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  1. A History of Molecular Biology.Michel Morange & Matthew Cobb - 1999 - Journal of the History of Biology 32 (3):568-570.
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  • The self-vindication of the laboratory sciences.Ian Hacking - 1992 - In Andrew Pickering (ed.), Science as practice and culture. Chicago: University of Chicago Press. pp. 29--64.
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  • The development of a scientific specialty: The phage group and the origins of molecular biology.Nicholas C. Mullins - 1972 - Minerva 10 (1):51-82.
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  • Logic: The Theory of Inquiry.John Dewey - 1938 - New York, NY, USA: Henry Holt.
    This book is Dewey's most fully developed treatment of logic as the theory of Inquiry. It is a later work which reflects, in part, Dewey's readings of C.S. Peirce during the 1930's. -/- Reprinted in Series: The collected works of John Dewey / ed. by Jo Ann Boydston, 3,12.; The later works, 1925 - 1953, Vol. 12.
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  • Scientific freedom: its grounds and their limitations.Torsten Wilholt - 2010 - Studies in History and Philosophy of Science Part A 41 (2):174-181.
    In various debates about science, appeal is made to the freedom of scientific research. A rationale in favor of this freedom is rarely offered. In this paper, two major arguments are reconstructed that promise to lend support to a principle of scientific freedom. According to the epistemological argument, freedom of research is required in order to organize the collective cognitive effort we call science efficiently. According to the political argument, scientific knowledge needs to be generated in ways that are independent (...)
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  • The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • A mid-level approach to modeling scientific communities.Audrey Harnagel - 2019 - Studies in History and Philosophy of Science Part A 76:49-59.
    This paper provides an account of mid-level models, which calibrate highly theoretical agent-based models of scientific communities by incorporating empirical information from real-world systems. As a result, these models more closely correspond with real-world communities, and are better suited for informing policy decisions than extant how-possibly models. I provide an exemplar of a mid-level model of science funding allocation that incorporates bibliometric data from scientific publications and data generated from empirical studies of peer review into an epistemic landscape model. The (...)
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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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  • Creativity, conservativeness & the social epistemology of science.Adrian Currie - 2019 - Studies in History and Philosophy of Science Part A 76:1-4.
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  • The credit incentive to be a maverick.Remco Heesen - 2019 - Studies in History and Philosophy of Science Part A 76:5-12.
    There is a commonly made distinction between two types of scientists: risk-taking, trailblazing mavericks and detail-oriented followers. A number of recent papers have discussed the question what a desirable mixture of mavericks and followers looks like. Answering this question is most useful if a scientific community can be steered toward such a desirable mixture. One attractive route is through credit incentives: manipulating rewards so that reward-seeking scientists are likely to form the desired mixture of their own accord. Here I argue (...)
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  • Existential Risk, Creativity & Well-Adapted Science.Adrian Currie - forthcoming - Studies in History and Philosophy of Science.
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  • Representing and Intervening.Ian Hacking - 1987 - Revue de Métaphysique et de Morale 92 (2):279-279.
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  • Logic: The Theory of Inquiry.John Dewey - 1938 - Philosophy 14 (55):370-371.
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  • Objective Knowledge.K. R. Popper - 1972 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 4 (2):388-398.
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  • Representing and Intervening.Ian Hacking - 1983 - British Journal for the Philosophy of Science 35 (4):381-390.
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  • The Essential Tension.Thomas S. Kuhn - 1978 - Philosophy of Science 45 (4):649-652.
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  • Representing and Intervening: Introductory Topics in the Philosophy of Natural Science.Davis Baird - 1988 - Noûs 22 (2):299-307.
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  • Repertoires: A post-Kuhnian perspective on scientific change and collaborative research.Rachel A. Ankeny & Sabina Leonelli - 2016 - Studies in History and Philosophy of Science Part A 60:18-28.
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  • Conservatism and the Scientific State of Nature.Erich Kummerfeld & Kevin J. S. Zollman - 2016 - British Journal for the Philosophy of Science 67 (4):1057-1076.
    Those who comment on modern scientific institutions are often quick to praise institutional structures that leave scientists to their own devices. These comments reveal an underlying presumption that scientists do best when left alone—when they operate in what we call the ‘scientific state of nature’. Through computer simulation, we challenge this presumption by illustrating an inefficiency that arises in the scientific state of nature. This inefficiency suggests that one cannot simply presume that science is most efficient when institutional control is (...)
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  • Commensuration Bias in Peer Review.Carole J. Lee - 2015 - Philosophy of Science 82 (5):1272-1283,.
    To arrive at their final evaluation of a manuscript or grant proposal, reviewers must convert a submission’s strengths and weaknesses for heterogeneous peer review criteria into a single metric of quality or merit. I identify this process of commensuration as the locus for a new kind of peer review bias. Commensuration bias illuminates how the systematic prioritization of some peer review criteria over others permits and facilitates problematic patterns of publication and funding in science. Commensuration bias also foregrounds a range (...)
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  • Why do funding agencies favor hypothesis testing?Chris Haufe - 2013 - Studies in History and Philosophy of Science Part A 44 (3):363-374.
    Exploratory inquiry has difficulty attracting research funding because funding agencies have little sense of how to detect good science in exploratory contexts. After documenting and explaining the focus on hypothesis testing among a variety of institutions responsible for distinguishing between good and bad science, I analyze the NIH grant review process. I argue that a good explanation for the focus on hypothesis testing—at least at the level of science funding agencies—is the fact that hypothesis-driven research is relatively easy to appraise. (...)
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  • The Republic of Science: Its Political and Economic Theory. [REVIEW]Michael Polanyi - 2000 - Minerva 38 (1):1-21.
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  • The Republic of science.Michael Polanyi - 1962 - Minerva 1 (1):54-73.
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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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  • Conservatism: a contribution to the sociology of knowledge.Karl Mannheim - 1986 - New York: Routledge & Kegan Paul. Edited by David Kettler, Volker Meja & Nico Stehr.
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  • The natural selection of conservative science.Cailin O'Connor - 2019 - Studies in History and Philosophy of Science Part A 76:24-29.
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  • Changing Funding Arrangements and the Production of Scientific Knowledge: Introduction to the Special Issue.Jochen Gläser & Kathia Serrano Velarde - 2018 - Minerva 56 (1):1-10.
    With this special issue, we would like to promote research on changes in the funding of the sciences, social sciences, and humanities. Since funding secures the livelihood of researchers and the means to do research, it is an indispensable condition for almost all research; as funding arrangements are undergoing dramatic changes, we think it timely to renew the science studies community’s efforts to understand the funding of research. Changes in the governance of science have garnered considerable attention from science studies (...)
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  • Objective knowledge, an evolutionary approach.Karl R. Popper - 1976 - Revue Philosophique de la France Et de l'Etranger 166 (1):72-73.
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  • Origins of Molecular Biology: A Tribute to Jacques Monod. Andre Lwoff, Agnes Ullmann.Rollin D. Hotchkiss - 1981 - Isis 72 (3):507-508.
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  • Theoretical fertility McMullin-style.Samuel Schindler - 2017 - European Journal for Philosophy of Science 7 (1):151-173.
    A theory’s fertility is one of the standard theoretical virtues. But how is it to be construed? In current philosophical discourse, particularly in the realism debate, theoretical fertility is usually understood in terms of novel success: a theory is fertile if it manages to make successful novel predictions. Another, more permissible, notion of fertility can be found in the work of Ernan McMullin. This kind of fertility, McMullin claims, gives us just as strong grounds for realism. My paper critically assesses (...)
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  • Genuine Problems and the Significance of Science.Matthew J. Brown - 2010 - Contemporary Pragmatism 7 (2):131-153.
    This paper addresses the political constraints on science through a pragmatist critique of Philip Kitcher’s account of “well-ordered science.” A central part of Kitcher’s account is his analysis of the significance of items of scientific research: contextual and purpose-relative scientific significance replaces mere truth as the aim of inquiry. I raise problems for Kitcher’s account and argue for an alternative, drawing on Peirce’s and Dewey’s theories of problem-solving inquiry. I conclude by suggesting some consequences for understanding the proper conduct of (...)
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  • Shifting Attention From Theory to Practice in Philosophy of Biology.C. Kenneth Waters - unknown
    Traditional approaches in philosophy of biology focus attention on biological concepts, explanations, and theories, on evidential support and inter-theoretical relations. Newer approaches shift attention from concepts to conceptual practices, from theories to practices of theorizing, and from theoretical reduction to reductive retooling. In this article, I describe the shift from theory-focused to practice-centered philosophy of science and explain how it is leading philosophers to abandon fundamentalist assumptions associated with traditional approaches in philosophy of science and to embrace scientific pluralism. This (...)
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  • Policy Considerations for Random Allocation of Research Funds.Shahar Avin - unknown
    There are now several proposals for introducing random elements into the process of funding allocation for research, and some initial implementation of this policy by funding bodies. The proposals have been supported on efficiency grounds, with models, including social epistemology models, showing random allocation could increase the generation of significant truths in a community of scientists when compared to funding by peer review. The models in the literature are, however, fairly abstract. This paper introduces some of the considerations that are (...)
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