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  1. May Stakeholders be Involved in Design Without Informed Consent? The Case of Hidden Design.A. J. K. Pols - 2017 - Science and Engineering Ethics 23 (3):723-742.
    Stakeholder involvement in design is desirable from both a practical and an ethical point of view. It is difficult to do well, however, and some problems recur again and again, both of a practical nature, e.g. stakeholders acting strategically rather than openly, and of an ethical nature, e.g. power imbalances unduly affecting the outcome of the process. Hidden Design has been proposed as a method to deal with the practical problems of stakeholder involvement. It aims to do so by taking (...)
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  • Informed Consent in Asymmetrical Relationships: an Investigation into Relational Factors that Influence Room for Reflection.Shannon Lydia Spruit, Ibo Poel & Neelke Doorn - 2016 - NanoEthics 10 (2):123-138.
    In recent years, informed consent has been suggested as a way to deal with risks posed by engineered nanomaterials. We argue that while we can learn from experiences with informed consent in treatment and research contexts, we should be aware that informed consent traditionally pertains to certain features of the relationships between doctors and patients and researchers and research participants, rather than those between producers and consumers and employers and employees, which are more prominent in the case of engineered nanomaterials. (...)
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  • An Ethical Framework for Evaluating Experimental Technology.Ibo van de Poel - 2016 - Science and Engineering Ethics 22 (3):667-686.
    How are we to appraise new technological developments that may bring revolutionary social changes? Currently this is often done by trying to predict or anticipate social consequences and to use these as a basis for moral and regulatory appraisal. Such an approach can, however, not deal with the uncertainties and unknowns that are inherent in social changes induced by technological development. An alternative approach is proposed that conceives of the introduction of new technologies into society as a social experiment. An (...)
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  • Facing up to Complexity: Implications for Our Social Experiments.Ronnie Hawkins - 2016 - Science and Engineering Ethics 22 (3):775-814.
    Biological systems are highly complex, and for this reason there is a considerable degree of uncertainty as to the consequences of making significant interventions into their workings. Since a number of new technologies are already impinging on living systems, including our bodies, many of us have become participants in large-scale “social experiments”. I will discuss biological complexity and its relevance to the technologies that brought us BSE/vCJD and the controversy over GM foods. Then I will consider some of the complexities (...)
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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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  • Security-by-Experiment: Lessons from Responsible Deployment in Cyberspace.Wolter Pieters, Dina Hadžiosmanović & Francien Dechesne - 2016 - Science and Engineering Ethics 22 (3):831-850.
    Conceiving new technologies as social experiments is a means to discuss responsible deployment of technologies that may have unknown and potentially harmful side-effects. Thus far, the uncertain outcomes addressed in the paradigm of new technologies as social experiments have been mostly safety-related, meaning that potential harm is caused by the design plus accidental events in the environment. In some domains, such as cyberspace, adversarial agents may be at least as important when it comes to undesirable effects of deployed technologies. In (...)
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  • Governance Experiments in Water Management: From Interests to Building Blocks.Neelke Doorn - 2016 - Science and Engineering Ethics 22 (3):755-774.
    The management of water is a topic of great concern. Inadequate management may lead to water scarcity and ecological destruction, but also to an increase of catastrophic floods. With climate change, both water scarcity and the risk of flooding are likely to increase even further in the coming decades. This makes water management currently a highly dynamic field, in which experiments are made with new forms of policy making. In the current paper, a case study is presented in which different (...)
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  • The Need for Governance by Experimentation: The Case of Biofuels.Lotte Asveld - 2016 - Science and Engineering Ethics 22 (3):815-830.
    The policies of the European Union concerning the development of biofuels can be termed a lock-in. Biofuels were initially hailed as a green, sustainability technology. However evidence to the contrary quickly emerged. The European Commission proposed to alter its policies to accommodate for these effects but met with fierce resistance from a considerable number of member states who have an economic interest in these first generation biofuels. In this paper I argue that such a lock-in might have been avoided if (...)
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  • An Ethical Framework for Evaluating Experimental Technology.Ibo Poel - 2016 - Science and Engineering Ethics 22 (3):667-686.
    How are we to appraise new technological developments that may bring revolutionary social changes? Currently this is often done by trying to predict or anticipate social consequences and to use these as a basis for moral and regulatory appraisal. Such an approach can, however, not deal with the uncertainties and unknowns that are inherent in social changes induced by technological development. An alternative approach is proposed that conceives of the introduction of new technologies into society as a social experiment. An (...)
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  • The Food Warden: An Exploration of Issues in Distributing Responsibilities for Safe-by-Design Synthetic Biology Applications.Zoë Robaey, Shannon L. Spruit & Ibo van de Poel - 2018 - Science and Engineering Ethics 24 (6):1673-1696.
    The Safe-by-Design approach in synthetic biology holds the promise of designing the building blocks of life in an organism guided by the value of safety. This paves a new way for using biotechnologies safely. However, the Safe-by-Design approach moves the bulk of the responsibility for safety to the actors in the research and development phase. Also, it assumes that safety can be defined and understood by all stakeholders in the same way. These assumptions are problematic and might actually undermine safety. (...)
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  • Informed Consent in Asymmetrical Relationships: an Investigation into Relational Factors that Influence Room for Reflection.Shannon Lydia Spruit, Ibo van de Poel & Neelke Doorn - 2016 - NanoEthics 10 (2):123-138.
    In recent years, informed consent has been suggested as a way to deal with risks posed by engineered nanomaterials. We argue that while we can learn from experiences with informed consent in treatment and research contexts, we should be aware that informed consent traditionally pertains to certain features of the relationships between doctors and patients and researchers and research participants, rather than those between producers and consumers and employers and employees, which are more prominent in the case of engineered nanomaterials. (...)
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  • Nuclear Energy as a Social Experiment.Ibo van de Poel - 2011 - Ethics, Policy and Environment 14 (3):285 - 290.
    Ethics, Policy & Environment, Volume 14, Issue 3, Page 285-290, October 2011.
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  • New Technologies Should not be Treated as Social Experiments.Martin B. Peterson - 2013 - Ethics, Policy and Environment 16 (3):346-348.
    Van de Poel argues that nuclear power should be treated as an ongoing social experiment that needs to be continuously monitored and evaluated. In his reports (2009; Jacobs, Van de Poel, & Os...
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  • Safe-by-Design: from Safety to Responsibility.Ibo van de Poel & Zoë Robaey - 2017 - NanoEthics 11 (3):297-306.
    Safe-by-design aims at addressing safety issues already during the R&D and design phases of new technologies. SbD has increasingly become popular in the last few years for addressing the risks of emerging technologies like nanotechnology and synthetic biology. We ask to what extent SbD approaches can deal with uncertainty, in particular with indeterminacy, i.e., the fact that the actual safety of a technology depends on the behavior of actors in the value chain like users and operators. We argue that while (...)
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  • 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 hype, one of the many (...)
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