Results for ' ethics of science and technology'

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  1.  46
    Opinion on the ethical implications of new health technologies and citizen participation.European Group on Ethics in Science and New Technologies - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):293-302.
    Name der Zeitschrift: Jahrbuch für Wissenschaft und Ethik Jahrgang: 20 Heft: 1 Seiten: 293-302.
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  2.  24
    Statement on the formulation of a code of conduct for research integrity for projects funded by the European Commission.European Group on Ethics in Science and New Technologies - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):237-240.
    Name der Zeitschrift: Jahrbuch für Wissenschaft und Ethik Jahrgang: 20 Heft: 1 Seiten: 237-240.
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  3.  21
    Future of Work, Future of Society.European Group on Ethics in Science and New Technologies - 2019 - Jahrbuch für Wissenschaft Und Ethik 24 (1):391-424.
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  4.  96
    Guidelines for Research Ethics in Science and Technology.National Committee For Research Ethics In Science And Technology - 2009 - Jahrbuch für Wissenschaft Und Ethik 14 (1):255-266.
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  5.  18
    The Double-Edged Helix: Social Implications of Genetics in a Diverse Society.Joseph S. Alper, Catherine Ard, Adrienne Asch, Peter Conrad, Jon Beckwith, American Cancer Society Research Professor of Microbiology and Molecular Genetics Jon Beckwith, Harry Coplan Professor of Social Sciences Peter Conrad & Lisa N. Geller - 2002
    The rapidly changing field of genetics affects society through advances in health-care and through implications of genetic research. This study addresses the impacts of new genetic discoveries and technologies on different segments of today's society. The book begins with a chapter on genetic complexity, and subsequent chapters discuss moral and ethical questions arising from today's genetics from the perspectives of health care professionals, the media, the general public, special interest groups and commercial interests.
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  6.  19
    Bounded Responsibility and Bounded Ethics of Science and Technology.Günter Abel - 2020 - Axiomathes 30 (6):597-616.
    The leading question of this paper is: Where does the normativity of the ethics of science and technology come from? This is a challenging question given that the traditional reservoirs of convenience (like metaphysical universalism) are no longer at our disposal the way they used to be. The paper is divided into eight sections: (1) It is specified what challenges a non-foundationalist justification and normativity has to meet. (2) A three-dimensional conception of responsibility is developed based on (...)
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  7. The ethics of science and technology.M. Jost - forthcoming - Proc. 1st Southeast European Bioethics Forum–Integrative Bioethics. Mali Losinj, June.
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  8.  41
    Impact of science and technology on society: New directions in ecumenical social ethics.Paul Abrecht - 1977 - Zygon 12 (3):185-198.
  9.  25
    Scientific Controversies: Case Studies in the Resolution and Closure of Disputes in Science and Technology.Hugo Tristram Engelhardt, H. Tristram Engelhardt Jr, Arthur L. Caplan & Drs William F. And Virginia Connolly Mitty Chair Arthur L. Caplan - 1987 - Cambridge University Press.
    This collection of essays examines the ways in which disputes and controversies about the application of scientific knowledge are resolved. Four concrete examples of public controversy are considered in detail: the efficacy of Laetrile, the classification of homosexuality as a disease, the setting of safety standards in the workplace, and the utility of nuclear energy as a source of power. The essays in this volume show that debates about these cases are not confined to matters of empirical fact. Rather, as (...)
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  10. Asia - Pacific Perspectives on Ethics of Science and Technology.Darryl R. J. Macer (ed.) - 2008 - UNESCO Bangkok.
    This collection of papers were originally presented during conferences on ethics in science and technology that UNESCO’s Regional Unit for Social and Human Sciences (RUSHSAP) has been convening since 2005. Since intercultural communication and information-sharing are essential components of these deliberations, the books also provide theme-related discourse from the conferences.
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  11. Protecting the Mind. Ethics of Science and Technology Assessment.P. López-Silva & L. Valera (eds.) - 2022 - Springer.
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  12. Privacy, trust and business ethics for mobile business social networks.Hungarian Academy of Sciences Istvan Mezgar & Sonja Grabner-Kräuter Hungary - 2015 - In Daniel E. Palmer (ed.), Handbook of research on business ethics and corporate responsibilities. Hershey: Business Science Reference, An Imprint of IGI Global.
     
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  13.  17
    Ethics in Science and Technology Policy-Making: A Proposed Normative Framework.Hamid Reza Khedmatgozar, Rahman Sharifzadeh & Leila Namdarian - 2022 - Bulletin of Science, Technology and Society 42 (4):117-132.
    In the twenty-first century, the focus of science and technology (S&T) on the human interests and the accessible interests of society, and so the rise of some questions concerning the impact of S&T on social norms, has led to embedding ethical debates in S&T policy-making. The ethics of S&T policy-making, as a representation of the relationship between ethics and S&T policy-making, is a relatively new area of applied and professional ethics that addresses the dilemmas and (...)
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  14.  7
    Ke xue ji shu lun li de kua wen hua dui hua = Cross-cultural dialogue on the ethics of science and technology.Guoyu Wang & Zeyuan Liu (eds.) - 2009 - Beijing: Ke xue chu ban she.
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  15.  34
    Dual Use Science and Technology, Ethics and Weapons of Mass Destruction.Seumas Miller - 2018 - Cham: Springer Verlag.
    This book deals with the problem of dual-use science research and technology. It first explains the concept of dual use and then offers analyses of collective knowledge and collective ignorance. It goes on to present a theory of collective responsibility, followed by four chapters focusing on a particular scientific field or industry of dual use concern: the chemical industry, the nuclear industry, cyber-technology and the biological sciences. The problem of dual-use science research and technology arises (...)
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  16.  17
    Science and technology as a mixed blessing: Seumas Miller: Dual use science and technology, ethics and weapons of mass destruction. Springer briefs in ethics. Dordrecht: Springer, 2018, 122pp, US$69.99 PB.John Forge - 2018 - Metascience 28 (1):159-161.
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  17.  17
    The Politicization of Science and Technology: Its Implications for Nanotechnology.Fabrice Jotterand - 2006 - Journal of Law, Medicine and Ethics 34 (4):658-666.
    The development of nanotechnology intensifies challenges to the traditional understanding of how to pursue scientific and technological knowledge. Science can no longer be construed simply as the ideal of the quest for truth . Science has become the source of economic power and political power. In this paper, I argue that nanotechnology is a cardinal exemplar of “this politicization.” At the same time, I assert that this new scientific ethos offers the possibility of a better integration of ethical (...)
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  18. Chapter 14. An Ethics for Science and Technology.Craig Dilworth - 2003 - Poznan Studies in the Philosophy of the Sciences and the Humanities 81:195-206.
     
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  19.  7
    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 concise (...)
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  20.  22
    Science and Technology Ethics.Dr Raymond E. Spier & Raymond E. Spier - 2001 - Routledge.
    Science and Technology Ethics re-examines the ethics by which we live and asks the question: do we have in place the ethical guidelines through which we can incorporate these developments with the minimum of disruption and disaffection? It assesses the ethical systems in place and proposes new approaches to our scientific and engineering processes and products, our social contacts, biology and informatics, the military industry and our environmental responsibilities. The volume is multidisciplinary and reflects the aim (...)
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  21.  31
    Science and technology for the good of society?Stephanie J. Bird - 2002 - Science and Engineering Ethics 8 (1):3-4.
  22.  28
    Rethinking disability: Lessons from the past, questions for the future. Contributions and limits of the social model, the sociology of science and technology, and the ethics of care.Myriam Winance - 2016 - Alter - European Journal of Disability Research / Revue Européenne de Recherche Sur le Handicap 10 (2):99-110.
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  23.  35
    Teaching the Ethics of Science and Engineering through Humanities and Social Science.Skylar Zilliox, Jessica Smith & Carl Mitcham - 2016 - Teaching Ethics 16 (2):161-183.
    Ethical questions posed by emerging technologies call for greater understanding of their societal, economic, and environmental aspects by policymakers, citizens, and the engineers and applied scientists at the heart of their development and application. This article reports on the efforts of one research project that assessed the growth of critical thinking and awareness of these multiple aspects in undergraduate engineering and applied science students, with specific regard to nanotechnology. Students in two required courses, a first-year writing and engineering (...) course and a second-year social science course, went through nanotechnology modules as a part of their regular coursework. In the first-year humanities course, we observed self-reported increases in risk awareness, significant educational impact of the module, and a greater awareness of nanotechnology’s applications and social context. In the second-year social science course, we noted changes in risk/benefit analysis as well as in the character and depth of students’ historical analysis, but no change in comparative awareness of other topics, including labor issues and corporate motivations. (shrink)
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  24. A dialogue on the ethics of science: Henri Poincaré and Pope Francis.Nicholas Matthew Danne - 2021 - European Journal for Philosophy of Science 11 (3):1-12.
    To teach the ethics of science to science majors, I follow several teachers in the literature who recommend “persona” writing, or the student construction of dialogues between ethical thinkers of interest. To engage science majors in particular, and especially those new to academic philosophy, I recommend constructing persona dialogues from Henri Poincaré’s essay, “Ethics and Science”, and the non-theological third chapter of Pope Francis’s encyclical on the environment, Laudato si. This pairing of interlocutors offers (...)
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  25.  17
    Liu, Dachun, Wang Bolu, Ding Junqiang, and Liu Yongmu, Reconsideration of Science and Technology I: Reflection on Marx’s View.Carl Mitcham & Alfred Nordmann - 2024 - Dao: A Journal of Comparative Philosophy 23 (2):315-329.
  26.  26
    Teaching the Ethics of Science and Engineering through Humanities and Social Science.Skylar Zilliox, Jessica Smith & Carl Mitcham - 2016 - Teaching Ethics 16 (2):161-183.
    Ethical questions posed by emerging technologies call for greater understanding of their societal, economic, and environmental aspects by policymakers, citizens, and the engineers and applied scientists at the heart of their development and application. This article reports on the efforts of one research project that assessed the growth of critical thinking and awareness of these multiple aspects in undergraduate engineering and applied science students, with specific regard to nanotechnology. Students in two required courses, a first-year writing and engineering (...) course and a second-year social science course, went through nanotechnology modules as a part of their regular coursework. In the first-year humanities course, we observed self-reported increases in risk awareness, significant educational impact of the module, and a greater awareness of nanotechnology’s applications and social context. In the second-year social science course, we noted changes in risk/benefit analysis as well as in the character and depth of students’ historical analysis, but no change in comparative awareness of other topics, including labor issues and corporate motivations. (shrink)
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  27.  19
    The Commons Science and Technology Committee Inquiry into Hybrid Embryo Research 2007: Credible, Reliable and Objective?Pauline Gately - 2011 - Human Reproduction and Genetic Ethics 17 (1):84-109.
    In 2006 the Government issued a White Paper in which it proposed a ban on human-animal embryo research pending greater clarity on its potential. The Commons Select Committee on Science and Technology initiated an Inquiry and concluded that such research was necessary and should be permitted immediately. The Government agreed and this is reflected in revised legislation. The Government has issued guidelines on the gathering and use of scientific advice and evidence, designed to ensure that these are “credible, (...)
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  28.  39
    A Code of Digital Ethics: laying the foundation for digital ethics in a science and technology company.Sarah J. Becker, André T. Nemat, Simon Lucas, René M. Heinitz, Manfred Klevesath & Jean Enno Charton - 2023 - AI and Society 38 (6):2629-2639.
    The rapid and dynamic nature of digital transformation challenges companies that wish to develop and deploy novel digital technologies. Like other actors faced with this transformation, companies need to find robust ways to ethically guide their innovations and business decisions. Digital ethics has recently featured in a plethora of both practical corporate guidelines and compilations of high-level principles, but there remains a gap concerning the development of sound ethical guidance in specific business contexts. As a multinational science and (...)
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  29.  3
    Assessing Ethical Discourses on Human Enhancement from the Point of View of the Democratization of Science and Technology.Paloma García Díaz - 2017 - Contrastes: Revista Internacional de Filosofía 20 (3).
    En este artículo analizo ciertos problemas que se derivan de los principios que se utilizan en el discurso ético sobre la «mejora humana», y que guardan relación con el positivismo. Comienzo esbozando las dos posiciones principales que configuran el debate sobre la mejora humana: la posición creativa, post-humanista o pro-mejora frente a la postura bio-conservadora u orientada a la gratitud. Mi objetivo es mostrar, primero, que el debate ético sobre la mejora humana proviene, especialmente en el bando pro-mejora, de una (...)
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  30.  36
    Science and other cultures: issues in philosophies of science and technology.Robert Figueroa & Sandra G. Harding (eds.) - 2003 - New York: Routledge.
    In this pioneering new book, Sandra Harding and Robert Figueroa bring together an important collection of original essays by leading philosophers exploring an extensive range of diversity issues for the philosophy of science and technology. The essays gathered in this volume extend current philosophical discussion of science and technology beyond the standard feminist and gender analyses that have flourished over the past two decades, by bringing a thorough and truly diverse set of cultural, racial, and ethical (...)
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  31. CI. Ethics in the Age of Science and Technology.Michio Okamoto - forthcoming - Bioethics in Asia: The Proceedings of the Unesco Asian Bioethics Conference (Abc'97) and the Who-Assisted Satellite Symposium on Medical Genetics Services, 3-8 Nov, 1997 in Kobe/Fukui, Japan, 3rd Murs Japan International Symposium, 2nd Congress of the Asi.
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  32.  6
    Ethical Risks and Countermeasures in the Application of Science and Technology in Sports.欣雨 陈 - 2023 - Advances in Philosophy 12 (4):671-676.
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  33.  74
    Human Rights in Natural Science and Technology Professions’ Codes of Ethics?Hans Morten Haugen - 2013 - Business and Professional Ethics Journal 32 (1-2):49-76.
    No global professional codes for the natural science and technology professions exist. In light of how the application of new technology can affect individuals and communities, this discrepancy warrants greater scrutiny. This article analyzes the most relevant processes and seeks to explain why these processes have not resulted in global codes. Moreover, based on a human rights approach, the article gives recommendations on the future process and content of codes for science and technology professions. The (...)
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  34.  15
    Ethics, science and technology.Ivan Domingues - 2006 - Kriterion: Journal of Philosophy 46 (111):0-0.
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  35.  5
    Ethics of Science Popularization: an Inquiry Among Scientists, Information Officers and Science Journalists in the Netherlands.Jeanine de Bruin & Jaap Willems - 1996 - Bulletin of Science, Technology and Society 16 (1-2):41-46.
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  36.  43
    The Walkshop Approach to Science and Technology Ethics.Fern Wickson, Roger Strand & Kamilla Lein Kjølberg - 2015 - Science and Engineering Ethics 21 (1):241-264.
    In research and teaching on ethical aspects of emerging sciences and technologies, the structure of working environments, spaces and relationships play a significant role. Many of the routines and standard practices of academic life, however, do little to actively explore and experiment with these elements. They do even less to address the importance of contextual and embodied dimensions of thinking. To engage these dimensions, we have benefitted significantly from practices that take us out of seminar rooms, offices and laboratories as (...)
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  37.  25
    Between the Philosophy of Science and Philosophical Anthropology. Gernot Böhme’s Critical Philosophy of Technology.Stanisław Czerniak - 2014 - Dialogue and Universalism 24 (4):125-145.
    The essay reconstructs the main aspects of Gernot Böhme’s philosophy of technolo-gy. In polemical reference to Max Horkheimer’s and Jürgen Habermas’ critical theory, Böhme asks about the rationality criteria of technology. He does not view his philosophy of technology as part of the philosophy of science but places it on the boundary between philosophical anthropology and social philosophy. Böhme reflects on the ethically negative, neutral and positive effects of the technification process both on the identity of contemporary (...)
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  38.  11
    Development of Ethics Education in Science and Technology in Technical Universities in China: Commentary on “Ethics ‘upfront’: Generating an Organizational Framework for a New University of Technology”.Qian Wang & Ping Yan - 2019 - Science and Engineering Ethics 25 (6):1721-1733.
    In order to solve a series of problems brought about by rapid development of science and technology, it is necessary not only to conduct in-depth research on science and technology ethics, but also to strengthen ethics education in science and technology. China’s five technical universities exemplify the specific situation and characteristics of ethics at Chinese technical universities, and can be compared to the situation in South Africa. China’s ethics education in (...)
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  39.  26
    Development of Ethics Education in Science and Technology in Technical Universities in China: Commentary on “Ethics ‘upfront’: Generating an Organizational Framework for a New University of Technology”.Qian Wang & Ping Yan - 2019 - Science and Engineering Ethics 25 (6):1721-1733.
    In order to solve a series of problems brought about by rapid development of science and technology, it is necessary not only to conduct in-depth research on science and technology ethics, but also to strengthen ethics education in science and technology. China’s five technical universities exemplify the specific situation and characteristics of ethics at Chinese technical universities, and can be compared to the situation in South Africa. China’s ethics education in (...)
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  40.  14
    Development of Ethics Education in Science and Technology in Technical Universities in China: Commentary on “Ethics ‘upfront’: Generating an Organizational Framework for a New University of Technology”.Qian Wang & Ping Yan - 2019 - Science and Engineering Ethics 25 (6):1721-1733.
    In order to solve a series of problems brought about by rapid development of science and technology, it is necessary not only to conduct in-depth research on science and technology ethics, but also to strengthen ethics education in science and technology. China’s five technical universities exemplify the specific situation and characteristics of ethics at Chinese technical universities, and can be compared to the situation in South Africa. China’s ethics education in (...)
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  41. Nano-ethics as NEST-ethics: Patterns of moral argumentation about new and emerging science and technology[REVIEW]Tsjalling Swierstra & Arie Rip - 2007 - NanoEthics 1 (1):3-20.
    There might not be a specific nano-ethics, but there definitely is an ethics of new & emerging science and technology (NEST), with characteristic tropes and patterns of moral argumentation. Ethical discussion in and around nanoscience and technology reflects such NEST-ethics. We offer an inventory of the arguments, and show patterns in their evolution, in arenas full of proponents and opponents. We also show that there are some nano-specific issues: in how size matters, and when (...)
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  42.  28
    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 the (...)
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  43.  14
    On the dual uses of science and ethics: principles, practices, and prospects.Brian Rappert & Michael J. Selgelid (eds.) - 2013 - Acton, A.C.T.: ANU E Press.
    Claims about the transformations enabled by modern science and medicine have been accompanied by an unsettling question in recent years: might the knowledge being produced undermine--rather than further--human and animal well being? On the Dual Uses of Science and Ethics examines the potential for the skills, know-how, information, and techniques associated with modern biology to serve contrasting ends. In recognition of the moral ambiguity of science and technology, each chapter considers steps that might be undertaken (...)
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  44.  74
    The Effect of Confucian Work Ethics on Learning About Science and Technology Knowledge and Morality.Quey-Jen Yeh & Xiaojun Xu - 2010 - Journal of Business Ethics 95 (1):111 - 128.
    While Chinese societies often appear centralized and traditional, presumably impeding technology and innovation, these values may simply reflect the negative-leaning poles of Confucianism. This study proposes a Confucian work ethic dimension that stresses justified tradition. In combination with Western innovative cultures, this Chinese style might facilitate learning about knowledge and morality in an interaction seemingly unique to the Chinese science and technology sector. Specifically, contrary to the Western style that tolerates conflict to achieve harmony, Confucian work (...) -an Eastern way -prefer to respect hierarchy to attain harmony. Samples from the multinational corporations in Shanghai and privately owned enterprises in Hsinchu of Taiwan represent two levels of Westernization. The findings reveal that the two types of cultures almost equally influence the facilitation of learning about morality, whereas the Western way more effectively teaches about professional knowledge and the Eastern way more effectively teaches general knowledge. In addition, though the samples from both locations enjoy positive advantages from their combined cultures, Shanghai appears more Westernized than Taiwan, and Taiwan benefits more from Confucian work ethics and a higher level of quality learning, particularly with regard to morality. This result may suggest the benefits of Confucius' ideas, if they are not used excessively to emphasize the negative aspects. (shrink)
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  45.  32
    Progress bias versus status quo bias in the ethics of emerging science and technology.Bjørn Hofmann - 2019 - Bioethics 34 (3):252-263.
    How should we handle ethical issues related to emerging science and technology in a rational way? This is a crucial issue in our time. On the one hand, there is great optimism with respect to technology. On the other, there is pessimism. As both perspectives are based on scarce evidence, they may appear speculative and irrational. Against the pessimistic perspective to emerging technology, it has been forcefully argued that there is a status quo bias (SQB) fuelling (...)
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  46. Educational technologies and the teaching of ethics in science and engineering.Michael C. Loui - 2005 - Science and Engineering Ethics 11 (3):435-446.
    To support the teaching of ethics in science and engineering, educational technologies offer a variety of functions: communication between students and instructors, production of documents, distribution of documents, archiving of class sessions, and access to remote resources. Instructors may choose to use these functions of the technologies at different levels of intensity, to support a variety of pedagogies, consistent with accepted good practices. Good pedagogical practices are illustrated in this paper with four examples of uses of educational technologies (...)
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  47.  50
    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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  48.  24
    Principia Ecologica : Eco-principles as a conceptual framework for a new ethics in science and technology.Anton Moser - 1995 - Science and Engineering Ethics 1 (3):241-260.
    As a result of contemporary environmental problems, scientists are focusing their interests on developing a greater understanding of nature. Described in this paper is a view of life and the environment as a case of complex systems analysis; this analysis results in a series of general principles which are manifested in life and bioprocesses. These ‘eco-principles’ will be very useful as guidelines for the eco-restructuring of technology as well as the reorientation of human activities towards a sustainable lifestyle which (...)
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  49.  8
    Controversial Science: From Content to Contention.Thomas Brante, Steve Fuller, PhD Professor of Sociology Steve Fuller & William Lynch - 1993 - SUNY Press.
    This book represents emerging alternative perspectives to the "constructivist" orthodoxy that currently dominates the field of science and technology studies. Various contributions from distinguished Americans and Europeans in the field, provide arguments and evidence that it is not enough simply to say that science is "socially situated." Controversial Science focuses on important political, ethical, and broadly normative considerations that have yet to be given their due, but which point to a more realistic and critical perspective on (...)
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  50.  5
    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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