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  1. (1 other version)Beyond “Bad Science”: Skeptical Reflections on the Value-Freedom of Scientific Inquiry.Helen Longino - 1983 - Science, Technology, and Human Values 8 (1):7-17.
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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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  • Scientific Essentialism.Brian Ellis - 2001 - New York: Cambridge University Press.
    Scientific Essentialism defends the view that the fundamental laws of nature depend on the essential properties of the things on which they are said to operate, and are therefore not independent of them. These laws are not imposed upon the world by God, the forces of nature or anything else, but rather are immanent in the world. Ellis argues that ours is a dynamic world consisting of more or less transient objects which are constantly interacting with each other, and whose (...)
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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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  • 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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  • Feminist Epistemology and Philosophy of Science.Elizabeth Anderson - 2014 - In Edward N. Zalta (ed.), The Stanford Encyclopedia of Philosophy. Stanford, CA: The Metaphysics Research Lab.
    Feminist epistemology and philosophy of science studies the ways in which gender does and ought to influence our conceptions of knowledge, the knowing subject, and practices of inquiry and justification. It identifies ways in which dominant conceptions and practices of knowledge attribution, acquisition, and justification systematically disadvantage women and other subordinated groups, and strives to reform these conceptions and practices so that they serve the interests of these groups. Various practitioners of feminist epistemology and philosophy of science argue that dominant (...)
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  • Progress and its Problems: Toward a Theory of Scientific Growth.Larry Laudan - 1977 - University of California Press.
    (This insularity was further promoted by the guileless duplicity of scholars in other fields, who were all too prepared to bequeath "the problem of ...
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  • Scientific objectivity and the logics of science.H. E. Longino - 1983 - Inquiry: An Interdisciplinary Journal of Philosophy 26 (1):85 – 106.
    This paper develops an account of scientific objectivity for a relativist theory of evidence. It briefly reviews the character and shortcomings of empiricist and wholist treatments of theory acceptance and objectivity and argues that the relativist account of evidence developed by the author in an earlier essay offers a more satisfactory framework within which to approach questions of justification and intertheoretic comparison. The difficulty with relativism is that it seems to eliminate objectivity from scientific method. Reconceiving objectivity as a function (...)
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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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  • Moral uncertainty and its consequences.Ted Lockhart - 2000 - New York: Oxford University Press.
    We are often uncertain how to behave morally in complex situations. In this controversial study, Ted Lockhart contends that moral philosophy has failed to address how we make such moral decisions. Adapting decision theory to the task of decision-making under moral uncertainly, he proposes that we should not always act how we feel we ought to act, and that sometimes we should act against what we feel to be morally right. Lockhart also discusses abortion extensively and proposes new ways to (...)
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  • (1 other version)Value in ethics and economics.Elizabeth Anderson - 1993 - Cambridge: Harvard University Press.
    Women as commercial baby factories, nature as an economic resource, life as one big shopping mall: This is what we get when we use the market as a common ...
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  • Science as practice and culture.Andrew Pickering (ed.) - 1992 - Chicago: University of Chicago Press.
    Science as Practice and Culture explores one of the newest and most controversial developments within the rapidly changing field of science studies: the move toward studying scientific practice--the work of doing science--and the associated move toward studying scientific culture, understood as the field of resources that practice operates in and on. Andrew Pickering has invited leading historians, philosophers, sociologists, and anthropologists of science to prepare original essays for this volume. The essays range over the physical and biological sciences and mathematics, (...)
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  • Confronting misconduct in science in the 1980s and 1990s: What has and has not been accomplished?Nicholas H. Steneck - 1999 - Science and Engineering Ethics 5 (2):161-176.
    In 1985, after nearly a decade of inconclusive professional response to public concern about misconduct in research, Congress passed legislation requiring action. Subsequent to this legislation, federal agencies and research universities adopted policies for responding to allegations of misconduct in research. Conferences, sessions at professional meetings, and special publications were organized. New educational initiatives were begun, many in response to a 1989 National Institutes of Health/ Alcohol, Drug Abuse, and Mental Health Administration requirement to include ethics instruction in training grants. (...)
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  • Comments on science and social responsibility: A role for philosophy of science?Helen E. Longino - 1997 - Philosophy of Science 64 (4):179.
    Each of the three papers offers a different model for the role philosophers of science might play in consideration of the relations of science to society. These comments address common themes in the three papers, articulate further questions for each, and suggest some historical shifts that require different forms of philosophical engagement now than in the early part of the century.
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  • Ethics of Scientific Research.Kristin Shrader-Frechette - 1999 - Ethics and the Environment 4 (2):241-245.
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  • A Qualitative Approach to Responsible Conduct of Research (RCR) Training Development: Identification of Metacognitive Strategies.Kligyte Vykinta, Marcy Richard, Sevier Sydney, Godfrey Elaine & Mumford Michael - 2008 - Science and Engineering Ethics 14 (1):3-31.
    Although Responsible Conduct of Research (RCR) training is common in the sciences, the effectiveness of RCR training is open to question. Three key factors appear to be particularly important in ensuring the effectiveness of ethics education programs: (1) educational efforts should be tied to day-to-day practices in the field, (2) educational efforts should provide strategies for working through the ethical problems people are likely to encounter in day-to-day practice, and (3) educational efforts should be embedded in a broader program of (...)
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  • Science without laws.Ronald N. Giere - 1999 - Chicago: University of Chicago Press.
    Debate over the nature of science has recently moved from the halls of academia into the public sphere, where it has taken shape as the "science wars." At issue is the question of whether scientific knowledge is objective and universal or socially mediated, whether scientific truths are independent of human values and beliefs. Ronald Giere is a philosopher of science who has been at the forefront of this debate from its inception, and Science without Laws offers a much-needed mediating perspective (...)
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  • (3 other versions)Progress and its problems: Towards a theory of scientific growth.L. Laudan - 1978 - British Journal for the Philosophy of Science 32 (1):57-71.
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  • (3 other versions)Science, Truth, and Democracy.A. Bird - 2003 - Mind 112 (448):746-749.
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  • Constructing quaternions: on the analysis of conceptual practice.Andrew Pickering & Adam Stephanides - 1992 - In Science as practice and culture. Chicago: University of Chicago Press. pp. 139--67.
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  • Beyond conflict of interest: The responsible conduct of research.Lawrence J. Rhoades - 2002 - Science and Engineering Ethics 8 (3):459-468.
    This paper reports data and scholarly opinion that support the perception of systemic flaws in the management of scientific professions and the research enterprise; explores the responsibility that professional status places on the scientific professions, and elaborates the concept of the responsible conduct of research (RCR). Data are presented on research misconduct, availability of research guidelines, and perceived research quality.
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  • Six domains of research ethics: A heuristic framework for the responsible conduct of research.Kenneth D. Pimple - 2002 - Science and Engineering Ethics 8 (2):191-205.
    The purpose of this paper is to provide a simple yet comprehensive organizing scheme for the responsible conduct of research (RCR). The heuristic offered here should prove helpful in research ethics education, where the many and heterogeneous elements of RCR can be bewildering, as well as research into research integrity and efforts to form RCR policy and regulations. The six domains are scientific integrity, collegiality, protection of human subjects, animal welfare, institutional integrity, and social responsibility.
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  • The Social Psychology of Science.William R. Shadish & Steve Fuller - 1994 - Guilford Press.
    The social psychology of science is a compelling new area of study whose shape is still emerging. This erudite and innovative book outlines a theoretical and methodological agenda for this new field, and bridges the gap between the individually focused aspects of psychology and the sociological elements of science studies. Presenting a side of social psychology that, until now, has received almost no attention in the social sciences literature, this volume offers the first detailed and comprehensive study of the social (...)
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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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  • The Role of the National Science Foundation Broader Impacts Criterion in Enhancing Research Ethics Pedagogy.Seth D. Baum, Michelle Stickler, James S. Shortle, Klaus Keller, Kenneth J. Davis, Donald A. Brown, Erich W. Schienke & Nancy Tuana - 2009 - Social Epistemology 23 (3):317-336.
    The National Science Foundation's Second Merit Criterion, or Broader Impacts Criterion , was introduced in 1997 as the result of an earlier Congressional movement to enhance the accountability and responsibility as well as the effectiveness of federally funded projects. We demonstrate that a robust understanding and appreciation of NSF BIC argues for a broader conception of research ethics in the sciences than is currently offered in Responsible Conduct of Research training. This essay advocates augmenting RCR education with training regarding broader (...)
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  • Application of a sensemaking approach to ethics training in the physical sciences and engineering.Vykinta Kligyte, Richard T. Marcy, Ethan P. Waples, Sydney T. Sevier, Elaine S. Godfrey, Michael D. Mumford & Dean F. Hougen - 2008 - Science and Engineering Ethics 14 (2):251-278.
    Integrity is a critical determinant of the effectiveness of research organizations in terms of producing high quality research and educating the new generation of scientists. A number of responsible conduct of research (RCR) training programs have been developed to address this growing organizational concern. However, in spite of a significant body of research in ethics training, it is still unknown which approach has the highest potential to enhance researchers’ integrity. One of the approaches showing some promise in improving researchers’ integrity (...)
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  • Fostering integrity in research: Definitions, current knowledge, and future directions. [REVIEW]Nicholas H. Steneck - 2006 - Science and Engineering Ethics 12 (1):53-74.
    This article is concerned with a discussion of the plausibility of the claim that GM technology has the potential to provide the hungry with sufficient food for subsistence. Following a brief outline of the potential applications of GM in this context, a history of the green revolution and its impact will be discussed in relation to the current developing world agriculture situation. Following a contemporary analysis of malnutrition, the claim that GM technology has the potential to provide the hungry with (...)
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  • A case for a duty to feed the hungry: GM plants and the third world.Lucy Carter - 2007 - Science and Engineering Ethics 13 (1):69-82.
    This article is concerned with a discussion of the plausibility of the claim that GM technology has the potential to provide the hungry with sufficient food for subsistence. Following a brief outline of the potential applications of GM in this context, a history of the green revolution and its impact will be discussed in relation to the current developing world agriculture situation. Following a contemporary analysis of malnutrition, the claim that GM technology has the potential to provide the hungry with (...)
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  • A Qualitative Approach to Responsible Conduct of Research Training Development: Identification of Metacognitive Strategies.Michael D. Mumford, Elaine S. Godfrey, Sydney T. Sevier, Richard T. Marcy & Vykinta Kligyte - 2008 - Science and Engineering Ethics 14 (1):33-39.
    Although Responsible Conduct of Research training is common in the sciences, the effectiveness of RCR training is open to question. Three key factors appear to be particularly important in ensuring the effectiveness of ethics education programs: educational efforts should be tied to day-to-day practices in the field, educational efforts should provide strategies for working through the ethical problems people are likely to encounter in day-to-day practice, and educational efforts should be embedded in a broader program of on-going career development efforts. (...)
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  • The Economics of Climate Change.Nicholas Stern - 2007 - Environmental Values 16 (4):532-536.
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  • Effects of training in the responsible conduct of research: A survey of graduate students in experimental sciences. [REVIEW]Michael Kalichman & Sarah Brown - 1998 - Science and Engineering Ethics 4 (4):487-498.
    In recent years, programs for training in research ethics have become widespread, but very little has been done to assess the effectiveness of this training. Because initial studies have failed to demonstrate a positive impact of research ethics training, this project defined two new outcome variables to be tested in a sample of graduate students at the University of California, San Diego. Trainees were surveyed to assess the role of ethics training in altering their perceptions about their own standards, or (...)
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  • Paradigms and Barriers: How Habits of Mind Govern Scientific Belief. [REVIEW]Andrew Pickering - 1995 - Philosophical Review 104 (2):335-336.
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  • Book Reviews : Science and Technology in a Multicultural World: The Cultural Politics of Facts and Artifacts, by David Hess. New York: Columbia University Press, 1995, 311 pp. $18.00 (paper. [REVIEW]Peter Taylor - 1996 - Science, Technology and Human Values 21 (3):358-362.
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  • (1 other version)Beyond the Ramsey model for climate change assessments.S. Baum - forthcoming - Ethics in Science and Environmental Politics.
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  • A qualitative approach to responsible conduct of research (rcr) training development: Identification of metacognitive strategies.Vykinta Kligyte, Richard T. Marcy, Sydney T. Sevier, Elaine S. Godfrey & Michael D. Mumford - 2008 - Science and Engineering Ethics 14 (1):3-31.
    Although Responsible Conduct of Research (RCR) training is common in the sciences, the effectiveness of RCR training is open to question. Three key factors appear to be particularly important in ensuring the effectiveness of ethics education programs: (1) educational efforts should be tied to day-to-day practices in the field, (2) educational efforts should provide strategies for working through the ethical problems people are likely to encounter in day-to-day practice, and (3) educational efforts should be embedded in a broader program of (...)
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  • Student perceptions of the effectiveness of education in the responsible conduct of research.Dena K. Plemmons, Suzanne A. Brody & Michael W. Kalichman - 2006 - Science and Engineering Ethics 12 (3):571-582.
    Responsible conduct of research courses are widely taught, but little is known about the purposes or effectiveness of such courses. As one way to assess the purposes of these courses, students were surveyed about their perspectives after recent completion of one of eleven different research ethics courses at ten different institutions. Participants enrolled in RCR courses in spring and fall of 2003 received a voluntary, anonymous survey from their instructors at the completion of the course. Responses were received from 268 (...)
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  • Ethical decision-making in research: Identifying all competing interests: Commentary on “six domains of research ethics”.Michael Kalichman - 2002 - Science and Engineering Ethics 8 (2):215-218.
    Ethical dilemmas are the result of conflicts between potential benefits or harms for two or more competing interests. Therefore, ethical decision-making implies a responsibility to identify those interests, harms, and benefits. For this purpose, researchers have responsibilities to the research, the subjects of research, other researchers, the institution, society, the environment, and self.
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  • (1 other version)Beyond “Bad Science‘.Helen Longino - 1983 - Science, Technology, and Human Values 8 (1):7-17.
    It is conventional to treat instances of research where social values have played a role as “bad science.” This article discusses instances of research that meet standards of “good science”, but that are nevertheless inflected by social values and uses these examples to argue that values can enter into research without thereby disqualifying the scientific status of the research. Other categories are needed to accommodate this kind of research.
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  • Ethics of Scientific Research.Vivian Weil - 1996 - Noûs 30 (1):133-143.
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  • A mathematical theory of saving.Frank Ramsey - 1926/1931 - Economic Journal 38 (152):543–59.
    In chapter 3, we reflected on the view that the fallacies on the traditional list are inherently dialectical. The answer proposed there was that, with the possible exception of, e.g., begging the question and many questions, they are not. The aim of the present chapter is to cancel theispossibility by showing that begging the question and many questions are not in fact dialectical fallacies. The reason for this is not that question-begging and many questions aren’t (at least dominantly) dialectical practices. (...)
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  • A Science of Mars or of Venus?Mary Tiles - 1987 - Philosophy 62 (241):293 - 306.
    For as long as there has been anything worthy of the name of science, there have been those who have criticized its claim to superior knowledge. With the birth and prodigious growth of modern science, the corresponding growthof critical opinion led, in the eighteenth century, to a divorce of the sciences from the humanities around which our educational institutions, and our universities in particular, have been built. It is this divorce which renders problematic the status of the social or human (...)
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  • (1 other version)Beyond the Ramsey model for climate change assessments.S. Baum - 2007 - Ethics in Science and Environmental Politics 9:15-21.
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  • Governing Science and Technology in a Democracy.Malcolm L. Goggin & James C. Petersen - 1988 - Science and Society 52 (4):476-479.
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