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  1. Kuhn’s “wrong turning” and legacy today.Yafeng Shan - 2020 - Synthese 197 (1):381-406.
    Alexander Bird indicates that the significance of Thomas Kuhn in the history of philosophy of science is somehow paradoxical. On the one hand, Kuhn was one of the most influential and important philosophers of science in the second half of the twentieth century. On the other hand, nowadays there is little distinctively Kuhn’s legacy in the sense that most of Kuhn’s work has no longer any philosophical significance. Bird argues that the explanation of the paradox of Kuhn’s legacy is that (...)
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  • Scientific revolutions, specialization and the discovery of the structure of DNA: toward a new picture of the development of the sciences.Politi Vincenzo - 2018 - Synthese 195 (5):2267-2293.
    In his late years, Thomas Kuhn became interested in the process of scientific specialization, which does not seem to possess the destructive element that is characteristic of scientific revolutions. It therefore makes sense to investigate whether and how Kuhn’s insights about specialization are consistent with, and actually fit, his model of scientific progress through revolutions. In this paper, I argue that the transition toward a new specialty corresponds to a revolutionary change for the group of scientists involved in such a (...)
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  • Unifying biology: The evolutionary synthesis and evolutionary biology.V. B. Smocovitis - 1992 - Journal of the History of Biology 25 (1):1-65.
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  • Mendelian-Mutationism: The Forgotten Evolutionary Synthesis.Arlin Stoltzfus & Kele Cable - 2014 - Journal of the History of Biology 47 (4):501-546.
    According to a classical narrative, early geneticists, failing to see how Mendelism provides the missing pieces of Darwin’s theory, rejected gradual changes and advocated an implausible yet briefly popular view of evolution-by-mutation; after decades of delay (in which synthesis was prevented by personal conflicts, disciplinary rivalries, and anti-Darwinian animus), Darwinism emerged on a new Mendelian basis. Based on the works of four influential early geneticists – Bateson, de Vries, Morgan and Punnett –, and drawing on recent scholarship, we offer an (...)
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  • The Structure of Scientific Revolutions and its Significance: An Essay Review of the Fiftieth Anniversary Edition. [REVIEW]Alexander Bird - 2012 - British Journal for the Philosophy of Science 63 (4):859-883.
    Kuhn’s Structure of Scientific Revolutions is one of the most cited books of the twentieth century. Its iconic and controversial nature has obscured its message. What did Kuhn really intend with Structure and what is its real significance? -/- 1 Introduction -/- 2 The Central Ideas of Structure -/- 3 The Philosophical Targets of Structure -/- 4 Interpreting and Misinterpreting Structure -/- 4.1 Naturalism -/- 4.2 World-change -/- 4.3 Incommensurability -/- 4.4 Progress and the nature of revolutionary change -/- 4.5 (...)
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  • Second thoughts on paradigms.Thomas Samuel 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. 293--319.
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  • The structure of scientific revolutions.Dudley Shapere - 1964 - Philosophical Review 73 (3):383-394.
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  • The Selfish Gene. [REVIEW]Gunther S. Stent & Richard Dawkins - 1977 - Hastings Center Report 7 (6):33.
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  • Thomas Kuhn, the Image of Science and the Image of Art: The First Manuscript of Structure.J. C. Pinto de Oliveira - 2017 - Perspectives on Science 25 (6):746-765.
    Thomas Kuhn's philosophy of science, which he developed by focusing on physics, was later applied by other authors to virtually all areas or disciplines of culture. What interests me here, however, is the movement in the opposite direction: the role that one of these disciplines, history of art, played in the conception of Kuhn'stheoryof science.In a 1969 article, his only published text concerning science and art, Kuhn makes a brief and intriguing observation about The Structure of Scientific Revolutions. He says (...)
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  • (4 other versions)Evolution: The Modern Synthesis.Julian Huxley - 1944 - Philosophy 19 (73):166-170.
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  • Are there 'Kuhnian' revolutions in biology?Adam S. Wilkins - 1996 - Bioessays 18 (9):695-696.
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  • Positive heuristics in evolutionary biology.Richard E. Michod - 1981 - British Journal for the Philosophy of Science 32 (1):1-36.
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  • (1 other version)The philosophy of history of science of Thomas Kuhn.Alexander Bird - 2012 - Discusiones Filosóficas 13 (21):167 - 185.
    Int his article, I argue that Kuhn was a historicist in two respects. First, he was a conservative in Mannheim’s sense—tradition is important for understanding scientific change, and the evaluation of a scientific idea is relative to historical context. Secondly, Kuhn embraced determinism—there is a pattern to scientific change, akin to laws of scientific development. I show that Kuhn’s determinism requires that he is an internalist about the causes of scientific change; Kuhn’s internal- ism contrasts with the externalism that characterises (...)
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  • (2 other versions)Introduction.James A. Secord - 1993 - British Journal for the History of Science 26 (4):387-389.
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  • Kuhn’s Evolutionary Epistemology and Its Being Undermined by Inadequate Biological Concepts.Barbara Gabriella Renzi - 2009 - Philosophy of Science 76 (2):143-159.
    Kuhn made two attempts at providing an evolutionary analogy for scientific change. The first attempt, in The Structure of Scientific Revolutions , is very brief and unstructured; in this article I discuss some of its weaknesses. Alexander Bird takes this attempt more seriously and provides a criticism based on oversimplified evolutionary assumptions. These assumptions prove to be inadequate for the second, more articulate, evolutionary analogy suggested by Kuhn in “The Road since Structure.” I argue, however, that this second Kuhnian attempt (...)
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  • Thomas Kuhn and the chemical revolution.Paul Hoyningen-Huene - 2008 - Foundations of Chemistry 10 (2):101-115.
    The paper discusses how well Kuhn’s general theory of scientific revolutions fits the particular case of the chemical revolution. To do so, I first present condensed sketches of both Kuhn’s theory and the chemical revolution. I then discuss the beginning of the chemical revolution and compare it to Kuhn’s specific claims about the roles of anomalies, crisis and extraordinary science in scientific development. I proceed by comparing some features of the chemical revolution as a whole to Kuhn’s general account. The (...)
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  • Kuhn, Condorcet, and Comte: On the Justification of the “Old” Historiography of Science.J. C. Pinto de Oliveira - 2020 - Perspectives on Science 28 (3):375-397.
    Despite the importance of the “historiographical revolution” in Kuhn’s work, he did not carry out a specific study about it. Without a systematic investigation into it, he even affirms that the “old” historiography of science (OHS) is unhistorical, suggesting its summary disqualification in the face of his “new historiography” of science (NHS). My wider project, of which this paper is a part, is to better discuss the issue of the justification of the NHS. In this paper, I discuss the justification (...)
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  • The Eclipse of Darwinism: Anti-Darwinian Evolution Theories in the Decades around 1900.Peter J. Bowler - 1984 - Journal of the History of Biology 17 (3):433-434.
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  • Darwin's debt to philosophy: An examination of the influence of the philosophical ideas of John F.W. Herschel and William Whewell on the development of Charles Darwin's theory of evolution.Michael Ruse - 1975 - Studies in History and Philosophy of Science Part A 6 (2):159-181.
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  • The Evolutionary Gene and the Extended Evolutionary Synthesis.Qiaoying Lu & Pierrick Bourrat - 2017 - British Journal for the Philosophy of Science 69 (3):775-800.
    Advocates of an ‘extended evolutionary synthesis’ have claimed that standard evolutionary theory fails to accommodate epigenetic inheritance. The opponents of the extended synthesis argue that the evidence for epigenetic inheritance causing adaptive evolution in nature is insufficient. We suggest that the ambiguity surrounding the conception of the gene represents a background semantic issue in the debate. Starting from Haig’s gene-selectionist framework and Griffiths and Neumann-Held’s notion of the evolutionary gene, we define senses of ‘gene’, ‘environment’, and ‘phenotype’ in a way (...)
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  • Against “Revolution” and “Evolution”.Jonathan Hodge - 2005 - Journal of the History of Biology 38 (1):101-121.
    Those standard historiographic themes of "evolution" and "revolution" need replacing. They perpetuate mid-Victorian scientists' history of science. Historians' history of science does well to take in the long run from the Greek and Hebrew heritages on, and to work at avoiding misleading anachronism and teleology. As an alternative to the usual "evo-revo" themes, a historiography of origins and species, of cosmologies and ontologies, is developed here. The advantages of such a historiography are illustrated by looking briefly at a number of (...)
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  • Darwinism to-Day: A Discussion of Present-Day Scientific Criticism of the Darwinian Selection Theories, together with a Brief Account of the Principal Other Proposed Auxiliary and Alternative Theories of Species- Forming.Vernon L. Kellogg - 1909 - Philosophical Review 18 (1):85-88.
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  • What’s wrong with the modern evolutionary synthesis? A critical reply to Welch.Koen B. Tanghe, Alexis De Tiège, Lieven Pauwels, Stefaan Blancke & Johan Braeckman - 2018 - Biology and Philosophy 33 (3-4):23.
    Welch :263–279, 2017) has recently proposed two possible explanations for why the field of evolutionary biology is plagued by a steady stream of claims that it needs urgent reform. It is either seriously deficient and incapable of incorporating ideas that are new, relevant and plausible or it is not seriously deficient at all but is prone to attracting discontent and to the championing of ideas that are not very relevant, plausible and/or not really new. He argues for the second explanation. (...)
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  • On Aggression.Konrad Lorenz, Robert Ardrey, Desmond Morris & Lionel Tiger - 1971 - Science and Society 35 (2):209-219.
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  • The Growth of Biological Thought: Diversity, Evolution, and Inheritance. [REVIEW]Ernst Mayr - 1985 - Journal of the History of Biology 18 (1):145-153.
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  • The J. H. B. Bookshelf.Peter J. Bowler - 1997 - Journal of the History of Biology 30 (2):303-315.
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  • Synthesis and Selection: Wynne-Edwards' Challenge to David Lack.Mark E. Borrello - 2003 - Journal of the History of Biology 36 (3):531-566.
    David Lack of Oxford University and V. C. Wynne- Edwards of Aberdeen University were renowned ornithologists with contrasting views of the modern synthesis which deeply influenced their interpretation and explanation of bird behavior. In the 1950's and 60's Lack became the chief advocate of neo-Darwinism with respect to avian ecology, while Wynne- Edwards developed his theory of group selection. Lack 's position was consistent with the developing focus on individual level adaptation, which was a core concept of the modern synthesis. (...)
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  • What’s wrong with evolutionary biology?John J. Welch - 2017 - Biology and Philosophy 32 (2):263-279.
    There have been periodic claims that evolutionary biology needs urgent reform, and this article tries to account for the volume and persistence of this discontent. It is argued that a few inescapable properties of the field make it prone to criticisms of predictable kinds, whether or not the criticisms have any merit. For example, the variety of living things and the complexity of evolution make it easy to generate data that seem revolutionary, and lead to disappointment with existing explanatory frameworks. (...)
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  • The Darwinian Revolution, as seen in 1979 and as seen Twenty-Five Years Later in 2004.Michael Ruse - 2005 - Journal of the History of Biology 38 (1):3-17.
    My book, "The Darwinian Revolution" gives an overview of the revolution as understood at the time of its writing (1979). It shows that many factors were involved, from straight science through philosophical methodology, and on to religious influences and challenges. Also of importance were social factors, not the least of which was the professionalization of science in Britain in the 19th century. Since the appearance of that book, new, significant factors have become apparent, and here I discuss some of the (...)
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  • (1 other version)What Kind of Revolution Occurred in Geology?Michael Ruse - 1978 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1978 (2):240-273.
    The one thing upon which we can all agree is that just over ten years ago a major revolution occurred in the science of geology. Geologists switched from accepting a static earth-picture, to endorsing a vision of an earth with its surface constantly in motion. (Cox [4]; Hallam [12]; Marvin [28]; Wilson [56]). It is true that early in this century the German geologist Alfred Wegener argued that the continents as we today find them have “drifted” to their positions from (...)
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  • The Two Cultures of Scholarship?Paula Findlen - 2005 - Isis 96 (2):230-237.
    This essay examines different approaches to writing the history of science in light of the increased importance of microhistorical studies in the past two decades. It specifically examines the role of microhistory within the history of science and the importance of Thomas Kuhn’s concept of the “normal exception” in early methodological statements about the function of microhistory. It also considers the possibilities for writing archivally based history of science for a general readership as a means of bridging the divide between (...)
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  • Writing the history of virology in the twentieth century: Discovery, disciplines, and conceptual change.Pierre-Olivier Méthot - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 59:145-153.
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  • (1 other version)The Non-Kuhnian Nature of the Recent Revolution in the Earth Sciences.Henry Frankel - 1978 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1978 (2):196-214.
    It is without doubt that the earth sciences were rocked to the core by a revolution in the late sixties with the initial acceptance of Harry Hess’s hypothesis of seafloor spreading and subsequent development and acceptance of plate tectonics. The major aim of this essay is to show precisely why this revolution is not Kuhnian. However, my reasons for claiming that Kuhn’s model fails to apply are at variance with Ruse [27] but in much agreement with R. Laudan [18]. I (...)
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  • Neo-Darwinism and Evo-Devo: An Argument for Theoretical Pluralism in Evolutionary Biology.Lindsay R. Craig - 2015 - Perspectives on Science 23 (3):243-279.
    The relatively new field of evolutionary developmental biology continues to attract considerable attention from biologists, philosophers, and historians, in part, because work in this field demonstrates that important changes are underway within biology. Though studies of development and evolution were closely connected during the 19th century, continued work in genetics fostered a general split between the two during the first decades of the twentieth century (e.g., Allen 1978; Gilbert 1978; Mayr and Provine 1980; Gilbert, Opitz and..
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  • The Major Transitions in Evolution.John Maynard Smith & Eörs Szathmáry - 1996 - Journal of the History of Biology 29 (1):151-152.
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