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  1. Maxwell's Methodology and his application of it to Electromagnetism.A. F. Chalmers - 1973 - Studies in History and Philosophy of Science Part A 4 (2):107.
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  • A Mathematical Theory of Communication.Claude Elwood Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
    The mathematical theory of communication.
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  • Proofs and refutations: the logic of mathematical discovery.Imre Lakatos (ed.) - 1976 - New York: Cambridge University Press.
    Proofs and Refutations is essential reading for all those interested in the methodology, the philosophy and the history of mathematics. Much of the book takes the form of a discussion between a teacher and his students. They propose various solutions to some mathematical problems and investigate the strengths and weaknesses of these solutions. Their discussion (which mirrors certain real developments in the history of mathematics) raises some philosophical problems and some problems about the nature of mathematical discovery or creativity. Imre (...)
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  • Mathematical foundations of information theory.Aleksandr I͡Akovlevich Khinchin - 1957 - New York,: Dover Publications.
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  • Hertz, Boltzmann and Wittgenstein Reconsidered.Andrew D. Wilson - 1989 - Studies in History and Philosophy of Science Part A 20 (2):245.
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  • Von Mises' definition of random sequences reconsidered.Michiel van Lambalgen - 1987 - Journal of Symbolic Logic 52 (3):725-755.
    We review briefly the attempts to define random sequences. These attempts suggest two theorems: one concerning the number of subsequence selection procedures that transform a random sequence into a random sequence; the other concerning the relationship between definitions of randomness based on subsequence selection and those based on statistical tests.
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  • The axiomatization of randomness.Michiel van Lambalgen - 1990 - Journal of Symbolic Logic 55 (3):1143-1167.
    We present a faithful axiomatization of von Mises' notion of a random sequence, using an abstract independence relation. A byproduct is a quantifier elimination theorem for Friedman's "almost all" quantifier in terms of this independence relation.
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  • Algorithmic information theory.Michiel van Lambalgen - 1989 - Journal of Symbolic Logic 54 (4):1389-1400.
    We present a critical discussion of the claim (most forcefully propounded by Chaitin) that algorithmic information theory sheds new light on Godel's first incompleteness theorem.
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  • A comparison of the meaning and uses of models in mathematics and the empirical sciences.Patrick Suppes - 1960 - Synthese 12 (2-3):287--301.
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  • Models in physics.Michael Redhead - 1980 - British Journal for the Philosophy of Science 31 (2):145-163.
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  • Two Dogmas of Empiricism.W. V. Quine - 1951 - Philosophical Review 60 (1):20-43.
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  • Two Dogmas of Empiricism.Willard V. O. Quine - 1951 - Philosophical Review 60 (1):20–43.
    Modern empiricism has been conditioned in large part by two dogmas. One is a belief in some fundamental cleavage between truths which are analytic, or grounded in meanings independently of matters of fact, and truth which are synthetic, or grounded in fact. The other dogma is reductionism: the belief that each meaningful statement is equivalent to some logical construct upon terms which refer to immediate experience. Both dogmas, I shall argue, are ill founded. One effect of abandoning them is, as (...)
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  • Physical models and biological contexts.Margaret Morrison - 1997 - Philosophy of Science 64 (4):324.
    In addition to its obvious successes within the kinetic theory the ideal gas law and the modeling assumptions associated with it have been used to treat phenomena in domains as diverse as economics and biology. One reason for this is that it is useful to model these systems using aggregates and statistical relationships. The issue I deal with here is the way R. A. Fisher used the model of an ideal gas as a methodological device for examining the causal role (...)
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  • Proofs and Refutations: The Logic of Mathematical Discovery.Daniel Isaacson - 1978 - Philosophical Quarterly 28 (111):169-171.
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  • Der begriff abgeschlossene theorie in der modernen naturwissenschaft.W. Heisenberg - 1948 - Dialectica 2 (3‐4):331-336.
    ZusammenfassungNach einer historischen Übersicht über die Entwicklung der naturwissenschaftlichen Disziplinen in den vergangenen Jahrhunderten wird auseinandergesetzt, dass wir seit der Quantentheorie einige frühere Theorien, wie etwa die Newton'sche Mechanik, als abge‐schlossene Theorien bezeichnen. Der Sinn dieser Begriffsbildung wird besprochen, ebenso die Bedingungen, unter denen eine Theorie als abgeschlossen bezeichnet werden kann.
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  • Modeling in the museum: On the role of Remnant models in the work of Joseph Grinnell. [REVIEW]James R. Griesemer - 1990 - Biology and Philosophy 5 (1):3-36.
    Accounts of the relation between theories and models in biology concentrate on mathematical models. In this paper I consider the dual role of models as representations of natural systems and as a material basis for theorizing. In order to explicate the dual role, I develop the concept of a remnant model, a material entity made from parts of the natural system(s) under study. I present a case study of an important but neglected naturalist, Joseph Grinnell, to illustrate the extent to (...)
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  • On the method of theoretical physics.Albert Einstein - 1934 - Philosophy of Science 1 (2):163-169.
    If you wish to learn from the theoretical physicist anything about the methods which he uses, I would give you the following piece of advice: Don't listen to his words, examine his achievements. For to the discoverer in that field, the constructions of his imagination appear so necessary and so natural that he is apt to treat them not as the creations of his thoughts but as given realities.
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  • Between Rationalism and Empiricism: Selected Papers in the Philosophy of Physics.Erhard Scheibe - 2002 - Springer Verlag.
    Scheibe is one of the most important philosophers of science in Germany. He has written extensively on all the problems that confront the philosophy of physics: rationalism vs. empiricism; reductionism; the foundations of quantum mechanics; space-time, and much more. Since little of his work has been translated into English, he is not yet well known internationally. However, this collection of some 40 of his papers will remedy this unfortunate situation.
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  • Mathematics, science, and epistemology.Imre Lakatos - 1978 - New York: Cambridge University Press. Edited by Gregory Currie & John Worrall.
    Imre Lakatos' philosophical and scientific papers are published here in two volumes. Volume I brings together his very influential but scattered papers on the philosophy of the physical sciences, and includes one important unpublished essay on the effect of Newton's scientific achievement. Volume 2 presents his work on the philosophy of mathematics (much of it unpublished), together with some critical essays on contemporary philosophers of science and some famous polemical writings on political and educational issues.
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  • Die Prinzipien der Mechanik in Neuen Zusammenhange Dargestellt.Heinrich Hertz - 1894 - Barth.
    Excerpt from Die Prinzipien der Mechanik in Neuem Zusammenhange Dargestellt Wahl eines Berufs entschliefsen mufste, wahlte er den des Ingenieurs. Es scheint, dafs die auch in spateren Jahren als ein charakteristischer Grundzug seines Wesens hervor tretende Bescheidenheit ihn an seiner Begabung fur theore tische Wissenschaft zweifeln liefs, und dafs er sich bei der Beschaftigung mit seinen geliebten mechanischen Arbeiten des Erfolges sicherer fuhlte, weil er deren Tragweite schon damals ausreichend verstand. Vielleicht hat ihn auch die in seiner Vaterstadt herrschende, mehr (...)
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  • Models: The Third Dimension of Science.Soraya de Chadarevian & Nick Hopwood - 2006 - Journal of the History of Biology 39 (1):224-226.
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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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  • Logic of discovery in Maxwell's electromagnetic theory.Mary Hesse - 1973 - In Ronald N. Giere & Richard S. Westfall (eds.), Foundations of Scientific Method: The Nineteenth Century. Bloomington: Indiana University Press. pp. 86--114.
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