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  1. 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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  • Socio-ethical Education in Nanotechnology Engineering Programmes: A Case Study in Malaysia. [REVIEW]Balamuralithara Balakrishnan, Pek Hoon Er & Punita Visvanathan - 2013 - Science and Engineering Ethics 19 (3):1341-1355.
    The unique properties of nanotechnology have made nanotechnology education and its related subjects increasingly important not only for students but for mankind at large. This particular technology brings educators to work together to prepare and produce competent engineers and scientists for this field. One of the key challenges in nanotechnology engineering is to produce graduate students who are not only competent in technical knowledge but possess the necessary attitude and awareness toward the social and ethical issues related to nanotechnology. In (...)
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  • Social and ethical dimensions of nanoscale science and engineering research.Aldrin E. Sweeney - 2006 - Science and Engineering Ethics 12 (3):435-464.
    Continuing advances in human ability to manipulate matter at the atomic and molecular levels (i.e. nanoscale science and engineering) offer many previously unimagined possibilities for scientific discovery and technological development. Paralleling these advances in the various science and engineering subdisciplines is the increasing realization that a number of associated social, ethical, environmental, economic and legal dimensions also need to be explored. An important component of such exploration entails the identification and analysis of the ways in which current and prospective researchers (...)
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  • Revolutionary and familiar, inevitable and precarious: Rhetorical contradictions in enthusiasm for nanotechnology.Robert Sparrow - 2007 - NanoEthics 1 (1):57-68.
    This paper analyses rhetorics of scientific and corporate enthusiasm surrounding nanotechnology. I argue that enthusiasts for nanotechnologies often try to have it both ways on questions concerning the nature and possible impact of these technologies, and the inevitability of their development and use. In arguments about their nature and impact we are simultaneously informed that these are revolutionary technologies with the potential to profoundly change the world and that they merely represent the extension of existing technologies. They are revolutionary and (...)
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  • Teaching Societal and Ethical Implications of Nanotechnology to Engineering Students Through Science Fiction.Joachim Schummer & Rosalyn W. Berne - 2005 - Bulletin of Science, Technology and Society 25 (6):459-468.
    Societal and ethical implications of nanotechnology have become a hot topic of public debates in many countries because both revolutionary changes and strong public concerns are expected from its development. Because nanotechnology is, at this point, mostly articulated in visionary and futuristic terms, it is difficult to apply standard methods of technology assessment and even more difficult to consider it in engineering ethics courses. In this article, the authors suggest using selected science fiction stories in the engineering ethics classroom to (...)
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  • Responsible Development of Nanoscience and Nanotechnology: Contextualizing Socio-Technical Integration into the Nanofabrication Laboratories in the USA. [REVIEW]Debasmita Patra - 2011 - NanoEthics 5 (2):143-157.
    There have been several conscious efforts made by different stakeholders in the area of nanoscience and nanotechnology to increase the awareness of social and ethical issues (SEI) among its practitioners. But so far, little has been done at the laboratory level to integrate a SEI component into the laboratory orientation schedule of practitioners. Since the laboratory serves as the locus of activities of the scientific community, it is important to introduce SEI there to stimulate thinking and discussion of SEI among (...)
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  • Perceptions of nano ethics among practitioners in a developing country: A case of india. [REVIEW]Debasmita Patra, E. Haribabu & Katherine A. McComas - 2010 - NanoEthics 4 (1):67-75.
    Many developing countries have allocated significant amounts of funding for nanoscience and nanotechnology research, yet compared to developed countries, there has been little study, discussion, or debate over social and ethical issues. Using in-depth interviews, this study focuses on the perceptions of practitioners, that is, scientists and engineers, in one developing country: India. The disciplinary background, departmental affiliation, types of institutions, age, and sex of the practitioners varied but did not appear to affect their responses. The results show that 95% (...)
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  • The GMO-Nanotech (Dis)Analogy?W. D. Kay & Ronald Sandler - 2006 - Bulletin of Science, Technology and Society 26 (1):57-62.
    The genetically-modified-organism (GMO) experience has been prominent in motivating science, industry, and regulatory communities to address the social and ethical dimensions of nanotechnology. However, there are some significant problems with the GMO-nanotech analogy. First, it overstates the likelihood of a GMO-like backlash against nanotechnology. Second, it invites misconceptions about the reasons for public engagement and social and ethical issues research as well as their appropriate roles in nanotech research, development, application, commercialization, and regulatory processes. After an explication of the standard (...)
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