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What Are Scientific Revolutions?

Center for Cognitive Science, Massachusetts Institute of Technology (1981)

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  1. Is Complexity a Scientific Concept?Paul Taborsky - 2014 - Studies in History and Philosophy of Science Part A 47:51-59.
    Complexity science has proliferated across academic domains in recent years. A question arises as to whether any useful sense of ‘generalized complexity ’ can be abstracted from the various versions of complexity to be found in the literature, and whether it could prove fruitful in a scientific sense. Most attempts at defining complexity center around two kinds of notions: Structural, and temporal or dynamic. Neither of these is able to provide a foundation for the intuitive or generalized notion when taken (...)
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  • Revealing the analytical structure and some intrinsic major difficulties of the contingentist/inevitabilist issue.Léna Soler - 2008 - Studies in History and Philosophy of Science Part A 39 (2):230-241.
    The paper introduces precise definitions of the inevitabilist and contingentist positions. On this basis, it reveals the analytical structure and some inherent difficulties of the contingentist/inevitabilist issue. It then discusses some of these difficulties, relying on the thought-experiment of a ‘divided physics’. Along the way, it investigates the kinds of differences that two alternative physics should present, if they are to give rise to non-benign forms of contingentism.Keywords: Contingency; Inevitabilism; Incommensurability; Theory-comparison; Scientific realism; Constructivism.
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  • El cambio en el concepto de incommensurabilidad de Kuhn.Howard Sankey - 2010 - Cuadernos de Epistemologia 4:11-31.
    El año 1962 vio la introducción, por parte de Kuhn y Feyerabend, de la tesis de la inconmensurabilidad de las teorías científicas . Desde entonces, la tesis ha sido debatida ampliamente y ha atraído muchos críticos. Su influencia aún es considerable, particularmente en las áreas de la historia y la filosofía de la ciencia interesadas en el cambio y la elección de teorías. Esta influencia se debe, en gran medida, a la inmensa popularidad de la obra maestra de Kuhn, La (...)
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  • Scientific revolutions.Thomas Nickles - 2010 - Stanford Encyclopedia of Philosophy.
  • Communication, Rationality, and Conceptual Changes in Scientific Theories.Peter Gärdenfors & Frank Zenker - 2015 - In Peter Gärdenfors & Frank Zenker (eds.), Applications of Conceptual Spaces : the Case for Geometric Knowledge Representation. Cham: Springer Verlag.
    This article outlines how conceptual spaces theory applies to modeling changes of scientific frameworks when these are treated as spatial structures rather than as linguistic entities. The theory is briefly introduced and five types of changes are presented. It is then contrasted with Michael Friedman’s neo-Kantian account that seeks to render Kuhn’s “paradigm shift” as a communicatively rational historical event of conceptual development in the sciences. Like Friedman, we refer to the transition from Newtonian to relativistic mechanics as an example (...)
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  • 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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  • Continuity of Theory Structure: A Conceptual Spaces Approach.Frank Zenker & Peter Gärdenfors - 2016 - International Studies in the Philosophy of Science 30 (4):343-360.
    By understanding laws of nature as geometrical rather than linguistic entities, this paper addresses how to describe theory structures and how to evaluate their continuity. Relying on conceptual spaces as a modelling tool, we focus on the conceptual framework an empirical theory presupposes, thus obtain a geometrical representation of a theory’s structure. We stress the relevance of measurement procedures in separating conceptual from empirical structures. This lets our understanding of scientific laws come closer to scientific practice, and avoids a widely (...)
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  • Method and Continuity in Science.K. Brad Wray - 2016 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 47 (2):363-375.
    Devitt has developed an interesting defense of realism against the threats posed by the Pessimistic Induction and the Argument from Unconceived Alternatives. Devitt argues that the best explanation for the success of our current theories, and the fact that they are superior to the theories they replaced, is that they were developed and tested with the aid of better methods than the methods used to develop and test the many theories that were discarded earlier in the history of science. It (...)
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  • Discarded theories: the role of changing interests.K. Brad Wray - 2019 - Synthese 196 (2):553-569.
    I take another look at the history of science and offer some fresh insights into why the history of science is filled with discarded theories. I argue that the history of science is just as we should expect it to be, given the following two facts about science: theories are always only partial representations of the world, and almost inevitably scientists will be led to investigate phenomena that the accepted theory is not fit to account for. Together these facts suggest (...)
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  • Lines of Descent: Kuhn and Beyond.Friedel Weinert - 2014 - Foundations of Science 19 (4):331-352.
    Thomas S. Kuhn is famous both for his work on the Copernican Revolution and his ‘paradigm’ view of scientific revolutions. But Kuhn later abandoned the notion of paradigm in favour of a more ‘evolutionary’ view of the history of science. Kuhn’s position therefore moved closer to ‘continuity’ models of scientific progress, for instance ‘chain-of-reasoning’ models, originally championed by D. Shapere. The purpose of this paper is to contribute to the debate around Kuhn’s new ‘developmental’ view and to evaluate these competing (...)
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  • Taxonomy, truth-value gaps and incommensurability: a reconstruction of Kuhn's taxonomic interpretation of incommensurability.Xinli Wang - 2002 - Studies in History and Philosophy of Science Part A 33 (3):465-485.
    Kuhn's alleged taxonomic interpretation of incommensurability is grounded on an ill defined notion of untranslatability and is hence radically incomplete. To supplement it, I reconstruct Kuhn's taxonomic interpretation on the basis of a logical-semantic theory of taxonomy, a semantic theory of truth-value, and a truth-value conditional theory of cross-language communication. According to the reconstruction, two scientific languages are incommensurable when core sentences of one language, which have truth values when considered within its own context, lack truth values when considered within (...)
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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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  • Kuhn’s Theory of Incommensurability: A Special Reference to Theory of Meaning.Shabin Varghese - 2021 - Tattva Journal of Philosophy 13 (1):43-61.
    The Structure of Scientific Revolution is the famous work by Thomas Kuhn which challenged traditional understanding of science and philosophy of science. His research activities are wide-ranging; central to his notion of incommensurability are the ideas of meaning variance and lexicon, and the impossibility of translation of terms across different theories. It is closely related to the linguistic analysis of scientific language. The schematic nature of Kuhn’s work and his ongoing clarification of its key concepts fostered additional problems of understanding, (...)
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  • On going native: Thomas Kuhn and anthropological method.John Tresch - 2001 - Philosophy of the Social Sciences 31 (3):302-322.
    In this article, Thomas Kuhn’s theory of incommensurable paradigms learned through exemplars is discussed as a theory of acculturation akin to those of cultural anthropology. Yet his hermeneutic approach results in a classic problem, referred to here as the paradox of objective relativism. A solution, at least for observers of contemporary cultures, is drawn from Kuhn’s own writings: a fieldwork method of “going native.” It is argued that Kuhn’s views are as important a corrective for anthropologists studying native systems of (...)
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  • Genetic Tools, Kuhnean Theoretical Shift and the Geneticization Process.Juan Manuel Torres - 2005 - Medicine, Health Care and Philosophy 9 (1):3-12.
    The growing use of genetic tests in medical practice has a strong influence on some widespread notions of health and unhealth. Two consequences of this phenomenon are: (i) important changes in the meaning of these current notions and, therefore, (ii) the arrival of a new taxonomy or rearrangement for the so-called “health-concepts”. This paper attempts to demonstrate that both facts fuel a theoretical change that might be considered a model of scientific Kuhnean change in a fundamental aspect. On the other (...)
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  • Kuhn’s two accounts of rational disagreement in science: an interpretation and critique.Markus Seidel - 2019 - Synthese 198 (Suppl 25):6023-6051.
    Whereas there is much discussion about Thomas Kuhn’s notion of methodological incommensurability and many have seen his ideas as an attempt to allow for rational disagreement in science, so far no serious analysis of how exactly Kuhn aims to account for rational disagreement has been proposed. This paper provides the first in-depth analysis of Kuhn’s account of rational disagreement in science—an account that can be seen as the most prominent attempt to allow for rational disagreement in science. Three things will (...)
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  • Taxonomic incommensurability.Howard Sankey - 1998 - International Studies in the Philosophy of Science 12 (1):7 – 16.
    In a shift of position that has gone largely unnoticed by the great majority of commentators, Thomas Kuhn's version of the incommensurability thesis underwent a major transformation over the last decade and a half of his life. In his later work, Kuhn argued that incommensurability is a relation of translation failure between local subsets of interdefined theoretical terms, which encapsulate the taxonomic structure of a theory. Incommensurability arises because it is impossible to transfer the natural categories employed within one taxonomic (...)
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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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  • 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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  • Beyond Structure: New Frontiers of the Philosophy of Thomas Kuhn.Vincenzo Politi & Yafeng Shan - 2023 - International Studies in the Philosophy of Science 36 (2):81-86.
    Thomas Kuhn (1922-1996) is widely considered as one of the most important philosophers of science of the 20th century, while his The Structure of Scientific Revolutions (SSR) is regarded as one of the most influential works in the philosophy ofscience. At the same time, however, his place within philosophy of science remains ambiguous. On the one hand, despite the popularity of SSR, there is no proper ‘Kuhnian school of thought’ in HPS. On the other hand, the interest towards Kuhn does (...)
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  • A revolution without tooth and claw—Redefining the physical base units.Wolfgang Pietsch - 2014 - Studies in History and Philosophy of Science Part A 46:85-93.
    A case study is presented of a recent proposal by the major metrology institutes to redefine four of the physical base units, namely kilogram, ampere, mole, and kelvin. The episode shows a number of features that are unusual for progress in an objective science: for example, the progress is not triggered by experimental discoveries or theoretical innovations; also, the new definitions are eventually implemented by means of a voting process. In the philosophical analysis, I will first argue that the episode (...)
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  • The Nature of Scientific Revolutions from the Vantage Point of Chaos Theory.Rocco J. Perla & James Carifio - 2005 - Science & Education 14 (3-5):263-290.
  • Experiment and theory building.Lydia Patton - 2012 - Synthese 184 (3):235-246.
    I examine the role of inference from experiment in theory building. What are the options open to the scientific community when faced with an experimental result that appears to be in conflict with accepted theory? I distinguish, in Laudan's (1977), Nickels's (1981), and Franklin's (1993) sense, between the context of pursuit and the context of justification of a scientific theory. Making this distinction allows for a productive middle position between epistemic realism and constructivism. The decision to pursue a new or (...)
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  • Rediscovering Einstein's legacy: How Einstein anticipates Kuhn and Feyerabend on the nature of science.Eric Oberheim - 2016 - Studies in History and Philosophy of Science Part A 57:17-26.
  • Stepping into the 60s: Tomas Kuhn’s intellectual turn towards the Philosophy of Science.Pablo Melogno & Agustín Courtoisie - 2019 - Daimon: Revista Internacional de Filosofía 76:23-33.
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  • Kuhn's ‘The Natures of Conceptual Change’: the Search for a Theory of Meaning and the Birth of Taxonomies (1980–1994).Pablo Melogno - 2023 - International Studies in the Philosophy of Science 36 (2):87-103.
    This paper examines ‘The Natures of Conceptual Change’, the Notre Dame lectures given by Kuhn in 1980. In particular, I aim to examine the content of these lectures which was not published before. This exegetical task will shed light on the sources of the notion of taxonomy used in these lectures for the first time with the explicit philosophical purposes. It also will shed new light on Kuhn's position regarding the causal theory of reference. Reviewing these archival materials paves the (...)
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  • The Normal and the Revolutionary: Kuhn’s Conversations with Rorty.Juan V. Mayoral - 2023 - International Studies in the Philosophy of Science 36 (2):105-120.
    In this paper I examine Thomas Kuhn’s epistolary and in-person exchanges with Richard Rorty, and their significance to the former’s work on the nature of scientific development during the years 1976–1986. Accordingly, it corresponds to a significant evolution of Kuhn’s thought from the position expounded earlier in The Structure of Scientific Revolutions. These letters show how Kuhn’s philosophy of science evolved towards a greater emphasis on a key aspect of his former work—the nature of ‘the essential tension’—and that his more (...)
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  • Tropes, facts, and empiricism.Daryn Lehoux - 2003 - Perspectives on Science 11 (3):326-345.
    . Once constituted, scientific facts have a way of roaming about on their own in the world, much divorced from the circumstances of their original constitution. An important part of Latour and Woolgar's discussion in Laboratory Life was to draw attention to how facts are used once they are at the final stage of their constitution. What I propose to do here is to go one step further, and to follow a single fact around in the wild—to tag it, as (...)
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  • Scientific change: Philosophical models and historical research.Larry Laudan, Arthur Donovan, Rachel Laudan, Peter Barker, Harold Brown, Jarrett Leplin, Paul Thagard & Steve Wykstra - 1986 - Synthese 69 (2):141 - 223.
  • Bodily and Therapeutic Movement.Anna Louise Langager & Tone Roald - 2018 - Journal of Phenomenological Psychology 49 (1):43-63.
    In this article we present a phenomenological single-case study of a client’s experience of her therapist’s bodily movement in the context of narrative therapy. A client was interviewed regarding her experience of selected bodily movements of the therapist based on a video recording of one of her therapeutic sessions. The movements were analyzed through Maxine Sheets-Johnstone’s cardinal structures of movement while the interview was analyzed through a modification of Giorgi’s method for phenomenological psychology. We focused on the relationship between the (...)
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  • Scientific Revolutions without Paradigm-Replacement and the Coexistence of Competing Paradigms: The Case of Generative Grammar and Construction Grammar. [REVIEW]Stephan Kornmesser - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):91-118.
    In the Kuhnian and Post-Kuhnian Philosophy of Science, it is widely accepted that scientific revolutions always involve the replacement of an old paradigm by a new paradigm. This article attempts to refute this assumption by showing that there are paradigm-constellations that conform to the relation of a scientific revolution in a Kuhnian sense without a paradigm-replacement occurring. The paradigms investigated here are the linguistic paradigms of Generative Grammar and Construction Grammar that, contrary to Kuhn’s conception of a sequence of paradigm-replacements, (...)
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  • Carnap and Kuhn: Arch enemies or close allies?Gürol Irzik & Teo Grünberg - 1995 - British Journal for the Philosophy of Science 46 (3):285-307.
    We compare Carnap's and Kuhn's views on science. Although there are important differences between them, the similarities are striking. The basis for the latter is a pragmatically oriented semantic conventionalist picture of science, which suggests that the view that post-positivist philosophy of science constitutes a radical revolution which has no interesting affinities with logical positivism must be seriously mistaken.
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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.
  • Theory change as dimensional change: conceptual spaces applied to the dynamics of empirical theories.Peter Gärdenfors & Frank Zenker - 2013 - Synthese 190 (6):1039-1058.
    This paper offers a novel way of reconstructing conceptual change in empirical theories. Changes occur in terms of the structure of the dimensions—that is to say, the conceptual spaces—underlying the conceptual framework within which a given theory is formulated. Five types of changes are identified: (1) addition or deletion of special laws, (2) change in scale or metric, (3) change in the importance of dimensions, (4) change in the separability of dimensions, and (5) addition or deletion of dimensions. Given this (...)
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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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  • The Ethical Nature of Karl Popper’s Solution to the Problem of Rationality.Stefano Gattei - 2002 - Philosophy of the Social Sciences 32 (2):240-266.
  • Review of C. Koopman, Pragmatism as Transition. Historicity and Hope in James, Dewey, and Rorty. [REVIEW]Roberto Frega - 2009 - European Journal of Pragmatism and American Philosophy 1 (1).
    Koopman’s book revolves around the notion of transition, which he proposes is one of the central ideas of the pragmatist tradition but one which had not previously been fully articulated yet nevertheless shapes the pragmatist attitude in philosophy. Transition, according to Koopman, denotes “those temporal structures and historical shapes in virtue of which we get from here to there”. One of the consequences of transitionalism is the understanding of critique and inquiry as historical pro...
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  • Kuhn on Incommensurability and Theory Choice.Alex Davies - 2013 - Studies in History and Philosophy of Science Part A 44 (4):571-579.
    The incommensurability of two theories seems to problematize theory comparisons, which allow for the selection of the better of the two theories. If so, it becomes puzzling how the quality of theories can improve with time, i.e. how science can progress across changes in incommensurable theories. I argue that in papers published in the 1990s, Kuhn provided a novel way to resolve this apparent tension between incommensurability and scientific progress. He put forward an account of their compatibility which worked not (...)
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  • Kuhnian issues, scientific revolutions and the history of mathematics.Leo Corry - 1993 - Studies in History and Philosophy of Science Part A 24 (1):95-117.
  • Transforming temporal knowledge: Conceptual change between event concepts.Xiang Chen - 2005 - Perspectives on Science 13 (1):49-73.
    : This paper offers a preliminary analysis of conceptual change between event concepts. It begins with a brief review of the major findings of cognitive studies on event knowledge. The script model proposed by Schank and Abelson was the first attempt to represent event knowledge. Subsequent cognitive studies indicated that event knowledge is organized in the form of dimensional organizations in which temporally successive actions are related causally. This paper proposes a frame representation to capture and outline the internal structure (...)
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  • Thomas Kuhn‘s Latest Notion of Incommensurability.Xiang Chen - 1997 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 28 (2):257-273.
    To correct the misconception that incommensurability implies incomparability, Kuhn lately develops a new interpretation of incommensurability. This includes a linguistic theory of scientific revolutions (the theory of kinds), a cognitive exploration of the language learning process (the analogy of bilingualism), and an epistemological discussion on the rationality of scientific development (the evolutionary epistemology). My focus in this paper is to review Kuhn's effort in eliminating relativism, highlighting both the insights and the difficulties of his new version of incommensurability . Finally (...)
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  • How Historical Experiments Can Improve Scientific Knowledge and Science Education: The Cases of Boiling Water and Electrochemistry.Hasok Chang - 2011 - Science & Education 20 (3-4):317-341.
  • Kuhn’s evolutionary social epistemology. [REVIEW]Michael Bycroft - 2012 - Studies in History and Philosophy of Science Part A 43 (3):425-429.
    An essay review of Brad Wray, Kuhn's Evolutionary Social Epistemology (CUP, 2011).
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  • Incommensurability reconsidered.Harold I. Brown - 2005 - Studies in History and Philosophy of Science Part A 36 (1):149-169.
    In his later writings Kuhn reconsidered his earlier account of incommensurability, clarifying some aspects, modifying others, and explicitly rejecting some of his earlier claims. In Kuhn’s new account incommensurability does not pose a problem for the rational evaluation of competing scientific theories, but does pose a problem for certain forms of realism. Kuhn maintains that, because of incommensurability, the notion that science might seek to learn the nature of things as they are in themselves is incoherent. I develop Kuhn’s new (...)
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  • Incommensurability, reduction, and translation.W. Balzer - 1985 - Erkenntnis 23 (3):255 - 267.
  • Categorization, anomalies and the discovery of nuclear fission.Hanne Andersen - 1996 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 27 (4):463-492.
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  • De Kant a Kuhn, acotando por Putnam.José Francisco Alvarez Alvarez - 2004 - Endoxa 1 (18):495.
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  • Pluralists about Pluralism? Versions of Explanatory Pluralism in Psychiatry.Jeroen Van Bouwel - 2014 - In M. C. Galavotti, D. Dieks, W. J. Gonzalez, S. Hartmann, Th Uebel & M. Weber (eds.), New Directions in Philosophy of Science (The Philosophy of Science in a European Perspective Series). Springer. pp. 105-119.
    In this contribution, I comment on Raffaella Campaner’s defense of explanatory pluralism in psychiatry (in this volume). In her paper, Campaner focuses primarily on explanatory pluralism in contrast to explanatory reductionism. Furthermore, she distinguishes between pluralists who consider pluralism to be a temporary state on the one hand and pluralists who consider it to be a persisting state on the other hand. I suggest that it would be helpful to distinguish more than those two versions of pluralism – different understandings (...)
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  • Incommensurability: The current state of play.Howard Sankey - 1997 - Theoria 12 (3):425-445.
    The incommensurability thesis is the thesis that the content of some alternative scientific theories is incomparable due to translation failure between the vocabulary the theories employ. This paper presents an overview of the main issues which have arisen in the debate about incommensurability. It also briefly outlines a response to the thesis based on a modified causal theory of reference which allows change of reference subsequent to initial baptism, as well as a role to description in the determination of reference. (...)
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  • A Critique of the Translational Approach to Incommensurability.Xinli Wang - 1998 - Prima Philosophia 11 (3):293-306.
    According to the received translational interpretation of incommensurability, incommensurability is viewed as untranslatability due to radical variance of meaning or reference of the terms in two competing scientific languages. The author argues that the translational approach to incommensurability does not effectively clarify the concept of incommensurability. Since it cannot provide us with tenable, integrated concept of incommensurability, it should be rejected.
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