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  1. Social Science and Neuroscience beyond Interdisciplinarity: Experimental Entanglements. Des Fitzgerald & Felicity Callard - 2015 - Theory, Culture and Society 32 (1):3-32.
    This article is an account of the dynamics of interaction across the social sciences and neurosciences. Against an arid rhetoric of ‘interdisciplinarity’, it calls for a more expansive imaginary of what experiment – as practice and ethos – might offer in this space. Arguing that opportunities for collaboration between social scientists and neuroscientists need to be taken seriously, the article situates itself against existing conceptualizations of these dynamics, grouping them under three rubrics: ‘critique’, ‘ebullience’ and ‘interaction’. Despite their differences, each (...)
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  • A vision of Responsible Innovation.Rene Von Schomberg - 2017 - In L. Asveld, R. Van Dam-Mieras, T. Swierstra, S. Lavrijssen, K. Linse & J. Van Den Hoven (eds.), Responsible Innovation. Springer International Publishing. pp. 51-74.
    This Article outlines a vision of responsible innovation and outlines a public policy and implementation strategy for it.
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  • The Concept of Mind.Gilbert Ryle - 1949 - Revue Philosophique de la France Et de l'Etranger 141:125-126.
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  • Embedding philosophers in the practices of science: bringing humanities to the sciences.Nancy Tuana - 2013 - Synthese 190 (11):1955-1973.
    The National Science Foundation (NSF) in the United States, like many other funding agencies all over the globe, has made large investments in interdisciplinary research in the sciences and engineering, arguing that interdisciplinary research is an essential resource for addressing emerging problems, resulting in important social benefits. Using NSF as a case study for problem that might be relevant in other contexts as well, I argue that the NSF itself poses a significant barrier to such research in not sufficiently appreciating (...)
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  • Leading with ethics, aiming for policy: new opportunities for philosophy of science.Nancy Tuana - 2010 - Synthese 177 (3):471 - 492.
    The goal of this paper is to articulate and advocate for an enhanced role for philosophers of science in the domain of science policy as well as within the science curriculum. I argue that philosophy of science as a field can learn from the successes as well as the mistakes of bioethics and begin to develop a new model that includes robust contributions to the science classroom, research collaborations with scientists, and a role for public philosophy through involvement in science (...)
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  • Science as Social Knowledge: Values and Objectivity in Scientific Inquiry.Helen E. Longino - 1990 - Princeton University Press.
    This is an important book precisely because there is none other quite like it.
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  • Integrating data to acquire new knowledge: Three modes of integration in plant science.Sabina Leonelli - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):503-514.
    This paper discusses what it means and what it takes to integrate data in order to acquire new knowledge about biological entities and processes. Maureen O’Malley and Orkun Soyer have pointed to the scientific work involved in data integration as important and distinct from the work required by other forms of integration, such as methodological and explanatory integration, which have been more successful in captivating the attention of philosophers of science. Here I explore what data integration involves in more detail (...)
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  • Science, truth, and democracy.Philip Kitcher - 2001 - New York: Oxford University Press.
    Striving to boldly redirect the philosophy of science, this book by renowned philosopher Philip Kitcher examines the heated debate surrounding the role of science in shaping our lives. Kitcher explores the sharp divide between those who believe that the pursuit of scientific knowledge is always valuable and necessary--the purists--and those who believe that it invariably serves the interests of people in positions of power. In a daring turn, he rejects both perspectives, working out a more realistic image of the sciences--one (...)
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  • Interdisciplinarity in Philosophy of Science.Marie I. Kaiser, Maria Kronfeldner & Robert Meunier - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):59-70.
    This paper examines various ways in which philosophy of science can be interdisciplinary. It aims to provide a map of relations between philosophy and sciences, some of which are interdisciplinary. Such a map should also inform discussions concerning the question “How much philosophy is there in the philosophy of science?” In Sect. 1, we distinguish between synoptic and collaborative interdisciplinarity. With respect to the latter, we furthermore distinguish between two kinds of reflective forms of collaborative interdisciplinarity. We also briefly explicate (...)
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  • Philosophy of and as interdisciplinarity.Michael H. G. Hoffmann, Jan C. Schmidt & Nancy J. Nersessian - 2013 - Synthese 190 (11):1857-1864.
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  • Philosophy of and as interdisciplinarity.Michael Hg Hoffmann, Jan C. Schmidt & Nancy J. Nersessian - 2013 - Synthese 190 (11):1857-1864.
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  • Philosophy dedisciplined.Robert Frodeman - 2012 - Synthese 190 (11):1917-1936.
    This essay offers a critique of disciplinary philosophy, the dominant form of academic philosophy in the United States and elsewhere across the twentieth century. It argues that disciplinary philosophy represents an aberration compared to the main tradition of two thousand years of Western philosophy. It describes the characteristics of a dedisciplined philosophy, and emphasizes that dedisciplining philosophy requires attention to be paid to the linked institutional and theoretical elements of philosophy. The essay bases its argument in part on the results (...)
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  • The Disorder of Things: Metaphysical Foundations of the Disunity of Science.John Dupré - 1993 - Harvard University Press.
    With this manifesto, John Dupré systematically attacks the ideal of scientific unity by showing how its underlying assumptions are at odds with the central conclusions of science itself.
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  • Disciplining the disciplines.Jason Davies - 2011 - In Philip Dawid, William Twining & Mimi Vasilaki (eds.), Evidence, Inference and Enquiry. Oup/British Academy.
    This chapter gives a brief overview of emergent taxonomies of disciplinarities in scholarship, and documents the engagement with these as ‘the Interdisciplinary Project’ within the Evidence Programme. It gives a situated and provisional interdisciplinary account of the process of the programme over time that is designed to evoke the experience as much as the emergent understanding of interdisciplinary work. The chapter aims to make the unfamiliarity of the processes of interdisciplinary work more intelligible and elucidate what is at stake in (...)
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  • Introduction: philosophy of science in practice. [REVIEW]Rachel Ankeny, Hasok Chang, Marcel Boumans & Mieke Boon - 2011 - European Journal for Philosophy of Science 1 (3):303-307.
    Introduction: philosophy of science in practice Content Type Journal Article Category Editorial Article Pages 303-307 DOI 10.1007/s13194-011-0036-4 Authors Rachel Ankeny, School of History & Politics, University of Adelaide, Napier Building, The University of Adelaide, Adelaide, SA 5005, Australia Hasok Chang, Department of History and Philosophy of Science, University of Cambridge, Free School Lane, Cambridge, CB2 3RH UK Marcel Boumans, Faculty of Economics and Business, University of Amsterdam, Valckenierstraat 65-67, 1018 XE Amsterdam, The Netherlands Mieke Boon, Department of Philosophy, University of (...)
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  • Frontiers Of Illusion: Science, Technology and the Politics of Progress.Daniel Sarewitz (ed.) - 1996 - Temple University Press.
    Scrutinizes the fundamental myths that have guided the formulation of science policy for half a century myths that serve the professional and political interests of the scientific community, but often fail to advance the interests of society as a whole.
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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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  • Responsible Innovation.Richard Owen (ed.) - 2013
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  • Science, Policy, and the Value-Free Ideal.Heather Douglas - 2009 - University of Pittsburgh Press.
    Douglas proposes a new ideal in which values serve an essential function throughout scientific inquiry, but where the role values play is constrained at key points, protecting the integrity and objectivity of science.
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  • Biological Complexity and Integrative Pluralism.Sandra D. Mitchell - 2003 - Cambridge University Press.
    This fine collection of essays by a leading philosopher of science presents a defence of integrative pluralism as the best description for the complexity of scientific inquiry today. The tendency of some scientists to unify science by reducing all theories to a few fundamental laws of the most basic particles that populate our universe is ill-suited to the biological sciences, which study multi-component, multi-level, evolved complex systems. This integrative pluralism is the most efficient way to understand the different and complex (...)
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  • Value-Free Science: Ideals and Illusions?Harold Kincaid, John Dupré & Alison Wylie (eds.) - 2007 - New York: Oxford University Press.
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  • The Oxford Handbook of Interdisciplinarity.Robert Frodeman, Julie Thompson Klein & Carl Mitcham (eds.) - 2010 - Oxford, United Kingdom: Oxford University Press.
    Taking stock of interdisciplinarity as it nears its century mark, the Oxford Handbook of Interdisciplinarity constitutes a major new reference work on the topic of interdisciplinarity, a concept of growing academic and societal importance.
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  • The Concept of Mind: 60th Anniversary Edition.Gilbert Ryle - 1949 - New York: Hutchinson & Co.
    This is a new release of the original 1949 edition.
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  • The Dappled World: A Study of the Boundaries of Science.Nancy Cartwright - 1999 - New York, NY: Cambridge University Press.
    It is often supposed that the spectacular successes of our modern mathematical sciences support a lofty vision of a world completely ordered by one single elegant theory. In this book Nancy Cartwright argues to the contrary. When we draw our image of the world from the way modern science works - as empiricism teaches us we should - we end up with a world where some features are precisely ordered, others are given to rough regularity and still others behave in (...)
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  • The Ethical Work That Regulations Will Not Do.Annamaria Carusi - 2012 - Information, Communication and Society 15 (1):124-141.
    Ethical concerns in e-social science are often raised with respect to privacy, confidentiality, anonymity and the ethical and legal requirements that govern research. In this article, the authors focus on ethical aspects of e-research that are not directly related to ethical regulatory framework or requirements. These frameworks are often couched in terms of benefits or harms that can be incurred by participants in the research. The authors shift the focus to the sources of value in terms of which benefits or (...)
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  • Our Biotech Future.Freeman Dyson - unknown
    It has become part of the accepted wisdom to say that the twentieth century was the century of physics and the twenty-first century will be the century of biology. Two facts about the coming century are agreed on by almost everyone. Biology is now bigger than physics, as measured by the size of budgets, by the size of the workforce, or by the output of major discoveries; and biology is likely to remain the biggest part of science through the twenty-first (...)
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  • The Dappled World: A Study of the Boundaries of Science.Nancy Cartwright - 1999 - Philosophy 75 (294):613-616.
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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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