Results for 'Governance of science & technology'

925 found
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  1.  38
    Governance of and Through Science and Numbers: Categories, Tools and Technologies—Preface.Dominique Pestre & Peter Weingart - 2009 - Minerva 47 (3):241-242.
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  2.  12
    Futures of Science and Technology in Society.Arie Rip - 2018 - Wiesbaden: Springer Fachmedien Wiesbaden.
    Longer-term developments shape the present and endogenous futures of institutions and practices of science and technology in society and their governance. Understanding the patterns allows diagnosis and soft intervention, often linked to scenario exercises. The book collects six articles offering key examples of this perspective, addressing ongoing issues in the governance of science and technology, including nanotechnology and responsible research and innovation. And adds two more articles that address background philosophical issues.
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  3.  20
    Responsibility through Anticipation? The ‘Future Talk’ and the Quest for Plausibility in the Governance of Emerging Technologies.Sergio Urueña - 2021 - NanoEthics 15 (3):271-302.
    In anticipatory governance and responsible innovation, anticipation is a key theoretical and practical dimension for promoting a more responsible governance of new and emerging sciences and technologies. Yet, anticipation has been subjected to a range of criticisms, such that many now see it as unnecessary for AG and RI. According to Alfred Nordmann, practices engaging with ‘the future’, when performed under certain conditions, may reify the future, diminish our ability to see what is happening, and/or reproduce the illusion (...)
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  4.  23
    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 (...)
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  5.  5
    Book Review: The Governance of Science: Ideology and the Future of the Open Society. [REVIEW]Hans Radder - 2000 - Science, Technology, and Human Values 25 (4):538-545.
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  6.  3
    Book Review: The Governance of Science: Ideology and the Future of the Open Society. [REVIEW]Hans Radder - 2000 - Science, Technology, and Human Values 25 (4):520-527.
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  7.  4
    NGOs, Controversies, and “Opening Up” of Regulatory Governance of Science in India.Aviram Sharma & Poonam Pandey - 2017 - Bulletin of Science, Technology and Society 37 (4):199-211.
    Nongovernmental organizations (NGOs) and scientific controversies are often the common denominators in most of the cases that have significantly shaped science and society relationships in the Global South during the past two decades. National and international NGOs and their network have often facilitated the “opening up” of regulatory governance in multiple sectors. This article draws from three cases—the bottled water controversy, the agribiotechnology debates, and the nanotechnology initiatives—and charts out the role of the NGOs and controversies in (re)defining (...)
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  8.  17
    Ethical Assessments of Emerging Technologies: Appraising the moral plausibility of technological visions.Federica Lucivero - 2016 - Cham: Imprint: Springer.
    This book systematically addresses the issue of assessing the normative nature of visions of emerging technologies in an epistemologically robust way. In the context of democratic governance of emerging technologies, not only it is important to reflect on technologies' moral significance, but also to address their emerging and future oriented character. The book proposes an original approach to deal with the issue of "plausible" ethical evaluation of new technologies. Taking its start from current debates about Technology Assessment, the (...)
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  9.  9
    Suspect Technologies: Scrutinizing the Intersection of Science, Technology, and Policy.Nancy D. Campbell - 2005 - Science, Technology, and Human Values 30 (3):374-402.
    Drug testing is widely deployed in the United States throughout the public and private sectors. This case study uses two emergent drug-testing technologies—hair analysis and the sweat patch—as examples of techniques of governance that should be subjected to the political equivalent of strict scrutiny. The article contributes to conceptual debates in science and technology studies, arguing that the study of social structure and subject formation should be integral rather than epiphenomenal to analysis in the transdisciplinary field of (...)
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  10.  1
    On the Tacit Governance of Research by Uncertainty: How Early Stage Researchers Contribute to the Governance of Life Science Research.Lisa Sigl - 2016 - Science, Technology, and Human Values 41 (3):347-374.
    The experience of uncertainties in exploring the unknown—and dealing with them—is a key characteristic of what it means to be a life science researcher, but we have only started to understand how this characteristic shapes cultures of knowledge production, particularly in times when other—more social—uncertainties enter the field. Although the lab studies tradition has explored the workings of epistemic uncertainties, the range of potent uncertainty experiences in research cultures has been broadened within the neoliberal reorganization of academic institutions. Most (...)
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  11.  9
    Science, technology, and society: new perspectives and directions.Todd L. Pittinsky (ed.) - 2019 - New York: Cambridge University Press.
    This book gathers inter-disciplinary and multi-disciplinary perspectives on the effects of today's advances in science and technology have on issues ranging from government policy-making to how we see the differences between men and women. The chapters investigate how invention and innovation really take place, how science differs from competing forms of knowledge, and how science and technology could contribute more to the greater good of humanity. For instance, should there be legal restrictions on 'immoral inventions'? (...)
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  12.  48
    Do we need a specific kind of technoscience assessment? Taking the convergence of science and technology seriously.Karen Kastenhofer - 2010 - Poiesis and Praxis 7 (1-2):37-54.
    The presented paper addresses the concept of technoscience and its possible implications for technology assessment. Drawing on the discourse about converging technologies, it formulates the assumption that a general shift within science from epistemic cultures to techno-epistemic cultures lies at the heart of the propagated convergence between nano-, bio-, info- and cogno-sciences and technologies. This shift is adequately captured—so the main thesis—by the technoscience label. The paper elaborates on the shared characteristics of the new technosciences, especially their hybrid (...)
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  13.  4
    Government and the technological sciences in the Soviet Union: The rise of the Academy of Sciences. [REVIEW]Robert A. Lewis - 1977 - Minerva 15 (2):174-199.
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  14.  14
    Risk Assessment of Emerging Technologies and Post-Normal Science.Karen Kastenhofer - 2011 - Science, Technology, and Human Values 36 (3):307-333.
    Post-Normal Science as a theory links epistemology and governance. It not only focuses on problem situations where facts are uncertain, values in dispute, stakes high and decisions urgent, but also tries to develop epistemic approaches that allow for sound scientific answers. The following article addresses major epistemological challenges within a typical ‘‘wicked-problem situation’’, i.e., risk assessment of emerging technologies. Such challenges include epistemological problems intrinsic to the task of proving the absence of risk, problems related to the multi-sited (...)
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  15.  39
    The metrics of science and technology.Eliezer Geisler - 2000 - Westport, Conn.: Quorum Books.
    This work copiles key metrics to measure and evalute the impact of science and technology on academia, industry and government. it covers such topics as ...
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  16.  7
    Science, Technology, and Society: New Directions.Andrew Webster - 1991 - New Brunswick, N.J.: Macmillan.
    Read any newspaper or watch your television and as often as not you will be confronted by the worries, hopes, challenges, and mistakes of science and technology. Sociology has been trying to make sense of science for many years, while government and industry have promoted and exploited it for even longer. But what are science and technology? How have they been shaped by society? What new directions are they taking? Andrew Webster provides a lively and (...)
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  17.  32
    State of insecurity: government of the precarious.Isabell Lorey - 2015 - New York: Verso. Edited by Aileen Derieg, Judith Butler & Isabell Lorey.
    After years of the welfare state, the rise of technology, combined with neoliberal governmental apparatuses, has established a new society of the precarious. In this new way of the world, productivity is not just connected to labor in the traditional sense of work hours, but more totally, to the formation of the self: work becomes performative and affective, and personal identities seep more and more into working ones. This new mode of being has another side, however: it can lead (...)
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  18.  76
    Technologies of humility: citizen participation in governing science.Sheila Jasanoff - 2003 - Minerva 41 (3):223--244.
    Building on recent theories ofscience in society, such as that provided bythe `Mode 2' framework, this paper argues thatgovernments should reconsider existingrelations among decision-makers, experts, andcitizens in the management of technology.Policy-makers need a set of ` technologies ofhumility' for systematically assessing theunknown and the uncertain. Appropriate focalpoints for such modest assessments are framing,vulnerability, distribution, and learning.
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  19.  33
    A Democracy Paradox in Studies of Science and Technology.Silke Beck, Roger Pielke & Eva Lövbrand - 2011 - Science, Technology, and Human Values 36 (4):474-496.
    Today many scholars seem to agree that citizens should be involved in expert deliberations on science and technology issues. This interest in public deliberation has gained attraction in many practical settings, especially in the European Union, and holds the promise of more legitimate governance of science and technology. In this article, the authors draw on the European Commission’s report ‘‘Taking the European Knowledge Society Seriously’’ to ask how legitimate these efforts to ‘‘democratize’’ scientific expertise really (...)
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  20.  13
    Ethical governance of artificial intelligence for defence: normative tradeoffs for principle to practice guidance.Alexander Blanchard, Christopher Thomas & Mariarosaria Taddeo - forthcoming - AI and Society:1-14.
    The rapid diffusion of artificial intelligence (AI) technologies in the defence domain raises challenges for the ethical governance of these systems. A recent shift from the what to the how of AI ethics sees a nascent body of literature published by defence organisations focussed on guidance to implement AI ethics principles. These efforts have neglected a crucial intermediate step between principles and guidance concerning the elicitation of ethical requirements for specifying the guidance. In this article, we outline the key (...)
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  21.  6
    Responsibility in Science and Technology: Elements of a Social Theory.Simone Arnaldi - 2016 - Wiesbaden: Imprint: Springer VS. Edited by Luca Bianchi.
    The present volume elucidates the scope of responsibility in science and technology governance by way of assimilating insights gleaned from sociological theory and STS and by investigating the ways in which responsibility unfolds in social processes. Drawing on these theoretical perspectives, the volume goes on to review a 'heuristic model' of responsibility. Such a model provides a simple, tentative, though no less coherent analytical framework for further examining the idea of responsibility, its transformations, configurations and contradictions. This (...)
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  22.  3
    The governance of genomic information: will it come of age?Adèle Langlois - 2006 - Genomics, Society and Policy 2 (3):1-15.
    The completion of the Human Genome Project has opened up unprecedented possibilities in healthcare, but also ethical and social dilemmas in terms of how these can be achieved. Genomic information can be seen as a "global public good" (GPG), in that it is represented by knowledge in the public domain and across national boundaries. Lack of investment, infrastructure and expertise in developing countries means that they are unable to take advantage of these GPG characteristics to address their health needs, fuelling (...)
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  23.  36
    Governance of Biomedical Research in Singapore and the Challenge of Conflicts of Interest.Calvin Wai Loon Ho, Leonardo D. de Castro & Alastair V. Campbell - 2014 - Cambridge Quarterly of Healthcare Ethics 23 (3):288-296.
    This article discusses the establishment of a governance framework for biomedical research in Singapore. It focuses on the work of the Bioethics Advisory Committee , which has been instrumental in institutionalizing a governance framework, through the provision of recommendations to the government, and through the coordination of efforts among government agencies. However, developing capabilities in biomedical sciences presents challenges that are qualitatively different from those of past technologies. The state has a greater role to play in balancing conflicting (...)
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  24.  46
    The Broad Challenge of Public Engagement in Science: Commentary on: “Constitutional Moments in Governing Science and Technology”.Rinie van Est - 2011 - Science and Engineering Ethics 17 (4):639-648.
    Timely public engagement in science presents a broad challenge. It includes more than research into the ethical, legal and social dimensions of science and state-initiated citizen’s participation. Introducing a public perspective on science while safeguarding its public value involves a diverse set of actors: natural scientists and engineers, technology assessment institutes, policy makers, social scientists, citizens, interest organisations, artists, and last, but not least, politicians.
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  25. Prospects for the global governance of autonomous weapons: comparing Chinese, Russian, and US practices.Tom F. A. Watts, Guangyu Qiao-Franco, Anna Nadibaidze, Hendrik Huelss & Ingvild Bode - 2023 - Ethics and Information Technology 25 (1):1-15.
    Technological developments in the sphere of artificial intelligence (AI) inspire debates about the implications of autonomous weapon systems (AWS), which can select and engage targets without human intervention. While increasingly more systems which could qualify as AWS, such as loitering munitions, are reportedly used in armed conflicts, the global discussion about a system of governance and international legal norms on AWS at the United Nations Convention on Certain Conventional Weapons (UN CCW) has stalled. In this article we argue for (...)
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  26.  76
    One size fits all? On the institutionalization of participatory technology assessment and its interconnection with national ways of policy-making: the cases of Switzerland and Austria.Erich Griessler - 2012 - Poiesis and Praxis 9 (1-2):61-80.
    Science and technology policy is often confronted with issues that are both complex and controversial and which have to be decided upon in a delicate constellation of policy-makers, experts, stakeholders, non-governmental organizations and the public. One attempt to deal with such a complex problem is via citizen involvement. Participatory technology assessment (pTA) already goes back to several decades, and countries have made various experiences. While in some countries, governments established technology assessment organizations, which also included pTA (...)
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  27.  2
    Conference report: "Government control of science," opening session of the second national symposium on genetics and the law, 21 - 23 may 1979, boston, massachusetts. [REVIEW]Vivien B. Shelanski - 1979 - Science, Technology and Human Values 4 (3):46-48.
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  28.  7
    Recasting “Substantial Equivalence”:Transatlantic Governance of GM Food.Susan Carr, Joseph Murphy & Les Levidow - 2007 - Science, Technology, and Human Values 32 (1):26-64.
    When intense public controversy erupted around agricultural biotechnology in the late 1990s, critics found opportunities to challenge risk assessment criteria and test methods for genetically modified products. In relation to GM food, they criticized the concept of substantial equivalence, which European Union and United States regulators had adopted as the basis for a harmonized, science-based approach to risk assessment. Competing policy agendas framed scientific uncertainty in different ways. Substantial equivalence was contested and eventually recast to accommodate some criticisms. To (...)
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  29. Three Challenges for the Cosmopolitan Governance of Technoscience.Matthew Sample - manuscript
    Promising new solutions or risking unprecedented harms, science and its technological affordances are increasingly portrayed as matters of global concern, requiring in-kind responses. In a wide range of recent discourses and global initiatives, from the International Summits on Human Gene Editing to the Intergovernmental Panel on Climate Change, experts and policymakers routinely invoke cosmopolitan aims. The common rhetoric of a shared human future or of one humanity, however, does not always correspond to practice. Global inequality and a lack of (...)
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  30.  34
    Towards a Culture of Application: Science and Decision Making at the National Institute of Standards & Technology[REVIEW]Nathaniel Logar - 2009 - Minerva 47 (4):345-366.
    How does the research performed by a government mission agency contribute to useable technologies for its constituents? Is it possible to incorporate science policy mechanisms for increasing benefits to users in the decision process? The United States National Institute of Standards & Technology (NIST) promises research directed towards industrial application. This paper considers the processes that produce science and technology at NIST. The institute’s policies for science provide robust examples for how effective science policies (...)
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  31. The new production of knowledge: the dynamics of science and research in contemporary societies.Michael Gibbons (ed.) - 1994 - Thousand Oaks, Calif.: SAGE Publications.
    As we approach the end of the twentieth century, the ways in which knowledge--scientific, social, and cultural--is produced are undergoing fundamental changes. In The New Production of Knowledge, a distinguished group of authors analyze these changes as marking the transition from established institutions, disciplines, practices, and policies to a new mode of knowledge production. Identifying such elements as reflexivity, transdisciplinarity, and heterogeneity within this new mode, the authors consider their impact and interplay with the role of knowledge in social relations. (...)
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  32.  6
    Governance Challenges of Technological Systems Convergence.Jim Whitman - 2006 - Bulletin of Science, Technology and Society 26 (5):398-409.
    The convergence of several technological systems (especially nanotechnology, biotechnology, information technology, and robotics) has now been adopted as a strategic goal by several countries, most notably the United States and those of the European Union. The anticipated benefits and related fears of competitive disadvantage have brought together a wide range of interested parties, governmental and nongovernmental. In the rush to enter and/or dominate this arena, the benign promise of converging technologies (CT) are highlighted, although a range of risks and (...)
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  33. Constitutional Moments in Governing Science and Technology.Sheila Jasanoff - 2011 - Science and Engineering Ethics 17 (4):621-638.
    Scholars in science and technology studies (STS) have recently been called upon to advise governments on the design of procedures for public engagement. Any such instrumental function should be carried out consistently with STS’s interpretive and normative obligations as a social science discipline. This article illustrates how such threefold integration can be achieved by reviewing current US participatory politics against a 70-year backdrop of tacit constitutional developments in governing science and technology. Two broad cycles of (...)
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  34. Technology as an Aspect of Human Praxis.Laszlo Ropolyi - 2019 - In Mihaly Heder & Eszter Nadasi (eds.), Essays in Post-Critical Philosophy of Technology. Wilmington, Delaware: Vernon Press. pp. 19-31.
    This paper proposes a specific approach to understanding the nature of technology that encompasses the entire field of technological praxis, from the making of primitive tools to using the Internet. In that approach, technology is a specific form of human agency that yields to (an imperfect) realization of human control over a technological situation—that is, a situation not governed to an end by natural constraints but by specific human aims. The components of such technological situations are a given (...)
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  35.  95
    The Price of Truth: How Money Affects the Norms of Science.David B. Resnik - 2007 - New York, US: Oup Usa.
    Modern science is big business. Governments, universities, and corporations have invested billions of dollars in scientific and technological research in the hope of obtaining power and profit. For the most part, this investment has benefited science and society, leading to new discoveries, inventions, disciplines, specialties, jobs, and career opportunities. However, there is a dark side to the influx of money into science. Unbridled pursuit of financial gain in science can undermine scientific norms, such as objectivity, honesty, (...)
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  36.  17
    Midstream Modulation of Technology: Governance From Within.Carl Mitcham, Roop L. Mahajan & Erik Fisher - 2006 - Bulletin of Science, Technology and Society 26 (6):485-496.
    Public “upstream engagement” and other approaches to the social control of technology are currently receiving international attention in policy discourses around emerging technologies such as nanotechnology. To the extent that such approaches hold implications for research and development (R&D) activities, the distinct participation of scientists and engineers is required. The capacity of technoscientists to broaden the influences on R&D activities, however, implies that they conduct R&D differently. This article discusses the possibility for more reflexive participation by scientists and engineers (...)
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  37. Science Transformed?: Debating Claims of an Epochal Break.Alfred Nordmann, Hans Radder & Gregor Schiemann (eds.) - 2011 - University of Pittsburgh Press.
    Advancements in computing, instrumentation, robotics, digital imaging, and simulation modeling have changed science into a technology-driven institution. Government, industry, and society increasingly exert their influence over science, raising questions of values and objectivity. These and other profound changes have led many to speculate that we are in the midst of an epochal break in scientific history. -/- This edited volume presents an in-depth examination of these issues from philosophical, historical, social, and cultural perspectives. It offers arguments both (...)
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  38.  5
    Outline for a History of Science Measurement.Benoît Godin - 2002 - Science, Technology, and Human Values 27 (1):3-27.
    The measurement of science and technology is now fifty years old. It owes a large part of its existence to the work of the National Science Foundation and the Organization for Economic Cooperation and Development in the 1950s and 1960s. Given the centrality of S&T statistics in science studies, it is surprising that no history of the measurement exists in the literature. This article outlines such a history. The history is cast in the light of social (...)
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  39.  18
    The Myth of Efficiency: Technology and Ethics in Industrial Food Production.Diana Stuart & Michelle R. Woroosz - 2013 - Journal of Agricultural and Environmental Ethics 26 (1):231-256.
    In this paper, we explore how the application of technological tools has reshaped food production systems in ways that foster large-scale outbreaks of foodborne illness. Outbreaks of foodborne illness have received increasing attention in recent years, resulting in a growing awareness of the negative impacts associated with industrial food production. These trends indicate a need to examine systemic causes of outbreaks and how they are being addressed. In this paper, we analyze outbreaks linked to ground beef and salad greens. These (...)
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  40.  11
    The Co-production of Science, Ethics, and Emotion.Martyn Pickersgill - 2012 - Science, Technology, and Human Values 37 (6):579-603.
    The concept of “ethical research” holds considerable sway over the ways in which contemporary biomedical, natural, and social science investigations are funded, regulated, and practiced within a variety of countries. Some commentators have viewed this “new” means of governance positively; others, however, have been resoundingly critical, regarding it as restrictive and ethics bodies and regulations unfit for the task they have been set. Regardless, it is clear that science today is an “ethical” business. The ways in which (...)
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  41.  36
    Adoption and Governance of Biotechnology in Democracies.Keith Culver - 2006 - Techné: Research in Philosophy and Technology 9 (3):32-46.
  42.  48
    Adoption and Governance of Biotechnology in Democracies.Keith Culver - 2006 - Techné: Research in Philosophy and Technology 9 (3):32-46.
  43. The Impact of Science on Society.Bertrand Russell - 1951 - New York: Routledge. Edited by Tim Sluckin.
    Many of the revolutionary effects of science and technology are obvious enough. Bertrand Russell saw in the 1950s that there are also many negative aspects of scientific innovation. Insightful and controversial in equal measure, Russell argues that science offers the world greater well-being than it has ever known, on the condition that prosperity is dispersed; power is diffused by means of a single, world government; birth rates do not become too high; and war is abolished. Russell acknowledges (...)
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  44.  14
    The Intrinsic Value of Public Deliberation in the Governance of Human Genome Editing.Kalina Kamenova - 2023 - American Journal of Bioethics 23 (7):63-65.
    Public deliberation has increasingly become the gold standard for citizens’ participation in the governance of science and technology, with a growing body of research suggesting that deliberative p...
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  45.  10
    It’s about Time: Adaptive Resource Management, Environmental Governance, and Science Studies.Kristoffer Whitney - 2019 - Science, Technology, and Human Values 44 (2):263-290.
    This article examines adaptive resource management as it has been applied to the US horseshoe crab fishery over the past decade. As a critical yet constructive exercise, I have three goals: to suggest how adaptive management, for all its promise, can still be improved; to add a nuanced case study to the literatures on the quantification of nature and environmental decision-making; and to use the example of ARM to make certain temporal aspects of contemporary natural resource management more salient to (...)
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  46.  16
    Beyond Cost‐Benefit Analysis in the Governance of Synthetic Biology.Wendell Wallach, Marc Saner & Gary Marchant - 2018 - Hastings Center Report 48 (S1):70-77.
    For many innovations, oversight fits nicely within existing governance mechanisms; nevertheless, others pose unique public health, environmental, and ethical challenges. Synthetic artemisinin, for example, has many precursors in laboratory‐developed drugs that emulate natural forms of the same drug. The policy challenges posed by synthetic artemisinin do not differ significantly in kind from other laboratory‐formulated drugs. Synthetic biofuels and gene drives, however, fit less clearly into existing governance structures. How many of the new categories of products require new forms (...)
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  47.  3
    Government Technology Acquisition Policy: The Case of Proprietary Versus Open Source Software.Thomas A. Hemphill - 2005 - Bulletin of Science, Technology and Society 25 (6):484-490.
    This article begins by explaining the concepts of proprietary and open source software technology, which are now competing in the marketplace. A review of recent individual and cooperative technology development and public policy advocacy efforts, by both proponents of open source software and advocates of proprietary software, subsequently follows, with supporting positions articulated. This is followed by an analysis of the results of a recent draft of a Center for Strategic & International Studies global study of government initiatives (...)
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  48.  56
    The Just War Theory and the Ethical Governance of Research.Ineke Malsch - 2013 - Science and Engineering Ethics 19 (2):461-486.
    This article analyses current trends in and future expectations of nanotechnology and other key enabling technologies for security as well as dual use nanotechnology from the perspective of the ethical Just War Theory (JWT), interpreted as an instrument to increase the threshold for using armed force for solving conflicts. The aim is to investigate the relevance of the JWT to the ethical governance of research. The analysis gives rise to the following results. From the perspective of the JWT, military (...)
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  49.  10
    What Scientists Say about the Changing Risk Calculation in the Marine Environment under the Harper Government of Canada.Melanie G. Wiber & Allain J. Barnett - 2019 - Science, Technology, and Human Values 44 (1):29-51.
    This paper examines how the Harper Government of Canada shut down both debate about threats and research into environmental risk, a strategy that Canadian scientists characterized as the “death of evidence.” Based on interviews with scientists who research risks to the marine environment, we explore the shifting relationship between science and the Canadian government by tracing the change in the mode of risk calculation supported by the Harper administration and the impact of this change. Five themes emerged from the (...)
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  50.  27
    “Oh, Dignity too?” Said the Robot: Human Dignity as the Basis for the Governance of Robotics.Lexo Zardiashvili & Eduard Fosch-Villaronga - 2020 - Minds and Machines 30 (1):121-143.
    Healthcare robots enable practices that seemed far-fetched in the past. Robots might be the solution to bridge the loneliness that the elderly often experience; they may help wheelchair users walk again, or may help navigate the blind. European Institutions, however, acknowledge that human contact is an essential aspect of personal care and that the insertion of robots could dehumanize caring practices. Such instances of human–robot interactions raise the question to what extent the use and development of robots for healthcare applications (...)
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