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  1. Incommensurability and the discontinuity of evidence.Jed Z. Buchwald & George E. Smith - 2001 - Perspectives on Science 9 (4):463-498.
    Incommensurability between successive scientific theories—the impossibility of empirical evidence dictating the choice between them—was Thomas Kuhn's most controversial proposal. Toward defending it, he directed much effort over his last 30 years into formulating precise conditions under which two theories would be undeniably incommensurable with one another. His first step, in the late 1960s, was to argue that incommensurability must result when two theories involve incompatible taxonomies. The problem he then struggled with, never obtaining a solution that he found entirely satisfactory, (...)
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  • Kuhn’s wrong turning.Alexander Bird - 2002 - Studies in History and Philosophy of Science Part A 33 (3):443-463.
    Why, despite his enormous influence in the latter part of the twentieth century, has Kuhn left no distinctively Kuhnian legacy? I argue that this is because the development of Kuhn’s own thought was in a direction opposite to that of the mainstream of the philosophy of science. In the 1970s and 1980s the philosophy of science took on board the lessons of externalism as regards reference and knowledge, and became more sympathetic to a naturalistic approach to philosophical problems. Kuhn, on (...)
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  • Kuhnian revolutions in developmental biology.Jonathan Bard - 1996 - Bioessays 18 (11):937-937.
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  • A Twentieth-Century Phlogiston: Constructing Error and Differentiating Domains.Douglas Allchin - 1997 - Perspectives on Science 5 (1):81-127.
    In the 1950s–60s biochemists searched intensively for a series of high-energy molecules in the cell. Although we now believe that these molecules do not exist, biochemists claimed to have isolated or identified them on at least sixteen occasions. The episode parallels the familiar eighteenth-century case of phlogiston, in illustrating how error is not simply the loss of facts but, instead, must be actively constructed. In addition, the debates surrounding each case demonstrate how revolutionary-scale disagreement is sometimes resolved by differentiating or (...)
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  • Reflections on the historiography of molecular biology.Horace Freeland Judson - 1980 - Minerva 18 (3):369-421.
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  • Commensurability, Comparability, Communicability.Thomas S. Kuhn - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:669 - 688.
    The author's concept of incommensurability is explicated by elaborating the claim that some terms essential to the formulation of older theories defy translation into the language of more recent ones. Defense of this claim rests on the distinction between interpreting a theory in a later language and translating the theory into it. The former is both possible and essential, the latter neither. The interpretation/translation distinction is then applied to Kitcher's critique of incommensurability and Quine's conception of a translation manual, both (...)
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  • Kuhn's changing concept of incommensurability.Howard Sankey - 1993 - British Journal for the Philosophy of Science 44 (4):759-774.
    Since 1962 Kuhn's concept of incommensurability has undergone a process of transformation. His current account of incommensurability has little in common with his original account of it. Originally, incommensurability was a relation of methodological, observational and conceptual disparity between paradigms. Later Kuhn restricted the notion to the semantical sphere and assimilated it to the indeterminacy of translation. Recently he has developed an account of it as localized translation failure between subsets of terms employed by theories.
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  • The Road Since Structure.Kuhn Thomas (ed.) - 2000 - University of Chicago Press.
    A highly condensed account of the author's present view of some philosophical problems unresolved in The Structure of Scientific Revolutions. The concept of incommensurability, now considerably developed, remains at center stage, but the evolutionary metaphor, introduced in the final pages of the book, now also plays a principal role.
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  • Afterwords.Thomas S. Kuhn - 1993 - In Paul Horwich (ed.), World Changes: Thomas Kuhn and the Nature of Science. MIT Press. pp. 311--41.
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  • The Interrelations between the Philosophy, History and Sociology of Science in Thomas Kuhn‘s Theory of Scientific Development.Paul Hoyningen-Huene - 1992 - British Journal for the Philosophy of Science 43 (4):487-501.
    The paper deals with the interrelations between the philosophy, sociology and historiography of science in Thomas Kuhn’s theory of scientific development. First, the historiography of science provides the basis for both the philosophy and sociology of science in the sense that the fundamental questions of both disciplines depend on the principles of the form of historiography employed. Second, the fusion of the sociology and philosophy of science, as advocated by Kuhn, is discussed. This fusion consists essentially in a replacement of (...)
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  • Rationality and paradigm change in science.Ernan McMullin - 1993 - In Paul Horwich (ed.), World Changes: Thomas Kuhn and the Nature of Science. MIT Press. pp. 55-78.
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  • Mosaic bacterial chromosomes: a challenge en route to a tree of genomes.William Martin - 1999 - Bioessays 21 (2):99-104.
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  • Reflections on my critics.Ts Khn - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press.
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  • More on revolutions in biology.Felix Friedberg & Jan A. Witkowski - 1997 - Bioessays 19 (2):181-182.
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  • Evolution and continuity in scientific change.Dudley Shapere - 1989 - Philosophy of Science 56 (3):419-437.
    The alleged problem of "incommensurability" is examined, and attempts to explain scientific change in terms of concepts of meaning and reference are analyzed and rejected. A way of understanding scientific change through a properly developed concept of "reasons" is presented, and the issues of reasons, meaning, and reference are placed in the context of this broader interpretation of scientific change.
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  • Thomas Kuhn as a historian of science.Stephen G. Brush - 2000 - Science & Education 9 (1-2):39-58.
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  • Reasons, radical change and incommensurability in science.Dudley Shapere - 2001 - In Paul Hoyningen-Huene & Howard Sankey (eds.), Incommensurability and Related Matters. Kluwer Academic Publishers. pp. 181--206.
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  • Kuhn's conception of incommensurability.Paul Hoyningen-Huene - 1990 - Studies in History and Philosophy of Science Part A 21 (3):481-492.
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  • Thomas Kuhn and the problem of social order in science.Barry Barnes - 2002 - In Thomas Nickles (ed.), Thomas Kuhn. New York: Cambridge University Press. pp. 122.
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  • Incommensurability and theory comparison in experimental biology.Marcel Weber - 2002 - Biology and Philosophy 17 (2):155-169.
    Incommensurability of scientific theories, as conceived by Thomas Kuhnand Paul Feyerabend, is thought to be a major or even insurmountable obstacletothe empirical comparison of these theories. I examine this problem in light ofaconcrete case from the history of experimental biology, namely the oxidativephosphorylation controversy in biochemistry (ca. 1961-1977). After a briefhistorical exposition, I show that the two main competing theories which werethe subject of the ox-phos controversy instantiate some of the characteristicfeatures of incommensurable theories, namely translation failure,non-corresponding predictions, and different (...)
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  • (1 other version)Review of the essential tension. [REVIEW]Ian Hacking - 1979 - History and Theory 18:223--36.
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  • The "Revolution in Chemistry and Physics": Overthrow of a Reigning Paradigm or Competition between Contemporary Research Programs?Frederic Holmes - 2000 - Isis 91 (4):735-753.
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  • Two Cultures or One?: A Second Look at Kuhn's The Copernican Revolution.Robert Westman - 1994 - Isis 85 (1):79-115.
    Thomas Kuhn's, book The Copernican Revolution deserves to be regarded as the best of that small group of longue duree histories that mark postwar historiography of science. In many respects, it is probably the single most influential one. Tightly written and brilliantly argued, it is responsible, together with The Structure of Scientific Revolutions, for the continued popularity of the metaphor of revolution in science among scholars and students alike. Yet, surprisingly, while aspects of the story conceived in Kuhn's original account (...)
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  • Kuhnian revolutions in biology: Peter Mitchell and the chemiosmotic theory.Marjori A. Matzke & Antonius J. M. Matzke - 1997 - Bioessays 19 (1):92-93.
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  • Are there 'Kuhnian' revolutions in biology?Adam S. Wilkins - 1996 - Bioessays 18 (9):695-696.
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  • Where is the root of the universal tree of life?Patrick Forterre & Hervé Philippe - 1999 - Bioessays 21 (10):871-879.
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  • Concept formation and commensurability.Nancy J. Nersessian - 2001 - In Paul Hoyningen-Huene & Howard Sankey (eds.), Incommensurability and Related Matters. Kluwer Academic Publishers. pp. 275--301.
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  • Incommensurability and conceptual change during the Copernican revolution.Peter Barker - 2001 - In Paul Hoyningen-Huene & Howard Sankey (eds.), Incommensurability and Related Matters. Kluwer Academic Publishers. pp. 241--273.
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