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Kuhnian Revolutions Revisited

Synthese 158 (1):61-73 (2007)

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  1. From Popper to Standpoint Theory: Reason and the Canon.Lydia Patton - 2023 - In Sandra Lapointe & Erich H. Reck (eds.), Historiography and the Formation of Philosophical Canons. New York, NY: Routledge.
    In a famous debate between Thomas Kuhn and Karl Popper, Popper accused Kuhn and Quine of propagating the “Myth of the Framework”: that some broad set of specific background commitments are required for interlocutors to be able to have a fruitful conversation. The Myth of the Framework could be used to argue for a beneficial version of the canon: that training in these shared background commitments allows for the growth of a robust community of inquiry. Popper argues, however, that the (...)
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  • Kuhn and the Discovery of Paradigms.K. Brad Wray - 2011 - Philosophy of the Social Sciences 41 (3):380-397.
    I present a history of Kuhn’s discovery of paradigms, one that takes account of the complexity of the discovery process. Rather than emerging fully formed in Structure , the concept paradigm emerged through a series of phases. Early criticism of Structure revealed that the role of paradigms was unclear. It was only as Kuhn responded to criticism that he finally articulated a precise understanding of the concept paradigm. In a series of publications in the 1970s, he settled on a conception (...)
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  • Revolutions in science, revolutions in chemistry.Jeffrey I. Seeman - 2023 - Foundations of Chemistry 25 (2):321-335.
    Despite decades of research and thought on the meaning and identification of revolutions in science, there is no generally accepted definition for this concept. This paper presents 13 different characteristics that have been used by philosophers and historians of science to characterize revolutions in science, in general, and in chemistry, in particular. These 13 characteristics were clustered into six independent factors. Suggestions are provided as to the use of these characteristics and factors to evaluate historical events as to their possible (...)
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  • Taxonomies, Networks, and Lexicons: A Study of Kuhn’s Post-‘Linguistic Turn’ Philosophy.Vincenzo Politi - 2020 - International Studies in the Philosophy of Science 33 (2):87-103.
    In his mature works, Kuhn abandons the concept of a paradigm and becomes more interested in the analysis of the conceptual structure of scientific theories. These changes are interpreted as resulting from a ‘linguistic turn’ that Kuhn underwent sometimes around the 1980s. Much of the philosophical discussions about Kuhn’s post-‘linguistic turn’ philosophy revolves around his views on taxonomic concepts. Apart from taxonomy, however, the mature Kuhn introduces other concepts, such as conceptual networks and lexicons. This article distinguishes these three concepts (...)
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  • Novelty and revolution in art and science: The connection between Kuhn and Cavell.Vasso Kindi - 2010 - Perspectives on Science 18 (3):284-310.
    Both Kuhn and Cavell acknowledge their indebtedness to each other in their respective books of the 60s. Cavell in (Must We Mean What We Say (1969)) and Kuhn in (The Structure of Scientific Revolutions 1962). They were together at Berkeley where they had both moved in 1956 as assistant professors after their first encounter at the Society of Fellows at Harvard (Kuhn 2000d, p. 197). In Berkeley, Cavell and Kuhn discovered a mutual understanding and an intellectual affinity. They had regular (...)
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  • Incommensurability and the Extended Evolutionary Synthesis: taking Kuhn seriously.Juan Gefaell & Cristian Saborido - 2022 - European Journal for Philosophy of Science 12 (2):1-25.
    In this paper, we analyze the debate between the Modern Synthesis and the Extended Evolutionary Synthesis in light of the concept of incommensurability developed by Thomas Kuhn. In order to do so, first we briefly present both the Modern Synthesis and the Extended Evolutionary Synthesis. Then, we clarify the meaning and interpretations of incommensurability throughout Kuhn’s works, concluding that the version of this concept deployed in The Structure of Scientific Revolutions is the best suited to the analysis of scientific disputes. (...)
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  • Robustness, Reliability, and Overdetermination (1981).William C. Wimsatt - 2012 - In Characterizing the Robustness of Science. pp. 61-78.
    The use of multiple means of determination to “triangulate” on the existence and character of a common phenomenon, object, or result has had a long tradition in science but has seldom been a matter of primary focus. As with many traditions, it is traceable to Aristotle, who valued having multiple explanations of a phenomenon, and it may also be involved in his distinction between special objects of sense and common sensibles. It is implicit though not emphasized in the distinction between (...)
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