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  1. (2 other versions)Nanotechnology and Privacy.Jeroen van den Hoven - 2006 - International Journal of Applied Philosophy 20 (2):215-228.
    The development of ever smaller integrated circuits at the sub-micron and nanoscale—in accordance with Moore’s Law—drives the production of very small tags, smart cards, smart labels and sensors. Nanoelectronics and submicron technology supports surveillance technology which is practically invisible. I argue that one of the most urgent and immediate concerns associated with nanotechnology is privacy. Computing in the twenty-first century will not only be pervasive and ubiquitous, but also inconspicuous. If these features are not counteracted in design, they will facilitate (...)
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  • Engines of Creation.Eric Drexler (ed.) - 1986 - Fourth Estate.
    Focusing on the breakthrough field of molecular engineering--a new technology enabling scientists to build tiny machines atom by atom--the author offers projections on how this technological revolution will affect the future of computer science, space travel, medicine, and manufacturing.
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  • (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 the confidence is created on (...)
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  • (2 other versions)Nanotechnology and Privacy.Jeroen van den Hoven - 2006 - International Journal of Applied Philosophy 20 (2):215-228.
    The development of ever smaller integrated circuits at the sub-micron and nanoscale—in accordance with Moore’s Law—drives the production of very small tags, smart cards, smart labels and sensors. Nanoelectronics and submicron technology supports surveillance technology which is practically invisible. I argue that one of the most urgent and immediate concerns associated with nanotechnology is privacy. Computing in the twenty-first century will not only be pervasive and ubiquitous, but also inconspicuous. If these features are not counteracted in design, they will facilitate (...)
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  • A big regulatory tool-box for a small technology.Diana M. Bowman & Graeme A. Hodge - 2008 - NanoEthics 2 (2):193-207.
    There is little doubt that the development and commercialisation of nanotechnologies is challenging traditional state-based regulatory regimes. Yet governments currently appear to be taking a non-interventionist approach to directly regulating this emerging technology. This paper argues that a large regulatory toolbox is available for governing this small technology and that as nanotechnologies evolve, many regulatory advances are likely to occur outside of government. It notes the scientific uncertainties facing us as we contemplate nanotechnology regulatory matters and then examines the notion (...)
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  • Revolutionary and familiar, inevitable and precarious: Rhetorical contradictions in enthusiasm for nanotechnology.Robert Sparrow - 2007 - NanoEthics 1 (1):57-68.
    This paper analyses rhetorics of scientific and corporate enthusiasm surrounding nanotechnology. I argue that enthusiasts for nanotechnologies often try to have it both ways on questions concerning the nature and possible impact of these technologies, and the inevitability of their development and use. In arguments about their nature and impact we are simultaneously informed that these are revolutionary technologies with the potential to profoundly change the world and that they merely represent the extension of existing technologies. They are revolutionary and (...)
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  • (1 other version)The Role of the Humanities and Social Sciences in Nanotechnology Research and Development.Mette Ebbesen - 2008 - NanoEthics 2 (1):1-13.
    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 the confidence is created on (...)
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  • (2 other versions)Nanotechnology and Privacy.Jeroen van den Hoven - 2006 - International Journal of Applied Philosophy 20 (2):215-228.
    The development of ever smaller integrated circuits at the sub-micron and nanoscale—in accordance with Moore’s Law—drives the production of very small tags, smart cards, smart labels and sensors. Nanoelectronics and submicron technology supports surveillance technology which is practically invisible. I argue that one of the most urgent and immediate concerns associated with nanotechnology is privacy. Computing in the twenty-first century will not only be pervasive and ubiquitous, but also inconspicuous. If these features are not counteracted in design, they will facilitate (...)
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  • The Ethics and Politics of Nanotechnology.[author unknown] - 2007 - Jahrbuch für Wissenschaft Und Ethik 12 (1):395-404.
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  • Sunscreen safety: The precautionary principle, the australian therapeutic goods administration and nanoparticles in sunscreens. [REVIEW]Thomas Faunce, Katherine Murray, Hitoshi Nasu & Diana Bowman - 2008 - NanoEthics 2 (3):231-240.
    The ‘Precautionary Principle’ provides a somewhat ill-defined guide, often of uncertain normative status, for those exercising administrative decision-making power in circumstances where that may create potential risks to human health or the environment. This paper seeks to explore to what extent the precautionary principle should have been and was in fact utilised by the Australian Therapeutic Goods Administration (TGA) in its decision to approve the marketing of sunscreens containing titanium dioxide (TiO2) and zinc oxide (ZnO) in nanoparticulate form. In particular, (...)
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