Results for 'policy, expertise, patent, socioeconomic, moral, history, science and technology studies, genetic engineering'

983 found
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  1.  27
    Governance Lessons for CRISPR/Cas9 from the Missed Opportunities of Asilomar.Shobita Parthasarathy - 2015 - Ethics in Biology, Engineering and Medicine 6 (3-4):305-312.
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  2.  45
    Anti-genetic engineering activism and scientized politics in the case of “contaminated” Mexican maize.Abby J. Kinchy - 2010 - Agriculture and Human Values 27 (4):505-517.
    The struggle over genetically-engineered (GE) maize in Mexico reveals a deep conflict over the criteria used in the governance of agri-food systems. Policy debate on the topic of GE maize has become “scientized,” granting experts a high level of political authority, and narrowing the regulatory domain to matters that can be adjudicated on the basis of scientific information or “managed” by environmental experts. While scientization would seem to narrow opportunities for public participation, this study finds that Mexican activists acting “in (...)
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  3.  14
    The Social Warp of Science: Writing the History of Genetic Engineering Policy.Susan Wright - 1993 - Science, Technology and Human Values 18 (1):79-101.
    Traditional empiricism, although largely abandoned, has marked the social studies of science through the persistent division between macrolevel analysis of the institutions promoting and regulating science and microlevel analysis of the laboratory, theories, and experiments. Further traces appear in the largely separate methodologies used in social studies of science, which do not draw from political theory, and studies in political theory, which are silent with respect to the expression of power in the development of science. Poststructuralist (...)
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  4.  43
    Ethics Inside the Black Box: Integrating Science and Technology Studies into Engineering and Public Policy Curricula.Christopher Lawrence, Sheila Jasanoff, Sam Weiss Evans, Keith Raffel & L. Mahadevan - 2023 - Science and Engineering Ethics 29 (4):1-31.
    There is growing need for hybrid curricula that integrate constructivist methods from Science and Technology Studies (STS) into both engineering and policy courses at the undergraduate and graduate levels. However, institutional and disciplinary barriers have made implementing such curricula difficult at many institutions. While several programs have recently been launched that mix technical training with consideration of “societal” or “ethical issues,” these programs often lack a constructivist element, leaving newly-minted practitioners entering practical fields ill-equipped to unpack the (...)
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  5. Cancer, Viruses, and Mass Migration: Paul Berg’s Venture into Eukaryotic Biology and the Advent of Recombinant DNA Research and Technology, 1967–1980.Doogab Yi - 2008 - Journal of the History of Biology 41 (4):589-636.
    The existing literature on the development of recombinant DNA technology and genetic engineering tends to focus on Stanley Cohen and Herbert Boyer's recombinant DNA cloning technology and its commercialization starting in the mid-1970s. Historians of science, however, have pointedly noted that experimental procedures for making recombinant DNA molecules were initially developed by Stanford biochemist Paul Berg and his colleagues, Peter Lobban and A. Dale Kaiser in the early 1970s. This paper, recognizing the uneasy disjuncture between (...)
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  6. A Survey of Effects of STS Education on the University Students' Moral Development and Epistemological Beliefs: Using DIT and EBI.Hyemin Han - 2006 - Journal of Ethics Education Studies 9:201-217.
    The purpose of this study is to assess effects of STS(Science and Technology Studies) education in natural science colleges and engineering colleges. STS is an interdisciplinary study includes ethics, history, sociology, policy of science and technology; its main purpose is elaborating students' social perspectives on science and technology. In Korea, however, there is few studies related to STS education to improve its educational effects. Therefore, this study will do exploratory investigation effects of (...)
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  7.  21
    Genetically Engineered Foods and Moral Absolutism: A Representative Study from Germany.Johanna Jauernig, Matthias Uhl & Gabi Waldhof - 2023 - Science and Engineering Ethics 29 (5):1-17.
    There is an ongoing debate about genetic engineering (GE) in food production. Supporters argue that it makes crops more resilient to stresses, such as drought or pests, and should be considered by researchers as a technology to address issues of global food security, whereas opponents put forward that GE crops serve only the economic interests of transnational agrifood-firms and have not yet delivered on their promises to address food shortage and nutrient supply. To address discourse failure regarding (...)
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  8.  14
    Acceptable Use: Morality and Credibility Struggles in Swedish 1960s Alcohol and Illicit Drug (Ab)use Research and Policy.Lena Eriksson & Helena Bergman - 2022 - Minerva 60 (3):419-440.
    This article explores morality and credibility struggles in connection to two officially sanctioned public Swedish experiments launched in the late 1960s to investigate the (ab)use of alcohol and illicit drugs, especially in relation to young people, and the subsequent decisions to terminate the experiments and research. We argue that these 1960s struggles on how to analyze the effects of increased availability of psychoactive substances must be understood in the light of a simultaneous development of modern (social) science studies. The (...)
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  9.  14
    Science and technology studies: critical concepts in the social sciences.Michael Lynch (ed.) - 2012 - New York: Routledge.
    Science and Technology Studies has attained a strong international profile in recent decades. Science Studies incorporates work in the History and Philosophy of Science, but emphasizes the social, cultural, and political implications of developments in the natural sciences, mathematics, engineering, and medicine. The Sociology of Science remains a vital part of Science Studies, but many other key contributors in the field identify more strongly with core disciplines such as Anthropology, Political Science, and (...)
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  10.  29
    Making Digital Territory: Cybersecurity, Techno-nationalism, and the Moral Boundaries of the State.Norma Möllers - 2021 - Science, Technology, and Human Values 46 (1):112-138.
    Drawing on an analysis of German national cybersecurity policy, this paper argues that cybersecurity has become a key site in which states mobilize science and technology to produce state power. Contributing to science and technology studies work on technoscience and statecraft, I develop the concepts of “territorialization projects” and “digital territory” to capture how the production of state power in the digital age increasingly relies on technoscientific expertise about information infrastructure, shifting tasks of government into the (...)
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  11.  98
    Property rights and genetic engineering: Developing nations at risk.Kristin Shrader-Frechette - 2005 - Science and Engineering Ethics 11 (1):137-149.
    Eighty percent of (commercial) genetically engineered seeds (GES) are designed only to resist herbicides. Letting farmers use more chemicals, they cut labor costs. But developing nations say GES cause food shortages, unemployment, resistant weeds, and extinction of native cultivars when “volunteers” drift nearby. While GES patents are reasonable, this paper argues many patent policies are not. The paper surveys GE technology, outlines John Locke’s classic account of property rights, and argues that current patent policies must be revised to take (...)
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  12.  55
    Patenting humans: Clones, chimeras, and biological artifacts.William B. Hurlbut - 2005 - Science and Engineering Ethics 11 (1):21-29.
    The momentum of advances in biology is evident in the history of patents on life forms. As we proceed forward with greater understanding and technological control of developmental biology there will be many new and challenging dilemmas related to patenting of human parts and partial trajectories of human development. These dilemmas are already evident in the current conflict over the moral status of the early human embryo. In this essay, recent evidence from embryological studies is considered and the unbroken continuity (...)
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  13.  56
    Acquisition of T-shaped expertise: an exploratory study.Shannon Nicole Conley, Rider W. Foley, Michael E. Gorman, Jessica Denham & Kevin Coleman - 2017 - Social Epistemology 31 (2):165-183.
    Disciplinary boundaries become increasingly unclear when grappling with “wicked problems,” which present a complex set of policy, cultural, technological, and scientific dimensions. “T-shaped” professionals, i.e. individuals with a depth and breadth of expertise, are being called upon to play a critical role in complex problem-solving. This paper unpacks the notion of the “T-shaped expert” and seeks to situate it within the broader academic literature on expertise, integration, and developmental learning. A component of this project includes an exploratory study, which is (...)
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  14.  33
    Environmental degradation and the ambiguous social role of science and technology.Leo Marx - 1992 - Journal of the History of Biology 25 (3):449-468.
    Recent anxieties about the deterioration of the global environment have had the effect of intensifying the ambiguity that surrounds the social roles of scientists and engineers. This has happened not merely, as suggested at the outset, because the environmental crisis has made their roles more conspicuous. Nor is it merely because recent disasters have alerted us to new, or hitherto unrecognized, social consequences of using the latest science-based technologies. What also requires recognition is that ideas about the social role (...)
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  15.  33
    Engaged, Embedded, Enjoined: Science and Technology Studies in the National Science Foundation.Edward J. Hackett & Diana R. Rhoten - 2011 - Science and Engineering Ethics 17 (4):823-838.
    Engaged scholarship is an intellectual movement sweeping across higher education, not only in the social and behavioral sciences but also in fields of natural science and engineering. It is predicated on the idea that major advances in knowledge will transpire when scholars, while pursuing their research interests, also consider addressing the core problems confronting society. For a workable engaged agenda in science and technology studies, one that informs scholarship as well as shapes practice and policy, the (...)
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  16.  11
    Science and democracy: making knowledge and making power in the biosciences and beyond.Stephen Hilgartner, Clark Miller & Rob Hagendijk (eds.) - 2015 - New York: Routledge, Taylor & Francis Group.
    In the life sciences and beyond, new developments in science and technology and the creation of new social orders go hand in hand. In short, science and society are simultaneously and reciprocally coproduced and changed. Scientific research not only produces new knowledge and technological systems but also constitutes new forms of expertise and contributes to the emergence of new modes of living, at times empowering and at times disempowering citizens. These dynamic processes are tightly connected to significant (...)
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  17.  13
    Moral design and technology.Bart F. W. Wernaart & Sil Aarts (eds.) - 2022 - Wageningen, The Netherlands: Wageningen Academic Publishers.
    When should a surveillance system that is used in preventive policing sacrifice the privacy of citizens to prevent criminality? What should be the impact of individual moral expectations when a social media platform designs an algorithm? To what degree can we use technology-driven deception in dementia care practices? And can we create a moral compass for a dashboard society? Over the last decade, the impact of technological innovation has been unprecedented. It has profoundly changed the way we participate and (...)
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  18. Improve Alignment of Research Policy and Societal Values.Peter Novitzky, Michael J. Bernstein, Vincent Blok, Robert Braun, Tung Tung Chan, Wout Lamers, Anne Loeber, Ingeborg Meijer, Ralf Lindner & Erich Griessler - 2020 - Science 369 (6499):39-41.
    Historically, scientific and engineering expertise has been key in shaping research and innovation policies, with benefits presumed to accrue to society more broadly over time. But there is persistent and growing concern about whether and how ethical and societal values are integrated into R&I policies and governance, as we confront public disbelief in science and political suspicion toward evidence-based policy-making. Erosion of such a social contract with science limits the ability of democratic societies to deal with challenges (...)
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  19.  46
    Allan A. Needell. Science, Cold War, and the American State: Lloyd V. Berkner and the Balance of Professional Ideals. xii + 404 pp., illus., bibl., index. Amsterdam: Harwood Academic Publishers, 2000. $60, £40 : $28, £19. [REVIEW]Zuoyue Wang - 2002 - Isis 93 (2):343-345.
    Lloyd Berkner , radio engineer and ionospheric physicist, was among a small circle of power brokers who helped bring American science and the American state closer together during World War II and the early years of the Cold War. In this exemplary biographical study, Allan Needell, a historian at the Smithsonian Institution's National Air and Space Museum, gives a well‐documented account of Berkner's life and career and a nuanced examination of how American scientists and engineers defined and balanced the (...)
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  20.  15
    As gods: a moral history of the genetic age.Matthew Cobb - 2022 - New York: Basic Books.
    The thrilling and terrifying history of genetic engineering. In 2018, scientists manipulated the DNA of human babies for the first time. As biologist and historian Matthew Cobb shows in As Gods, this achievement was one many scientists have feared from the start of the genetic age. Four times in the last fifty years, geneticists, frightened by their own technology, have called a temporary halt to their experiments. They ought to be frightened: Now we have powers that (...)
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  21.  9
    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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  22.  33
    Public Concerns in the United Kingdom about General and Specific Applications of Genetic Engineering: Risk, Benefit, and Ethics.Richard Shepherd, Chaya Howard & Lynn J. Frewer - 1997 - Science, Technology and Human Values 22 (1):98-124.
    The repertory grid method was used to determine what terminology respondents use to distinguish between different applications of genetic engineering drawn from food- related, agricultural, and medical applications. Respondents were asked to react to fifteen applications phrased in general terms, and results compared with a second study where fifteen more specific applications were used as stimuli. Both sets of data were submitted to generalized Procrustes analysis. Applications associated with animals or human genetic material were described as causing (...)
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  23.  89
    The Frankenstein Syndrome: Ethical and Social Issues in the Genetic Engineering of Animals.Bernard E. Rollin - 1995 - Cambridge University Press.
    This book is a philosophically sophisticated and scientifically well-informed discussion of the moral and social issues raised by genetically engineering animals, a powerful technology which has major implications for society. Unlike other books on this emotionally charged subject, the author attempts to inform, not inflame, the reader about the real problems society must address in order to manage this technology. Bernard Rollin is both a professor of philosophy, and physiology and biophysics, and writes from a uniquely well-informed (...)
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  24.  86
    The morality of human Gene patents.David B. Resnik - 1997 - Kennedy Institute of Ethics Journal 7 (1):43-61.
    : This paper discusses the morality of patenting human genes and genetic technologies. After examining arguments on different sides of the issue, the paper concludes that there are, at present, no compelling reasons to prohibit the extension of current patent laws to the realm of human genetics. However, since advances in genetics are likely to have profound social implications, the most prudent course of action demands a continual reexamination of genetics laws and policies in light of ongoing developments in (...)
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  25.  64
    Introducing Survival Ethics into Engineering Education and Practice.C. Verharen, J. Tharakan, G. Middendorf, M. Castro-Sitiriche & G. Kadoda - 2011 - Science and Engineering Ethics 19 (2):599-623.
    Given the possibilities of synthetic biology, weapons of mass destruction and global climate change, humans may achieve the capacity globally to alter life. This crisis calls for an ethics that furnishes effective motives to take global action necessary for survival. We propose a research program for understanding why ethical principles change across time and culture. We also propose provisional motives and methods for reaching global consensus on engineering field ethics. Current interdisciplinary research in ethics, psychology, neuroscience and evolutionary theory (...)
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  26.  34
    How to Address the Policy and Ethical Issues Emerging with New Technology. The Case of Synthetic Biology in a Small Country.Franc Mali - 2018 - NanoEthics 12 (1):61-73.
    Synthetic biology is rather a new field of science and technology. Societal, regulatory, legal, ethical, safety and security aspects of this field have already been analysed in much detail and discussed very widely in recent years. There is, however, a dearth of empirical studies on the points of view of relevant stakeholders in countries where SB is still in the process of emergence. Slovenia is one of them, and accordingly, the article analyses the situation of SB in this (...)
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  27.  41
    Human Rights and the Challenges of Science and Technology: Commentary on Meier et al. “Translating the Human Right to Water and Sanitation into Public Policy Reform” and Hall et al. “The Human Right to Water: The Importance of Domestic and Productive Water Rights”.Stephen P. Marks - 2014 - Science and Engineering Ethics 20 (4):869-875.
    The expansion of the corpus of international human rights to include the right to water and sanitation has implications both for the process of recognizing human rights and for future developments in the relationships between technology, engineering and human rights. Concerns with threats to human rights resulting from developments in science and technology were expressed in the early days of the United Nations (UN), along with the recognition of the ambitious human right of everyone “to enjoy (...)
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  28.  8
    Chinese Studies in the History and Philosophy of Science and Technology.Fan Dainian, Tai-Nien Fan & Robert S. Cohen - 1996 - Springer Verlag.
    The articles in this collection were all selected from the first five volumes of the Journal of Dialectics of Nature published by the Chinese Academy of Sciences between 1979 and 1985. The Journal was established in 1979 as a comprehensive theoretical publication concerning the history, philosophy and sociology of the natural sciences. It began publication as a response to China's reform, particularly the policy of opening to the outside world. Chinese scholars began to undertake distinctive, original research in these fields. (...)
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  29.  66
    Editorial Overview: Public Science and Technology Scholars: Engaging Whom?Erik Fisher - 2011 - Science and Engineering Ethics 17 (4):607-620.
    Science policy mandates across the industrialized world insinuate more active roles for publics, their earlier participation in policy decisions, and expanded notions of science and technology governance. In response to these policies, engaged scholars in science studies have sought to design and conduct exercises aimed at better attuning science to its public contexts. As demand increases for innovative and potentially democratic forms of public engagement with science and technology, so also do the prospects (...)
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  30.  4
    Science for survival: scientific research and the public interest.Peter Cotgreave - 2003 - London: British Library.
    In the modern world, science and technology touch our lives every day, and if they are to serve the public interest it is more important than ever that society discusses the way in which scientific research is performed, funded, organized and reported. Science for Survival provides an accessible and readable examination of the ways in which society interacts with science and the means by which political and other leaders use and misuse science and engineering. (...)
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  31.  9
    Gender in Science and Technology: Interdisciplinary Approaches.Waltraud Ernst (ed.) - 2014 - Columbia University Press.
    What role does gender play in scientific research and the development of technologies? This book provides methodological expertise, research experiences and empirical results in the dynamic field of Science and Technology Studies. The authors, coming from disciplines as computer science, social sciences, or philosophy, discuss how to ask questions about gender and give examples for their application in interdisciplinary research, development and teaching. Topics range from the design of information and communication technologies, epistemologies of biology and chemistry (...)
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  32.  8
    Science and Technology from Global and Historical Perspectives.Bahattin Karagözoğlu - 2017 - Cham: Imprint: Springer.
    This book provides science and technology ethos to a literate person. It starts with a rather detailed treatment of basic concepts in human values, educational status and domains of education, development of science and technology and their contributions to the welfare of society. It describes ways and means of scientific progresses and technological advancements with their historical perspectives including scientific viewpoints of contributing scientists and technologists. The technical, social, and cultural dimensions are surveyed in relation to (...)
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  33.  24
    Searching for a Public in Controversies over Carbon Dioxide Removal: An Issue Mapping Study on BECCS and Afforestation.Jason Chilvers, Tim Rayner & Laurie Waller - 2023 - Science, Technology, and Human Values 48 (1):34-67.
    The roles digital media-technologies play in raising public issues relating to emerging technologies and their potential for engaging publics with science and policy assessments is a lively field of inquiry in Science and Technology Studies (STS). This paper presents an analysis of controversies over proposals for the large-scale removal of atmospheric carbon dioxide (CDR). The study combines a digital method (web-querying) with document analysis to map debates about two CDR approaches: bioenergy with carbon capture and storage (BECCS) (...)
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  34. Improving Epistemological Beliefs and Moral Judgment Through an STS-Based Science Ethics Education Program.Hyemin Han & Changwoo Jeong - 2014 - Science and Engineering Ethics 20 (1):197-220.
    This study develops a ScienceTechnology–Society (STS)-based science ethics education program for high school students majoring in or planning to major in science and engineering. Our education program includes the fields of philosophy, history, sociology and ethics of science and technology, and other STS-related theories. We expected our STS-based science ethics education program to promote students’ epistemological beliefs and moral judgment development. These psychological constructs are needed to properly solve complicated moral and social (...)
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  35.  22
    Debating the “Unresolved Potential Dangers of Genetic Engineering”. Public Science, Strategies of Enactment and Performance of Science in the Context of the West German Debate of Genetic Engineering.Anna Maria Schmidt - 2022 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 30 (4):501-527.
    In March 1986, a public symposium took place in Heidelberg about the “unresolved potential dangers of genetic engineering”. The event was organized by institutions affiliated with the environmental movement. Choosing this symposium as an example, the article shows how the public appearance of scientists can be understood as a form of political activism. The article shows how specialists from fields as diverse as biology, chemistry, physics, law and political sciences tried to place political messages by putting themselves in (...)
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  36.  80
    Introduction to Cognition in Science and Technology.Michael E. Gorman - 2009 - Topics in Cognitive Science 1 (4):675-685.
    Cognitive studies of science and technology have had a long history of largely independent research projects that have appeared in multiple outlets, but rarely together. The emergence of a new International Society for Psychology of Science and Technology suggests that this is a good time to put some of the latest work in this area into topiCS in a way that will both acquaint readers with the cutting edge in this domain and also give them a (...)
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  37.  1
    Assessing Knowledge Claims in Scientific Controversies: On the Origins of COVID-19.Aristeidis Panagiotou - forthcoming - Perspectives on Science:1-41.
    In the field of Science and Technology Studies (STS), scientific controversies (SCs) are often viewed as essential steps in the development of knowledge and technoscientific artifacts. This paper addresses the lack of an orchestrated epistemological effort to assess the quality of knowledge claims (KCs) articulated during SCs. This study proposes a framework that bridges ontology with appropriate methodological techniques to evaluate KCs, considering them as ontological hybrids in which the social and epistemic are interwoven. This paper argues for (...)
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  38.  33
    Science and Technology Studies in Policy: The UK Synthetic Biology Roadmap.Jane Calvert & Claire Marris - 2020 - Science, Technology, and Human Values 45 (1):34-61.
    In this paper, we reflect on our experience as science and technology studies researchers who were members of the working group that produced A Synthetic Biology Roadmap for the UK in 2012. We explore how this initiative sought to govern an uncertain future and describe how it was successfully used to mobilize public funds for synthetic biology from the UK government. We discuss our attempts to incorporate the insights and sensibilities of STS into the policy process and why (...)
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  39.  14
    Rewriting nature: the future of genome editing and how to bridge the gap between law and science.Paul Enríquez - 2021 - New York, NY: Cambridge University Press.
    For the first time in the history of civilization, humans have procured the power to rewrite nature's book of life. Following the discovery of CRISPR and other key scientific developments at the dawn of the twenty-first century, humankind has-for better or worse-reached the Rubicon of precise genetic manipulation, which existed only in science fiction until now. Those familiar with genome editing understand its colossal power and potential to become a global transformative agent that surpasses the impact of electricity, (...)
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  40. Science and technology studies: Experts and expertise.Ortwin Renn - 2001 - In Neil J. Smelser & Paul B. Baltes (eds.), International Encyclopedia of the Social and Behavioral Sciences. Elsevier. pp. 20--13647.
     
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  41.  37
    The vital machine: a study of technology and organic life.David F. Channell - 1991 - New York: Oxford University Press.
    In 1738, Jacques Vaucanson unveiled his masterpiece before the court of Louis XV: a gilded copper duck that ate, drank, quacked, flapped its wings, splashed about, and, most astonishing of all, digested its food and excreted the remains. The imitation of life by technology fascinated Vaucanson's contemporaries. Today our technology is more powerful, but our fascination is tempered with apprehension. Artificial intelligence and genetic engineering, to name just two areas, raise profoundly disturbing ethical issues that undermine (...)
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  42.  38
    The Rule of Virtue: A Confucian Response to the Ethical Challenges of Technocracy.Yongmou Liu, Qin Zhu & Lishan Lan - 2021 - Science and Engineering Ethics 27 (5):1-24.
    The idea of technocracy has been widely criticized in Western literature in the philosophy and sociology of technology. A common critique of technocracy is that it represents an “antidemocratic” and “dehumanizing” ideology. This paper invites Western scholars to reconsider their oppositions to technocracy by drawing on resources from Confucian ethics. In doing so, this paper synthesizes the major ethical challenges of technocracy mainly concerned by Western scholars in philosophy, political theories, sociology, and policy studies. This paper argues that incorporating (...)
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  43.  54
    Genetically Engineering Human-Animal Chimeras and Lives Worth Living.Dennis R. Cooley - 2008 - Between the Species 13 (8):1.
    Genetic engineering often generates fear of out of control scientists creating Frankenstein creatures that will terrorize the general populace, especially in the cases of human-animal chimeras. While sometimes an accurate characterization of some researchers, this belief is often the result of repugnance for new technology rather than being rationally justified. To facilitate thoughtful discussion the moral issues raised by human-animal chimeras, ethicists and other stakeholders must develop a rational ethical framework before raw emotion has a chance of (...)
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  44.  37
    Analyzing the Role of Values and Ideals in the Development of Energy Systems: How Values, Their Idealizations, and Technologies Shape Political Decision-Making.Joost Alleblas - 2024 - Science and Engineering Ethics 30 (2):1-21.
    This study examines an important aspect of energy history and policy: the intertwinement of energy technologies with ideals. Ideals play an important role in energy visions and innovation pathways. Aspirations to realize technical, social, and political ideals indicate a long-term commitment in the design of energy systems, distinguishable from commitment to other abstract goals, such as values. This study offers an analytical scheme that could help to conceptualize these differences and their impact on energy policy. In the proposed model, two (...)
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  45. The mismeasure of machine: Synthetic biology and the trouble with engineering metaphors.Maarten Boudry & Massimo Pigliucci - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):660-668.
    The scientific study of living organisms is permeated by machine and design metaphors. Genes are thought of as the ‘‘blueprint’’ of an organism, organisms are ‘‘reverse engineered’’ to discover their functionality, and living cells are compared to biochemical factories, complete with assembly lines, transport systems, messenger circuits, etc. Although the notion of design is indispensable to think about adaptations, and engineering analogies have considerable heuristic value (e.g., optimality assumptions), we argue they are limited in several important respects. In particular, (...)
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  46.  25
    (1 other version)Creating future people: the science and ethics of genetic enhancement.Jonathan Anomaly - 2024 - New York, NY: Routledge/Taylor & Francis Group.
    Creating Future People offers readers a fast-paced primer on how advances in genetics will enable parents to influence the traits of their children, including their children's intelligence, moral capacities, physical appearance, and immune system. It explains the science of gene editing and embryo selection, and motivates the moral questions it raises by thinking about the strategic aspects of parental choice. Professor Anomaly takes seriously the diversity of preferences parents have, and the limits policymakers face in regulating what will soon (...)
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  47.  49
    “The Ennobling Unity of Science and Technology”: Materials Sciences and Engineering, the Department of Energy, and the Nanotechnology Enigma. [REVIEW]Matthew N. Eisler - 2013 - Minerva 51 (2):225-251.
    The ambiguous material identity of nanotechnology is a minor mystery of the history of contemporary science. This paper argues that nanotechnology functioned primarily in discourses of social, not physical or biological science, the problematic knowledge at stake concerning the economic value of state-supported basic science. The politics of taxonomy in the United States Department of Energy’s Office of Basic Energy Sciences in the 1990s reveals how scientists invoked the term as one of several competing and equally valid (...)
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  48.  28
    A Bridge between Conceptual Frameworks Sciences, Society and Technology Studies.R. Pisano (ed.) - 2015 - Springer.
    This book analyzes scientific problems within the history of physics, engineering, chemistry, astronomy and medicine, correlated with technological applications in the social context. When and how is tension between disciplines explicitly practised? What is the conceptual bridge between science researches and the organization of technological researches in the development of industrial applications? -/- The authors explain various ways in which the sciences allowed advanced modelling on the one hand, and the development of new technological ideas on the other (...)
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  49.  34
    Philosophy of Engineering, East and West.Baichun Zhang, Byron Newberry, Bocong Li & Carl Mitcham (eds.) - 2018 - Cham: Springer Verlag.
    This co-edited volume compares Chinese and Western experiences of engineering, technology, and development. In doing so, it builds a bridge between the East and West and advances a dialogue in the philosophy of engineering. Divided into three parts, the book starts with studies on epistemological and ontological issues, with a special focus on engineering design, creativity, management, feasibility, and sustainability. Part II considers relationships between the history and philosophy of engineering, and includes a general argument (...)
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  50. Segregated specialists and nuclear culture.Sean F. Johnston - manuscript
    Communities of nuclear workers have evolved in distinctive contexts. During the Manhattan Project the UK, USA and Canada collectively developed the first reactors, isotope separation plants and atomic bombs and, in the process, nurtured distinct cadres of specialist workers. Their later workplaces were often inherited from wartime facilities, or built anew at isolated locations. For a decade, nuclear specialists were segregated and cossetted to gestate practical expertise. At Oak Ridge Tennessee, for example, the informal ‘Clinch College of Nuclear Knowledge’ aimed (...)
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