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  1. (2 other versions)Falsification and the Methodology of Scientific Research Programmes.Imre Lakatos - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press. pp. 91-196.
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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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  • Science and Values: The Aims of Science and Their Role in Scientific Debate.Larry Laudan - 1984 - University of California Press.
    Laudan constructs a fresh approach to a longtime problem for the philosopher of science: how to explain the simultaneous and widespread presence of both agreement and disagreement in science. Laudan critiques the logical empiricists and the post-positivists as he stresses the need for centrality and values and the interdependence of values, methods, and facts as prerequisites to solving the problems of consensus and dissent in science.
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  • (2 other versions)Values in Science.Ernan McMullin - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982 (4):3-28.
    This paper argues that the appraisal of theory is in important respects closer in structure to value-judgement than it is to the rule-governed inference that the classical tradition in philosophy of science took for granted.
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  • Objectivity, value judgment, and theory choice.Thomas S. Kuhn - 1981 - In David Zaret (ed.), Review of Thomas S. Kuhn The Essential Tension: Selected Studies in Scientific Tradition and Change. Duke University Press. pp. 320--39.
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  • The web of belief.Willard Van Orman Quine & J. S. Ullian - 1970 - New York,: Random House. Edited by J. S. Ullian.
    A compact, coherent introduction to the study of rational belief, this text provides points of entry to such areas of philosophy as theory of knowledge, methodology of science, and philosophy of language. The book is accessible to all undergraduates and presupposes no philosophical training.
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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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  • The advancement of science: science without legend, objectivity without illusions.Philip Kitcher - 1993 - New York: Oxford University Press.
    During the last three decades, reflections on the growth of scientific knowledge have inspired historians, sociologists, and some philosophers to contend that scientific objectivity is a myth. In this book, Kitcher attempts to resurrect the notions of objectivity and progress in science by identifying both the limitations of idealized treatments of growth of knowledge and the overreactions to philosophical idealizations. Recognizing that science is done not by logically omniscient subjects working in isolation, but by people with a variety of personal (...)
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  • Science: Conjectures and refutations.Karl Popper - unknown
    “There could be no fairer destiny for any. . . theory than that it should point the way to a more comprehensive theory in which it lives on, as a limiting case.” ALBERT EINSTEIN..
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  • Non-instrumental roles of science.John Ziman - 2003 - Science and Engineering Ethics 9 (1):17-27.
    Nowadays, science is treated an instrument of policy, serving the material interests of government and commerce. Traditionally, however, it also has important non-instrumental social functions, such as the creation of critical scenarios and world pictures, the stimulation of rational attitudes, and the production of enlightened practitioners and independent experts. The transition from academic to ‘post-academic’ science threatens the performance of these functions, which are inconsistent with strictly instrumental modes of knowledge production. In particular, expert objectivity is negated by entanglement with (...)
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  • Must evidence underdetermine theory.John D. Norton - 2003 - The Challenge of the Social and the Pressure of Practice:17--44.
    According to the underdetermination thesis, all evidence necessarily underdetermines any scientific theory. Thus it is often argued that our agreement on the content of mature scientific theories must be due to social and other factors. Drawing on a long standing tradition of criticism, I shall argue that the underdetermination thesis is little more than speculation based on an impoverished account of induction. A more careful look at accounts of induction does not support an assured underdetermination or the holism usually associated (...)
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  • Promoting disinterestedness or making use of bias? Interests and moral obligation in commercialized research.Matthias Adam - manuscript
    In: M. Carrier, D. Howard & J. Kourany (eds), Science and the Social: Knowledge, Epistemic Demands, and Social Values, Pittsburgh: University of Pittsburgh Press (im Erscheinen).
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  • Gender, politics, and the theoretical virtues.Helen E. Longino - 1995 - Synthese 104 (3):383 - 397.
    Traits like simplicity and explanatory power have traditionally been treated as values internal to the sciences, constitutive rather than contextual. As such they are cognitive virtues. This essay contrasts a traditional set of such virtues with a set of alternative virtues drawn from feminist writings about the sciences. In certain theoretical contexts, the only reasons for preferring a traditional or an alternative virtue are socio-political. This undermines the notion that the traditional virtues can be considered purely cognitive.
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  • The Scientist Qua Scientist Makes Value Judgments.Richard Rudner - 1953 - Philosophy of Science 20 (1):1-6.
    The question of the relationship of the making of value judgments in a typically ethical sense to the methods and procedures of science has been discussed in the literature at least to that point which e. e. cummings somewhere refers to as “The Mystical Moment of Dullness.” Nevertheless, albeit with some trepidation, I feel that something more may fruitfully be said on the subject.
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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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  • 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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  • (2 other versions)A Treatise of Human Nature.David Hume & A. D. Lindsay - 1958 - Philosophical Quarterly 8 (33):379-380.
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  • Die "Objektivität" sozialwissenschaftlicher und sozialpolitischer Erkenntnis.Max Weber - 1995
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  • (1 other version)Gender and the Biological Sciences.Kathleen Okruhlik - 1994 - Canadian Journal of Philosophy, Supplementary Volume 20 (sup1):21-42.
    Feminist critiques of science provide fertile ground for any investigation of the ways in which social influences may shape the content of science. Many authors working in this field are from the natural and social sciences; others are philosophers. For philosophers of science, recent work on sexist and androcentric bias in science raises hard questions about the extent to which reigning accounts of scientific rationality can deal successfully with mounting evidence that gender ideology has had deep and extensive effects on (...)
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  • (1 other version)Gender and the Biological Sciences.Kathleen Okruhlik - 1994 - Canadian Journal of Philosophy, Supplementary Volume 20:21-42.
    Feminist critiques of science provide fertile ground for any investigation of the ways in which social influences may shape the content of science. Many authors working in this field are from the natural and social sciences; others are philosophers. For philosophers of science, recent work on sexist and androcentric bias in science raises hard questions about the extent to which reigning accounts of scientific rationality can deal successfully with mounting evidence that gender ideology has had deep and extensive effects on (...)
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  • (2 other versions)Social Empiricism.Miriam Solomon - 2005 - Philosophy and Phenomenological Research 70 (2):495-498.
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  • A treatise of human nature.David Hume & A. D. Lindsay - 1739 - Oxford,: Clarendon press. Edited by L. A. Selby-Bigge.
    One of Hume's most well-known works and a masterpiece of philosophy, A Treatise of Human Nature is indubitably worth taking the time to read.
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  • Underdetermination as an epistemological test tube: expounding hidden values of the scientific community.Martin Carrier - 2011 - Synthese 180 (2):189 - 204.
    Duhem—Quine underdetermination plays a constructive role in epistemology by pinpointing the impact of non-empirical virtues or cognitive values on theory choice. Underdetermination thus contributes to illuminating the nature of scientific rationality. Scientists prefer and accept one account among empirical equivalent alternatives. The non-empirical virtues operating in science are laid open in such theory choice decisions. The latter act as an epistemological test tube in making explicit commitments to how scientific knowledge should be like.
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  • (2 other versions)Values in science.Ernan McMullin - 2012 - Zygon 47 (4):686-709.
    In this essay, which was his presidential address to the Philosophy of Science Association, Ernan McMullin argued that the watershed between “classic” philosophy of science and the “new” philosophy of science can best be understood by analyzing the change in our perception of the role played by values in science. He begins with some general remarks about the nature of value, goes on to explore some of the historical sources for the claim that judgement in science is value‐laden, and concludes (...)
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  • (1 other version)The Fate of Knowledge.Helen E. Longino - 2001 - Princeton University Press.
    Helen Longino seeks to break the current deadlock in the ongoing wars between philosophers of science and sociologists of science--academic battles founded on disagreement about the role of social forces in constructing scientific knowledge. While many philosophers of science downplay social forces, claiming that scientific knowledge is best considered as a product of cognitive processes, sociologists tend to argue that numerous noncognitive factors influence what scientists learn, how they package it, and how readily it is accepted. Underlying this disagreement, however, (...)
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  • Design Rules: Industrial Research and Epistemic Merit.Torsten Wilholt - 2006 - Philosophy of Science 73 (1):66-89.
    A common complaint against the increasing privatization of research is that research that is conducted with the immediate purpose of producing applicable knowledge will not yield knowledge as valuable as that generated in more curiosity‐driven, academic settings. In this paper, I make this concern precise and reconstruct the rationale behind it. Subsequently, I examine the case of industry research on the giant magnetoresistance effect in the 1990s as a characteristic example of research undertaken under considerable pressure to produce applicable results. (...)
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  • (1 other version)The Fate of Knowledge.Helen E. Longino - 2001 - Princeton University Press.
    "--Richard Grandy, Rice University "This is the first compelling diagnosis of what has gone awry in the raging 'science wars.
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  • The new Organon.Francis Bacon - 2007 - In Aloysius Martinich, Fritz Allhoff & Anand Vaidya (eds.), Early Modern Philosophy: Essential Readings with Commentary. Oxford: Wiley-Blackwell.
    When the New Organon appeared in 1620, part of a six-part programme of scientific inquiry entitled 'The Great Renewal of Learning', Francis Bacon was at the high point of his political career, and his ambitious work was groundbreaking in its attempt to give formal philosophical shape to a new and rapidly emerging experimentally-based science. Bacon combines theoretical scientific epistemology with examples from applied science, examining phenomena as various as magnetism, gravity, and the ebb and flow of the tides, and anticipating (...)
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  • Bias and values in scientific research.Torsten Wilholt - 2009 - Studies in History and Philosophy of Science Part A 40 (1):92-101.
    When interests and preferences of researchers or their sponsors cause bias in experimental design, data interpretation or dissemination of research results, we normally think of it as an epistemic shortcoming. But as a result of the debate on science and values, the idea that all extra-scientific influences on research could be singled out and separated from pure science is now widely believed to be an illusion. I argue that nonetheless, there are cases in which research is rightfully regarded as epistemologically (...)
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  • The continuing need for disinterested research.John Ziman - 2002 - Science and Engineering Ethics 8 (3):397-399.
    For scientific knowledge to be trustworthy, it needs to be dissociated from material interests. Disinterested research also performs other important non-instrumental roles. In particular, academic science has traditionally provided society with reliable, imaginative public knowledge and independent, self-critical expertise. But this type of science is not compatible with the practice of instrumental research, which is typically proprietary, prosaic, pragmatic and partisan. With ever-increasing dependence on commercial or state funding, all modes of knowledge production are merging into a new, ‘post-academic’ research (...)
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  • The impact of Newton's principia on the philosophy of science.Ernan McMullin - 2001 - Philosophy of Science 68 (3):279-310.
    As the seventeenth century progressed, there was a growing realization among those who reflected on the kind of knowledge the new sciences could afford (among them Kepler, Bacon, Descartes, Boyle, Huygens) that hypothesis would have to be conceded a much more significant place in natural philosophy than the earlier ideal of demonstration allowed. Then came the mechanics of Newton's Principia, which seemed to manage quite well without appealing to hypothesis (though much would depend on how exactly terms like "force" and (...)
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  • (2 other versions)Social Empiricism.Miriam Solomon - 2003 - Philosophy 78 (303):132-136.
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  • Must the scientist make value judgments?Isaac Levi - 1960 - Journal of Philosophy 57 (11):345-357.
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  • “Empiricism all the way down”: a defense of the value-neutrality of science in response to Helen Longino's contextual empiricism.Stéphanie Ruphy - 2006 - Perspectives on Science 14 (2):189-214.
    : A central claim of Longino's contextual empiricism is that scientific inquiry, even when "properly conducted", lacks the capacity to screen out the influence of contextual values on its results. I'll show first that Longino's attack against the epistemic integrity of science suffers from fatal empirical weaknesses. Second I'll explain why Longino's practical proposition for suppressing biases in science, drawn from her contextual empiricism, is too demanding and, therefore, unable to serve its purpose. Finally, drawing on Bourdieu's sociological analysis of (...)
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  • The Advancement of Science: Science without Legend, Objectivity without Illusions.John Dupre & Philip Kitcher - 1995 - Philosophical Review 104 (1):147.
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  • Reading the Book of Nature: An Introduction to the Philosophy of Science.Peter Kosso - 1992 - Cambridge University Press.
    This is an introductory survey to the philosophy of science suitable for beginners and nonspecialists. Its point of departure is the question: why should we believe what science tells us about the world? In this attempt to justify the claims of science the book treats such topics as observation data, confirmation of theories, and the explanation of phenomena. The writing is clear and concrete with detailed examples drawn from contemporary science: solar neutrinos, the gravitational bending of light, and the creation/evolution (...)
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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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  • Social Empiricism.Miriam Solomon - 2001 - Cambridge, MA, USA: MIT Press.
    For the last forty years, two claims have been at the core of disputes about scientific change: that scientists reason rationally and that science is progressive. For most of this time discussions were polarized between philosophers, who defended traditional Enlightenment ideas about rationality and progress, and sociologists, who espoused relativism and constructivism. Recently, creative new ideas going beyond the polarized positions have come from the history of science, feminist criticism of science, psychology of science, and anthropology of science. Addressing the (...)
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  • Science in the Private Interest: Has the Lure of Profits Corrupted Biomedical Research? [REVIEW]Josephine Johnston, Marcia Angell & Sheldon Krimsky - 2004 - Hastings Center Report 34 (5):44.
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  • Who Rules in Science? An Opinionated Guide to the Wars.James Robert Brown - 2001 - Science and Society 67 (1):111-113.
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  • Science and Values. The Aims of Science and Their Role in Scientific Debate.L. Laudan - 1988 - British Journal for the Philosophy of Science 39 (2):263-275.
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  • Science as Social Knowledge: Values and Objectivity in Scientific Inquiry.Helen E. Longino - 1990 - Journal of the History of Biology 25 (2):340-341.
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  • Goethes Farbenlehre — ihre Physik und Philosophie.Martin Carrier - 1981 - Zeitschrift Für Allgemeine Wissenschaftstheorie 12 (2):209-225.
    Da Goethes Farbenlehre im allgemeinen allein unter dem Blickwinkel der darin enthaltenen methodologischen Thesen untersucht wird, tritt hier die Rekonstruktion ihres physikalischen Gehalts in den Vordergrund. Es zeigt sich auf diese Weise, daß die Farbenlehre als eine Verbindung physikalischer und sinnesphysiologischer Aspekte einige der zentralen Versuche der Newtonschen Optik angemessen interpretieren kann. Die Diskussion der Methodologie zeitigt anschließend ein zukunftweisendes Element: die Erkenntnis der Bedeutung der Meßapparatur für die Konstitution der Theorie. Schließlich wird Goethes Naturbild und seine Aktualisierung in den (...)
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