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  1. The nature of technology: what it is and how it evolves.W. Brian Arthur - 2009 - New York: Free Press.
    "More than any thing else technology creates our world. It creates our wealth, our economy, our very way of being," says W. Brian Arthur. Yet, until now the major questions of technology have gone unanswered. Where do new technologies come from -- how exactly does invention work? What constitutes innovation, and how is it achieved? Why are certain regions -- Cambridge, England, in the 1920s and Silicon Valley today -- hotbeds of innovation, while others languish? Does technology, like biological life, (...)
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  • The value of the world's ecosystem services and natural capital.Robert Costanza, Ralph D'Arge, Rudolf de Groot, Stephen Farber, Monica Grasso, Bruce Hannon, Karin Limburg, Shahid Naeem, Robert V. O'Neill, Jose Paruelo, Robert G. Raskin, Paul Sutton & Marjan van den Belt - 1997 - Nature 387 (6630):253-260.
    The services of ecological systems and the natural capital stocks that produce them are critical to the functioning of the Earth's life-support system. They contribute to human welfare, both directly and indirectly, and therefore represent part of the total economic value of the planet. We have estimated the current economic value of 17 ecosystem services for 16 biomes, based on published studies and a few original calculations. For the entire biosphere, the value is estimated to be in the range of (...)
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  • Ecological Innovation: Biomimicry as a New Way of Thinking and Acting Ecologically.Vincent Blok & Bart Gremmen - 2013 - Journal of Agricultural and Environmental Ethics 29 (2):203-217.
    In this article, we critically reflect on the concept of biomimicry. On the basis of an analysis of the concept of biomimicry in the literature and its philosophical origin, we distinguish between a strong and a weaker concept of biomimicry. The strength of the strong concept of biomimicry is that nature is seen as a measure by which to judge the ethical rightness of our technological innovations, but its weakness is found in questionable presuppositions. These presuppositions are addressed by the (...)
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  • Ecological Innovation: Biomimicry as a New Way of Thinking and Acting Ecologically.Vincent Blok & Bart Gremmen - 2016 - Journal of Agricultural and Environmental Ethics 29 (2):203-217.
    In this article, we critically reflect on the concept of biomimicry. On the basis of an analysis of the concept of biomimicry in the literature and its philosophical origin, we distinguish between a strong and a weaker concept of biomimicry. The strength of the strong concept of biomimicry is that nature is seen as a measure by which to judge the ethical rightness of our technological innovations, but its weakness is found in questionable presuppositions. These presuppositions are addressed by the (...)
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  • Trustworthiness and Responsible Research and Innovation: The Case of the Bio-Economy.Lotte Asveld, Jurgen Ganzevles & Patricia Osseweijer - 2015 - Journal of Agricultural and Environmental Ethics 28 (3):571-588.
    The approach of responsible research and innovation has been proposed to support the introduction of technologies that touch upon socially sensitive issues. RRI is intended to help designers and manufacturers of new technologies identify and accommodate public concerns when developing a new technology by engaging with a wide range of relevant actors in an interactive, transparent process. However what this approach amounts to exactly remains elusive as of yet, i.e. it is unclear what its contribution to the societal embedding of (...)
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  • Lab Work Goes Social, and Vice Versa: Strategising Public Engagement Processes: Commentary on: “What Happens in the Lab Does Not Stay in the Lab: Applying Midstream Modulation to Enhance Critical Reflection in the Laboratory”.Brian Wynne - 2011 - Science and Engineering Ethics 17 (4):791-800.
    Midstream modulation is a form of public engagement with science which benefits from strategic application of science and technology studies (STS) insights accumulated over nearly 20 years. These have been developed from STS researchers’ involvement in practical engagement processes and research with scientists, science funders, policy and other public stakeholders. The strategic aim of this specific method, to develop what is termed second-order reflexivity amongst scientist-technologists, builds upon and advances earlier more general STS work. However this method is focused and (...)
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  • The Rationality of Biofuel Certification: A Critical Examination of EU Biofuel Policy.A. J. K. Pols - 2015 - Journal of Agricultural and Environmental Ethics 28 (4):667-681.
    Certification for biofuels has been developed to ensure that biofuel production methods adhere to social and environmental sustainability standards. As such, requiring biofuel production to be certified has become part of EU policy through the 2009 renewable energy directive, that aims to promote energy security, reduce emissions and promote rural development. According to the EU RED, in 2020 10 % of our transport energy should come from renewable sources, most of which are expected to be biofuels. In this paper I (...)
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  • An Illusory Consensus behind GMO Health Assessment.Sheldon Krimsky - 2015 - Science, Technology, and Human Values 40 (6):883-914.
    Prominent scientists and policymakers assert with confidence that there is no scientific controversy over the health effects of genetically modified organisms —that genetically modified crops currently in commercial use and those yet to be commercialized are inherently safe for human consumption and do not have to be tested. Those who disagree are cast as “GMO deniers.” This article examines scientific reviews and papers on GMOs, compares the findings of professional societies, and discusses the treatment of scientists who have reported adverse (...)
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  • Responsible Innovation.Richard Owen (ed.) - 2013
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