Results for 'Generations of nanotechnologies'

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  1.  12
    Two Cultures of Nanotechnology?Bernadette Bensaude-Vincent - 2004 - Hyle 10 (2):65 - 82.
    Although many active scientists deplore the publicity about Drexler's futuristic scenario, I will argue that the controversies it has generated are very useful, at least in one respect. They help clarify the metaphysical assumptions underlying nanotechnologies, which may prove very helpful for understanding their public and cultural impact. Both Drexler and his opponents take inspiration from living systems, which they both describe as machines. However there is a striking contrast in their respective views of molecular machineries. This paper based (...)
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  2.  13
    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 (...)
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  3.  38
    On the novelty of nanotechnology: A philosophical essay.Joachim Schummer - manuscript
    Nanotechnology has from its very beginning been surrounded with an aura of novelty. For instance, on the 28 introductory pages of the report that prepared the US National Nanotechnology Initiative (NNI), Nanotechnology Research Directions (NSTC/IWGN 1999), we read 73 times the term “new”, 15 times “novel”, 7 times “innovation”, and 21 times “revolution”. The authors concede that one should distinguish between different nanotechnologies, because “Many existing technologies do already depend on nanoscale processes. Photography and catalysis are two examples of (...)
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  4. 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 (...), already from the simplest kind of engineered nanoproducts. These ethical issues are mainly associated with the social desirability of nanotechnologies, with the difficulties to define nanotechnologies properly, with the important uncertainties surrounding nanotechnologies, with the threat of ‘nano-divide’, and with nanotechnology as ‘dual-use technology’. (shrink)
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  5.  30
    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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  6.  32
    A matter of scale: the visual representation of nanotechnologies.Koen Beumer - 2012 - Spontaneous Generations 6 (1):65-74.
    Scale is central to understanding nanotechnologies. These technologies are usually described as the understanding and control of matter at the nanoscale, with one nanometer being 10^-9 meter. At this scale, some materials gain new properties that can be used in the creation of new products. These properties may contribute to economic growth and social welfare but, conversely, they may also create negative effects, such as new risks to human health and the environment. As an emerging field whose consequences are (...)
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  7.  16
    Nanotechnologies and Green Knowledge Creation: Paradox or Enhancer of Sustainable Solutions?Caroline Gauthier & Corine Genet - 2014 - Journal of Business Ethics 124 (4):571-583.
    By exploring whether nanotechnologies have the potential to generate green innovations, we consider the paradox between the negative and positive side-effects that could come with the development of nanotechnologies. Starting from the conceptual framework of green product innovation, the potential green innovation activity of more than 14,000 firms of the nanotech sector is investigated. Using a query-search method, their patenting activity is explored. Results first show that there is an increasing trend toward the creation of fundamental green knowledge (...)
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  8. Chapter Ten Art Constructs as Generators of the Meaning of the Work of Art Viktor F. Petrenko and Olga N. Sapsoleva.Art Constructs as Generators - 2007 - In L. I͡A Dorfman, Colin Martindale & Vladimir Petrov (eds.), Aesthetics and Innovation. Cambridge Scholars Press.
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  9. 3.4. Ethical Issues in the Generation and Utilisation of Knowledge in Biotechnology.What To Generate - forthcoming - Bioethics in Asia: The Proceedings of the Unesco Asian Bioethics Conference (Abc'97) and the Who-Assisted Satellite Symposium on Medical Genetics Services, 3-8 Nov, 1997 in Kobe/Fukui, Japan, 3rd Murs Japan International Symposium, 2nd Congress of the Asi.
     
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  10. 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 pragmatism: “living beliefs.” (...)
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  11.  15
    Nanotechnology Policy and Education.Regan Stinnett - 2012 - Journal of Business Ethics 109 (4):551-552.
    Nanotechnology has been a focal area of United States (US) Science and Technology policy since President Clinton's administration. The Unites States is investing more funds in nanotechnology research and development than any other nation. The US National Laboratory community and Sandia National Laboratories in particular is responding to their country's interest by generating exceptional Nano-based science and technology and focusing these efforts on national security and safety concerns. The United States and others are finding that the technological, safety, ethical, economic, (...)
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  12.  22
    Assembling Upstream Engagement: the Case of the Portuguese Deliberative Forum on Nanotechnologies.António Carvalho & João Arriscado Nunes - 2018 - NanoEthics 12 (2):99-113.
    This article analyzes a deliberative forum on nanotechnologies, organized in Portugal within the scope of the research project DEEPEN—Deepening Ethical Engagement and Participation in Emerging Nanotechnologies. This event included scientists, science communicators and members of the “lay public”, and resulted in a position document which summarizes collective aspirations and concerns related to nano. Drawing upon our previous experience with focus groups on nanotechnologies—characterized by methodological innovations that aimed at suspending epistemological inequalities between participants—this paper delves into the (...)
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  13.  22
    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 social impact Offers a comprehensive background discussion (...)
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  14.  39
    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 ethics, (...)
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  15.  35
    (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 (...)
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  16.  73
    The Precautionary Principle in Nanotechnology.James Moor - 2006 - International Journal of Applied Philosophy 20 (2):191-204.
    The precautionary principle (PP) is thought by many to be a useful strategy for action and by many others useless at best and dangerous at worst. We argue that it is a coherent and useful principle. We first clarify the principle and then defend it against a number of common criticisms. Three examples from nanotechnology are used; nanoparticles and possible health and environmental problems, grey goo and the potential for catastrophe, and privacy risks generated by nanoelectronics.
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  17.  96
    "My Place in the Sun": Reflections on the Thought of Emmanuel Levinas.Committee of Public Safety - 1996 - Diacritics 26 (1):3-10.
    In lieu of an abstract, here is a brief excerpt of the content:Martin Heidegger and OntologyEmmanuel Levinas (bio)The prestige of Martin Heidegger 1 and the influence of his thought on German philosophy marks both a new phase and one of the high points of the phenomenological movement. Caught unawares, the traditional establishment is obliged to clarify its position on this new teaching which casts a spell over youth and which, overstepping the bounds of permissibility, is already in vogue. For once, (...)
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  18.  10
    Gender, Mad Scientists and Nanotechnology.J. Kasi Jackson - 2008 - Spontaneous Generations 2 (1):45.
    What does feminism have to do with nanotechnology? And how do mad scientists demonstrate the connections between the two? To explore this, I examine a case study of mad scientists in film, discussing first why mad scientist images arise and why nanotechnology, or the manipulation of matter on the atomic and molecular scales, may be particularly vulnerable to this kind of representation. National funding agencies are calling for the integration of ethics and societal implications into nanoscience and technology research and (...)
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  19.  29
    Small Talk: Nanotechnology and Metaphor.Joseph C. Pitt - 2008 - Spontaneous Generations 2 (1):90.
    The general topic I am addressing concerns the epistemological role of the use of metaphor in the philosophy of science. More specifically, I am concerned with the role metaphor plays in scientific and technological change. In the case in point, nanotechnology, I will explore the role of metaphor in changing our conception of the confirmation of the plausibility of theoretical notions. The basic idea is that metaphors either offer or suggest images that are meant to persuade one to change one’s (...)
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  20.  35
    Transnational Governance Arrangements: Legitimate Alternatives to Regulating Nanotechnologies[REVIEW]Evisa Kica & Diana M. Bowman - 2013 - NanoEthics 7 (1):69-82.
    In recent years, the development and the use of engineered nanomaterials have generated many debates on whether these materials should be part of the new or existing regulatory frameworks. The uncertainty, lack of scientific knowledge and rapid expansion of products containing nanomaterials have added even more to the regulatory dilemma with policy makers and public/private actors contenting periods of both under and over regulation. Responding to these regulatory challenges, as well as to the global reach of nanotechnology research and industrial (...)
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  21. Machine generated contents note: Introduction1. The pre-socratic philosophers: Sixth and fifth centuries B.c.E. Thales / anaximander / anaximenes / Pythagoras / xenophanes / Heraclitus / parmenides / Zeno / empedocles / anaxagoras / leucippus and democritus 2. the athenian period: Fifth and fourth centuries B.c.E. The sophists: Protagoras, gorgias, thrasymachus, callicles and critias / socrates / Plato / Aristotle 3. the hellenistic and Roman periods: Fourth century B.c.E through fourth century C.e. Epicureanism / stoicism / skepticism / neoPlatonism 4. medieval and renaissance philosophy: Fifth through fifteenth centuries saint Augustine / the encyclopediasts / John scotus eriugena / saint Anselm / muslim and jewish philosophies: Averroës, Maimonides / the problem of faith and reason / the problem of the universals / saint Thomas Aquinas / William of ockham / renaissance philosophers 5. continental rationalism and british empiricism: The seventeenth and eighteenth centuries Descartes. [REVIEW]Farewell to the Twentieth Century: Nussbaum Glossary of Philosophical Terms Selected Bibliography Index - 2009 - In Donald Palmer (ed.), Looking at philosophy: the unbearable heaviness of philosophy made lighter. New York: McGraw-Hill.
     
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  22.  48
    Filling the information void: Using public registries as a tool in nanotechnologies regulation. [REVIEW]Diana M. Bowman & Karinne Ludlow - 2009 - Journal of Bioethical Inquiry 6 (1):25-36.
    Based on the experiences of two high profile voluntary data collection programs for engineered nanomaterials, this article considers the merit of an international online registry for scientific data on engineered nanomaterials and environmental, health and safety (EHS) data. Drawing on the earlier experiences from the pharmaceutical industry, the article considers whether a registry of nanomaterials at the international level is practical or indeed desirable, and if so, whether such an initiative—based on the current state of play—should be voluntary or mandatory. (...)
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  23.  3
    Future Generations.Jesper Ryberg - 2009 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Oxford, UK: Wiley-Blackwell. pp. 442–444.
    This chapter contains sections titled: References and Further Reading.
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  24. Les quatre premiers Quodlibets de Godefroid de Fontaines.Godfrey Cent & 13th/14th Godfrey Of Fontaines Cent - 1904 - Louvain,: Institut supérieur de philosophie de l'université. Edited by M. de Wulf & Auguste Pelzer.
    Unlike some other reproductions of classic texts (1) We have not used OCR(Optical Character Recognition), as this leads to bad quality books with introduced typos. (2) In books where there are images such as portraits, maps, sketches etc We have endeavoured to keep the quality of these images, so they represent accurately the original artefact. Although occasionally there may be certain imperfections with these old texts, we feel they deserve to be made available for future generations to enjoy.
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  25.  31
    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 science filled with unlimited (...)
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  26.  28
    Convention for protection of human rights and dignity of the human being with regard to the application of biology and biomedicine: Convention on human rights and biomedicine.Council of Europe - 1997 - Kennedy Institute of Ethics Journal 7 (3):277-290.
    In lieu of an abstract, here is a brief excerpt of the content:Convention for Protection of Human Rights and Dignity of the Human Being with Regard to the Application of Biology and Biomedicine: Convention on Human Rights and BiomedicineCouncil of EuropePreambleThe Member States of the Council of Europe, the other States and the European Community signatories hereto,Bearing in mind the Universal Declaration of Human Rights proclaimed by the General Assembly of the United Nations on 10 December 1948;Bearing in mind the (...)
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  27.  6
    The Future of Identity: Implications, Challenges, and Complications of Human/Machine Consciousness.Kathleen Ann Goonan - 2014-08-11 - In Russell Blackford & Damien Broderick (eds.), Intelligence Unbound. Wiley. pp. 193–200.
    One model for creating artificial consciousness is replicating every fine detail of the brain on computers and setting the model in motion. Consciousness has been experimentally demonstrated to be a much more fragmented experience than we think it to be, perhaps we only need snippets of ourselves to feel conscious. Perhaps consciousness is nothing less and nothing more than story, and all we need do to continue to feel conscious is maintain identity through computer‐based narrative. Applied nanotechnology has generated uncountable (...)
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  28. Generation of animals. Aristotle - unknown
  29.  7
    Apollonii Pergaei Quae Graece Exstant Cum Commentariis Antiquis: Volume 1.Apollonius of Perga & Johan Ludvig Heiberg - 2013 - Cambridge University Press.
    The Greek astronomer and geometrician Apollonius of Perga produced pioneering written work on conic sections in which he demonstrated mathematically the generation of curves and their fundamental properties. His innovative terminology gave us the terms 'ellipse', 'hyperbola' and 'parabola'. The Danish scholar Johan Ludvig Heiberg, a professor of classical philology at the University of Copenhagen, prepared important editions of works by Euclid, Archimedes and Ptolemy, among others. Published between 1891 and 1893, this two-volume work contains the definitive Greek text of (...)
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  30.  4
    Apollonii Pergaei Quae Graece Exstant Cum Commentariis Antiquis: Volume 2.Apollonius of Perga & Johan Ludvig Heiberg - 2012 - Cambridge University Press.
    The Greek astronomer and geometrician Apollonius of Perga produced pioneering written work on conic sections in which he demonstrated mathematically the generation of curves and their fundamental properties. His innovative terminology gave us the terms 'ellipse', 'hyperbola' and 'parabola'. The Danish scholar Johan Ludvig Heiberg, a professor of classical philology at the University of Copenhagen, prepared important editions of works by Euclid, Archimedes and Ptolemy, among others. Published between 1891 and 1893, this two-volume work contains the definitive Greek text of (...)
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  31.  3
    Apollonii Pergaei Quae Graece Exstant Cum Commentariis Antiquis 2 Volume Set.Apollonius of Perga & Johan Ludvig Heiberg - 2013 - Cambridge University Press.
    The Greek astronomer and geometrician Apollonius of Perga produced pioneering written work on conic sections in which he demonstrated mathematically the generation of curves and their fundamental properties. His innovative terminology gave us the terms 'ellipse', 'hyperbola' and 'parabola'. The Danish scholar Johan Ludvig Heiberg, a professor of classical philology at the University of Copenhagen, prepared important editions of works by Euclid, Archimedes and Ptolemy, among others. Published between 1891 and 1893, this two-volume work contains the definitive Greek text of (...)
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  32.  6
    Generation of Animals & History of Animals I, Parts of Animals I. Aristotle - 2019 - Hackett Publishing Company.
    This edition includes new translations of Aristotle's _Generation of Animals_ along with _History of Animals I_ and _Parts of Animals I_. The translations are noteworthy for their consistency and accuracy, and fit seamlessly with the other volumes in the series, enabling Anglophone readers to read Aristotle's works in a way previously not possible. Sequentially numbered endnotes provide the information most needed at each juncture, while a detailed Index of Terms guides the reader to places where focused discussion of key notions (...)
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  33.  6
    Generations of feeling: a history of emotions, 600-1700.Barbara H. Rosenwein - 2016 - N.Y.: Cambridge University Press.
    An exploration of emotional life in the West, considering the varieties, transformations and constants of human emotions over eleven centuries.
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  34.  25
    Mapping Uncertainties in the Upstream: The Case of PLGA Nanoparticles in Salmon Vaccines. [REVIEW]Kåre Nolde Nielsen, Børge Nilsen Fredriksen & Anne Ingeborg Myhr - 2011 - NanoEthics 5 (1):57-71.
    The diversity of nanotechnologies and of the governance challenges that their applications raise calls for exploration and learning across different cases. We present an Upstream Oversight Assessment (UOA) of expected benefits and potential harms of nanoparticles made of a synthetic polymer (PLGA) to improve vaccines for farmed salmon. Suggested by Jennifer Kuzma and colleagues, an UOA may help identify and prioritise research needs, and it may support evaluations of the adequacy of relevant existing regulatory frameworks. In this work, the (...)
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  35.  50
    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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  36. Generation of Interventions in Age-Related Disease and Decline.Kenneth Howse - 2011 - In Julian Savulescu, Ruud ter Meulen & Guy Kahane (eds.), Enhancing Human Capacities. Blackwell. pp. 453.
     
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  37.  12
    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 nanotechnology took (...)
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  38.  33
    The Nanoneme Syndrome: Blurring of fact and fiction in the construction of a new science.Jim Gimzewski & Victoria Vesna - 2003 - Technoetic Arts 1 (1):7-24.
    In both the philosophical and visual sense, ‘seeing is believing’ does not apply to nanotechnology, for there is nothing even remotely visible to create proof of existence. On the atomic and molecular scale, data is recorded by sensing and probing in a very abstract manner, which requires complex and approximate interpretations. More than in any other science, visualization and creation of a narrative becomes necessary to describe what is sensed, not seen. Nevertheless, many of the images generated in science and (...)
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  39.  6
    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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  40.  29
    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.
    Good governance for nanotechnology and nanomaterials is predicated on principles of general good governance. This paper discusses on what lessons we can learn from the oversight of past emerging technologies in formulating these principles. Nanotechnology provides us a valuable opportunity to apply these lessons and a duty to avoid repeating past mistakes. To do that will require mandatory regulation, grounded in precaution, that takes into account the uniqueness of nanomaterials. Moreover, this policy dialogue is not taking place in a vacuum. (...)
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  41.  28
    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 theoretical take on nanotechnology (...)
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  42. Generation of animals footnotes. Aristotle - unknown
     
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  43.  6
    The Basics of Nanotechnology.Fritz Allhoff, Patrick Lin & Daniel Moore - 2010 - In What is Nanotechnology and why does it Matter? Oxford, UK: 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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  44.  38
    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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  45.  9
    Expectations and the Emergence of Nanotechnology.Cynthia Selin - 2007 - Science, Technology, and Human Values 32 (2):196-220.
    Although nanotechnology is often defined as operations on the 10-9 meters, the lack of charisma in the scale-bound definitions has been fortified by remarkable dreams and alluring promises that spark excitement for nanotechnology. The story of the rhetorical development of nanotechnology reveals how speculative claims are powerful constructions that create legitimacy in this emerging technological domain. From its inception, nanotechnology has been more of a dream than reality, more fiction than fact. In recent years, however, the term nanotechnology has been (...)
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  46.  23
    Why Should Nanoscience Students be Taught to be Ethically Competent?Anna Julie Rasmussen & Mette Ebbesen - 2014 - Science and Engineering Ethics 20 (4):1065-1077.
    During the education of scientists at the university level the students become more and more specialized. The specialization of the students is a consequence of the scientific research becoming specialized as well. In the interdisciplinary field of nanoscience the importance of specialization is also emphasized throughout the education. Being an interdisciplinary field of study the specialization in this area is not focused on scientific disciplines, but on the different branches of the research. Historically ethics has not been a priority in (...)
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  47. On the generation of animals. Aristotle - unknown
     
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  48.  65
    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 nanotechnology regulation, and will therefore have (...)
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  49.  9
    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 failed to live up (...)
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  50.  79
    Invisible origins of nanotechnology: Herbert gleiter, materials science, and questions of prestige.Alfred Nordmann - 2009 - Perspectives on Science 17 (2):pp. 123-143.
    Herbert Gleiter promoted the development of nanostructured materials on a variety of levels. In 1981 already, he formulated research visions and produced experimental as well as theoretical results. Still he is known only to a small community of materials scientists. That this is so is itself a telling feature of the imagined community of nanoscale research. After establishing the plausibility of the claim that Herbert Gleiter provided a major impetus, a second step will show just how deeply Gleiter shaped (and (...)
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