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  1. Data-Centric Biology: A Philosophical Study.Sabina Leonelli - 2016 - London: University of Chicago Press.
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  • Science After the Practice Turn in the Philosophy, History, and Social Studies of Science.Lena Soler, Sjoerd Zwart, Michael Lynch & Vincent Israel-Jost (eds.) - 2014 - New York: Routledge.
    In the 1980s, philosophical, historical and social studies of science underwent a change which later evolved into a turn to practice. Analysts of science were asked to pay attention to scientific practices in meticulous detail and along multiple dimensions, including the material, social and psychological. Following this turn, the interest in scientific practices continued to increase and had an indelible influence in the various fields of science studies. No doubt, the practice turn changed our conceptions and approaches of science, but (...)
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  • (3 other versions)Are RCTs the gold standard?Nancy Cartwright - 2007 - In Causal powers: what are they? why do we need them? what can be done with them and what cannot? Centre for Philosophy of Natural and Social Science, London School of Economics and Political Science.
    The claims of RCTs to be the gold standard rest on the fact that the ideal RCT is a deductive method: if the assumptions of the test are met, a positive result implies the appropriate causal conclusion. This is a feature that RCTs share with a variety of other methods, which thus have equal claim to being a gold standard. This paper describes some of these other deductive methods and also some useful non-deductive methods, including the hypothetico-deductive method. It argues (...)
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  • Planck's Principle.David L. Hull, Peter D. Tessner & Arthur M. Diamond - 1978 - Science 202 (4369):717-723.
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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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  • 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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  • How Scientific Practices Matter: Reclaiming Philosophical Naturalism.Joseph Rouse - 2002 - University of Chicago Press.
    How can we understand the world as a whole instead of separate natural and human realms? Joseph T. Rouse proposes an approach to this classic problem based on radical new conceptions of both philosophical naturalism and scientific practice.
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  • Biodefence and the production of knowledge: rethinking the problem.Allen Buchanan & Maureen C. Kelley - 2013 - Journal of Medical Ethics 39 (4):195-204.
    Next SectionBiodefence, broadly understood as efforts to prevent or mitigate the damage of a bioterrorist attack, raises a number of ethical issues, from the allocation of scarce biomedical research and public health funds, to the use of coercion in quarantine and other containment measures in the event of an outbreak. In response to the US bioterrorist attacks following September 11, significant US policy decisions were made to spur scientific enquiry in the name of biodefence. These decisions led to a number (...)
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  • The methodology of scientific research programmes.Imre Lakatos - 1978 - New York: Cambridge University Press.
    Imre Lakatos' philosophical and scientific papers are published here in two volumes. Volume I brings together his very influential but scattered papers on the philosophy of the physical sciences, and includes one important unpublished essay on the effect of Newton's scientific achievement. Volume II presents his work on the philosophy of mathematics (much of it unpublished), together with some critical essays on contemporary philosophers of science and some famous polemical writings on political and educational issues. Imre Lakatos had an influence (...)
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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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  • Social practices and normativity.Joseph Rouse - 2007 - Philosophy of the Social Sciences 37 (1):46-56.
    The Social Theory of Practices effectively criticized conceptions of social practices as rule-governed or regularity-exhibiting performances. Turner’s criticisms nevertheless overlook an alternative, "normative" conception of practices as constituted by the mutual accountability of their performances. Such a conception of practices also allows a more adequate understanding of normativity in terms of accountability to what is at issue and at stake in a practice. We can thereby understand linguistic practice and normative authority without having to posit stable meanings, rules, norms, or (...)
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  • Values Levers: Building Ethics into Design.Katie Shilton - 2013 - Science, Technology, and Human Values 38 (3):374-97.
    As information systems transform our world, computer scientists design affordances that influence the uses and impacts of these technological objects. This article describes how the practices of design affect the social values materialized in emerging technologies, and explores how design practices can encourage ethical reflection and action. The article presents an ethnography of a laboratory that engineered software for mobile phones to track users’ locations, habits, and behaviors. This technical work raised a number of ethical challenges, particularly around questions of (...)
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  • The world scientific community: Globality and globalisation. [REVIEW]Thomas Schott - 1991 - Minerva 29 (4):440-462.
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  • The narrative reconstruction of science.Joseph Rouse - 1990 - Inquiry: An Interdisciplinary Journal of Philosophy 33 (2):179 – 196.
    In contrast to earlier accounts of the epistemic significance of narrative, it is argued that narrative is important in natural scientific knowledge. To recognize this, we must understand narrative not as a literary form in which knowledge is written, but as the temporal organization of the understanding of practical activity. Scientific research is a social practice, whereby researchers structure the narrative context in which past work is interpreted and significant possibilities for further work are projected. This narrative field displays a (...)
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  • (1 other version)Predicting weather and climate: Uncertainty, ensembles and probability.Wendy S. Parker - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (3):263-272.
    Simulation-based weather and climate prediction now involves the use of methods that reflect a deep concern with uncertainty. These methods, known as ensemble prediction methods, produce multiple simulations for predictive periods of interest, using different initial conditions, parameter values and/or model structures. This paper provides a non-technical overview of current ensemble methods and considers how the results of studies employing these methods should be interpreted, paying special attention to probabilistic interpretations. A key conclusion is that, while complicated inductive arguments might (...)
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  • Unsimple Truths: Science, Complexity, and Policy.Sandra D. Mitchell - 2009 - London: University of Chicago Press.
    The world is complex, but acknowledging its complexity requires an appreciation for the many roles context plays in shaping natural phenomena. In _Unsimple Truths, _Sandra Mitchell argues that the long-standing scientific and philosophical deference to reductive explanations founded on simple universal laws, linear causal models, and predict-and-act strategies fails to accommodate the kinds of knowledge that many contemporary sciences are providing about the world. She advocates, instead, for a new understanding that represents the rich, variegated, interdependent fabric of many levels (...)
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  • (1 other version)Calculating life? Duelling discourses in interdisciplinary systems biology.Jane Calvert & Joan H. Fujimura - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (2):155-163.
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  • The Modern Commercialization of Science is a Passel of Ponzi Schemes1.Philip Mirowski - 2012 - Social Epistemology 26 (3-4):285-310.
    A wide array of phenomena lumped together under the rubric of the ?commercialization of science,? the ?commodification of research,? and the ?marketplace of ideas? are both figuratively and literally Ponzi schemes. This thesis grows out of my experience of working on two concurrent projects: the first, an attempt to understand the forces behind the progressive commercialization of science; and the second, when it dawned upon me that the financial crisis then unfolding was resulting in the deepest worldwide economic contraction since (...)
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  • Disciplinary capture and epistemological obstacles to interdisciplinary research: Lessons from central African conservation disputes.Evelyn Brister - 2016 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 56:82-91.
    Complex environmental problems require well-researched policies that integrate knowledge from both the natural and social sciences. Epistemic differences can impede interdisciplinary collaboration, as shown by debates between conservation biologists and anthropologists who are working to preserve biological diversity and support economic development in central Africa. Disciplinary differences with regard to 1) facts, 2) rigor, 3) causal explanation, and 4) research goals reinforce each other, such that early decisions about how to define concepts or which methods to adopt may tilt research (...)
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  • Ethical and philosophical consideration of the dual-use dilemma in the biological sciences.Seumas Miller & Michael J. Selgelid - 2007 - Science and Engineering Ethics 13 (4):523-580.
    The dual-use dilemma arises in the context of research in the biological and other sciences as a consequence of the fact that one and the same piece of scientific research sometimes has the potential to be used for bad as well as good purposes. It is an ethical dilemma since it is about promoting good in the context of the potential for also causing harm, e.g., the promotion of health in the context of providing the wherewithal for the killing of (...)
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  • Dual Use Science and Technology, Ethics and Weapons of Mass Destruction.Seumas Miller - 2018 - Cham: Springer Verlag.
    This book deals with the problem of dual-use science research and technology. It first explains the concept of dual use and then offers analyses of collective knowledge and collective ignorance. It goes on to present a theory of collective responsibility, followed by four chapters focusing on a particular scientific field or industry of dual use concern: the chemical industry, the nuclear industry, cyber-technology and the biological sciences. The problem of dual-use science research and technology arises because such research and technology (...)
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  • Controlling military technology.Karl Lautenschläger - 1985 - Ethics 95 (3):692-711.
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  • Culture of Disengagement in Engineering Education.Erin A. Cech - 2014 - Science, Technology, and Human Values 39 (1):42-72.
    Much has been made of the importance of training ethical, socially conscious engineers, but does US engineering education actually encourage neophytes to take seriously their professional responsibility to public welfare? Counter to such ideals of engagement, I argue that students’ interest in public welfare concerns may actually decline over the course of their engineering education. Using unique longitudinal survey data of students at four colleges, this article examines (a) how students’ public welfare beliefs change during their engineering education, (b) whether (...)
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  • (4 other versions)The Structure of Scientific Revolutions.Thomas Kuhn - 2009 - In Michael Ruse (ed.), Philosophy After Darwin: Classic and Contemporary Readings. Princeton University Press. pp. 176-177.
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  • Technology as empowerment: A capability approach to computer ethics. [REVIEW]Justine Johnstone - 2007 - Ethics and Information Technology 9 (1):73-87.
    Standard agent and action-based approaches in computer ethics tend to have difficulty dealing with complex systems-level issues such as the digital divide and globalisation. This paper argues for a value-based agenda to complement traditional approaches in computer ethics, and that one value-based approach well-suited to technological domains can be found in capability theory. Capability approaches have recently become influential in a number of fields with an ethical or policy dimension, but have not so far been applied in computer ethics. The (...)
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  • (1 other version)Values in University–Industry Collaborations: The Case of Academics Working at Universities of Technology.Rafaela Hillerbrand & Claudia Werker - 2019 - Science and Engineering Ethics 25 (6):1633-1656.
    In the applied sciences and in engineering there is often a significant overlap between work at universities and in industry. For the individual scholar, this may lead to serious conflicts when working on joint university–industry projects. Differences in goals, such as the university’s aim to disseminate knowledge while industry aims to appropriate knowledge, might lead to complicated situations and conflicts of interest. The detailed cases of two electrical engineers and two architects working at two different universities of technology illustrate the (...)
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  • Genetically Modified Crops, Inclusion, and Democracy.Daniel J. Hicks - 2017 - Perspectives on Science 25 (4):488-520.
    The public controversy over genetically modified crops is predominantly framed in terms of concerns over health and safety. Within this framing, the primary point of controversy is whether GM foods are likely to cause bio-physiological injury or disease to human consumers; a secondary issue, but one that still fits within the health and safety framing, is whether the cultivation of GM crops is likely to cause bio-physiological injury or disease to non-target species or ecosystems more broadly. Proponents of the development (...)
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  • Philosophy of Science After Feminism.Janet A. Kourany - 2010 - , US: Oxford University Press.
    A feminist primer for philosophers of science -- The legacy of twentieth century philosophy of science -- What feminist science studies can offer -- Challenges from every direction -- The prospects of twenty-first century philosophy of science.
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  • Dual-use decision making: relational and positional issues.Nicholas G. Evans - 2014 - Monash Bioethics Review 32 (3-4):268-283.
    Debates about dual-use research often turn on the potential for scientific research to be used to benefit or harm humanity. This dual-use potential is conventionally understood as the product of the magnitude of the harms and benefits of dual-use research, multiplied by their likelihood. This account, however, neglects important social aspects of the use of science and technology. In this paper, I supplement existing conceptions of dual-use potential to account for the social context of dual-use research. This account incorporates relational (...)
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  • Transatlantic Divergences in Citizen Science Ethics—Comparative Analysis of the DIYbio Code of Ethics Drafts of 2011.Kathleen Eggleson - 2014 - NanoEthics 8 (2):187-192.
    Codes of ethics were drafted by participants in the European and North American Congresses of DIYbio, a single global organization of informal biotechnology practitioners, in 2011. In general, the existence of a code of ethics amongst a community is itself significant. Codes of professional ethics are common in scientific and engineering fields, as well as in DIY communities. It is also significant, and highly unusual, that DIYbio has maintained two separate codes of ethics years after their drafting. While agreement was (...)
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  • The Moral Terrain of Science.Heather Douglas - 2014 - Erkenntnis 79 (S5):1-19.
    The moral terrain of science, the full range of ethical considerations that are part of the scientific endeavor, has not been mapped. Without such a map, we cannot examine the responsibilities of scientists to see if the institutions of science are adequately constructed. This paper attempts such a map by describing four dimensions of the terrain: (1) the bases to which scientists are responsible (scientific reasoning, the scientific community, and the broader society); (2) the nature of the responsibility (general or (...)
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  • The Moral Responsibilities of Scientists (Tensions between Autonomy and Responsibility).Heather E. Douglas - 2003 - American Philosophical Quarterly 40 (1):59 - 68.
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  • Genesis and development of a scientific fact.Ludwik Fleck - 1979 - Chicago: University of Chicago Press. Edited by T. J. Trenn & R. K. Merton.
    The sociological dimension of science is studied using the discovery of the Wasserman reaction and its accidental application as a test for syphilis as a basis, ...
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  • Assessing the Science -- Society Relation: The Case of the U.S. National Science Foundation's Second Merit Review Criterion.J. Britt Holbrook - 2005 - Technology in Society 27 (4):437--451.
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  • Public knowledge and the difficulties of democracy.Philip Kitcher - 2006 - Social Research: An International Quarterly 73 (4):1205-1224.
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  • Sustainability.Bryan Norton - 2007 - Environmental Values 16 (2):272-277.
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