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  1. Development and Pilot Testing of an Evidence-Based Training Module for Integrating Social and Ethical Implications into the Lab.Lee Ann Kahlor, Xiaoshan Li & Jacy Jones - 2019 - NanoEthics 13 (1):37-52.
    In this project, we explore perceptions of the social and ethical implications of nanotechnology among US scientists who work at the nanoscale, and develop and pilot test an online training module to foster consideration of social and ethical implications in the lab. To meet our first goal, we drew qualitative insights from open-ended survey data collected from scientists affiliated with the National Nanotechnology Infrastructure Network. Our data suggest that while the survey participants responded positively to the idea that consideration of (...)
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  • Exploring Societal and Ethical Views of Nanotechnology REUs.Gina M. Eosco, Meghnaa Tallapragada, Katherine A. McComas & Merrill Brady - 2014 - NanoEthics 8 (1):91-99.
    Little previous research has examined attitudes about societal and ethical issues (SEI) among interns participating in research experience for undergraduate programs (REUs) in nanotechnology, thus neglecting an important population for understanding the burgeoning views of the next generation of nanotechnology researchers. This study surveyed a sample of interns (N = 85) participating in the National Nanotechnology Infrastructure Network’s (NNIN) REU program during the summer of 2012. Our questions focused on interns’ experiences with education on ethical issues, as well as their (...)
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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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  • Practitioners' Views on Responsibility: Applying Nanoethics. [REVIEW]Rider W. Foley, Ira Bennett & Jameson M. Wetmore - 2012 - NanoEthics 6 (3):231-241.
    Significant efforts have been made to define ethical responsibilities for professionals engaged in nanotechnology innovation. Rosalyn Berne delineated three ethical dimensions of nanotechnological innovation: non-negotiable concerns, negotiable socio-cultural claims, and tacitly ingrained norms. Braden Allenby demarcated three levels of responsibility: the individual, professional societies (e.g. engineering codes), and the macro-ethical. This article will explore how these definitions of responsibility map onto practitioners’ understanding of their responsibilities and the responsibilities of others using the nanotechnology innovation community of the greater Phoenix area, (...)
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  • Testing Reflexive Practitioner Dialogues: Capacities for Socio-technical Integration in Meditation Research.Mareike Smolka & Erik Fisher - 2024 - NanoEthics 18 (1):1-26.
    To put frameworks of Responsible Innovation and Responsible Research and Innovation (R(R)I) into practice, engagement methods have been developed to study and enhance technoscientific experts’ capacities to reflexively address value considerations in their work. These methods commonly rely on engagement between technoscientific experts and social scholars, which makes them vulnerable to structural barriers to interdisciplinary collaboration. To circumvent these barriers, we adapt Socio-Technical Integration Research (STIR) for broader use within technoscientific communities. We call this adaptation: reflexive practitioner dialogues. While the (...)
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  • Integrating and Enacting 'Social and Ethical Issues' in Nanotechnology Practices.Ana Viseu & Heather Maguire - 2012 - NanoEthics 6 (3):195-209.
    The integration of nanotechnology’s ‘social and ethical issues’ (SEI) at the research and development stage is one of the defining features of nanotechnology governance in the United States. Mandated by law, integration extends the field of nanotechnology to include a role for the “social”, the “public” and the social sciences and humanities in research and development (R&D) practices and agendas. Drawing from interviews with scientists, engineers and policymakers who took part in an oral history of the “Future of Nanotechnology” symposium (...)
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  • (1 other version)Multidisciplinary Engagement with Nanoethics Through Education—The Nanobio-RAISE Advanced Courses as a Case Study and Model.Daan Schuurbiers, Susanne Sleenhoff, Johannes F. Jacobs & Patricia Osseweijer - 2009 - NanoEthics 3 (3):197-211.
    This paper presents and evaluates two advanced courses organised in Oxford as part of the European project Nanobio-RAISE and suggests using their format to encourage multidisciplinary engagement between nanoscientists and nanoethicists. Several nanoethicists have recently identified the need for ‘better’ ethics of emerging technologies, arguing that ethical reflection should become part and parcel of the research and development (R&D) process itself. Such new forms of ethical deliberation, it is argued, transcend traditional disciplinary boundaries and require the active engagement and involvement (...)
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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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