  • (1 other version)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 (...)
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  • HC Ørsted, Immanuel Kant and the thought experiment. [REVIEW]Johannes Witt-Hansen - 1976 - Danish Yearbook of Philosophy 13:48-65.
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  • In and About the World: Philosophical Studies of Science and Technology.Hans Radder - 1996 - State University of New York Press.
    Offers a new approach to a number of central issues concerning the theoretical interpretation and normative evaluation of contemporary science and technology.
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  • 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.
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  • 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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  • Die "Objektivität" sozialwissenschaftlicher und sozialpolitischer Erkenntnis.Max Weber - 1995
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  • (1 other version)Études Galiléennes.Alexandre Koyré - 1939 - Hermann.
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  • Das Experiment: Sein Wesen und seine Geschichte.Hugo Dingler - 2014 - E. Reinhardt.
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  • The Procedural Turn; or, Why Do Thought Experiments Work?David Gooding - 1992 - In R. Giere & H. Feigl (eds.), Cognitive Models of Science. University of Minnesota Press. pp. 45-76.
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  • Data, Instruments, and Theory; A Dialectical Approach to Understanding Science.Robert J. Ackerman - 1987 - British Journal for the Philosophy of Science 38 (3):399-404.
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