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  1. Social labs as an inclusive methodology to implement and study social change: the case of responsible research and innovation.Jos Timmermans, V. Blok, Robert Braun, R. Wesselink & Rasmus Øjvind Nielsen - forthcoming - Journal of Responsible Innovation.
    The embedding and promotion of social change is faced with aparadoxical challenge. In order to mainstream an approach to socialchange such as responsible research and innovation and makeit into a practical reality rather than an abstract ideal, we need tohave conceptual clarity and empirical evidence. But, in order to beable to gather empirical evidence, we have to presuppose that theapproach already exists in practice. This paper proposes a social labmethodology that is suited to deal with this circularity. Themethodology combines the (...)
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  • In defence of governance: ethics review and social research.Mark Sheehan, Michael Dunn & Kate Sahan - 2018 - Journal of Medical Ethics 44 (10):710-716.
    There is a growing body of literature that has sought to undermine systems of ethical regulation, and governance more generally, within the social sciences. In this paper, we argue that any general claim for a system of research ethics governance in social research depends on clarifying the nature of the stake that society has in research. We show that certain accounts of this stake—protecting researchers’ freedoms; ensuring accountability for resources; safeguarding welfare; and supporting democracy—raise relevant ethical considerations that are reasonably (...)
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  • Scientific freedom: its grounds and their limitations.Torsten Wilholt - 2010 - Studies in History and Philosophy of Science Part A 41 (2):174-181.
    In various debates about science, appeal is made to the freedom of scientific research. A rationale in favor of this freedom is rarely offered. In this paper, two major arguments are reconstructed that promise to lend support to a principle of scientific freedom. According to the epistemological argument, freedom of research is required in order to organize the collective cognitive effort we call science efficiently. According to the political argument, scientific knowledge needs to be generated in ways that are independent (...)
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  • Geoengineering as Collective Experimentation.Jack Stilgoe - 2016 - Science and Engineering Ethics 22 (3):851-869.
    Geoengineering is defined as the ‘deliberate and large-scale intervention in the Earth’s climatic system with the aim of reducing global warming’. The technological proposals for doing this are highly speculative. Research is at an early stage, but there is a strong consensus that technologies would, if realisable, have profound and surprising ramifications. Geoengineering would seem to be an archetype of technology as social experiment, blurring lines that separate research from deployment and scientific knowledge from technological artefacts. Looking into the experimental (...)
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  • H5N1 Avian Flu Research and the Ethics of Knowledge.David B. Resnik - 2013 - Hastings Center Report 43 (2):22-33.
    Scientists and policy‐makers have long understood that the products of research can often be used for good or evil. Nuclear fission research can be used to generate electricity or create a powerful bomb. Studies on the genetics of human populations can be used to understand relationships between different groups or to perpetuate racist ideologies. While the notion that scientific research often has beneficial and harmful uses has been discussed before, the threat of bioterrorism—a concern that has only grown since 2001—has (...)
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  • Science in the context of application: methodological change, conceptual transformation, cultural reorientation.Martin Carrier & Alfred Nordmann - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 1--7.
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  • Holism and Entrenchment in Climate Model Validation.Johannes Lenhard & Eric Winsberg - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 115--130.
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  • Computational Science and its Effects.Paul Humphreys - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 131--142.
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  • The political economy of technoscience.Astrid Schwarz & Alfred Nordmann - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 317--336.
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  • Conditions of Science: The Three-Way Tension of Freedom, Accountability and Utility.Torsten Wilholt & Hans Glimell - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 351--370.
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  • Bringing the Marketplace into Science: On the Neoliberal Defense of the Commercialization of Scientific Research.Justin Biddle - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 245--269.
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  • Knowledge, politics, and commerce: Science under the pressure of practice.Martin Carrier - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 11--30.
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  • A Social Licence for Science: Capturing the Public or Co-Constructing Research?Sujatha Raman & Alison Mohr - 2014 - Social Epistemology 28 (3-4):258-276.
    The “social licence to operate” has been invoked in science policy discussions including the 2007 Universal Ethical Code for scientists issued by the UK Government Office for Science. Drawing from sociological research on social licence and STS interventions in science policy, the authors explore the relevance of expectations of a social licence for scientific research and scientific contributions to public decision-making, and what might be involved in seeking to create one. The process of seeking a social licence is not the (...)
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  • Materials as Machines.Bernadette Bensaude-Vincent - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 101--111.
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  • Science in the context of technology.Alfred Nordmann - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 467--482.
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  • Transforming Objects into Data: How Minute Technicalities of Recording “Species Location” Entrench a Basic Challenge for Biodiversity.Ayelet Shavit & James Griesemer - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 169--193.
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  • Protected spaces of science: their emergence and further evolution in a changing world.Arie Rip - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 197--220.
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  • Science as public service.Hannah Hilligardt - 2024 - European Journal for Philosophy of Science 14 (3):1-25.
    The problem this paper addresses is that scientists have to take normatively charged decisions which can have a significant impact on individual members of the public or the public as a whole. And yet mechanisms to exercise democratic control over them are often absent. Given the normative nature of these choices, this is often perceived to be at odds with basic democratic principles. I show that this problem applies in similar ways to civil service institutions and draw on political philosophy (...)
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  • (1 other version)Thoughts on politicization of science through commercialization.M. Norton Wise - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 283--299.
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  • An Epoch-Making Change in the Development of Science? A Critique of the “Epochal-Break-Thesis”.Gregor Schiemann - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 431--453.
    In recent decades, several authors have claimed that an epoch-making change in the development of science is taking place. A closer examination of this claim shows that these authors take different – and problematic – concepts of an epochal break as their points of departure. In order to facilitate an evaluation of the current development of science, I would like to propose a concept of an epochal change according to which it is not necessarily a discontinuous process that typically begins (...)
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  • Scientific Research and Human Rights: A Response to Kitcher on the Limitations of Inquiry.Elizabeth Victor - 2013 - Science and Engineering Ethics 20 (4):1045-1063.
    In his recent work exploring the role of science in democratic societies Kitcher claims that scientists ought to have a prominent role in setting the agenda for and limits to research. Against the backdrop of the claim that the proper limits of scientific inquiry is John Stuart Mill’s Harm Principle , he identifies the limits of inquiry as the point where the outcomes of research could cause harm to already vulnerable populations. Nonetheless, Kitcher argues against explicit limitations on unscrupulous research (...)
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  • Integrating the Ethical into Scientific Rationality.Janet A. Kourany - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 371--386.
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  • What Makes Computer Science a Science?Michael S. Mahoney - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 389--408.
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  • The Cognitive, Instrumental and Institutional Origins of Nanoscale Research: The Place of Biology.Anne Marcovich & Terry Shinn - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 221--242.
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  • Multi-level complexities in technological development: Competing strategies for drug discovery.Matthias Adam - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 67--83.
    Drug development regularly has to deal with complex circumstances on two levels: the local level of pharmacological intervention on specific target proteins, and the systems level of the effects of pharmacological intervention on the organism. Different development strategies in the recent history of early drug development can be understood as competing attempts at coming to grips with these multi-level complexities. Both rational drug design and high-throughput screening concentrate on the local level, while traditional empirical search strategies as well as recent (...)
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  • Scientific practices and their social context.Daniel Hicks - 2012 - Dissertation, U. Of Notre Dame
    My dissertation combines philosophy of science and political philosophy. Drawing directly on the work of Alasdair MacIntyre and inspired by John Dewey, I develop two rival conceptions of scientific practice. I show that these rivals are closely linked to the two basic sides in the science and values debate -- the debate over the extent to which ethical and political values may legitimately influence scientific inquiry. Finally, I start to develop an account of justice that is sensitive to these legitimate (...)
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  • Between the Pure and Applied: The Search for the Elusive Middle Ground.Margaret Morrison - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 31--45.
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  • Expertise in Methods, Methods of Expertise.Carsten Reinhardt - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 143--159.
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  • Recent Orientations and Reorientations in the Life Sciences.Hans-Jörg Rheinberger - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 161--168.
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  • Political Effectiveness in Science and Technology.Daniel Sarewitz - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 301--315.
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  • Epilogue: Publics, Hybrids, Transparency, Monsters and the Changing Landscape around Science.Stephen Turner - 2018 - In Sarah Hartley, Sujatha Raman, Alexander Smith & Brigitte Nerlich, Science and the politics of openness : Here be monsters. Manchester University Press.
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  • Private interests count too.Mark S. Frankel - 2009 - Science and Engineering Ethics 15 (3):367-373.
    Along with concerns about the deleterious effects of politically driven government intervention on science are the intrusion of private sector interests into the conduct of research and the reporting of its results. Scientists are generally unprepared for the challenges posed by private interests seeking to advance their economic, political, or ideological agendas. They must educate and prepare themselves for assaults on scientific freedom, not because it is a legal right, but rather because social progress depends on it.
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  • Everything New Is Old Again: What Place Should Applied Science Have in the History of Science?Ann Johnson - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 455--466.
    Science studies scholars of the twenty-first century have been arguing for a reconceptualization of science based on the emergence of new values and practices. Allegedly, these new norms have come from science in the context of application. However, the argument here is that science in the context of application is a phenomenon with as long and rich a history as so-called pure or basic science. Science in the context of application only appears to be new since so little light has (...)
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  • Black-Boxing Organisms, Exploiting the Unpredictable: Control Paradigms in Human–Machine Translations.Jutta Weber - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 409--429.
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  • Science, the Public and the Media–Views from Everywhere.Peter Weingart - 2011 - In M. Carrier & A. Nordmann, Science in the Context of Application. Springer. pp. 337--348.
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  • Promoting Data Sharing: The Moral Obligations of Public Funding Agencies.Christian Wendelborn, Michael Anger & Christoph Schickhardt - 2024 - Science and Engineering Ethics 30 (4):1-31.
    Sharing research data has great potential to benefit science and society. However, data sharing is still not common practice. Since public research funding agencies have a particular impact on research and researchers, the question arises: Are public funding agencies morally obligated to promote data sharing? We argue from a research ethics perspective that public funding agencies have several pro tanto obligations requiring them to promote data sharing. However, there are also pro tanto obligations that speak against promoting data sharing in (...)
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  • Editors' Overview: Forbidding Science? [REVIEW]Gary E. Marchant & Stephanie J. Bird - 2009 - Science and Engineering Ethics 15 (3):263-269.
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