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  1. Science and Informed, Counterfactual, Democratic Consent.Arnon Keren - 2015 - Philosophy of Science 82 (5):1284-1295.
    On many science-related policy questions, the public is unable to make informed decisions, because of its inability to make use of knowledge obtained by scientists. Philip Kitcher and James Fishkin have both suggested therefore that on certain science-related issues, public policy should not be decided on by actual democratic vote, but should instead conform to the public’s counterfactual informed democratic decision. Indeed, this suggestion underlies Kitcher’s specification of an ideal of a well-ordered science. This article argues that this suggestion misconstrues (...)
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  • The Social Value of Knowledge and International Clinical Research.Danielle M. Wenner - 2013 - Developing World Bioethics 15 (2):76-84.
    In light of the growth in the conduct of international clinical research in developing populations, this paper seeks to explore what is owed to developing world communities who host international clinical research. Although existing paradigms for assigning and assessing benefits to host communities offer valuable insight, I criticize their failure to distinguish between those benefits which can justify the conduct of research in a developing world setting and those which cannot. I argue that the justification for human subjects research is (...)
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  • Do new Ethical Issues Arise at Each Stage of Nanotechnological Development?Céline Kermisch - 2012 - NanoEthics 6 (1):29-37.
    The literature concerning ethical issues associated with nanotechnologies has become prolific. However, it has been claimed that ethical problems are only at stake with rather sophisticated nanotechnologies such as active nanostructures, integrated nanosystems and heterogeneous molecular nanosystems, whereas more basic nanotechnologies such as passive nanostructures mainly pose technical difficulties. In this paper I argue that fundamental ethical issues are already at stake with this more basic kind of nanotechnologies and that ethics impacts every kind of nanotechnologies, already from the simplest (...)
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  • Representations of nanotechnology in norwegian newspapers — implications for public participation.Kamilla Lein Kjølberg - 2009 - NanoEthics 3 (1):61-72.
    Public participation is a prominent issue in the nanoethics literature. This paper analyses the emerging awareness of nanoscience and nanotechnology (nano S&T) in the Norwegian public sphere, as evidenced by newspaper coverage. In particular, attention is on representations of nano S&T and their relation to public participation. Three dominant representations are found; nano S&T as positive, nano S&T as important for the future and nano S&T as under control. It is argued that the prominence of these representations is unfortunate because (...)
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  • La biología sintética y el imperativo de mejoramiento.Antonio Diéguez - 2016 - Isegoría 55:503-528.
    La biología sintética encierra un enorme potencial transformador de los organismos vivos, incluyendo en un futuro quizás no muy lejano la transformación del propio genoma humano. Son claras las conexiones que pueden establecerse entre este enorme potencial transformador y las pretensiones de los partidarios del biomejoramiento humano. La construcción de genomas completamente sintéticos puede cambiar de forma definitiva e irreversible aspectos fundamentales de la vida humana, quizás hasta el punto de dar lugar a un organismo que difiera de nuestra especie (...)
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  • Framing the Discussion: Nanotechnology and the Social Construction of Technology--What STS Scholars Are Saying.Stephen H. Cutcliffe, Christine M. Pense & Michael Zvalaren - 2012 - NanoEthics 6 (2):81-99.
    The emergence of nanotechnology, with all its promises of economic, social, and medical benefits, along with dire predictions of environmental, health, and safety threats, has occasioned an active debate in the Science and Technology Studies field, in which we have seen five distinct conversations that frame the discussion. The topical threads include ethics, regulation, opportunities and threats including utopian/dystopian visions of the future, public perception, public participation. These conversational distinctions are not absolutes with firm borders as they clearly overlap at (...)
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  • The social organisation of science as a question for philosophy of science.Jaana Eigi - 2016 - Dissertation, University of Tartu
    Philosophy of science is showing an increasing interest in the social aspects and the social organisation of science—the ways social values and social interactions and structures play a role in the creation of knowledge and the ways this role should be taken into account in the organisation of science and science policy. My thesis explores a number of issues related to this theme. I argue that a prominent approach to the social organisation of science—Philip Kitcher’s well-ordered science—runs into a number (...)
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  • Entering the Social Experiment: A Case for the Informed Consent of Graduate Engineering Students.Erik Fisher & Michael Lightner - 2009 - Social Epistemology 23 (3):283-300.
    Taking up the notion of engineering as social experimentation, this paper argues that engineering research laboratory directors have a responsibility to inform graduate engineering students who participate in their research projects of the potential broader social dimensions of those projects. Informing engineers-in-the-making of the broader social dimensions of the research they are learning to conduct would help ensure their future capacity to act as ethically responsible social experimenters. The paper also argues that graduate engineers have a right to be informed (...)
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  • Nanotechnology and Ethics: The Role of Regulation Versus Self-Commitment in Shaping Researchers' Behavior. [REVIEW]Matthias Fink, Rainer Harms & Isabella Hatak - 2012 - Journal of Business Ethics 109 (4):569-581.
    The governance of nanotechnology seeks to limit its risks, without constraining opportunities. The literature on the effectiveness of approaches to governance has neglected approaches that impact directly on the behavior of a researcher. We analyze the effectiveness of legal regulations versus regulation via self-commitment. Then, we refine this model by analyzing competition and autonomy as key contingency factors. In the first step, qualitative interviews with nanotechnology researchers are conducted to reflect this model. In the second step, its empirical relevance is (...)
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