Results for 'TECHNOLOGY & ENGINEERING General.'

700 found
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  1.  8
    The Changing Landscape of Doctoral Education in Science, Technology, Engineering, and Mathematics: PhD Students, Faculty Advisors, and Preferences for Varied Career Options.David K. Sherman, Lauren Ortosky, Suyi Leong, Christopher Kello & Mary Hegarty - 2021 - Frontiers in Psychology 12.
    The landscape of graduate science education is changing as efforts to diversify the professoriate have increased because academic faculty jobs at universities have grown scarce and more competitive. With this context as a backdrop, the present research examines the perceptions and career goals of advisors and advisees through surveys of PhD students and faculty mentors in science, technology, engineering, and math disciplines. Study 1 examined actual preferences and career goals of PhD students among three options: research careers, teaching (...)
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  2.  21
    Engineering Students as Co-creators in an Ethics of Technology Course.Gunter Bombaerts, Karolina Doulougeri, Shelly Tsui, Erik Laes, Andreas Spahn & Diana Adela Martin - 2021 - Science and Engineering Ethics 27 (4):1-26.
    Research on the effectiveness of case studies in teaching engineering ethics in higher education is underdeveloped. To add to our knowledge, we have systematically compared the outcomes of two case approaches to an undergraduate course on the ethics of technology: a detached approach using real-life cases and a challenge-based learning approach with students and stakeholders acting as co-creators. We first developed a practical typology of case-study approaches and subsequently tested an evaluation method to assess the students’ learning experiences (...)
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  3.  7
    The SAGE Encyclopedia of Theory in Science, Technology, Engineering, and Mathematics.James M. Mattingly (ed.) - 2020 - SAGE Publications.
    Theories are part and parcel of just about every human activity that involves knowing about the world and our place in it. In all areas of inquiry from the most mundane to the most esoteric and sophisticated, theorizing plays a fundamental role. What is true of our everyday existence is even more pervasive in more scholarly fields. How is thinking about the subject organized? What methods are used in moving a neophyte in a given subject matter into the position of (...)
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  4. Engineering the Minds of the Future: An Intergenerational Approach to Cognitive Technology.Michael Madary - 2022 - Axiomathes 32 (6):1281-1295.
    The first part of this article makes the case that human cognition is an intergenerational project enabled by the inheritance and bequeathal of cognitive technology (Sects. 2–4). The final two sections of the article (Sects. 5 and 6) explore the normative significance of this claim. My case for the intergenerational claim draws results from multiple disciplines: philosophy (Sect. 2), cultural evolutionary approaches in cognitive science (Sect. 3), and developmental psychology and neuroscience (Sect. 4). In Sect. 5, I propose that (...)
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  5.  32
    Conceptual Engineering and Philosophy of Technology: Amelioration or Adaptation?Jeroen Hopster & Guido Löhr - 2023 - Philosophy and Technology 36 (4):1-17.
    Conceptual Engineering (CE) is thought to be generally aimed at ameliorating deficient concepts. In this paper, we challenge this assumption: we argue that CE is frequently undertaken with the orthogonal aim of _conceptual adaptation_. We develop this thesis with reference to the interplay between technology and concepts. Emerging technologies can exert significant pressure on conceptual systems and spark ‘conceptual disruption’. For example, advances in Artificial Intelligence raise the question of whether AIs are agents or mere objects, which can (...)
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  6. Philosophy engines: Technology and reading/writing/thinking philosophy.Annamaria Carusi - 2009 - Discourse 8 (3).
    Knowledge does not float free of the technologies available for its production and presentation. The intimate connection between ideas and praxis - embodied, technological, social - exemplified in any knowledge practice is, in the terms of Ihde & Selinger (2004), an 'epistemology engine'. This refers to the material-semiotic connections that obtain for any specific rendering of an idea. Often this material-semiotic connection is easier to recognise in the case of art than in that of knowledge, where it appears more-or-less obvious (...)
     
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  7. Thinking through technology: the path between engineering and philosophy.Carl Mitcham - 1994 - Chicago: University of Chicago Press.
    What does it mean to think about technology philosophically? Why try? These are the issues that Carl Mitcham addresses in this work, a comprehensive, critical introduction to the philosophy of technology and a discussion of its sources and uses. Tracing the changing meaning of "technology" from ancient times to our own, Mitcham identifies the most important traditions of critical analysis of technology: the engineering approach, which assumes the centrality of technology in human life and (...)
  8.  22
    Technology and civil disobedience: Why engineers have a special duty to obey the law.Eugene Schlossberger - 1995 - Science and Engineering Ethics 1 (2):163-168.
    Engineers have a greater responsibility than many other professionals not to commit civil disobedience in performing their jobs as engineers. It does not follow that engineers have no responsibility for their company’s actions. Morally, engineer may be required to speak out within the company or even publicly against her company. An engineer may be required to work on a project or quit her job. None of these acts, generally, are against the law. An engineer may be morally required to commit (...)
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  9.  21
    Philosophy of Technology and Engineering Sciences.Anthonie Meijers (ed.) - 2009 - Elsevier/North Holland.
    The Handbook Philosophy of Technology and Engineering Sciences addresses numerous issues in the emerging field of the philosophy of those sciences that are involved in the technological process of designing, developing and making of new technical artifacts and systems. These issues include the nature of design, of technological knowledge, and of technical artifacts, as well as the toolbox of engineers. Most of these have thus far not been analyzed in general philosophy of science, which has traditionally but inadequately (...)
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  10.  1
    Technology: The Driving Engine of Current Biological Advance.Thomas G. Wegmann - 1988 - Canadian Journal of Philosophy, Supplementary Volume 14:255-262.
    One of the admirable purposes of the current anthology is to attempt a dialogue between professional philosophers of biology and biological scientists. This is indeed an ambitious undertaking, because although the former group pays a lot of attention to the latter, active scientists rarely pay heed to what the philosophers of biology, or even of science in general, have to say. The current paper is an attempt to address some reasons why this might be so from the bench-level view of (...)
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  11.  26
    Responsible Innovation and Climate Engineering. A Step Back to Technology Assessment.Harald Stelzer - 2020 - Philosophy of Management 19 (3):297-316.
    Much in Responsible Research and Innovation (RRI) is part of a participatory turn within the Technology Assessment (TA) and Science and Technology Studies (STS) community. This has an influence also on the evaluation of Climate Engineering (CE) options, as it will be shown by reference to the SPICE project. The SPICE example and the call for democratisation of science and innovation raise some interesting concerns for the normative evaluation of CE options that will be addressed in the (...)
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  12. The Role of the Practice of Excellence Strategies in Education to Achieve Sustainable Competitive Advantage to Institutions of Higher Education-Faculty of Engineering and Information Technology at Al-Azhar University in Gaza a Model.Mazen J. Al Shobaki & Samy S. Abu Naser - 2017 - International Journal of Digital Publication Technology 1 (2):135-157.
    This study aims to look at the role of the practice of excellence strategies in education in achieving sustainable competitive advantage for the Higher educational institutions of the faculty of Engineering and Information Technology at Al-Azhar University in Gaza, a model, and the study considered the competitive advantage of educational institutions stems from the impact on the level of each student, employee, and the institution. The study was based on the premise that the development of strategies for excellence (...)
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  13. Responsibility Ascriptions in Technology Development and Engineering: Three Perspectives. [REVIEW]Neelke Doorn - 2012 - Science and Engineering Ethics 18 (1):69-90.
    In the last decades increasing attention is paid to the topic of responsibility in technology development and engineering. The discussion of this topic is often guided by questions related to liability and blameworthiness. Recent discussions in engineering ethics call for a reconsideration of the traditional quest for responsibility. Rather than on alleged wrongdoing and blaming, the focus should shift to more socially responsible engineering, some authors argue. The present paper aims at exploring the different approaches to (...)
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  14.  16
    Philosophy of Engineering and Design (Technological) Actions.Anna Laktionova - 2023 - Filosofska Dumka (Philosophical Thought) 1:148-161.
    We live in a world of technologies. Classical Philosophy of Science, Philosophy of Technology, Episte- mology, etc. philosophical disciplines appear insufficient for valid reflections on today's world. The Philo- sophy of Engineering and Design (Technological) Actions is seen promising to become a fruitful field of philosophical reflections and is offered from the perspective of the Philosophy of Action and Agency (Practical Philosophy). The foundations of the latter are presented in Part II. In the Part I, the Phi- losophy (...)
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  15.  15
    Food, Genetic Engineering and Philosophy of Technology: Magic Bullets, Technological Fixes and Responsibility to the Future.N. Dane Scott - 2018 - Cham: Springer Verlag.
    This book describes specific, well-know controversies in the genetic modification debate and connects them to deeper philosophical issues in philosophy of technology. It contributes to the current, far-reaching deliberations about the future of food, agriculture and society. Controversies over so-called Genetically Modified Organisms regularly appear in the press. The biotechnology debate has settled into a long-term philosophical dispute. The discussion goes much deeper than the initial empirical questions about whether or not GM food and crops are safe for human (...)
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  16.  32
    Technology and civil disobedience: Why engineers have a special duty to obey the law. [REVIEW]Dr Eugene Schlossberger - 1995 - Science and Engineering Ethics 1 (2):163-168.
    Engineers have a greater responsibility than many other professionals not to commit civil disobedience in performing their jobs as engineers. It does not follow that engineers have no responsibility for their company’s actions. Morally, engineer may be required to speak out within the company or even publicly against her company. An engineer may be required to work on a project or quit her job. None of these acts, generally, are against the law. An engineer may be morally required to commit (...)
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  17. Thinking through Technology: The Path between Engineering and Philosophy.Carl Mitcham - 1996 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 27 (2):359-360.
     
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  18. Ethics, Science, Technology and Engineering: A Global Resource, 2nd Edition.J. Britt Holbrook (ed.) - 2014 - Macmillan Reference USA.
    Described by Catholic World (2006) as "a treasure trove for beginning literacy" in the disciplines of science, technology, and ethics, the 2005 edition of Encyclopedia Of Science, Technology, and Ethics (ESTE) is being revised to include new analytical and interpretive essays on the events, scholarship, people, and legal decisions that have marked the period since the first edition was researched and published. In addition, to help make ESTE more global and interdisciplinary in scope and reach, the second edition (...)
     
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  19.  5
    General Education for Scientists and Engineers: Current Issues and Challenges.Margaret L. A. MacVicar - 1987 - Bulletin of Science, Technology and Society 7 (5-6):592-597.
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  20.  5
    General Education for Scientists and Engineers: Current Issues and Challenges.Margaret L. A. MacVicar - 1987 - Bulletin of Science, Technology and Society 7 (3-4):592-597.
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  21.  10
    Pedagogical Orientations and Evolving Responsibilities of Technological Universities: A Literature Review of the History of Engineering Education.Diana Adela Martin, Gunter Bombaerts, Maja Horst, Kyriaki Papageorgiou & Gianluigi Viscusi - 2023 - Science and Engineering Ethics 29 (6):1-29.
    Current societal changes and challenges demand a broader role of technological universities, thus opening the question of how their role evolved over time and how to frame their current responsibility. In response to urgent calls for debating and redefining the identity of contemporary technological universities, this paper has two aims. The first aim is to identify the key characteristics and orientations marking the development of technological universities, as recorded in the history of engineering education. The second aim is to (...)
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  22.  22
    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 politics (...)
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  23.  5
    Backstage: The organizational gendered agenda in science, engineering and technology professions.Edeltraud Hanappi-Egger - 2013 - European Journal of Women's Studies 20 (3):279-294.
    Science, engineering and technology are still male-dominated fields, and thus all over Europe much effort is expended on activities which, it is hoped, will lead to a sustainable gender balance. Scholarly work has frequently focused on the topic of how to motivate women to enter SET fields or to choose a corresponding education. In contrast to this one-sided approach, recent scholarly contributions have begun to emphasize the vital role of gendered structures and indirect exclusion mechanisms of technological institutions (...)
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  24.  15
    Technology, Modernity, and Democracy: Essays by Andrew Feenberg.Eduardo Beira & Andrew Feenberg (eds.) - 2018 - London: Rowman & Littlefield International.
    This important collection of essays by Andrew Feenberg presents his critical theory of technology, an innovative approach to philosophy and sociology of technology based on a synthesis of ideas drawn from STS and Frankfurt School Critical Theory. The volume includes chapters on citizenship, modernity, and Heidegger and Marcuse.
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  25.  20
    Paper Technology und Wissensgeschichte.Volker Hess & J. Andrew Mendelsohn - 2013 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 21 (1):1-10.
  26.  44
    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 becoming (...)
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  27.  24
    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 ethical concern, (...)
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  28.  8
    The interface envelope: gaming, technology, power.James Ash - 2015 - New York: Bloomsbury Academic, an imprint of Bloomsbury Publishing.
    In The Interface Envelope, James Ash develops a series of concepts to understand how digital interfaces work to shape the spatial and temporal perception of players. Drawing upon examples from videogame design and work from post-phenomenology, speculative realism, new materialism and media theory, Ash argues that interfaces create envelopes, or localised foldings of space time, around which bodily and perceptual capacities are organised for the explicit production of economic profit. Modifying and developing Bernard Stiegler's account of psychopower and Warren Neidich's (...)
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  29. Conceptual Engineering Between Representational Skepticism and Complacency: Is There a Third Way?Delia Belleri - 2023 - Topoi 42 (4):1051-1062.
    Conceptual engineering has been linked by Herman Cappelen to a position called “representational skepticism”, described as one’s refusal to uncritically take over the conceptual representations one is handed. This position is contrasted with an uncritical attitude, called “representational complacency”. Arguably, neither position, or a hybrid of the two, is rationally sustainable. This paper therefore proposes an alternative option, called “critical concept conservatism”, stating that having a concept makes it rational (in a suitable sense of “rational”) for one to retain (...)
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  30. Thinking Through Technology: The Path between Engineering and Philosophy. [REVIEW]Robert Frodeman - 1996 - Environmental Ethics 18 (1):111-112.
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  31.  12
    Ethical Engineering for International Development and Environmental Sustainability.Marion Hersh (ed.) - 2015 - London: Imprint: Springer.
    Ensuring that their work has a positive influence on society is a responsibility and a privilege for engineers, but also a considerable challenge. This book addresses the ways in which engineers meet this challenge, working from the assumption that for a project to be truly ethical both the undertaking itself and its implementation must be ethically sound. The contributors discuss varied topics from an international and interdisciplinary perspective, including: · robot ethics; · outer space; · international development; · internet privacy (...)
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  32.  60
    Philosophy of Technology After the Empirical Turn.Anthonie W. M. Meijers, Peter Kroes, Pieter E. Vermaas & Maarten Franssen (eds.) - 2016 - Cham: Springer Verlag.
    This volume features 16 essays on the philosophy of technology that discuss its identity, its position in philosophy in general, and the role of empirical studies in philosophical analyses of engineering ethics and engineering practices. This volume is published about fifteen years after Peter Kroes and Anthonie Meijers published a collection of papers under the title The empirical turn in the philosophy of technology, in which they called for a reorientation toward the practice of engineering, (...)
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  33.  10
    Biomedical Engineering Ethics.Philip Brey - 2009 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Oxford, UK: Wiley-Blackwell. pp. 392–396.
    This chapter contains sections titled: General Ethical Issues Cellular, Genetic and Tissue Engineering Biomaterials, Prostheses and Implants Biomedical Imaging and Optics Neural Engineering References and Further Reading.
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  34.  9
    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 the (...)
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  35.  2
    Technological Solutions and Contested Interpretations of Scientific Results: Risk Assessment of Diesel Emissions in the United States and in West Germany, 1977–1995.Christopher Neumaier - 2020 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 28 (4):547-588.
    This article traces the different classifications of diesel emissions either as “safe” or as “hazardous” in the US and in West Germany between 1977 and 1995. It argues that the environmental regulation of diesel emissions was a political threshold. It contributes to our general understanding of how politicians, environmental lobbyists, scientists, and engineers constructed the standards and norms that defined the “safe” limit of environmental pollutants. After discussing how diesel emissions came under review as a potential carcinogen, I will show (...)
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  36.  7
    An Engineering Approach to Sustainable Decision Making.Kelly Bryck & Naoko Ellis - 2016 - Environmental Values 25 (6):639-662.
    Climate change is often tackled via a two-pronged approach of behaviour change and technological advancement. Policy studies and social sciences generally take ownership of influencing behaviours, while natural sciences and engineering tackle generating newer, more efficient technologies. Fusion of these methodologies is severely lacking. Engineers are uniquely situated to contribute to positive environmental action in both technological and behavioural realms. This article explores the psychological mindset of engineers as they make decisions to dissect factors that undermine sustainable behaviour. The (...)
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  37.  45
    Philosophy of Engineering, East and West.Rita Armstrong, Erik W. Armstrong, James L. Barnes, Susan K. Barnes, Roberto Bartholo, Terry Bristol, Cao Dongming, Cao Xu, Carleton Christensen, Chen Jia, Cheng Yifa, Christelle Didier, Paul T. Durbin, Michael J. Dyrenfurth, Fang Yibing, Donald Hector, Li Bocong, Li Lei, Liu Dachun, Heinz C. Luegenbiehl, Diane P. Michelfelder, Carl Mitcham, Suzanne Moon, Byron Newberry, Jim Petrie, Hans Poser, Domício Proença, Qian Wei, Wim Ravesteijn, Viola Schiaffonati, Édison Renato Silva, Patrick Simonnin, Mario Verdicchio, Sun Lie, Wang Bin, Wang Dazhou, Wang Guoyu, Wang Jian, Wang Nan, Yin Ruiyu, Yin Wenjuan, Yuan Deyu, Zhao Junhai, Baichun Zhang & Zhang Kang (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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  38. How Engineers Can Care from a Distance: Promoting Moral Sensitivity in Engineering Ethics Education.Janna B. Van Grunsven, Lavinia Marin, Taylor Stone, Neelke Doorn & Sabine Roeser - 2023 - In Glenn Miller, Helena Mateus Jerónimo & Qin Zhu (eds.), Thinking through Science and Technology. Philosophy, Religion, and Politics in an Engineered World. Rowman & Littlefield International. pp. 141-163.
    Moral (or ethical) sensitivity is widely viewed as a foundational learning goal in engineering ethics education. We have argued in this paper is that this view of moral sensitivity cannot be readily transported from the nursing context to the engineering context on the basis of a care-analogy. The particularized care characteristic of the nursing context is decisively different from the generalized and universalized forms of care characteristic of the engineering context. Through a focus on care and maintenance, (...)
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  39.  20
    Technological Enthusiasm: Morally Commendable or Reprehensible?Mahdi Kafaee - 2020 - Science and Engineering Ethics 26 (2):969-980.
    Technological enthusiasm is a value that can influence engineering, shape technologies and subsequently transform human lifestyles. Despite its significant role, up until now, there has been little research done on this value. The dominant idea is that this value is commendable. However, based on consequentialism, a recently proposed idea describes TE as neither morally commendable nor reprehensible. In this paper, three arguments are presented against this recent idea, and a new idea is introduced, which challenges not only commendation for (...)
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  40.  14
    Technological Enthusiasm: Morally Commendable or Reprehensible?Mahdi Kafaee - 2020 - Science and Engineering Ethics 26 (2):969-980.
    Technological enthusiasm is a value that can influence engineering, shape technologies and subsequently transform human lifestyles. Despite its significant role, up until now, there has been little research done on this value. The dominant idea is that this value is commendable. However, based on consequentialism, a recently proposed idea describes TE as neither morally commendable nor reprehensible. In this paper, three arguments are presented against this recent idea, and a new idea is introduced, which challenges not only commendation for (...)
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  41.  14
    Technological Enthusiasm: Morally Commendable or Reprehensible?Mahdi Kafaee - 2020 - Science and Engineering Ethics 26 (2):969-980.
    Technological enthusiasm is a value that can influence engineering, shape technologies and subsequently transform human lifestyles. Despite its significant role, up until now, there has been little research done on this value. The dominant idea is that this value is commendable. However, based on consequentialism, a recently proposed idea describes TE as neither morally commendable nor reprehensible. In this paper, three arguments are presented against this recent idea, and a new idea is introduced, which challenges not only commendation for (...)
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  42.  96
    Engineering Equity: How AI Can Help Reduce the Harm of Implicit Bias.Ying-Tung Lin, Tzu-Wei Hung & Linus Ta-Lun Huang - 2020 - Philosophy and Technology 34 (S1):65-90.
    This paper focuses on the potential of “equitech”—AI technology that improves equity. Recently, interventions have been developed to reduce the harm of implicit bias, the automatic form of stereotype or prejudice that contributes to injustice. However, these interventions—some of which are assisted by AI-related technology—have significant limitations, including unintended negative consequences and general inefficacy. To overcome these limitations, we propose a two-dimensional framework to assess current AI-assisted interventions and explore promising new ones. We begin by using the case (...)
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  43.  35
    Engineers and the other: the role of narrative ethics.M. A. Hersh - 2016 - AI and Society 31 (3):327-345.
    The paper presents a new seven-step methodology for using narrative ethics and two case studies illustrating its application. A brief discussion of the importance of ethics to engineers and the need to consider outcomes and macroethics introduce the paper. This is followed by overviews of the literature on narrative ethics, the ethics of care, and virtue ethics and moral exemplars. The ethics of care and virtue ethics are included due to their relationship to narrative and the fact they are probably (...)
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  44.  47
    Engineering Novel Proteins with Orthogonal tRNA: Artificial Causes that make a Difference.Janella Baxter - manuscript
    Model organisms, the use of green fluorescent proteins, and orthogonal transfer RNA are examples of artificial causes being used in biology. Recent work characterizing the research interests of biologists in terms of a common set of values has ruled out artificial causes as biologically interesting. For instance, Kenneth Waters argues that biologists are primarily interested in causes that actually obtain. Similarly, Marcel Weber argues that biologists are primarily concerned with biologically normal interventions. Both views express a widely received attitude about (...)
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  45.  38
    Conceptual Engineering: Be Careful What You Wish for.Mark Richard - 2023 - Topoi 42 (4):1063-1073.
    Many trans women (men) say that they know that they are women (men). Anti-trans activists deny the claims trans people say they know. Many say that social kinds like woman, Latinx, and consent are in some important sense constructed in the social world and are thus open to a certain amount of engineering. I think the claims to knowledge trans people make are correct, and I think it correct that such things as gender, race, and consent are constructed by (...)
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  46.  13
    Life Engineering: The Good Life as an Engineered Product.Kenneth A. Anderson - 2022 - Axiomathes 32 (6):1169-1187.
    Drawing on broad definitions of technology and engineering as well as precedents in the philosophical literature, this paper makes the novel argument that the purposeful design of one’s unique good life using existing philosophical concepts is an engineering activity. Whether as a metaphor or as an engineering activity in its own right, a sampling of important benefits and perspectives provided for well-being by the presented “life engineering” framework are highlighted. A key strength of the framework (...)
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  47.  48
    AI as an Epistemic Technology.Ramón Alvarado - 2023 - Science and Engineering Ethics 29 (5):1-30.
    In this paper I argue that Artificial Intelligence and the many data science methods associated with it, such as machine learning and large language models, are first and foremost epistemic technologies. In order to establish this claim, I first argue that epistemic technologies can be conceptually and practically distinguished from other technologies in virtue of what they are designed for, what they do and how they do it. I then proceed to show that unlike other kinds of technology (_including_ (...)
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  48.  29
    Robot Technology for the Elderly and the Value of Veracity: Disruptive Technology or Reinvigorating Entrenched Principles?Seppe Segers - 2022 - Science and Engineering Ethics 28 (6):1-14.
    The implementation of care robotics in care settings is identified by some authors as a disruptive innovation, in the sense that it will upend the praxis of care. It is an open ethical question whether this alleged disruption will also have a transformative impact on established ethical concepts and principles. One prevalent worry is that the implementation of care robots will turn deception into a routine component of elderly care, at least to the extent that these robots will function as (...)
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  49.  21
    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. Ectogestative Technology and the Beginning of Life.Lily Frank, Julia Hermann, Ilona Kavege & Anna Puzio - 2023 - In Ibo van de Poel (ed.), Ethics of Socially Disruptive Technologies: An Introduction. Cambridge, UK: Open Book Publishers. pp. 113–140.
    How could ectogestative technology disrupt gender roles, parenting practices, and concepts such as ‘birth’, ‘body’, or ‘parent’? In this chapter, we situate this emerging technology in the context of the history of reproductive technologies and analyse the potential social and conceptual disruptions to which it could contribute. An ectogestative device, better known as ‘artificial womb’, enables the extra-uterine gestation of a human being, or mammal more generally. It is currently developed with the main goal of improving the survival (...)
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