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  1. Two Dogmas of Empiricism.W. Quine - 1951 - [Longmans, Green].
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  • Reconsidering Logical Positivism.Michael Friedman - 1999 - New York: Cambridge University Press.
    In this collection of essays one of the preeminent philosophers of science writing offers a reinterpretation of the enduring significance of logical positivism, the revolutionary philosophical movement centered around the Vienna Circle in the 1920s and 30s. Michael Friedman argues that the logical positivists were radicals not by presenting a new version of empiricism but rather by offering a new conception of a priori knowledge and its role in empirical knowledge. This collection will be mandatory reading for any philosopher or (...)
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  • Foundations of Space-Time Theories.Michael Friedman - 1987 - Noûs 21 (4):595-601.
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  • (1 other version)A Confutation of Convergent Realism.Larry Laudan - 2001 - In Yuri Balashov & Alexander Rosenberg (eds.), Philosophy of Science: Contemporary Readings. New York: Routledge. pp. 211.
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  • Did Perrin’s Experiments Convert Poincaré to Scientific Realism?Milena Ivanova - 2013 - Hopos: The Journal of the International Society for the History of Philosophy of Science 3 (1):1-19.
    In this paper I argue that Poincaré’s acceptance of the atom does not indicate a shift from instrumentalism to scientific realism. I examine the implications of Poincaré’s acceptance of the existence of the atom for our current understanding of his philosophy of science. Specifically, how can we understand Poincaré’s acceptance of the atom in structural realist terms? I examine his 1912 paper carefully and suggest that it does not entail scientific realism in the sense of acceptance of the fundamental existence (...)
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  • (4 other versions)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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  • Structural realism: The best of both worlds?John Worrall - 1989 - Dialectica 43 (1-2):99-124.
    The no-miracles argument for realism and the pessimistic meta-induction for anti-realism pull in opposite directions. Structural Realism---the position that the mathematical structure of mature science reflects reality---relieves this tension.
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  • (1 other version)A confutation of convergent realism.Larry Laudan - 1981 - Philosophy of Science 48 (1):19-49.
    This essay contains a partial exploration of some key concepts associated with the epistemology of realist philosophies of science. It shows that neither reference nor approximate truth will do the explanatory jobs that realists expect of them. Equally, several widely-held realist theses about the nature of inter-theoretic relations and scientific progress are scrutinized and found wanting. Finally, it is argued that the history of science, far from confirming scientific realism, decisively confutes several extant versions of avowedly 'naturalistic' forms of scientific (...)
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  • Cassirer, Schlick and 'structural' realism: The philosophy of the exact sciences in the background to early logical empiricism.Barry Gower - 2000 - British Journal for the History of Philosophy 8 (1):71 – 106.
    (2000). CASSIRER, SCHLICK AND ‘STRUCTURAL’ REALISM: THE PHILOSOPHY OF THE EXACT SCIENCES IN THE BACKGROUND TO EARLY LOGICAL EMPIRICISM. British Journal for the History of Philosophy: Vol. 8, No. 1, pp. 71-106.
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  • Reconsidering Logical Positivism.Michael Friedman & Alan W. Richardson - 1999 - Tijdschrift Voor Filosofie 62 (1):152-155.
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  • Correspondence, Invariance and Heuristics: In Praise of Conservative Induction.H. R. Post - 1971 - Studies in History and Philosophy of Science Part A 2 (3):213.
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  • Pierre Duhem’s Good Sense as a guide to Theory Choice.Milena Ivanova - 2010 - Studies in History and Philosophy of Science Part A 41 (1):58-64.
    This paper examines Duhem’s concept of good sense as an attempt to support a non rule-governed account of rationality in theory choice. Faced with the underdetermination of theory by evidence thesis and the continuity thesis, Duhem tried to account for the ability of scientists to choose theories that continuously grow to a natural classification. I will examine the concept of good sense and the problems that stem from it. I will also present a recent attempt by David Stump to link (...)
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  • (3 other versions)The intelligibility of the universe.Michael Redhead - 2001 - In Anthony O'Hear (ed.), Philosophy at the New Millennium. Cambridge University Press. pp. 73-90.
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  • (1 other version)Conventionalism in geometry and the interpretation of necessary statements.Max Black - 1942 - Philosophy of Science 9 (4):335-349.
    The statements traditionally labelled “necessary,” among them the valid theorems of mathematics and logic, are identified as “those whose truth is independent of experience.” The “truth” of a necessary statement has to be independent of the truth or falsity of experiential statements; a necessary statement can be neither confirmed nor refuted by empirical tests.The admission of genuinely necessary statements presents the empiricist with a troublesome problem. For an empiricist may be defined, in terms of the current idiom, as one who (...)
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  • Philosophy of Geometry from Riemann to Poincaré.Nicholas Griffin - 1981 - Philosophical Quarterly 31 (125):374.
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  • (2 other versions)Prolegomena to any future metaphysics.Immanuel Kant - 2007 - Journal of Philosophy (16):507-508.
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  • Prolegomena to Any Future Metaphysics. [REVIEW]Robert D. Mack - 1951 - Journal of Philosophy 48 (16):507-508.
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  • Structural Realism: a neo-Kantian perspective.Michela Massimi - 2011 - In Alisa Bokulich & Peter Bokulich (eds.), Scientific Structuralism. Springer Science+Business Media. pp. 1--23.
    Structural realism was born in the attempt to reach a compromise between a realist argument and an antirealist one, namely the ‘no miracle’ ­argument and the ‘pessimistic meta-induction’, respectively. According to the ‘no miracle’ argument, scientific realism is the only philosophy that does not make the success of science a miracle. The only way of explaining why science is so ­successful in making predictions that most of the time turn out to be verified, is to believe that theoretical terms refer, (...)
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  • (1 other version)Philosophy of Geometry from Riemann to Poincaré.Roberto Torretti - 1978 - Revue Philosophique de la France Et de l'Etranger 172 (3):565-572.
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  • (1 other version)Conventionalism: From Poincare to Quine.Yemima Ben-Menahem - 2006 - Cambridge, England: Cambridge University Press.
    The daring idea that convention - human decision - lies at the root both of necessary truths and much of empirical science reverberates through twentieth-century philosophy, constituting a revolution comparable to Kant's Copernican revolution. This book provides a comprehensive study of Conventionalism. Drawing a distinction between two conventionalist theses, the under-determination of science by empirical fact, and the linguistic account of necessity, Yemima Ben-Menahem traces the evolution of both ideas to their origins in Poincaré's geometric conventionalism. She argues that the (...)
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  • (1 other version)Conventionalism and Modern Physics: A Re-Assessment.Robert DiSalle - 2006 - In Emily Carson & Renate Huber (eds.), Intuition and the Axiomatic Method. Springer. pp. 181--211.
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  • Henri Poincaré's philosophy of science.David Stump - 1989 - Studies in History and Philosophy of Science Part A 20 (3):335-363.
    Poincare’s arguments for his thesis of the conventionality of metric depend on a relationalist program for dynamics, not on any general philosophical interpretation of science. I will sketch Poincare’s development of the relationalist program and show that his arguments for the conventionality of metric do not depend on any global strategies such as a general empiricism or Duhemian underdetermination arguments. Poincare’s theory of space, while empirically false, is more philosophically sophisticated than his critics have claimed.
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  • (3 other versions)The Intelligibility of the Universe.Michael Redhead - 2001 - Royal Institute of Philosophy Supplement 48:73-90.
    Hume famously warned us that the ‘[The] ultimate springs and principles are totally shut up from human curiosity and enquiry’. Or, again, Newton: ‘Hitherto I have not been able to discover the cause of these properties of gravity … and I frame no hypotheses.’ Aristotelian science was concerned with just such questions, the specification of occult qualities, the real essences that answer the question What is matter, etc?, the preoccupation with circular definitions such as dormative virtues, and so on. The (...)
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  • (1 other version)Conventionalism.Yemima Ben-Menahem - 2006 - New York: Cambridge University Press.
    The daring idea that convention - human decision - lies at the root of so-called necessary truths, on the one hand, and much of empirical science, on the other, reverberates through twentieth-century philosophy, constituting a revolution comparable to Kant's Copernican revolution. Conventionalism is the first comprehensive study of this radical turn. One of the conclusions it reaches is that the term 'truth by convention', widely held to epitomize conventionalism, reflects a misunderstanding that has led to the association of conventionalism with (...)
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  • Poincaré's thesis of the translatability of euclidean and non-euclidean geometries.David Stump - 1991 - Noûs 25 (5):639-657.
    Poincaré's claim that Euclidean and non-Euclidean geometries are translatable has generally been thought to be based on his introduction of a model to prove the consistency of Lobachevskian geometry and to be equivalent to a claim that Euclidean and non-Euclidean geometries are logically isomorphic axiomatic systems. In contrast to the standard view, I argue that Poincaré's translation thesis has a mathematical, rather than a meta-mathematical basis. The mathematical basis of Poincaré's translation thesis is that the underlying manifolds of Euclidean and (...)
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  • Poincarés philosophy of geometry, or does geometric conventionalism deserve its name?E. G. Zahar - 1997 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 28 (2):183-218.
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  • Miracles and Models: Why reports of the death of Structural Realism may be exaggerated.John Worrall - 2007 - Royal Institute of Philosophy Supplement 61:125-154.
    What is it reasonable to believe about our most successful scientific theories such as the general theory of relativity or quantum mechanics? That they are true, or at any rate approximately true? Or only that they successfully ‘save the phenomena’, by being ‘empirically adequate’? In earlier work I explored the attractions of a view called Structural Scientific Realism (hereafter: SSR). This holds that it is reasonable to believe that our successful theories are (approximately) structurally correct (and also that this is (...)
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  • Convention: Poincaré and some of his critics.Yemima Ben-Menahem - 2001 - British Journal for the Philosophy of Science 52 (3):471-513.
    This paper offers an interpretation of Poincaré's conventionalism, distinguishing it from the Duhem–Quine thesis, on the one hand, and, on the other, from the logical positivist understanding of conventionalism as a general account of necessary truth. It also confronts Poincaré's conventionalism with some counter-arguments that have been influential: Einstein's (general) relativistic argument, and the linguistic rejoinders of Quine and Davidson. In the first section, the distinct roles played by the inter-translatability of different geometries, the inaccessibility of space to direct observation, (...)
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  • (1 other version)Conventionalism and Modern Physics: A Re‐Assessment.Robert Disalle - 2002 - Noûs 36 (2):169–200.
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  • Carnap and Weyl on the foundations of geometry and relativity theory.Michael Friedman - 1995 - Erkenntnis 42 (2):247-260.
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