Results for 'Technology innovation'

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  1. Technology innovation and adoption in the modern workplace : reasons for resistance, ethical concerns, reassurances, and when to say "no".Kelly Wibbenmeyer - 2022 - In Tamara Phillips Fudge (ed.), Exploring ethical problems in today's technological world. Hershey PA: Engineering Science Reference.
     
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  2.  12
    A Roadmap for Technological Innovation in Multimodal Communication Research.Jens Lemanski, Alina Gregori & Consortium Vicom - 2023 - In Vincent G. Duffy (ed.), HCII 2023: Digital Human Modeling and Applications in Health, Safety, Ergonomics and Risk Management. Springer. pp. 402–438.
    Multimodal communication research focuses on how different means of signalling coordinate to communicate effectively. This line of research is traditionally influenced by fields such as cognitive and neuroscience, human-computer interaction, and linguistics. With new technologies becoming available in fields such as natural language processing and computer vision, the field can increasingly avail itself of new ways of analyzing and understanding multimodal communication. As a result, there is a general hope that multimodal research may be at the “precipice of greatness” due (...)
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  3. Technological Innovation and Natural Law.Philip Woodward - 2020 - Philosophia Reformata 85 (2):138-156.
    I discuss three tiers of technological innovation: mild innovation, or the acceleration by technology of a human activity aimed at a good; moderate innovation, or the obviation by technology of an activity aimed at a good; and radical innovation, or the altering by technology of the human condition so as to change what counts as a good. I argue that it is impossible to morally assess proposed innovations within any of these three tiers (...)
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  4.  11
    How Technological Innovation Influences Environmental Pollution: Evidence from China.Duan Xin, Zhang Zhi Sheng & Sun Jiahui - 2022 - Complexity 2022:1-9.
    Technological innovation has an important impact on environmental pollution. In this paper, first, we analyze the influence mechanism of technological innovation on environmental pollution and then design the index system of technological innovation. Then, we use the entropy method to calculate the technological innovation level of different regions in China based on provincial panel data from 2004 to 2016. Finally, the panel vector autoregression model is adopted, and taking the discharge of sewage, solid waste, and exhaust (...)
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  5.  17
    Technological Innovation in Science: The Adoption of Infrared Spectroscopy by Chemists.Yakov M. Rabkin - 1987 - Isis 78 (1):31-54.
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  6.  8
    Green technology innovation and carbon emissions nexus in China: Does industrial structure upgrading matter?Pengfei Gao, Yadong Wang, Yi Zou, Xufeng Su, Xinghui Che & Xiaodong Yang - 2022 - Frontiers in Psychology 13.
    Compared with traditional technological innovation modes, green technology innovation is more targeted for low carbon development and critical support for countries worldwide to combat climate change. The impact of green technology innovation on carbon emissions is considered in terms of fixed effect and mediating effect models through industrial structure upgrading. For this purpose, the sample dataset of 30 provincial administrative areas in China from 2008 to 2020 is employed. The results demonstrate that green technology (...)
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  7. Businesses, Technological Innovations, and Responsibility.Aatif Abbas - 2023 - Business and Professional Ethics Journal 42 (3):269-290.
    This article argues that businesses are morally responsible for compensating the people harmed by their activities even if they were not negligent, i.e., the businesses took reasonable precautions. Critics of this position maintain that responsibility requires choice, and by taking precautions, businesses choose not to harm others. This article accepts their argument’s first premise but rejects the second premise. It contends that businesses often seek risky or innovative activities to increase profits, and the essence of innovative activities is that precautions (...)
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  8.  6
    Technological Innovation as Social Innovation: Science, Technology, and the Rise of STS Studies in Cuba.José Antonio López Cerezo & Jorge Núñez Jover - 2008 - Science, Technology, and Human Values 33 (6):707-729.
    This article describes and analyzes the process of institutionalizing studies on science, technology, and society in Cuba, and the social and academic circumstances in which these studies are implemented there. The authors give a brief account of how science and technology have evolved in Cuba over the last four decades. The authors argue that the promotion of science and technological innovation in Cuba has purposely taken the form of social innovation. The authors offer our view of (...)
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  9.  20
    Technological innovation for the production of biologicals in the Medical University of Camagüey: example of university-society-enterprise relationship.Yadira Falcón Almeida & Casado Hernández - 2013 - Humanidades Médicas 13 (2):372-392.
    Este trabajo está dirigido a fundamentar cómo a través de un proceso de innovación tecnológica se establecieron relaciones entre la universidad, la sociedad y el sector empresarial. La introducción de los productos biológicos en los laboratorios de diagnóstico médico y su impacto en los servicios fue el elemento fundamental que identificó la relación universidad-sociedad, mientras que la transferencia tecnológica de la obtención de biológicos a la unidad productora y comercializadora articuló a la academia con el mundo empresarial. Los modelos seguidos (...)
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  10. Bootstrapping Information Technology Innovations Across Organisational and Geographical Boundaries: Lessons from an mHealth Implementation in Malawi.Tiwonge Davis Manda and Terje Aksel Sanner - 2014 - Iris 35.
  11. Types of Technological Innovation in the Face of Uncertainty.Daniele Chiffi, Stefano Moroni & Luca Zanetti - 2022 - Philosophy and Technology 35 (4):1-17.
    Technological innovation is almost always investigated from an economic perspective; with few exceptions, the specific technological and social nature of innovation is often ignored. We argue that a novel way to characterise and make sense of different types of technological innovation is to start considering uncertainty. This seems plausible since technological development and innovation almost always occur under conditions of uncertainty. We rely on the distinction between, on the one hand, uncertainty that can be quantified (e.g. (...)
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  12.  3
    Technological Innovation in a Rural Intentional Community, 1971-1987.Albert Bates - 1988 - Bulletin of Science, Technology and Society 8 (2):183-199.
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  13.  14
    Technological Innovation in Science: The Adoption of Infrared Spectroscopy by Chemists.Yakov Rabkin - 1987 - Isis 78:31-54.
  14.  5
    Technology, Innovation and Change. Brian Elliott.Kristine Bruland - 1987 - Isis 78 (3):476-477.
  15.  3
    Education Technology: Innovations.Frank B. Withrow - 1986 - Bulletin of Science, Technology and Society 6 (2):319-320.
    “We raised the power of reason, the power of manipulating words, above all other faculties. The written word became our god. We forgot that before words there were actions … that there have always been things beyond words. We forgot that spoken words preceded the written one. We forgot that written form of our letters came from ideographic pictures … that standing behind every letter is an image like an ancient ghost. The image stands for natural movements of the body (...)
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  16.  5
    Education Technology: Innovations.Frank B. Withrow - 1986 - Bulletin of Science, Technology and Society 6 (3):319-320.
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  17.  24
    Technological innovation as an unusual and non-biological evolutionary process.Pieter E. Vermaas - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (4):735-739.
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  18.  13
    Technological innovation as an unusual and non-biological evolutionary process.Pieter E. Vermaas - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (4):735-739.
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  19.  41
    Technological Innovation as an Evolutionary Process Darwinnovation!Tim Lewens - 2002 - Studies in History and Philosophy of Science Part A 33 (1):195-203.
  20.  13
    Opposition to technological innovation.Allan Mazur - 1975 - Minerva 13 (1):58-81.
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  21.  11
    Categorization and technology innovation.Jeffrey M. Stibel - 2006 - Pragmatics and Cognition 14 (2):343-356.
    Theories on categorization have led to numerous technical innovations. Starting with artificial intelligence and neural models, scientists have leveraged psychological theories to drive forward innovative technology. More recently, software companies and Internet firms have implemented high technology software developed from cognitive theory. One class of systems rooted in the philosophical tradition stresses the importance of explanation and function. Another focuses on feature similarity and rule-based reasoning. Both approaches have had modest success and solve fundamental problems, but neither has (...)
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  22.  8
    Ethics and technology: innovation and transformation in community contexts.John Hart - 1997 - Cleveland, Ohio: Pilgrim Press.
    Ethics and Technology is a step-by-step, hands-on process that companies, civic organizations, and watchdog groups can use to assess the benefits - and costs - of technology. Featuring vignettes drawn from actual business cases, as well as sharply focused study questions, this resource offers tools for asking effective questions and making ethical decisions. John Hart's book will enable corporations, governments, communities, and individuals to get beyond competing ideologies to work cooperatively on a progressive reshaping of society.
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  23.  42
    The evolutionary ecology of technological innovations.Ricard V. Solée, Sergi Valverde, Marti Rosas Casals, Stuart A. Kauffman, Doyne Farmer & Niles Eldredge - 2013 - Complexity 18 (4):15-27.
  24.  22
    Scientific research, technological innovation and the agenda of social justice, democratic participation and sustainability.Hugh Lacey - 2014 - Scientiae Studia 12 (SPE):37-55.
    Modern science, whose methodologies give special privilege to using decontextualizing strategies and downplay the role of context-sensitive strategies, have been extraordinarily successful in producing knowledge whose applications have transformed the shape of the lifeworld. Nevertheless, I argue that how the mainstream of the modern scientific tradition interprets the nature and objectives of science is incoherent; and that today there are two competing interpretations of scientific activities that are coherent and that maintain continuity with the success of the tradition: "commercially-oriented technoscience" (...)
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  25.  10
    Imagination in Technology. Innovative Freedom and Symbolic Constraints according to Gilbert Durand.Jean-Jacques Wunenburger - 2015 - Iris 36:159-171.
    Les modèles de l’imaginaire issus de l’école française bachelardienne et durandienne ont permis de mieux appréhender l’étude des mythes, des religions et des arts. Non seulement les imaginaires obéissent à une logique symbolique, mais celle-ci s’enracine dans des soubassements corporels, comportementaux et même neurobiologiques, qui sont au cœur des neurosciences. Dans quelle mesure peut‑on transférer ces résultats de manière plus systématique aux milieux des artefacts techniques, et même aux nouvelles innovations technologiques aujourd’hui? L’article tente de dégager quelques orientations programmatiques qui (...)
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  26. Technological innovation as an unusual and non-biological evolutionary process - John Ziman (ed.) Technological innovation as an evolutionary process; cambridge university press, cambridge, 2000, XVII + 379 pp., hardback, ISBN 0-521-62361-. [REVIEW]E. P. - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (4):735-739.
     
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  27.  15
    Scientific discovery and technological innovation: ulcers, dinosaur extinction, and the programming language java.Paul Thagard & David Croft - 1999 - In L. Magnani, N. J. Nersessian & P. Thagard (eds.), Model-Based Reasoning in Scientific Discovery. Kluwer/Plenum. pp. 125--137.
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  28.  28
    Technological innovation and the formation of Japanese technology: the case of the machine tool industry. [REVIEW]Masatsugu Tsuji - 2003 - AI and Society 17 (3-4):291-306.
    This paper focuses on how “Japanese technology” was formed in the Japanese machine tool industry, and presents how Japanese machine tool builders competed in R&D and the innovation process in the domestic and international markets. During the competition for the innovation of computerised numerically-controlled (CNC) tools, drastic changes occurred in the ranking of individual firms. Prior to the transformation, the traditional “Big 5” companies occupied the largest market share. After the innovation, however, the “Big 3” firms (...)
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  29. The art, poetics, and grammar of technological innovation as practice, process, and performance.Coeckelbergh Mark - 2018 - AI and Society 33 (4):501-510.
    Usually technological innovation and artistic work are seen as very distinctive practices, and innovation of technologies is understood in terms of design and human intention. Moreover, thinking about technological innovation is usually categorized as “technical” and disconnected from thinking about culture and the social. Drawing on work by Dewey, Heidegger, Latour, and Wittgenstein and responding to academic discourses about craft and design, ethics and responsible innovation, transdisciplinarity, and participation, this essay questions these assumptions and examines what (...)
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  30.  4
    Technological Innovation as an Evolutionary Process. [REVIEW]Carl Mitcham - 2003 - Isis 94:418-419.
  31.  4
    Legal Environment, Technological Innovation, and Sustainable Economic Growth.Yidan Zhao - 2022 - Frontiers in Psychology 13.
    The productivity gains generated by innovation are the root cause of long-term economic growth. In this paper, two empirical hypotheses are proposed to clarify our view: the trade turnover of technology market and intellectual property protection are important factors to stimulate innovation; The main channel of communication is through the increase of research staff and R&D funds. The empirical research result show that: The greater the technology trade volume, the greater the incentive to regional innovation (...)
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  32.  7
    Tourists’ Health Risk Threats Amid COVID-19 Era: Role of Technology Innovation, Transformation, and Recovery Implications for Sustainable Tourism.Zhenhuan Li, Dake Wang, Jaffar Abbas, Saad Hassan & Riaqa Mubeen - 2022 - Frontiers in Psychology 12.
    Technology innovation has changed the patterns with its advanced features for travel and tourism industry during the outbreak of COVID-19 pandemic, which massively hit tourism and travel worldwide. The profound adverse effects of the coronavirus disease resulted in a steep decline in the demand for travel and tourism activities worldwide. This study focused on the literature based on travel and tourism in the wake global crisis due to infectious virus. The study aims to review the emerging literature critically (...)
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  33. Technological innovation as an unusual and non-biological evolutionary process: John Ziman (Ed.) Technological Innovation as an Evolutionary Process; Cambridge University Press, Cambridge, 2000, xvii+ 379 pp., hardback, ISBN 0-521-62361-8. [REVIEW]Pieter E. Vermaas - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (4):735-739.
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  34.  34
    Property Rights and Technological Innovation.Svetozar Pejovich - 1996 - Social Philosophy and Policy 13 (2):168.
    The economist Armen Alchian said once that ever since the fiasco in the Garden of Eden, we have been living in a world in which what we want exceeds what is available. The desire for more satisfaction is a predictable behavioral implication of the fact of scarcity. In fact, it might have helped mankind to survive against competition from other forms of life. Man's desire for more utility gives rise to two interdependent issues that each and every society has to (...)
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  35.  4
    Incremental Decision Making in Technological Innovation: What Role for Science?David Collingridge - 1989 - Science, Technology and Human Values 14 (2):141-162.
    An incrementalist view of the R&Dprocess is developed, according to which R&D consists of informed trial and error. One way of avoiding expensive mistakes is to avoid choices within the R&D program that are highly sensitive to a particular scientific claim, because a great deal of time and money may have been spent to no avail should the claim turn out to befalse. The incremental view of R&D therefore entails that no choice within any R&D program is sensitive to any (...)
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  36. Bootstrapping Information Technology Innovations Across Organisational and Geographical Boundaries: Lessons from an mHealth Implementation in Malawi.Tiwonge Davis Manda & Terje Aksel Sanner - 2014 - Iris 35.
     
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  37. Transforming Engineering Education: For Technological Innovation and Social Development.Tony Marjoram - 2015 - In Byron Newberry, Carl Mitcham, Martin Meganck, Andrew Jamison, Christelle Didier & Steen Hyldgaard Christensen (eds.), International Perspectives on Engineering Education: Engineering Education and Practice in Context. Springer Verlag.
     
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  38.  13
    Editorial: Psychology, Technological Innovation, and Entrepreneurship.Jesús de la Fuente, Douglas F. Kauffman & Unai Díaz-Orueta - 2019 - Frontiers in Psychology 10.
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  39.  7
    The disputed paternity of technological innovation.William N. Dunn - 1988 - Knowledge, Technology & Policy 1 (2):3-5.
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  40.  6
    The Challenge of New Technology: Innovation in British Industry since 1850. Jonathan Liebenau.George Wise - 1990 - Isis 81 (1):93-94.
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  41. Transhumanism Between Human Enhancement and Technological Innovation.Ion Iuga - 2016 - Symposion: Theoretical and Applied Inquiries in Philosophy and Social Sciences 3 (1):79-88.
    Transhumanism introduces from its very beginning a paradigm shift about concepts like human nature, progress and human future. An overview of its ideology reveals a strong belief in the idea of human enhancement through technologically means. The theory of technological singularity, which is more or less a radicalisation of the transhumanist discourse, foresees a radical evolutionary change through artificial intelligence. The boundaries between intelligent machines and human beings will be blurred. The consequence is the upcoming of a post-biological and posthuman (...)
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  42.  13
    Categorization and technology innovation.Jeffrey M. Stibel - 2006 - Pragmatics and Cognition 14 (2):343-355.
    Theories on categorization have led to numerous technical innovations. Starting with artificial intelligence and neural models, scientists have leveraged psychological theories to drive forward innovative technology. More recently, software companies and Internet firms have implemented high technology software developed from cognitive theory. One class of systems rooted in the philosophical tradition stresses the importance of explanation and function. Another focuses on feature similarity and rule-based reasoning. Both approaches have had modest success and solve fundamental problems, but neither has (...)
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  43.  14
    Public Goods and Fair Prices: Balancing Technological Innovation with Social Well‐Being.Baruch Brody - 1996 - Hastings Center Report 26 (2):5-11.
    A recent controversy concerning the pricing of drugs and other technological innovations funded by public dollars raised profound moral and social questions, questions the bioethics community has long overlooked.
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  44.  7
    The effect of government informatization construction on corporate digital technology innovation: New evidence from China.Yuan Feng & Changfei Nie - forthcoming - Business Ethics, the Environment and Responsibility.
    This study explores the impact of government informatization construction on corporate digital technology innovation. It uses the integration of informatization and industrialization pilot zones in China as a quasi-natural experiment of government informatization construction, and construct a difference-in-differences model. Based on a sample of Chinese A-share corporations from 2007 to 2021, the empirical findings reveal that government informatization construction significantly promotes corporate digital technology innovation by enhancing corporate attention to digital technologies and reducing transaction costs. Furthermore, (...)
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  45. Finding the key to the black box of board diversity and firm performance: A mediating effect analysis of technological innovation.He Di, Jiaji An & Meifang Yao - 2022 - Frontiers in Psychology 13:914215.
    A growing body of research has focused on the relationship between board diversity and firm performance. A series of empirical literatures have also examined a significant positive correlation between the two. But these results only demonstrate the relationship between the input of ‘diversity’ and the output of ‘firm performance’. Such research is more of a black box because board diversity must act on certain strategies or decisions to affect firm performance. Some scholars try theoretical analysis with the purpose of opening (...)
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  46.  16
    The Dark Side of Firms’ Green Technology Innovation on Corporate Social Responsibility: Evidence from China.Xu Chu, Yuntao Bai & Congshan Li - forthcoming - Journal of Business Ethics:1-20.
    Green technology innovation (GTI) has been increasingly adopted by firms worldwide to promote sustainable development, whereas its potential downsides have been largely overlooked. Drawing on moral licensing theory, we devise a framework to reveal the potential dark side of firms’ GTI on corporate social responsibility (CSR). We argue that with the global eco-awakening, GTI has been an efficient means for firms to meet their stakeholders’ expectations and environmental legitimacy. This may cause a moral licensing effect for senior executives’ (...)
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  47.  6
    Psychological Distance Impacts Subgroup Reciprocity in Technological Innovation Networks: The Mediating Role of Divisive Faultlines.Dongping Yu, Kaixin Deng, Xiangmao Gao & Yongsong Liu - 2022 - Frontiers in Psychology 13.
    As information flows at ever-increasing speeds across technological innovation networks, it is crucial to optimize reciprocity among partnering enterprises. However, the impact of psychological distance on subgroup reciprocity in such networks has not yet been investigated. To address this gap, the current study drew on theories of faultlines and cohesive subgroups to model the relationship between psychological distance and subgroup reciprocity within technological innovation networks. Our hypotheses were tested using data from 174 respondents working in Yunnan Province, China. (...)
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  48.  30
    Regional Specialisation for Technological Innovation in R&D Laboratories: A Strategic Perspective. [REVIEW]Santanu Roy & Pratap K. J. Mohapatra - 2002 - AI and Society 16 (1-2):100-111.
    The present paper attempts to highlight the strategy of regional specialisation for technological innovation in R&D laboratories. The paper makes a proposition that regional specialisation should be recognised as a strategic initiative for technology development in R&D laboratories. The rationale for this strategic initiative has been substantiated with the help of illustrations from the cases of technology development efforts taken up in different laboratories in the country under the Council of Scientific and Industrial Research (CSIR), India. In (...)
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  49.  27
    Transhumanist Genetic Enhancement: Creation of a ‘New Man’ Through Technological Innovation.George L. Mendz & Michael Cook - 2021 - The New Bioethics 27 (2):105-126.
    The transhumanist project of reshaping human beings by promoting their improvement through technological innovations has a broad agenda. This study focuses on the enhancement of the human organism through genetic modification techniques. Transhumanism values and a discussion of their philosophical background provide a framework to understand its ideals. Genetics and ethics are employed to assess the claims of the transhumanist program of human enhancement. A succinct description of central concepts in genetics and an explanation of current techniques to edit the (...)
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  50.  13
    Between Food and Respect for Nature: On the Moral Ambiguity of Norwegian Stakeholder Opinions on Fish and Their Welfare in Technological Innovations in Fisheries.Franck L. B. Meijboom & Danielle Caroline Laursen - 2021 - Journal of Agricultural and Environmental Ethics 34 (5):1-20.
    Innovation in fisheries is a global development that focuses on a broad range of aims. One example is a project that aims to develop technology for key phases of the demersal fishery operation to improve product quality and safeguard fish welfare. As this step to include welfare is novel, it raises questions associated with stakeholder acceptance in a wider aim for responsible innovation. How do stakeholders (a) value fish and their welfare and (b) consider the relation between (...)
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