Results for 'Social research in nanotechnology'

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  1. Trust in Nanotechnology? On Trust as Analytical Tool in Social Research on Emerging Technologies.Trond Grønli Åm - 2011 - NanoEthics 5 (1):15-28.
    Trust has become an important aspect of evaluating the relationship between lay public and technology implementation. Experiences have shown that a focus on trust provides a richer understanding of reasons for backlashes of technology in society than a mere focus of public understanding of risks and science communication. Therefore, trust is also widely used as a key concept for understanding and predicting trust or distrust in emerging technologies. But whereas trust broadens the scope for understanding established technologies with well-defined questions (...)
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  2. (1 other version)The Role of the Humanities and Social Sciences in Nanotechnology Research and Development.Mette Ebbesen - 2008 - NanoEthics 2 (3):333-333.
    The experience with genetically modified foods has been prominent in motivating science, industry and regulatory bodies to address the social and ethical dimensions of nanotechnology. The overall objective is to gain the general public’s acceptance of nanotechnology in order not to provoke a consumer boycott as it happened with genetically modified foods. It is stated implicitly in reports on nanotechnology research and development that this acceptance depends on the public’s confidence in the technology and that (...)
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  3.  45
    Just a Cog in the Machine? The Individual Responsibility of Researchers in Nanotechnology is a Duty to Collectivize.Shannon L. Spruit, Gordon D. Hoople & David A. Rolfe - 2016 - Science and Engineering Ethics 22 (3):871-887.
    Responsible Research and Innovation provides a framework for judging the ethical qualities of innovation processes, however guidance for researchers on how to implement such practices is limited. Exploring RRI in the context of nanotechnology, this paper examines how the dispersed and interdisciplinary nature of the nanotechnology field somewhat hampers the abilities of individual researchers to control the innovation process. The ad-hoc nature of the field of nanotechnology, with its fluid boundaries and elusive membership, has thus far (...)
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  4.  17
    Ethics in Nanotechnology: Starting From Scratch?Flemming Besenbacher, Svend Andersen & Mette Ebbesen - 2006 - Bulletin of Science, Technology and Society 26 (6):451-462.
    Research in nanotechnology has advanced rapidly in recent years. Several researchers, however, warn that there is a paucity of research on the ethical, legal, and social implications of nanotechnology, and they caution that ethical reflections on nanotechnology lag behind this fast developing science. In this article, the authors question this conclusion, pointing out that the predicted concrete ethical issues related to the area of nanotechnology are rather similar to those related to the area (...)
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  5.  27
    Scientists’ Ethical Obligations and Social Responsibility for Nanotechnology Research.Elizabeth A. Corley, Youngjae Kim & Dietram A. Scheufele - 2016 - Science and Engineering Ethics 22 (1):111-132.
    Scientists’ sense of social responsibility is particularly relevant for emerging technologies. Since a regulatory vacuum can sometimes occur in the early stages of these technologies, individual scientists’ social responsibility might be one of the most significant checks on the risks and negative consequences of this scientific research. In this article, we analyze data from a 2011 mail survey of leading U.S. nanoscientists to explore their perceptions the regarding social and ethical responsibilities for their nanotechnology (...). Our analyses show that leading U.S. nanoscientists express a moderate level of social responsibility about their research. Yet, they have a strong sense of ethical obligation to protect laboratory workers from unhealthy exposure to nanomaterials. We also find that there are significant differences in scientists’ sense of social and ethical responsibility depending on their demographic characteristics, job affiliation, attention to media content, risk perceptions and benefit perceptions. We conclude with some implications for future research. (shrink)
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  6.  9
    Risky Talk: Framing the Analysis of the Social Implications of Nanotechnology.Stephen H. Cutcliffe & Christine M. Pense - 2007 - Bulletin of Science, Technology and Society 27 (5):349-366.
    Nanotechnology promises to amend an understanding of elemental properties, alter the basic techniques of manufacturing, and improve disease diagnosis. There is a disconnect among the positive predictions of scientists and researchers, the fears of public interest groups, and the developers of products. A new framework for evaluating the social implications of nanotechnology will permit a dialogue among interest groups, who currently fail to effectively communicate with one another. Each instance of nanotechnology application will likely have its (...)
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  7.  50
    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 (...)
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  8.  10
    The social life of nanotechnology.Barbara Herr Harthorn & John Mohr (eds.) - 2012 - New York: Routledge.
    This volume shows how nanotechnology takes on a wide range of socio-historically specific meanings in the context of globalization, across multiple localities, institutions and collaborations, through diverse industries, research labs, and government agencies and in a variety of discussions within the public sphere itself. It explores the early origins of nanotechnologies; the social, economic, and political organization of the field; and the cultural and subjective meanings ascribed to nanotechnologies in social settings.
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  9.  56
    Ethics in Nanotechnology: What’s Being Done? What’s Missing? [REVIEW]Louis Y. Y. Lu, Bruce J. Y. Lin, John S. Liu & Chang-Yung Yu - 2012 - Journal of Business Ethics 109 (4):583-598.
    Nanotechnology shows great promise in a variety of applications with attractive economic and societal benefits. However, societal issues associated with nanotechnology are still a concern to the general public. While numerous technological advancements in nanotechnology have been achieved over the past decade, research into the broader societal issues of nanotechnology is still in its early phases. Based on the data from the Web of Science database, we applied the main path analysis, cluster analysis and text (...)
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  10.  53
    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 (...)
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  11.  66
    Techné: Research in philosophy and technology.Joachim Schummer - manuscript
    Since the publication of Part I of our joint special issue on Nanotech Challenges (see Techné 8.2 & Hyle 10.2), several international conferences have taken place that brought together scholars from the humanities and the social, natural, and engineering sciences to reflect on the challenges posed by nanotechnology. These included Nanotechnology in Science, Economy and Society , University of Marburg, 13-15 January 2005; Nano-Ethics, University of South Carolina, 2-6 March 2005; Nano Before There Was Nano , Chemical (...)
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  12.  50
    Lose One Another... and Find One Another in Nanospace. ‘Nanotechnologies for Tomorrow’s Society: A Case for Reflective Action Research in Flanders ’. [REVIEW]Lieve Goorden, Michiel Van Oudheusden, Johan Evers & Marian Deblonde - 2008 - NanoEthics 2 (3):213-230.
    The main objective of the Flemish research project ‘Nanotechnologies for tomorrow’s society’ (NanoSoc) is to develop and try out an interactive process as a suitable methodology for rendering nanoresearchers aware of underlying assumptions that guide nanotech research and integrating social considerations into the research choices they face. In particular, the NanoSoc process should sustain scientists’ capacities to address growing uncertainties on the strategic, scientific and public acceptance level. The article elaborates on these uncertainties and involved dilemmas (...)
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  13.  33
    What is Nanotechnology and Why Does It Matter: From Science to Ethics.Fritz Allhoff, Patrick Lin & Daniel Moore - 2009 - Wiley-Blackwell.
    Ongoing research in nanotechnology promises both innovations and risks, potentially and profoundly changing the world. This book helps to promote a balanced understanding of this important emerging technology, offering an informed and impartial look at the technology, its science, and its social impact and ethics. Nanotechnology is crucial for the next generation of industries, financial markets, research labs, and our everyday lives; this book provides an informed and balanced look at nanotechnology and its (...) impact Offers a comprehensive background discussion on nanotechnology itself, including its history, its science, and its tools, creating a clear understanding of the technology needed to evaluate ethics and social issues Authored by a nanoscientist and philosophers, offers an accurate and accessible look at the science while providing an ideal text for ethics and philosophy courses Explores the most immediate and urgent areas of social impact of nanotechnology. (shrink)
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  14.  88
    Ethical responsibilities of nanotechnology researchers: A short guide. [REVIEW]Robert McGinn - 2010 - NanoEthics 4 (1):1-12.
    Little if any of the scholarly literature on nanotechnology (NT) and ethics is directed at NT researchers. Many of these practitioners believe that having clear ethical guidelines for the conduct of NT research is necessary. This work attempts to provide such guidelines. While no qualitatively new ethical issues unique to NT have yet been identified, the ethical responsibilities identified below merit serious attention by NT researchers. Thirteen specific ethical responsibilities arising at three levels are identified. They are derived (...)
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  15.  68
    Negotiating Plausibility: Intervening in the Future of Nanotechnology.Cynthia Selin - 2011 - Science and Engineering Ethics 17 (4):723-737.
    The national-level scenarios project NanoFutures focuses on the social, political, economic, and ethical implications of nanotechnology, and is initiated by the Center for Nanotechnology in Society at Arizona State University (CNS-ASU). The project involves novel methods for the development of plausible visions of nanotechnology-enabled futures, elucidates public preferences for various alternatives, and, using such preferences, helps refine future visions for research and outreach. In doing so, the NanoFutures project aims to address a central question: how (...)
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  16.  46
    Governing Nanotechnology in a Multi-Stakeholder World.Ineke Malsch - 2013 - NanoEthics 7 (2):161-172.
    This article contributes to the debate on governance of emerging technologies, focusing in particular on the international level and taking into account the fact that these technologies are developed through a common effort of different stakeholders including governments, research communities, industry and civil society actors. These issues are explored from the perspective of communitarian ethical criticism of liberal social contract thinking, in order to enhance visibility of the influence collective non-state actors exercise on the development of these technologies. (...)
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  17.  79
    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 (...)
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  18.  61
    Discernment and Denial: Nanotechnology Researchers' Recognition of Ethical Responsibilities Related to Their Work.Robert McGinn - 2013 - NanoEthics 7 (2):93-105.
    To what extent do nanotechnology researchers discern specific work-related ethical responsibilities that are incumbent upon them? A questionnaire was designed and administered to answer this question. Analysis of responses to 11 ethical responsibility statements (ERSs) by 213 researchers at the Stanford Nanofabrication Facility revealed widespread agreement about a number of work-related ethical responsibilities and substantial divergence in the views about several others. Explanations of this divergence are proposed. A new variable is defined that gauges the respondent’s overall level of (...)
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  19.  48
    Setting Up Spaces for Collaboration in Industry Between Researchers from the Natural and Social Sciences.Steven M. Flipse, Maarten C. A. van der Sanden & Patricia Osseweijer - 2014 - Science and Engineering Ethics 20 (1):7-22.
    Policy makers call upon researchers from the natural and social sciences to collaborate for the responsible development and deployment of innovations. Collaborations are projected to enhance both the technical quality of innovations, and the extent to which relevant social and ethical considerations are integrated into their development. This could make these innovations more socially robust and responsible, particularly in new and emerging scientific and technological fields, such as synthetic biology and nanotechnology. Some researchers from both fields have (...)
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  20. Ethics and nanotechnology: Views of nanotechnology researchers. [REVIEW]Robert McGinn - 2008 - NanoEthics 2 (2):101-131.
    A study was conducted of nanotechnology (NT) researchers’ views about ethics in relation to their work. By means of a purpose-built questionnaire, made available on the Internet, the study probed NT researchers’ general attitudes toward and beliefs about ethics in relation to NT, as well as their views about specific NT-related ethical issues. The questionnaire attracted 1,037 respondents from 13 U.S. university-based NT research facilities. Responses to key questionnaire items are summarized and noteworthy findings presented. For most respondents, (...)
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  21.  57
    The Why and How of Enabling the Integration of Social and Ethical Aspects in Research and Development.Steven M. Flipse, Maarten Ca van der Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):703-725.
    New and Emerging Science and Technology (NEST) based innovations, e.g. in the field of Life Sciences or Nanotechnology, frequently raise societal and political concerns. To address these concerns NEST researchers are expected to deploy socially responsible R&D practices. This requires researchers to integrate social and ethical aspects (SEAs) in their daily work. Many methods can facilitate such integration. Still, why and how researchers should and could use SEAs remains largely unclear. In this paper we aim to relate motivations (...)
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  22.  56
    The Why and How of Enabling the Integration of Social and Ethical Aspects in Research and Development.Steven M. Flipse, Maarten C. A. Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):703-725.
    New and Emerging Science and Technology (NEST) based innovations, e.g. in the field of Life Sciences or Nanotechnology, frequently raise societal and political concerns. To address these concerns NEST researchers are expected to deploy socially responsible R&D practices. This requires researchers to integrate social and ethical aspects (SEAs) in their daily work. Many methods can facilitate such integration. Still, why and how researchers should and could use SEAs remains largely unclear. In this paper we aim to relate motivations (...)
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  23.  38
    Nanotechnologies, food, and agriculture: next big thing or flash in the pan? [REVIEW]Lawrence Busch - 2008 - Agriculture and Human Values 25 (2):215-218.
    The advent of the new nanotechnologies has been heralded by government, media, and many in the scientific community as the next big thing. Within the agricultural sector research is underway on a wide variety of products ranging from distributed intelligence in orchards, to radio frequency identification devices, to animal diagnostics, to nanofiltered food products. But the nano-revolution (if indeed there is a revolution at all) appears to be taking a turn quite different from the biotechnology revolution of two decades (...)
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  24.  14
    Converging Institutions: Shaping Relationships Between Nanotechnologies, Economy, and Society.Christian Papilloud & Ingrid Ott - 2007 - Bulletin of Science, Technology and Society 27 (6):455-466.
    Nanotechnologies are technologies applied to a molecular level, which can be embedded in materials including human cells and atoms of mineral, chemical, or physical substrates. Nanotechnologies have been used in attempts to foster interactions between a multitude of products, production processes, and social actors. Just like bio, info, and cognitive science, nanotechnologies belong to the so-called converging technologies, which are expected to change main societal paths toward a more functional and coarser mesh. However, research, development, and di fusion (...)
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  25.  47
    Nanotechnology, uncertainty and regulation. A guest editorial.Simone Arnaldi & Alessia Muratorio - 2013 - NanoEthics 7 (3):173-175.
    Nanotechnology has been established as a priority research and policy focus, cutting across several R&D fields from pharmaceutics, food and electronics. The raise of nanotechnologies has been accompanied by an enduring uncertainty characterising the developments of the scientific knowledge related to this field, as well as the social trajectories of technological applications. Such a condition inevitably affects regulatory responses to such technologies, their development and their uses. This special issue addresses this junction between uncertainty and regulation. With (...)
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  26. Keynote Address a Conference: In the Company of Animals.Stephen Jay Gould, Jonathan F. Fanton, N. New School for Social Research York & Betelgeuse Productions - 1995 - Bëtelgeuse Productions.
  27.  48
    Meta-Regulation and Nanotechnologies: The Challenge of Responsibilisation Within the European Commission’s Code of Conduct for Responsible Nanosciences and Nanotechnologies Research[REVIEW]Bärbel Dorbeck-Jung & Clare Shelley-Egan - 2013 - NanoEthics 7 (1):55-68.
    This paper focuses on the contribution of meta-regulation in responding to the regulatory needs of a field beset by significant uncertainties concerning risks, benefits and development trajectories and characterised by fast development. Meta-regulation allows regulators to address problems when they lack the resources or information needed to develop sound “discretion-limiting rules”; meta-regulators exploit the information advantages of those actors to be regulated by leveraging them into the task of regulating itself. The contribution of meta-regulation to the governance of nanotechnologies is (...)
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  28.  92
    Social research in the advancement of children's rights.Sonja Grover - 2003 - Journal of Academic Ethics 1 (1):119-130.
    This article argues that investigators doing developmental and social research with children have, for the most part, failed to acknowledge the inherent implications of their work for children's rights. The impact of these studies upon children's rights occurs at every stage; from hypothesis formulation to hypothesis testing to dissemination of findings. This paper addresses the issue in the context of developmental research on children's ability to report experienced events accurately. This particular research area has generated data (...)
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  29.  55
    (Christian) Bioethical Dilemmas in Using Synthetic Biology and Nanotechnologies.Antonio Sandu & Ana Caras - 2013 - Journal for the Study of Religions and Ideologies 12 (35):158-177.
    Ethical dilemmas raised by the use of nanotechnology in medical practice can be viewed from several perspectives: religious spiritualist perspective, the perspective of human dignity (nanotechnologies can be thought of as an affront to human dignity), the issue of controversial choice. The article aims to expose some bioethical dilemmas in using synthetic biology and nanotechnologies. Nowadays is often brought into discussion the fact it is possible to appear in the future new human species resulted not via natural selection and (...)
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  30.  42
    Fritz Allhoff and Patrick Lin, Eds. Nanotechnology and Society: Current and Emerging Ethical Issues.Jaipreet Virdi - 2008 - Spontaneous Generations 2 (1):248.
    Nanotechnology & Society is the second anthology published by The Nanoethics Group and is a welcome addition to the emerging field of nanoethics. Editors Fritz Allhoff and Patrick Lin are among the leading philosophers in nanoethics and founders of The Nanoethics Group. While their first anthology, Nanoethics: The Ethical and Social Implications of Nanotechnology, presented a general introduction to critical issues in nanoethics, in this new book Allhoff and Lin recognize nanotechnology’s “strange schizophrenia”—as a brave new (...)
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  31.  15
    From Nano Backlash to Public Indifference: Some Reflections on French Public Dialogues on Nanotechnology.Bernadette Bensaude-Vincent - 2021 - NanoEthics 15 (2):191-201.
    The hype surrounding the emergence of nanotechnology proved extremely effective to raise public attention and controversies in the early 2000s. A proactive attitude prevailed resulting in the integration of social scientists upstream at the research level, research programs on Ethical, Legal and Societal Impacts, and various public engagement initiatives such as nanojury and citizen conferences. Twenty years later, what happened to the promises of SHS integration and public engagement in nanotechnology? Was it part of the (...)
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  32.  54
    Analyses of Acceptability Judgments Made Toward the Use of Nanocarrier-Based Targeted Drug Delivery: Interviews with Researchers and Research Trainees in the Field of New Technologies.Vanessa Chenel, Patrick Boissy, Jean-Pierre Cloarec & Johane Patenaude - 2015 - NanoEthics 9 (3):199-215.
    The assessment of nanotechnology applications such as nanocarrier-based targeted drug delivery has historically been based mostly on toxicological and safety aspects. The use of nanocarriers for TDD, a leading-edge nanomedical application, has received little study from the angle of experts’ perceptions and acceptability, which may be reflected in how TDD applications are developed. In recent years, numerous authors have maintained that TDD assessment should also take into account impacts on ethical, environmental, economic, legal, and social issues in order (...)
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  33.  22
    The Promises and Perils of Nanoscience and Nanotechnology: Exploring Emerging Social and Ethical Issues.Pallavoor Vaidyanathan, Sudipta Seal & Aldrin E. Sweeney - 2003 - Bulletin of Science, Technology and Society 23 (4):236-245.
    Rapid advances in nanoscience and nanotechnology are profoundly influencing the ways in which we conceptualize the world of the future, and human ability to manipulate matter at the atomic and molecular levels offers previously unimagined possibilities for scientific discovery and technological applications. The convergence of nanotechnology with biotechnology, information technology, cognitive science, and engineering may hold promise for the improvement of human performance at a number of levels. Based on a National Science Foundation-funded Research Experiences for Undergraduates (...)
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  34.  28
    Missed opportunities for AI governance: lessons from ELS programs in genomics, nanotechnology, and RRI.Maximilian Braun & Ruth Müller - forthcoming - AI and Society:1-14.
    Since the beginning of the current hype around Artificial Intelligence (AI), governments, research institutions, and the industry invited ethical, legal, and social sciences (ELS) scholars to research AI’s societal challenges from various disciplinary viewpoints and perspectives. This approach builds upon the tradition of supporting research on the societal aspects of emerging sciences and technologies, which started with the Ethical, Legal, and Social Implications (ELSI) Program in the Human Genome Project (HGP) in the early 1990s. However, (...)
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  35.  31
    Introducing Standards of Care in the Commercialization of Nanotechnology.Vivian Weil - 2006 - International Journal of Applied Philosophy 20 (2):205-213.
    While the entire “wish-list” of expected benefits from nanotechnology has received little scrutiny in the U.S. with regard to issues of social justice, ethics specialists and social scientists are beginning to focus on the responsible conduct of actual nano research and development (R&D) in government, commercial, and academic institutions. In view of the current rush to commercialization, the rush by universities to “get aboard,” and the importance of public trust, it is essential to investigate strategies to (...)
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  36.  73
    Social research in sport (and beyond): Notes on exceptions to informed consent.Scott Fleming - 2013 - Research Ethics 9 (1):32-43.
    Over the last two decades sport-related research has become increasingly influenced by ethical propriety and institutional governance. Whilst there has been thorough consideration of biomedical and associated research in sport and exercise, social research in sport studies has received less attention. In this article, following a brief contextualization of the current climate for research ethics discourse, the planks of an argument for social research in sport without informed consent are addressed. Dealing with ideas (...)
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  37.  10
    (1 other version)Nanotechnology.Alfred Nordmann - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks, A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 511–516.
  38.  71
    Framework for the Analysis of Nanotechnologies’ Impacts and Ethical Acceptability: Basis of an Interdisciplinary Approach to Assessing Novel Technologies.Johane Patenaude, Georges-Auguste Legault, Jacques Beauvais, Louise Bernier, Jean-Pierre Béland, Patrick Boissy, Vanessa Chenel, Charles-Étienne Daniel, Jonathan Genest, Marie-Sol Poirier & Danielle Tapin - 2015 - Science and Engineering Ethics 21 (2):293-315.
    The genetically manipulated organism crisis demonstrated that technological development based solely on the law of the marketplace and State protection against serious risks to health and safety is no longer a warrant of ethical acceptability. In the first part of our paper, we critique the implicitly individualist social-acceptance model for State regulation of technology and recommend an interdisciplinary approach for comprehensive analysis of the impacts and ethical acceptability of technologies. In the second part, we present a framework for the (...)
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  39.  57
    Social Issues in Management Research.Archie B. Carroll - 1994 - Business and Society 33 (1):5-29.
    This article reports the findings, analysis, and commentary on survey results of academicians in the Social Issues in Management (SIM) field. The three major themes guiding the study were (a) current and future research in the SIM field, (b) strengths and weaknesses of research in the SIM field, and (c) research versus management practice in the SIM field. A number of specific questions were posed: What are the current topics on which you are conducting research? (...)
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  40.  55
    Visions of Brazilian scientists on nanosciences and nanotechnologies.Noela Invernizzi - 2008 - NanoEthics 2 (2):133-148.
    This article examines the visions on nanosciences and nanotechnologies (N&N) disseminated by a group of Brazilian scientists to legitimize this emergent field of research. For this purpose we analyzed reports on N&N published by the Journal of Science, edited daily by the Brazilian Society for the Progress of Science, from 2002 to 2007, covering the period in which the main events in domestic N&N research policy took place. Our analysis shows that researchers on N&N are spreading visions of (...)
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  41.  48
    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 (...)
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  42. Ethics in Nanotechnology Social Sciences and Philosophical Aspects, Vol. 2.Robert Albin & Amos Bardea (eds.) - 2021 - Berlin: De Gruyter.
     
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  43. Ethical, legal and social aspects of brain-implants using nano-scale materials and techniques.Francois Berger, Sjef Gevers, Ludwig Siep & Klaus-Michael Weltring - 2008 - NanoEthics 2 (3):241-249.
    Nanotechnology is an important platform technology which will add new features like improved biocompatibility, smaller size, and more sophisticated electronics to neuro-implants improving their therapeutic potential. Especially in view of possible advantages for patients, research and development of nanotechnologically improved neuro implants is a moral obligation. However, the development of brain implants by itself touches many ethical, social and legal issues, which also apply in a specific way to devices enabled or improved by nanotechnology. For researchers (...)
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  44. Research in the Social Scientific Study of Religion, Volume 25.Ralph L. Piedmont & Andrew Village (eds.) - 2014 - Brill.
    The 25th volume of Research in the Social Scientific Study of Religion continues to provide readers with an interdisciplinary assortment of high quality research studies aimed at capturing salient, contemporary trends in the field. The current volume presents a special section examining the role of spiritual and religious themes in sexuality research.
     
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  45.  90
    Ethics and technology 'in the making': An essay on the challenge of nanoethics. [REVIEW]Deborah G. Johnson - 2007 - NanoEthics 1 (1):21-30.
    After reviewing portions of the 21st Century Nanotechnology Research and Development Act that call for examination of societal and ethical issues, this essay seeks to understand how nanoethics can play a role in nanotechnology development. What can and should nanoethics aim to achieve? The focus of the essay is on the challenges of examining ethical issues with regard to a technology that is still emerging, still ‘in the making.’ The literature of science and technology studies (STS) is (...)
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  46.  20
    Scientific Research on Nanotechnology in Latin American Journals Published in SciELO: Bibliometric Analysis of Gender Differences.Elizabeth Duran, Katherine Astroza, Jaime Ocaranza-Ozimica, Damary Peñailillo, Iskra Pavez-Soto & Rodrigo Ramirez-Tagle - 2019 - NanoEthics 13 (2):113-118.
    Papers on nanotechnology in the Scientific Electronic Library Online database were studied bibliometrically. The terms ‘nanotechnology’, ‘nanoparticle’, ‘graphene’, ‘fullerene’, ‘nanotube’ and ‘quantum dot’ were used for the search in their singular and plural forms in three languages, and a total of 1205 papers were selected for the study to assess the frequency rates of the study variables. The results of the study are presented in this article focusing on gender differences.
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  47. Reading Feynman Into Nanotechnology.Christopher P. Toumey - 2008 - Techné: Research in Philosophy and Technology 12 (3):133-168.
    As histories of nanotechnology are created, one question arises repeatedly: how influential was Richard Feynman’s 1959 talk, “There’s Plenty of Room at the Bottom”? It is often said by knowledgeable people that this talk was the origin of nanotech. It preceded events like the invention of the scanning tunneling microscope, but did it inspire scientists to do things they would not have done otherwise? Did Feynman’s paper directly influence important scientific developments in nanotechnology? Or is his paper being (...)
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    Research in Chile on imaginaries and social representations.Rubén Dittus, Oscar Basulto & Ignacio Riffo - 2017 - Cinta de Moebio 58:103-115.
    Resumen: Este texto aborda el estado de aquellas investigaciones que se nutren de la teoría de imaginarios y representaciones sociales en Chile. Se trata de un estudio cartográfico, y como tal, toma en consideración aquellos enfoques, metodologías y resultados más relevantes, que permiten bosquejar un "estado de la cuestión". No es, por lo tanto, un fichaje exhaustivo de cada trabajo o tesis al que se pueda vincular con el campo señalado, debido al gran volumen de productos asociados directa o indirectamente (...)
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    The ethics of social research in organisations.Yehuda Baruch - 1993 - Business Ethics, the Environment and Responsibility 2 (4):233–237.
    Permitting social researchers access to employees can raise ethical issues for management and researchers which are here identified and examined. Dr Baruch is Research Fellow in Human Resources at City University Business School, London. He wishes to thank Professor Roger Jowell from the Social & Community Planning Research and Mr Steve Birault from the Centre for Social Development for their helpful comments on an early draft of this article.
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  50. Research in the Social Scientific Study of Religion, Volume 23.Ralph L. Piedmont & Andrew Village (eds.) - 2012 - Brill.
    The twenty-third volume of RSSSR includes a landmark collection of papers on Theism and Non-Theism in Psychological Science, as well as papers on other key areas in the study of religion such as spirituality and social capital.
     
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