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  1. 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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  • Science in a democratic society.Philip Kitcher - 2011 - Amherst, N.Y.: Prometheus Books.
    Claims that science should be more democratic than it is frequently arouse opposition. In this essay, I distinguish my own views about the democratization of science from the more ambitious theses defended by Paul Feyerabend. I argue that it is unlikely that the complexity of some scientific debates will allow for resolution according to the methodological principles of any formal confirmation theory, suggesting instead that major revolutions rest on conflicts of values. Yet these conflicts should not be dismissed as irresoluble.
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  • Inductive risk and values in science.Heather Douglas - 2000 - Philosophy of Science 67 (4):559-579.
    Although epistemic values have become widely accepted as part of scientific reasoning, non-epistemic values have been largely relegated to the "external" parts of science (the selection of hypotheses, restrictions on methodologies, and the use of scientific technologies). I argue that because of inductive risk, or the risk of error, non-epistemic values are required in science wherever non-epistemic consequences of error should be considered. I use examples from dioxin studies to illustrate how non-epistemic consequences of error can and should be considered (...)
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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 Emerging Concept of Responsible Innovation. Three Reasons why it is Questionable and Calls for a Radical Transformation of the Concept of Innovation.V. Blok & P. Lemmens - 2015 - In Bert-Jaap Koops, Ilse Oosterlaken, Henny Romijn, Tsjalling Swierstra & Jeroen van den Hoven (eds.), Responsible Innovation 2: Concepts, Approaches, and Applications. Cham: Springer International Publishing. pp. 19-35.
    Abstract In this chapter, we challenge the presupposed concept of innovation in the responsible innovation literature. As a first step, we raise several questions with regard to the possibility of ‘responsible’ innovation and point at several difficulties which undermine the supposedly responsible character of innovation processes, based on an analysis of the input, throughput and output of innovation processes. It becomes clear that the practical applicability of the concept of responsible innovation is highly problematic and that a more thorough inquiry (...)
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  • Science in a Democratic Society.Philip Kitcher - 2011 - Poznan Studies in the Philosophy of the Sciences and the Humanities 101:95-112.
    Claims that science should be more democratic than it is frequently arouse opposition. In this essay, I distinguish my own views about the democratization of science from the more ambitious theses defended by Paul Feyerabend. I argue that it is unlikely that the complexity of some scientific debates will allow for resolution according to the methodological principles of any formal confirmation theory, suggesting instead that major revolutions rest on conflicts of values. Yet these conflicts should not be dismissed as irresoluble.
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  • The ethics of science: an introduction.David B. Resnik - 1998 - New York: Routledge.
    During the past decade scientists, public policy analysts, politicians, and laypeople, have become increasingly aware of the importance of ethical conduct in scientific research. In this timely book, David B. Resnik introduces the reader to the ethical dilemmas and questions that arise in scientific research. Some of the issues addressed in the book include ethical decision-making, the goals and methods of science, and misconduct in science. The Ethics of Science also discusses significant case studies such as human and animal cloning, (...)
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  • Well‐Ordered Science.Philip Kitcher - 2001 - In Science, truth, and democracy. New York: Oxford University Press.
    The question is answered by introducing an ideal, the ideal of well‐ordered science In well‐ordered science the inquiries pursued are those that would have been selected by a well‐informed group of deliberators dedicated to working cooperatively with one another. Well‐ordered science is contrasted with vulgar democracy and with elitism. The chapter suggests various ways in which our current practice of the sciences falls short of the ideal.
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  • The Construction of Lay Expertise: AIDS Activism and the Forging of Credibility in the Reform of Clinical Trials.Steven Epstein - 1995 - Science, Technology and Human Values 20 (4):408-437.
    In an unusual instance of lay participation in biomedical research, U.S. AIDS treatment activists have constituted themselves as credible participants in the process of knowledge construction, thereby bringing about changes in the epistemic practices of biomedical research. This article examines the mechanisms or tactics by which these lay activists have constructed their credibility in the eyes of AIDS researchers and government officials. It considers the inwlications of such interventions for the conduct of medical research; examines some of the ironies, tensions, (...)
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  • Douglas on values: From indirect roles to multiple goals.Kevin C. Elliott - 2013 - Studies in History and Philosophy of Science Part A 44 (3):375-383.
    In recent papers and a book, Heather Douglas has expanded on the well-known argument from inductive risk, thereby launching an influential contemporary critique of the value-free ideal for science. This paper distills Douglas’s critique into four major claims. The first three claims provide a significant challenge to the value-free ideal for science. However, the fourth claim, which delineates her positive proposal to regulate values in science by distinguishing direct and indirect roles for values, is ambiguous between two interpretations, and both (...)
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  • Lessons from the vioxx debacle: What the privatization of science can teach us about social epistemology.Justin Biddle - 2007 - Social Epistemology 21 (1):21 – 39.
    Since the early 1980s, private, for-profit corporations have become increasingly involved in all aspects of scientific research, especially of biomedical research. In this essay, I argue that there are dangerous epistemic consequences of this trend, which should be more thoroughly examined by social epistemologists. In support of this claim, I discuss a recent episode of pharmaceutical research involving the painkiller Vioxx. I argue that the research on Vioxx was epistemically problematic and that the primary cause of these inadequacies was faulty (...)
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  • Should Some Knowledge Be Forbidden? The Case of Cognitive Differences Research.Janet A. Kourany - 2016 - Philosophy of Science 83 (5):779-790.
    For centuries scientists have claimed that women are intellectually inferior to men and blacks are inferior to whites. Although these claims have been contested and corrected for centuries, they still continue to be made. Meanwhile, scientists have documented the harm done to women and blacks by the publication of such claims. Can anything be done to improve this situation? Freedom of research is universally recognized to be of first-rate importance. Yet, constraints on that freedom are also universally recognized. I consider (...)
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  • Participatory Approaches in Science and Technology: Historical Origins and Current Practices in Critical Perspective.Martin Lengwiler - 2008 - Science, Technology, and Human Values 33 (2):186-200.
    Recent science and technology studies have analyzed questions of nonexpert participation in science, technology, and science policy from an empirically grounded perspective. The introduction to this special issue offers a double contribution to this debate. First, it presents a summary of the state of the art and an outline of the historical emergence of the participatory question. The argument distinguishes four periods since the late nineteenth century, each with a specific relationship between expert and nonexpert knowledge ranging from a hybrid, (...)
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  • Pasteur's Quadrant: Basic Science and Technological Innovation.D. E. Stokes - 1997 - Brookings Inst Pr.
    In this book, Donald Stokes challenges Bush's view and maintains that we can only rebuild the relationship between government and the scientific community when we understand what is wrong with that view.Stokes begins with an analysis of the ...
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  • Facing the Credibility Crisis of Science: On the Ambivalent Role of Pluralism in Establishing Relevance and Reliability.Martin Carrier - 2017 - Perspectives on Science 25 (4):439-464.
    . Science at the interface with society is regarded with mistrust among parts of the public. Scientific judgments on matters of practical concern are not infrequently suspected of being incompetent and biased. I discuss two proposals for remedying this deficiency. The first aims at strengthening the independence of science and suggests increasing the distance to political and economic powers. The drawback is that this runs the risk of locking science in an academic ivory tower. The second proposal favors “counter-politicization” in (...)
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  • Science, Respect for Nature, and Human Well-Being: Democratic Values and the Responsibilities of Scientists Today.Hugh Lacey - 2016 - Foundations of Science 21 (1):51-67.
    The central question addressed is: How should scientific research be conducted so as to ensure that nature is respected and the well being of everyone everywhere enhanced? After pointing to the importance of methodological pluralism for an acceptable answer and to obstacles posed by characterizing scientific methodology too narrowly, which are reinforced by the ‘commercial-scientific ethos’, two additional questions are considered: How might research, conducted in this way, have impact on—and depend on—strengthening democratic values and practices? And: What is thereby (...)
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  • Rehabilitating neutrality.Hugh Lacey - 2013 - Philosophical Studies 163 (1):77-83.
    This article responds to Janet Kourany’s proposal, in Philosophy of Science after Feminism, that scientific practices be held to the ideal of ‘socially responsible science’, to produce results that are not only cognitively sound, but also significant in the light of values ‘that can be morally justified’. Kourany also urges the development of ‘contextualized philosophy of science’—of which feminist philosophy of science is exemplary—that is ‘politically engaged’ and ‘activist’, ‘informed by analyses of the actual ways in which science interacts with (...)
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  • Science, values, and the value of science.Noretta Koertge - 2000 - Philosophy of Science 67 (3):57.
    Protagonists in the so-called Science Wars differ most markedly in their views about the role of values in science and what makes science valuable. Scientists and philosophers of science have traditionally considered the principal aims of science to be explanation and application. Only cognitive values should influence what is taken to be explanatory. Social and political values affect the priority assigned to various scientific problems and the ways in which scientific results are applied. Ethical considerations may be brought to bear (...)
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  • Coping with the Unpredictable Effects of Future Technologies.Sven Ove Hansson - 2011 - Philosophy and Technology 24 (2):137-149.
    Available methods such as technology assessment and risk analysis have failed to predict the effects of technological choices. We need to give up the futile predictive ambitions of previous approaches and instead base decisions on systematic studies of alternative future developments. It will then be necessary to cope with mere possibility arguments, i.e., arguments in which a conclusion is drawn from a mere possibility that a course of action may have certain consequences. A five-step procedure is proposed for the assessment (...)
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  • The Precautionary Principle in Nanotechnology.James Moor - 2006 - International Journal of Applied Philosophy 20 (2):191-204.
    The precautionary principle (PP) is thought by many to be a useful strategy for action and by many others useless at best and dangerous at worst. We argue that it is a coherent and useful principle. We first clarify the principle and then defend it against a number of common criticisms. Three examples from nanotechnology are used; nanoparticles and possible health and environmental problems, grey goo and the potential for catastrophe, and privacy risks generated by nanoelectronics.
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  • Theories for use: On the bearing of basic science on practical problems.Martin Carrier - 2010 - In M. Dorato M. Suàrez (ed.), Epsa Epistemology and Methodology of Science. Springer. pp. 23--33.
    Funding policies for science are usually directed at supporting technological innovations. The im-pact and success of such policies depend crucially on how science and technology are connected to each other. I propose an “interactive view” of the relationship between basic science and technol-ogy development which comprises the following four claims: First, technological change derives from science but only in part. The local models used in accounting for technologically relevant phenomena contain theoretical and non-theoretical elements alike. Second, existing technologies and rules (...)
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  • If and then: A critique of speculative nanoethics. [REVIEW]Alfred Nordmann - 2007 - NanoEthics 1 (1):31-46.
    Most known technology serves to ingeniously adapt the world to the physical and mental limitations of human beings. Humankind has acquired awesome power with its rather limited means. Nanotechnological capabilities further this power. On some accounts, however, nanotechnological research will contribute to a rather different kind of technological development, namely one that changes human beings so as to remove or reduce their physical and mental limitations. The prospect of this technological development has inspired a fair amount of ethical debate. Here, (...)
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