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  1. Philosophy of interdisciplinarity. What? Why? How?Uskali Mäki - 2016 - European Journal for Philosophy of Science 6 (3):327-342.
    Compared to the massive literature from other disciplinary perspectives on interdisciplinarity, philosophy of science is only slowly beginning to pay systematic attention to this powerful trend in contemporary science. The paper provides some metaphilosophical reflections on the emerging “Philosophy of Interdisciplinarity”. What? I propose a conception of PhID that has the qualities of being broad and neutral as well as stemming from within the agenda of philosophy of science. It will investigate features of science that reveal themselves when scientific disciplines (...)
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  • Paradigms and Barriers: How Habits of Mind Govern Scientific Beliefs.Howard Margolis - 1995 - Philosophical Review 104 (2):335-336.
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  • What makes interdisciplinarity difficult? Some consequences of domain specificity in interdisciplinary practice.Miles MacLeod - 2018 - Synthese 195 (2):697-720.
    Research on interdisciplinary science has for the most part concentrated on the institutional obstacles that discourage or hamper interdisciplinary work, with the expectation that interdisciplinary interaction can be improved through institutional reform strategies such as through reform of peer review systems. However institutional obstacles are not the only ones that confront interdisciplinary work. The design of policy strategies would benefit from more detailed investigation into the particular cognitive constraints, including the methodological and conceptual barriers, which also confront attempts to work (...)
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  • Interdisciplinary problem- solving: emerging modes in integrative systems biology.Miles MacLeod & Nancy J. Nersessian - 2016 - European Journal for Philosophy of Science 6 (3):401-418.
    Integrative systems biology is an emerging field that attempts to integrate computation, applied mathematics, engineering concepts and methods, and biological experimentation in order to model large-scale complex biochemical networks. The field is thus an important contemporary instance of an interdisciplinary approach to solving complex problems. Interdisciplinary science is a recent topic in the philosophy of science. Determining what is philosophically important and distinct about interdisciplinary practices requires detailed accounts of problem-solving practices that attempt to understand how specific practices address the (...)
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  • Kuhn on essentialism and the causal theory of reference.Jouni-Matti Kuukkanen - 2010 - Philosophy of Science 77 (4):544-564.
    The causal theory of reference is often taken to provide a solution to the problems, such as incomparability and referential discontinuity, that the meaning-change thesis raised. I show that Kuhn successfully questioned the causal theory and Putnam's idea that reference is determined via the sameness relation of essences that holds between a sample and other members of a kind in all possible worlds. Putnam's single ‘essential' properties may be necessary but not sufficient to determine membership in a kind category. Kuhn (...)
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  • The Structure of Scientific Revolutions.David Bohm - 1964 - Philosophical Quarterly 14 (57):377-379.
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  • Model templates within and between disciplines: from magnets to gases – and socio-economic systems.Tarja Knuuttila & Andrea Loettgers - 2016 - European Journal for Philosophy of Science 6 (3):377-400.
    One striking feature of the contemporary modelling practice is its interdisciplinary nature. The same equation forms, and mathematical and computational methods, are used across different disciplines, as well as within the same discipline. Are there, then, differences between intra- and interdisciplinary transfer, and can the comparison between the two provide more insight on the challenges of interdisciplinary theoretical work? We will study the development and various uses of the Ising model within physics, contrasting them to its applications to socio-economic systems. (...)
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  • Whorfian variations on Kantian themes: Kuhn's linguistic turn.Gürol Irzik & Teo Grünberg - 1998 - Studies in History and Philosophy of Science Part A 29 (2):207-221.
    Thomas Kuhn's post-1980 writings have increasingly emphasized the role played by language in the characterization of scientific revolutions and incommensurability. We argue that Kuhn's `linguistic turn' can be understood best against the background of a Whorfian conception of language and certain neo-Kantian themes. While this enables Kuhn to refine and unify his earlier views, it also creates some difficulties.
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  • What is interdisciplinary communication? Reflections on the very idea of disciplinary integration.J. Britt Holbrook - 2013 - Synthese 190 (11):1865-1879.
    In this paper I attempt to answer the question: What is interdisciplinary communication? I attempt to answer this question, rather than what some might consider the ontologically prior question—what is interdisciplinarity (ID)?—for two reasons: (1) there is no generally agreed-upon definition of ID; and (2) one’s views regarding interdisciplinary communication have a normative relationship with one’s other views of ID, including one’s views of its very essence. I support these claims with reference to the growing literature on ID, which has (...)
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  • Interdisciplinary success without integration.Till Grüne-Yanoff - 2016 - European Journal for Philosophy of Science 6 (3):343-360.
    Some scholars see interdisciplinarity as a special case of a broader unificationist program. They accept the unification of the sciences as a regulative ideal, and derive from this the normative justification of interdisciplinary research practices. The crucial link for this position is the notion of integration: integration increases the cohesion of concepts and practices, and more specifically of explanations, ontologies, methods and data. Interdisciplinary success then consists in the integration of fields or disciplines, and this constitutes success in the sense (...)
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  • Molecular evolution: concepts and the origin of disciplines.Edna Suárez-Díaz - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (1):43-53.
    This paper focuses on the consolidation of Molecular Evolution, a field originating in the 1960s at the interface of molecular biology, biochemistry, evolutionary biology, biophysics and studies on the origin of life and exobiology. The claim is made that Molecular Evolution became a discipline by integrating different sorts of scientific traditions: experimental, theoretical and comparative. The author critically incorporates Timothy Lenoir’s treatment of disciplines , as well as ideas developed by Stephen Toulmin on the same subject. On their account disciplines (...)
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  • Naming and Necessity.S. Kripke - 1972 - Tijdschrift Voor Filosofie 45 (4):665-666.
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  • Interdisciplinarity: history, theory, and practice.Julie Thompson Klein - 1990 - Detroit: Wayne State University Press.
    Acknowledgments THROUGHOUT this book I cite the many people who have provided information on individual programs and activities. ...
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  • Thomas Kuhn.Alexander Bird - 2000 - Routledge.
    Thomas Kuhn transformed the philosophy of science. His seminal 1962 work "The Structure of Scientific Revolutions" introduced the term 'paradigm shift' into the vernacular and remains a fundamental text in the study of the history and philosophy of science. This introduction to Kuhn's ideas covers the breadth of his philosophical work, situating "The Structure of Scientific Revolutions" within Kuhn's wider thought and drawing attention to the development of his ideas over time. Kuhn's work is assessed within the context of other (...)
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  • Kuhn's Evolutionary Social Epistemology.K. Brad Wray - 2011 - Cambridge, UK: Cambridge University Press.
    Kuhn's Structure of Scientific Revolutions has been enduringly influential in philosophy of science, challenging many common presuppositions about the nature of science and the growth of scientific knowledge. However, philosophers have misunderstood Kuhn's view, treating him as a relativist or social constructionist. In this book, Brad Wray argues that Kuhn provides a useful framework for developing an epistemology of science that takes account of the constructive role that social factors play in scientific inquiry. He examines the core concepts of Structure (...)
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  • The Incommensurability Thesis.Howard Sankey - 1994 - Abingdon: Taylor and Francis.
    This book presents a critical analysis of the semantic incommensurability thesis of Thomas Kuhn and Paul Feyerabend. In putting forward the thesis of incommensurability, Kuhn and Feyerabend drew attention to complex issues concerning the phenomenon of conceptual change in science. They raised serious problems about the semantic and logical relations between the content of theories which deploy unlike systems of concepts. Yet few of the more extreme claims associated with incommensurability stand scrutiny. The argument of this book is as follows. (...)
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  • Thomas Kuhn’s Linguistic Turn and the Legacy of Logical Empiricism: Incommensurability, Rationality, and the Search for Truth.Stefano Gattei - 2008 - Ashgate.
    Presenting a critical history of the philosophy of science in the twentieth century, focusing on the transition from logical positivism in its first half to the ...
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  • The role of trust in knowledge.John Hardwig - 1991 - Journal of Philosophy 88 (12):693-708.
    Most traditional epistemologists see trust and knowledge as deeply antithetical: we cannot know by trusting in the opinions of others; knowledge must be based on evidence, not mere trust. I argue that this is badly mistaken. Modern knowers cannot be independent and self-reliant. In most disciplines, those who do not trust cannot know. Trust is thus often more epistemically basic than empirical evidence or logical argument, for the evidence and the argument are available only through trust. Finally, since the reliability (...)
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  • Epistemic dependence.John Hardwig - 1985 - Journal of Philosophy 82 (7):335-349.
    find myself believing all sorts 0f things for which I d0 not possess evidence: that smoking cigarettes causes lung cancer, that my car keeps stalling because the carburetor needs LO be rebuilt, that mass media threaten democracy, that slums cause emotional disorders, that my irregular heart beat is premature ventricular contraction, that students} grades are not correlated with success in the ncmacadcmic world, that nuclear power plants are not safe (enough) . . . The list 0f things I believe, though (...)
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  • Naming and Necessity.Saul Kripke - 1980 - Philosophy 56 (217):431-433.
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  • Meaning and scientific change.Dudley Shapere - 1966 - In R. Colodny (ed.), Mind and Cosmos: Essays in Contemporary Science and Philosophy. University of Pittsburgh Press. pp. 41--85.
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  • Explanation, Reduction and Empiricism.Paul K. Feyerabend - 1962 - In H. Feigl and G. Maxwell (ed.), Crítica: Revista Hispanoamericana de Filosofía. pp. 103-106.
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  • Naming and Necessity.Saul Kripke - 2003 - In John Heil (ed.), Philosophy of Mind: A Guide and Anthology. Oxford University Press.
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  • Human Understanding.Stephen Toulmin - 1975 - Mind 84 (334):299-304.
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  • Explanation, Reduction and Empiricism.P. K. Feyerabend - 1967 - Critica 1 (2):103-106.
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  • Work in a new world: The taxonomic solution.Ian Hacking - 1993 - In Paul Horwich (ed.), World Changes. Thomas Kuhn and the Nature of Science. MIT Press. pp. 275--310.
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  • Interdisciplinarity: History, Theory, and Practice.Julie Thompson Klein - 1992 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 23 (1):200-204.
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  • Human Understanding.Stephen Toulmin - 1975 - Philosophy and Rhetoric 8 (3):198-200.
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  • Thomas Kuhn.Alexander Bird - 2002 - Philosophical Quarterly 52 (209):654-657.
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  • Thomas S. Kuhn's 'Linguistic Turn' and the Legacy of Logical Positivism.Stefano Gattei - unknown
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  • Dubbing and redubbing: The vulnerability of rigid designation.Thomas S. Kuhn - 1990 - In C. Wade Savage, James Conant & John Haugeland (eds.), Minnesota Studies in the Philosophy of Science. University of Minnesota Press. pp. 58-89.
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