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  1. The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
  • Metaphysics and measurement.Alexandre Koyré - 1968 - Langhorne, Pa.: Gordon and Breach Science Publishers.
    This collection of six essays centers on Professor Koyre;'s great theme: the relative importance of metaphysics and observation, with controlled experiment a kind of marriage between the two. Professor Koyre;'s thesis might be summed up as a claim that when one is seeking to explain the scientific revolution, attention must be concentrated on the philosophical outlook of the scientist and away from speculative theories. At the time of his death, Alexandre Koyre; was a professor at the Ecole Pratique des Hautes (...)
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  • Entering new fields: Exploratory uses of experimentation.Friedrich Steinle - 1997 - Philosophy of Science 64 (4):74.
    Starting with some illustrative examples, I develop a systematic account of a specific type of experimentation--an experimentation which is not, as in the "standard view", driven by specific theories. It is typically practiced in periods in which no theory or--even more fundamentally--no conceptual framework is readily available. I call it exploratory experimentation and I explicate its systematic guidelines. From the historical examples I argue furthermore that exploratory experimentation may have an immense, but hitherto widely neglected, epistemic significance.
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  • Hunting the White Elephant: When and How did Galileo Discover the Law of Fall?Jürgen Renn, Peter Damerow, Simone Rieger & Domenico Giulini - 2000 - Science in Context 13 (3-4):299-419.
    The ArgumentWe present a number of findings concerning Galileo's major discoveries which question both the methods and the results of dating his achievements by common historiographic criteria. The dating of Galileo's discoveries is, however, not our primary concern. This paper is intended to contribute to a critical reexamination of the notion of discovery from the point of view of historical epistemology. We claim that the puzzling course of Galileo's discoveries is not an exceptional comedy of errors but rather illustrates the (...)
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  • The Hunting of the Quark.Andrew Pickering - 1981 - Isis 72:216-236.
  • The Hunting of the Quark.Andrew Pickering - 1981 - Isis 72 (2):216-236.
  • Galileo. [REVIEW]Ron Naylor - 1977 - British Journal for the History of Science 10 (3):260-261.
  • Galileo: Real Experiment and Didactic Demonstration.Ronald Naylor - 1976 - Isis 67:398-419.
  • Galileo: Real Experiment and Didactic Demonstration.Ronald Naylor - 1976 - Isis 67 (3):398-419.
  • The Structure of Scientific Revolutions.David Bohm - 1964 - Philosophical Quarterly 14 (57):377-379.
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  • Essay Review: Boyle's Industry, Robert Boyle Reconsidered, Robert Boyle Reconsidered, Robert Boyle: By Himself and His Friends; With a Fragment of William Wotton's Lost, the Diffident Naturalist: Robert Boyle and the Philosophy of ExperimentRobert Boyle Reconsidered. Edited by HunterMichael . Pp. xviii + 231. €35.00.Robert Boyle: By Himself and his Friends; with a fragment of William Wotton's lost Life of Boyle. Edited with an introduction by HunterMichael . Pp. x + 304. €49.95.The Diffident Naturalist: Robert Boyle and the Philosophy of Experiment. SargentR.-M. . Pp. xii + 355. 51.95 , 20.95.Rob Iliffe - 1997 - History of Science 35 (4):455-484.
  • Dissecting Trajectories: Galileo's Early Experiments on Projectile Motion and the Law of Fall.David Hill - 1988 - Isis 79:646-668.
  • Representing and Intervening: Introductory Topics in the Philosophy of Natural Science.Jarrett Leplin - 1985 - Philosophy of Science 52 (2):314-315.
  • Representing and Intervening: Introductory Topics in the Philosophy of Natural Science.Davis Baird - 1988 - Noûs 22 (2):299-307.
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  • How Experiments End.Peter Galison - 1988 - British Journal for the Philosophy of Science 39 (3):411-414.
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  • How to design galilean fall experiments in economics.Marcel Boumans - 2003 - Philosophy of Science 70 (2):308-329.
    In the social sciences we hardly can create laboratory conditions, we only can try to find out which kinds of experiments Nature has carried out. Knowledge about Nature's designs can be used to infer conditions for reliable predictions. This problem was explicitly dealt with in Haavelmo's (1944) discussion of autonomous relationships, Friedman's (1953) as-if methodology, and Simon's (1961) discussions of nearly-decomposable systems. All three accounts take Marshallian partitioning as starting point, however not with a sharp ceteris paribus razor but with (...)
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  • Representing and Intervening.Ian Hacking - 1983 - British Journal for the Philosophy of Science 35 (4):381-390.
     
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  • Etudes Galiléennes.Alexandre Koyré - 1939 - Hermann.
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  • La Théorie Physique: Son Objet, Et Sa Structure.Pierre Maurice Marie Duhem - 1997 - Wentworth Press.
    This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work was reproduced from the original artifact, and remains as true to the original work as possible. Therefore, you will see the original copyright references, library stamps (as most of these works have been housed in our most important libraries around the world), and other notations in the work. This work is in the public domain (...)
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  • Metaphysics and Measurement: Essays in the Scientific Revolution.Alexandre Koyré - 1969 - British Journal for the Philosophy of Science 20 (2):180-181.
     
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  • La théorie physique: son objet et sa structure.P. Duhem - 1906 - Revue Philosophique de la France Et de l'Etranger 61:324-327.
     
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  • La théorie physique; son objet, sa structure.P. Duhem - 1904 - Revue de Philosophie 4:387.
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  • How Experiments End.P. Galison - 1990 - Synthese 82 (1):157-162.
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  • La théorie physique, son objet et sa structure.M. Duhem - 1907 - Revue de Métaphysique et de Morale 15 (3):363-376.
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  • La Philosophie Naturelle de Galilée.Maurice Clavelin - 1970 - British Journal for the Philosophy of Science 21 (1):124-125.
     
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