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  1. How to Study Scientific Explanation?Erik Weber, Leen De Vreese & Jeroen Van Bouwel - unknown
    This paper investigates the working-method of three important philosophers of explanation: Carl Hempel, Philip Kitcher and Wesley Salmon. We argue that they do three things: construct an explication in the sense of Carnap, which then is used as a tool to make descriptive and normative claims about the explanatory practice of scientists. We also show that they did well with respect to, but that they failed to give arguments for their descriptive and normative claims. We think it is the responsibility (...)
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  • The Logical Foundations of Probability. [REVIEW]Rudolf Carnap - 1950 - Journal of Philosophy 60 (13):362-364.
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  • In favour of a Millian proposal to reform biomedical research.Julian Reiss - 2010 - Synthese 177 (3):427 - 447.
    One way to make philosophy of science more socially relevant is to attend to specific scientific practises that affect society to a great extent. One such practise is biomedical research. This paper looks at contemporary U.S. biomedical research in particular and argues that it suffers from important epistemic, moral and socioeconomic failings. It then discusses and criticises existing approaches to improve on the status quo, most prominently by Thomas Pogge (a political philosopher), Joseph Stiglitz (a Nobel-prize winning economist) and James (...)
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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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  • (1 other version)Logical foundations of probability.Rudolf Carnap - 1950 - Chicago]: Chicago University of Chicago Press.
    APA PsycNET abstract: This is the first volume of a two-volume work on Probability and Induction. Because the writer holds that probability logic is identical with inductive logic, this work is devoted to philosophical problems concerning the nature of probability and inductive reasoning. The author rejects a statistical frequency basis for probability in favor of a logical relation between two statements or propositions. Probability "is the degree of confirmation of a hypothesis (or conclusion) on the basis of some given evidence (...)
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  • Responsible conduct of research.Adil E. Shamoo - 2009 - New York: Oxford University Press. Edited by David B. Resnik.
    Scientific research and ethics -- Ethical theory and decision making -- Data acquisition and management -- Mentoring and professional relationship -- Collaboration in research -- Authorship -- Publication and peer review -- Misconduct in research -- Intellectual property -- Conflicts of interest and scientific objectivity -- The use of animals in research -- The use of human subjects in research -- The use of vulnerable subjects in research -- Genetics, cloning, and stem cell research -- International research.
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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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  • 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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  • Logical Foundations of Probability.Rudolf Carnap - 1950 - Mind 62 (245):86-99.
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  • Scientific Research and the Public Trust.David B. Resnik - 2011 - Science and Engineering Ethics 17 (3):399-409.
    This essay analyzes the concept of public trust in science and offers some guidance for ethicists, scientists, and policymakers who use this idea defend ethical rules or policies pertaining to the conduct of research. While the notion that public trusts science makes sense in the abstract, it may not be sufficiently focused to support the various rules and policies that authors have tried to derive from it, because the public is not a uniform body with a common set of interests. (...)
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  • Guest Authorship and Ghostwriting in Publications Related to Rofecoxib.Joseph Ross, Kevin Hill, David Egilman & Harlan Krumholz - 2008 - Journal of the American Medical Association 299 (15):1800-12.
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  • The integrity of science: What it means, why it matters.Susan Haack - 2007 - Contrastes: Revista Internacional de Filosofía:5-26.
    The many meanings of integrity are distinguished. This paper focuses specifically on how the concept of integrity in the sense of firm adherence to values applies to science qua institution. The most relevant values - the epistemological values of evidence-sharing and respect for evidence - are articulated, and shown to be rooted in the character of the scientific enterprise. This paves the way for an exploration of the circumstances that presently threaten to erode commitment to these core values: an exploration (...)
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