Results for 'Ethics of nanotechnology'

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  1.  82
    Proposed strategies for teaching ethics of nanotechnology.Heidi Jiao - 2010 - NanoEthics 4 (3):221-228.
    Nanotechnology and nanosciences have recently gained tremendous attention and funding, from multiple entities and directions. In the last 10 years the funding for nanotechnology research has increased by orders of magnitude. An important part that has also gained parallel attention is the societal and ethical impact of nanotechnology and the possible consequences of its products and processes on human life and welfare. Multiple thinkers and philosophers wrote about both negative and positive effects of nanotechnology on humans (...)
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  2. Europeanizing the ethics of nanotechnology, rethinking nanoethics.Brice Laurent - forthcoming - Nanoethics: Do We Need a New Ethics for Nanotechnology?.
     
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  3. 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 (...)
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  4.  82
    Ethics of risk analysis and regulatory review: From bio- to nanotechnology[REVIEW]Jennifer Kuzma & John C. Besley - 2008 - NanoEthics 2 (2):149-162.
    Risk analysis and regulatory systems are usually evaluated according to utilitarian frameworks, as they are viewed to operate “objectively” by considering the health, environmental, and economic impacts of technological applications. Yet, the estimation of impacts during risk analysis and the decisions in regulatory review are affected by value choices of actors and stakeholders; attention to principles such as autonomy, justice, and integrity; and power relationships. In this article, case studies of biotechnology are used to illustrate how non-utilitarian principles are prominent (...)
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  5. The Naturalness of the Naturalistic Fallacy and the Ethics of Nanotechnology.Mauro Dorato - 2015 - In Sven Ove Hansson (ed.), The Role of Technology in Science: Philosophical Perspectives. Dordrecht: Springer Verlag.
    In the first part of this paper, I try to clear the ground from frequent misconceptions about the relationship between fact and value by examining some uses of the adjective “natural” in ethical controversies. Such uses bear evidence to our “natural” tendency to regard nature (considered in a descriptive sense, as the complex of physical and biological regularities) as the source of ethical norms. I then try to account for the origin of this tendency by offering three related explanations, the (...)
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  6.  56
    Narratives of mastery and resistance: Lay ethics of nanotechnology[REVIEW]Phil Macnaghten - 2010 - NanoEthics 4 (2):141-151.
    This paper contributes towards a lay ethics of nanotechnology through an analysis of talk from focus groups designed to examine how laypeople grapple with the meaning of a technology ‘in-the-making’. We describe the content of lay ethical concerns before suggesting that this content can be understood as being structured by five archetypal narratives which underpin talk. These we term: ‘the rich get richer and the poor get poorer’; ‘kept in the dark’; ‘opening Pandora’s box’; ‘messing with nature’; and (...)
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  7.  65
    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 analysis (...)
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  8.  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 of biotechnology and (...)
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  9. Calibrating the balance: The ethics of regulating the production and use of nanotechnology applications.Michael Vlerick - 2021 - In G. Jeswani & M. Van de Voorde (eds.), Handbook of Nanoethics. De Gruyter.
    Nanotechnology (henceforth NT) is a rapidly advancing field with the potential of revolutionizing diverse areas such as electronics, healthcare, transport and energy production. NT products and applications come with (potential) benefits and (potential) harms. The presence of potential harms calls for regulation. Both under- and overregulation – I argue – are morally undesirable. In the case of underregulation, stakeholders fall victim to the harmful effects of the technology. In the case of overregulation, stakeholders are deprived of the benefits of (...)
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  10.  36
    The Promise and Threat of Nanotechnology: Can Environmental Ethics Guide US?Christopher J. Preston - 2005 - Hyle 11 (1):19 - 44.
    The growing presence of the products of nanotechnology in the public domain raises a number of ethical questions. This paper considers whether existing environmental ethics can provide some guidance on these questions. After a brief discussion of the appropriateness of an environmental ethics framework for the task at hand, the paper identifies a representative environmental ethic and uses it to evaluate four salient issues that emerge from nanotechnology. The discussion is intended both to give an initial (...)
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  11. Identifying ethical issues of nanotechnologies.Joachim Schummer - manuscript
    in: Henk ten Have (ed.), Nanotechnology: Science, Ethics and Policy Issues, Paris (UNESCO Series in Ethics of Science and Technology), 2006 (forthcoming).
     
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  12.  87
    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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  13. Towards an Ethic of Technology? Nanotechnology and the Convergence of Applied Ethics.Marie-Hélène Parizeau - 2012 - Journal of Philosophical Research 37 (9999):293-302.
    The hypothesis I develop involves that we have been witnessing, during the last ten years or so, an interpenetration in the area of applied ethics of certain concepts originally belonging to different areas of ethics, namely bioethics, environmental ethics, and also business ethics. Certain concepts such as “future generations,” “consent,” “precautionary principle,” “intrinsic value,” “global governance,” “sustainable development,” or “scientific uncertainty” are becoming “thick ethical concepts,” in the terminology of metaethics; or in the terminology of American (...)
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  14.  47
    Introduction: The ethical challenges of nanotechnologies. [REVIEW]Alan Petersen - 2009 - Journal of Bioethical Inquiry 6 (1):9-12.
    Nanotechnologies are expected to have a substantial impact on our lives in the future. However, the nanotechnology field is characterised by many uncertainties and debates surrounding the characterisation of technologies, the nature of the applications, the potential benefits and the likely risks. Given the rapid development of nanotechnologies, it is timely to consider what, if any, novel ethical challenges are posed by developments and how best to address these given the attendant uncertainties. The three articles which comprise this symposium (...)
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  15.  29
    Introduction to the Field of Nanotechnology Ethics and Policy.Jonathan D. Linton & Steven T. Walsh - 2012 - Journal of Business Ethics 109 (4):547-549.
    Nanotechnologies and nanoscience have generated an unprecedented global research and development race involving dozens of countries. The understanding of associated environmental, ethical, and societal implications lags far behind the science and technology. Consequently, it is critical to consider both what is known and what is unknown to offer a kernel that future work can be added to. The challenges presented by nanotechnologies are discussed. Some initial solutions such as self-regulation and borrowing techniques and tools from other fields are accompanied by (...)
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  16. The social impacts of nanotechnology: An ethical and political analysis. [REVIEW]Robert Sparrow - 2009 - Journal of Bioethical Inquiry 6 (1):13-23.
    This paper attempts some predictions about the social consequences of nanotechnology and the ethical issues they raise. I set out four features of nanotechnology that are likely to be important in determining its impact and argue that nanotechnology will have significant social impacts in—at least—the areas of health and medicine, the balance of power between citizens and governments, and the balance of power between citizens and corporations. More importantly, responding to the challenge of nanotechnology will require (...)
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  17. 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 (...)
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  18.  40
    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 (...)
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  19.  82
    Nanotechnology — a new field of ethical inquiry?Armin Grunwald - 2005 - Science and Engineering Ethics 11 (2):187-201.
    Parallel to the public discussion on the benefits and risks of nanotechnology, a debate on the ethics of nanotechnology has begun. It has been postulated that a new “nano-ethics” is necessary. In this debate, the — positive as well as negative — visionary and speculative innovations which are brought into connection with nanotechnology stand in the foreground. In this contribution, an attempt is made to discover new ethical aspects of nanotechnology in a more systematic (...)
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  20. Global Ethics and Nanotechnology: A Comparison of the Nanoethics Environments of the EU and China. [REVIEW]Sally Dalton-Brown - 2012 - NanoEthics 6 (2):137-150.
    The following article offers a brief overview of current nanotechnology policy, regulation and ethics in Europe and The People’s Republic of China with the intent of noting (dis)similarities in approach, before focusing on the involvement of the public in science and technology policy (i.e. participatory Technology Assessment). The conclusions of this article are, that (a) in terms of nanosafety as expressed through policy and regulation, China PR and the EU have similar approaches towards, and concerns about, nanotoxicity—the official (...)
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  21.  59
    Ethics, Risk and Benefits Associated with Different Applications of Nanotechnology: a Comparison of Expert and Consumer Perceptions of Drivers of Societal Acceptance.L. J. Frewer, A. R. H. Fischer & N. Gupta - 2015 - NanoEthics 9 (2):93-108.
    Examining those risk and benefit perceptions utilised in the formation of attitudes and opinions about emerging technologies such as nanotechnology can be useful for both industry and policy makers involved in their development, implementation and regulation. A broad range of different socio-psychological and affective factors may influence consumer responses to different applications of nanotechnology, including ethical concerns. A useful approach to identifying relevant consumer concerns and innovation priorities is to develop predictive constructs which can be used to differentiate (...)
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  22.  60
    Governance of Nanotechnology and Nanomaterials: Principles, Regulation, and Renegotiating the Social Contract.George A. Kimbrell - 2009 - Journal of Law, Medicine and Ethics 37 (4):706-723.
    How should we oversee new and emerging technologies and their products? What lessons can we discern from existing regulatory examples and from past mistakes? How do these lessons learned translate into informed recommendations for adequate oversight for nanotechnology to avoid repeating the mistakes of the past? The investigators of this interdisciplinary project undertook this endeavor intending to answer these questions among others.In parallel with the project team putting together this symposium, another, very different process on the oversight of (...) took place. An international coalition of non-governmental organizations formed to address the nanotech policy dialogue. The first goal of this NGO group was to agree upon and draft fundamental principles of oversight, which it completed in 2007-08. These principles close with a call for their adoption and/or internalization by all relevant actors and bodies. In effect, they serve a function in the policy dialogue similar to that of this project’s forthcoming recommendations. (shrink)
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  23. Nanoethics: The Ethical and Social Implications of Nanotechnology.Fritz Allhoff, Patrick Lin, James Moor, John Weckert & Mihail C. Roco - 2007 - Wiley.
    Nanoethics seeks to examine the potential risks and rewards of applications of nanotechnology. This up-to-date anthology gives the reader an introduction to and basic foundation in nanotechnology and nanoethics, and then delves into near-, mid-, and far-term issues. Comprehensive and authoritative, it: -/- - Goes beyond the usual environmental, health, and safety (EHS) concerns to explore such topics as privacy, nanomedicine, human enhancement, global regulation, military, humanitarianism, education, artificial intelligence, space exploration, life extension, and more -/- -Features contributions (...)
  24.  52
    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 mining (...)
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  25.  16
    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 (...)
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  26.  25
    Spontaneous Comparison of Nanotechnology and Controversial Objects among Laypersons, Scientists and Environmentalists.Maïté Brunel, Céline Launay, Maryelle Henry, Nadine Cascino, Jacques Py & Valérie Le Floch - 2023 - NanoEthics 17 (3):1-8.
    Nanotechnologies are a controversial topic, as they seem promising but also cause concern. Previous research has highlighted the potential link between nanotechnologies and other hazardous technologies. The aim of this research was to analyse the discourse on this topic by three groups of participants: laypersons, scientists and environmentalists. Thirty-four people (13 laypersons, ten scientists and eleven environmentalists) were interviewed using a semi-structured interview. Lexical and thematic analyses showed that scientists engage in explanatory discourse and perceive fewer risks than laypersons and (...)
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  27.  80
    Standardisation in the Field of Nanotechnology: Some Issues of Legitimacy.Ellen-Marie Forsberg - 2012 - Science and Engineering Ethics 18 (4):719-739.
    Nanotechnology will allegedly have a revolutionary impact in a wide range of fields, but has also created novel concerns about health, safety and the environment (HSE). Nanotechnology regulation has nevertheless lagged behind nanotechnology development. In 2004 the International Organization for Standardization established a technical committee for producing nanotechnology standards for terminology, measurements, HSE issues and product specifications. These standards are meant to play a role in nanotechnology development, as well as in national and international (...) regulation, and will therefore have consequences for consumers, workers and the environment. This paper gives an overview of the work in the technical committee on nanotechnology and discusses some challenges with regard to legitimacy in such work. The paper focuses particularly on stakeholder involvement and the potential problems of scientific robustness when standardising in such early stages of the scientific development. The intention of the paper is to raise some important issues rather than to draw strong conclusions. However, the paper will be concluded with some suggestions for improving legitimacy in the TC 229 and a call for increased public awareness about standardisation in the field of nanotechnology. (shrink)
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  28.  33
    Nanotalk: conversations with scientists and engineers about ethics, meaning, and belief in the development of nanotechnology.Rosalyn W. Berne - 2006 - Mahwah, NJ: Lawrence Erlbaum.
    No one really knows where nanotechnology is leading, what its pursuit will mean, and how it may affect human and other forms of life. Nevertheless, its research and development are moving briskly into that unknown. It has been suggested that rapid movement towards 'who knows where' is endemic to all technological development; that its researchers pursue it for curiosity and enjoyment, without knowing the consequences, believing that their efforts will be beneficial. Further, that the enthusiasm for development comes with (...)
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  29.  35
    Would the Convergence of Nanotechnology, Biotechnology, Information Technology and Cognitive Science Be a Springboard for Transhumanism and Posthumanism?Joseph Sawadogo & Jacques Simpore - 2023 - Open Journal of Philosophy 13 (4):681-695.
    Nanotechnologies, biotechnologies, information technologies and cognitive sciences (NBIC) have gradually gained traction in the United States of America (USA), subsequently expanding to Europe, and are now proliferating worldwide. Scientists are trying with more success to remove the causes of death by “repairing” humans, or even by “increasing” their physical and cognitive capacities. NBICs not only can help researchers promote “one health” by improving environmental conditions, human and animal health, but also, they can lead humanity towards transhumanism through eugenics. Thanks to (...)
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  30.  56
    Societal and Ethical Implications of Nanotechnology.Joachim Schummer - 2004 - Techné: Research in Philosophy and Technology 8 (2):56-87.
  31.  45
    Transnational Models for Regulation of Nanotechnology.Gary E. Marchant & Douglas J. Sylvester - 2006 - Journal of Law, Medicine and Ethics 34 (4):714-725.
    There is much we do not know about nanotechnology. Despite its tremendous promise, nanotechnology today is mostly forecast and fervent hope. Predictions that spending on nanotechnology will increase from current levels of $13 billion to more than $1 trillion by 2015 are no more than that – simply predictions. Hopes that nanotechnology will be an essential part of solving the globe's energy, food, and water problems should be tempered by recalling a century of revolutionary technologies that (...)
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  32.  67
    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 to deliberate (...)
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  33.  98
    From Speculative Nanoethics to Explorative Philosophy of Nanotechnology.Armin Grunwald - 2010 - NanoEthics 4 (2):91-101.
    In the wake of the emergence and rapid development of nanoethics there swiftly followed fundamental criticism: nanoethics was said to have become much too involved with speculative developments and was concerning itself too little with actually pending questions of nanotechnology design and applications. If this diagnosis is true, then large parts of nanoethics are misguided. Such fundamental criticism must surely either result in a radical reorientation of nanoethics or be refuted for good reasons. In this paper, I will examine (...)
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  34.  22
    Integration needs in assessments of nanotechnology in food and agriculture.Ellen-Marie Forsberg & Carolien De Lauwere - 2013 - Etikk I Praksis - Nordic Journal of Applied Ethics 1 (1):38-54.
    In this article we present a study of assessments of nanotechnology in food and agriculture. The study was conducted as a part of a project studying the need for integrated assessment of emerging science and technologies. The article first introduces central hopes and concerns regarding nanotechnology in food and agriculture, and how these are assessed in different assessment spheres. The question of whether there is a need for more integration in assessments in this field is then introduced and (...)
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  35.  53
    Offense-Defense Aspects of Nanotechnologies: A Forecast of Potential Military Applications.Calvin Shipbaugh - 2006 - Journal of Law, Medicine and Ethics 34 (4):741-747.
    There is growing recognition of the need to understand societal impacts of nanotechnology. Global interest in nanotechnology implies many nations will see a need to seek out advantages for military use. Militarization will inevitably include consideration of both offensive and defensive goals. This presents emerging implications for military forces in the near future, and will greatly influence the nature of warfare and peacekeeping in the distant future. The development of nanotechnology creates possibilities for both beneficial opportunities and (...)
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  36.  55
    Cognitive Barriers in Perception of Nanotechnology.Alexei Grinbaum - 2006 - Journal of Law, Medicine and Ethics 34 (4):689-694.
    A number of recent reports and overviews on the ethical and societal problems of nanotechnology present a public that is polarized about nanotechnology. Very little responsible analysis can be found between those poles for two reasons. First, the debate about the highly controversial notion of molecular manufacturing introduced by Eric Drexler shaped much of the early discussion. Second, the polarization can be seen as a consequence of uncertainty about nanotechnology compounded by cognitive barriers. A reporter to UNESCO (...)
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  37. What’s Different, Ethically, About Nanotechnology?: Foundational Questions and Answers. [REVIEW]Robert E. McGinn - 2010 - NanoEthics 4 (2):115-128.
    Whether nanotechnology is ethically unique and nanoethics should be treated as a field in its own right remain important, contested issues. This essay seeks to contribute to the debates on these issues by exploring several foundational questions about the relationship of ethics and nanotechnology. Ethical issues related to nanotechnology exist and adoption of a defeasible presumption that such issues amount to old ethical wine in new technological bottles appears justified. Such issues are not engendered solely by (...)
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  38.  15
    The Basics of Nanotechnology.Fritz Allhoff, Patrick Lin & Daniel Moore - 2009 - In Fritz Allhoff, Patrick Lin & Daniel Moore (eds.), What is Nanotechnology and Why Does It Matter: From Science to Ethics. Wiley-Blackwell. pp. 1–19.
    This chapter contains sections titled: Definitions and Scales The Origins of Nanotechnology The Current State of Nanotechnology The Future of Nanotechnology Nanotechnology in Nature and Applications.
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  39.  57
    The Popularization of Emerging Technologies through Ethics: From Nanotechnology to Synthetic Biology.Joachim Schummer - 2008 - Spontaneous Generations 2 (1):56.
    We are used to considering engineering ethics largely a critical enterprise. By pointing out ethical issues and by raising concerns about a technology, ethicists usually criticise rather than promote the technology in question. Of course, from a utilitarianist perspective, an ethicist might come to the conclusion that a certain technology is better than another one or than doing without. However, such conclusions are rare in philosophy and would not be considered uncritical promotion. In this essay I argue that engineering (...)
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  40.  28
    The Ethics of Technology: How Can Indigenous Thought Contribute?John Weckert & Rogelio Bayod - 2023 - NanoEthics 17 (1):1-13.
    The ethics of technology is not as effective as it should. Despite decades of ethical discussion, development and use of new technologies continues apace without much regard to those discussions. Economic and other forces are too powerful. More focus needs to be placed on the values that underpin social attitudes to technology. By seriously looking at Indigenous thought and comparing it with the typical Western way of seeing the world, we can gain a better understanding of our own views. (...)
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  41.  52
    Anticipating ethical challenges: Is there a coming era of nanotechnology[REVIEW]D. S. Horner - 2005 - Ethics and Information Technology 7 (3):127-138.
    In this paper I question the claims made for a ‘coming era of nanotechnology’ and the ethical challenges, it is argued, that are entailed by this particular technological revolution. I argue that such futurist claims are sustained by an untenable modernist narrative which separates the technical and the social. This is exemplified by the work of K. Eric Drexler and his claim that whilst the course of scientific knowledge may remain unpredictable we nevertheless can predict with accuracy the trajectory (...)
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  42.  41
    Nation-Building and the Governance of Emerging Technologies: the Case of Nanotechnology in India.Koen Beumer - 2019 - NanoEthics 13 (1):5-19.
    Emerging technologies like nanotechnologies are governed in different ways around the world. This article draws attention to an important element that can help to explain the emergence of this diversity in governance practices: the role of nanotechnology in nation-building. By investigating the relation between nanotechnology and the nation in India, the article demonstrates that various particularities of the Indian governance of nanotechnology can be explained by the relation between science, technology, and nation-building. The article discusses four instances (...)
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  43.  25
    Public Involvement and Narrative Fallacies of Nanotechnologies.Erik Thorstensen - 2014 - NanoEthics 8 (3):227-240.
    This paper analyzes a European research project called ‘Deepening Ethical Engagement and Participation in Emerging Nanotechnologies’ with the abbreviation DEEPEN. The DEEPEN’s findings and conclusions on the narratives, public understandings and the lay ethics of nanotechnologies are examined in a critical manner. Through a criticism of the theoretical framings of what constitutes a narrative and the application of a different theoretical framing of narratives, the paper argues that the findings and conclusion of the DEEPEN should be approached with caution (...)
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  44.  37
    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 (...)
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  45.  87
    Nanotechnology: Considering the complex ethical, legal, and societal issues with the parameters of human performance. [REVIEW]Linda MacDonald Glenn & Jeanann S. Boyce - 2008 - NanoEthics 2 (3):265-275.
    Nanotechnology: Considering the Complex Ethical, Legal, and Societal Issues with the Parameters of Human Performance Content Type Journal Article Pages 265-275 DOI 10.1007/s11569-008-0047-6 Authors Linda MacDonald Glenn, Albany Medical College/Center Alden March Bioethics Institute Albany NY 12208 USA Jeanann S. Boyce, Montgomery College Dept. of Computer Science and Business 7600 Takoma Avenue Takoma Park MD 20912 USA Journal NanoEthics Online ISSN 1871-4765 Print ISSN 1871-4757 Journal Volume Volume 2 Journal Issue Volume 2, Number 3.
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  46.  40
    Science, Ethics, and the “Problems” of Governing Nanotechnologies.Linda F. Hogle - 2009 - Journal of Law, Medicine and Ethics 37 (4):749-758.
    That cacophony you hear is coming from the growing number of commentators addressing ethical, social, and policy issues raised by nanotechnology. Like many novel technologies that disturb the status quo, nanotechnologies raise questions about the adequacy of oversight systems; the extent to which the technologies push legal, moral, and political boundaries; and ultimately, the implications for human health and well-being. Because nanoscale techniques and products challenge our ways of thinking about biology, physics, and chemistry, nanotechnology forces us to (...)
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  47.  36
    An ethical analysis of a prospective new paradigm of life: Nanotechnology‐enabled human beings within the framework of principlism.Banu Buruk, Perihan Elif Ekmekci & Berna Arda - 2023 - Developing World Bioethics 24 (2):107-114.
    Nanotechnology (NT)‐enabled disease‐free life is a form of reconstruction of the human body that promises a paradigm shift toward a new form of human existence in an imaginable life. However, as human reconstruction may be within the limits of the concept of “human enhancement,” it is not clear to what extent “enhanced humans” will be ethically acceptable or desired. This study discusses the ethical implications of NT‐embedded enhanced humans and this new imaginable life. First, ethical concerns arising from the (...)
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    Outlining ethical issues in nanotechnologies.Antonio G. Spagnolo & Viviana Daloiso - 2008 - Bioethics 23 (7):394-402.
    ABSTRACT Nanotechnologies are an expression of the human ability to control and manipulate matter on a very small scale. Their use will enable an even and constant monitoring of human organisms, in a new and perhaps less invasive way. Debates at all levels – national, European and international – have pointed out the common difficulty of giving a complete, clear definition of nanotechnologies. This is primarily due to the variety of their components, to the fact that there is not just (...)
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  49.  54
    Towards the conscientious development of ethical nanotechnology.Rosalyn W. Berne - 2004 - Science and Engineering Ethics 10 (4):627-638.
    Nanotechnology, the emerging capability of human beings to observe and organize matter at the atomic level, has captured the attention of the federal government, science and engineering communities, and the general public. Some proponents are referring to nanotechnology as “the next technological revolution”. Applications projected for this new evolution in technology span a broad range from the design and fabrication of new membranes, to improved fuel cells, to sophisticated medical prosthesis techniques, to tiny intelligent machines whose impact on (...)
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  50.  28
    What Role Does Regulation Play in Responsible Innovation of Nanotechnology in Food and Agriculture? Insights and Framings from U.S. Stakeholders.Jennifer Kuzma, Maude Cuchiara, Khara D. Grieger & Ashton W. Merck - 2022 - Bulletin of Science, Technology and Society 42 (3):85-103.
    Historically, market regulation has played an important role in shaping the trajectory of scientific and technological innovation in food and agriculture. However, regulators’ traditional focus on safety and efficacy may be insufficient to address more complex ethical, legal, and social implications of novel products, such as the use of nanotechnology and nanomaterials in food and agriculture. One solution might be to implement the principles of responsible innovation to challenge innovators and policymakers to better anticipate risks further upstream and be (...)
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