Results for 'Feminist engineering ethics'

968 found
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  1.  69
    Hidden in Plain View: Feminists Doing Engineering Ethics, Engineers Doing Feminist Ethics[REVIEW]Donna Riley - 2013 - Science and Engineering Ethics 19 (1):189-206.
    How has engineering ethics addressed gender concerns to date? How have the ideas of feminist philosophers and feminist ethicists made their way into engineering ethics? What might an explicitly feminist engineering ethics look like? This paper reviews some major themes in feminist ethics and then considers three areas in which these themes have been taken up in engineering ethics to date. First, Caroline Whitbeck’s work in engineering (...)
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  2.  55
    Engineers on responsibility: feminist approaches to who’s responsible for ethical AI.Eleanor Drage, Kerry McInerney & Jude Browne - 2024 - Ethics and Information Technology 26 (1):1-13.
    Responsibility has become a central concept in AI ethics; however, little research has been conducted into practitioners’ personal understandings of responsibility in the context of AI, including how responsibility should be defined and who is responsible when something goes wrong. In this article, we present findings from a 2020–2021 data set of interviews with AI practitioners and tech workers at a single multinational technology company and interpret them through the lens of feminist political thought. We reimagine responsibility in (...)
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  3.  14
    Critical Approaches to International Relations: Philosophical Foundations and Current Debates.M. Kürşad Özekin & Engin Sune (eds.) - 2021 - Studies in Critical Social Sci.
    "Critical Approaches to International Relations: Philosophical Foundations and Current Debates explores the achievements of a wide variety of critical approaches in International Relations theory, discusses the barrage of criticism and theoretical openings they levied against the IR orthodoxy and suggests future potential of critical IR scholarship to improve not only our explanatory possibilities, but also our ethical and practical horizons. In line with this broad objective, the book examines a number of influential approaches within critical IR scholarship, including core strands (...)
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  4. Latina feminist metaphysics and genetically engineered foods.Lisa A. Bergin - 2009 - Journal of Agricultural and Environmental Ethics 22 (3):257--271.
    In this paper I critique two popular, non-scientific attitudes toward genetically engineered foods. In doing so, I will be employing the concepts of ambiguity, purity/impurity, control/resistance, and unity/diversity as developed by Latina feminist metaphysicians. I begin by casting a critical eye toward a specific anti-biotech account of transgenic food crops, an account that I will argue relies on an anti-feminist metaphysics. I then cast that same critical eye toward a specific pro-biotech account, arguing that it also relies on (...)
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  5.  95
    Dis/integrating animals: ethical dimensions of the genetic engineering of animals for human consumption. [REVIEW]Traci Warkentin - 2006 - AI and Society 20 (1):82-102.
    Research at the intersections of feminism, biology and philosophy provides dynamic starting grounds for this discussion of genetic technologies and animals. With a focus on animal bodies, I will examine moral implications of the genetic engineering of “domesticated” animals—primarily pigs and chickens—for the purposes of human consumption. Concepts of natural and artificial, contamination and purity, integrity and fragmentation and mind and body will feature in the discussion. In this respect, Margaret Atwood’s novel, Oryx and Crake, serves as a cogent (...)
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  6.  45
    What Feminist Bioethics Can Bring to Synthetic Biology.Wendy A. Rogers & Jacqueline Dalziell - 2023 - International Journal of Feminist Approaches to Bioethics 16 (2):46-63.
    Synthetic biology (synbio) involves designing and creating new living systems to serve human ends, using techniques including molecular biology, genomics, and engineering. Existing bioethical analyses of synbio focus largely on balancing benefits against harms, the dual-use dilemma, and metaphysical questions about creating and commercializing synthetic organisms. We argue that these approaches fail to consider key feminist concerns. We ground our normative claims in two case studies, focusing on the public good, who holds and wields power, and synbio research (...)
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  7. Conceptual Engineering and Ways of Believing.Eve Kitsik - 2020 - Erkenntnis 87 (1):347-368.
    I will argue that those thinking about conceptual engineering should think more about ways of believing. When we talk about what someone “believes”, we could be talking about how they are inclined to act, or what they have put forth as their position on a matter, or what gives rise to a feeling of endorsement when they reflect on the matter. If we further recognize that the contents of our beliefs are at least sometimes framed in certain concepts and (...)
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  8.  53
    The Hard Sell of Genetically Engineered (GE) Mosquitoes with Gene Drives as the Solution to Malaria: Ethical, Political, Epistemic, and Epidemiological Issues in Global Health Governance.Zahra Meghani - 2020 - In Kristen Intemann & Sharon Crasnow (eds.), The Routledge Handbook of Feminist Philosophy of Science. New York, NY: Routledge. pp. 435-457.
    This chapter analyzes the ‘hard sell’ of genetically engineered (GE) mosquitoes with gene drives as the solution to mosquito-borne diseases. A defining characteristic of the aggressive sell of the bio-technology is the ‘biologization’ of the significant prevalence of mosquito-borne diseases in certain socio-economically marginalized regions of the global South. Specifically, hard sell narratives either minimize or ignore the structural, systemic factors that are partially responsible for the public health problem that the GE mosquitoes are intended to bio-solve. The biologization of (...)
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  9.  41
    Software engineering code of ethics and professional practice: version 4.Corporate Ieee-cs-acm Joint Task Force On Software Engineering Ethics - 1998 - Acm Sigcas Computers and Society 28 (2):29-32.
  10.  19
    Models with Men and Women: Representing Gender in Dynamic Modeling of Social Systems.Erika Palmer & Benedicte Wilson - 2017 - Science and Engineering Ethics 24 (2):419-439.
    Dynamic engineering models have yet to be evaluated in the context of feminist engineering ethics. Decision-making concerning gender in dynamic modeling design is a gender and ethical issue that is important to address regardless of the system in which the dynamic modeling is applied. There are many dynamic modeling tools that operationally include the female population, however, there is an important distinction between females and women; it is the difference between biological sex and the social construct (...)
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  11.  1
    Conceptual Dynamite: An Argument for Thoughtful Language in Conceptual Engineering.Bell Luan - 2024 - Dialogue 63 (3):467-474.
    RésuméCompte tenu de la tendance croissante à politiser des sujets autrefois banals, nous les philosophes devrions nous garder de ce que les concepts que nous développons soient mal compris ou mal interprétés pour étayer des arguments que nous n'avions jamais envisagés. Pour soutenir cette assertion, je développe une étude de cas sur la notion de « rationalité biologique » d'Alex Kacelnik ; je montre en quoi je pense qu'elle est vulnérable aux abus et je suggère des façons de la repenser (...)
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  12.  15
    ‘The Ethics of Attention to Language’ Introducing Conceptual Injustice.Camille Braune - 2024 - Wittgenstein-Studien 15 (1):145-174.
    What is conceptual injustice, and how can it supplement hermeneutical injustice? By bringing feminist epistemology, in particular Miranda Fricker’s notion of hermeneutical injustice, into dialogue with conceptual ethics and conceptual engineering, this article sheds light on what conceptual injustice is and how it can supplement hermeneutical injustice. What needs to be understood is how concepts can be advantageous to some and disadvantageous to others. For this, I propose approaching language in its relationship with ethics: something I (...)
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  13.  17
    Avoiding the slippery slope in ethics and bioethics: ‘ought’ entails ‘can’ and vice versa.Gail Tulloch - 1996 - Nursing Inquiry 3 (4):225-230.
    This article addresses the slippery slope argument in ethics and bioethics, and demonstrates that a lack of consensus about human nature and what constitutes a person contributes to its frequent use in such areas. Rationality and autonomy are contrasted with sentience, and a utilitarian quality of life approach with a deontological sanctity of life approach as defining criteria of personhood. It is argued that the concept ‘quality of life’ is itself a slippery slope. Genetic engineering is discussed as (...)
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  14.  34
    The Quantified Animal: Precision Livestock Farming and the Ethical Implications of Objectification.Ynte K. van Dam, Peter H. Feindt, Bernice Bovenkerk & Jacqueline M. Bos - 2018 - Food Ethics 2 (1):77-92.
    Precision livestock farming (PLF) is the management of livestock using the principles and technology of process engineering. Key to PLF is the dense monitoring of variegated parameters, including animal growth, output of produce (e.g. milk, eggs), diseases, animal behaviour, and the physical environment (e.g. thermal micro-environment, ammonia emissions). While its proponents consider PLF a win-win strategy that combines production efficiency with sustainability goals and animal welfare, critics emphasise, inter alia, the potential interruption of human-animal relationships. This paper discusses the (...)
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  15.  24
    When the Rains are (Un)Stopped: African Feminism(s) and Green Democracy.Sharon Adetutu Omotoso - 2019 - Ethics and the Environment 24 (2):23.
    Abstract:This work is a feminist focus on Traditional Ecological Knowledge (TEK) for green democracy. It argues that at the root of Africa’s water crisis is Africa’s lull towards an inclusive harnessing of her traditional ecological knowledge and values for state re-engineering. Given the foregoing, exploring rain-making and rain-holding acts raise questions such as: what is the African ontology of rain-making or rain-holding? Who are rain-makers and rain-holders? Could their knowledge be publicly harnessed and politically institutionalized? For what purposes (...)
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  16.  92
    Transforming science curricula in higher education: Feminist contributions.Bonnie Spanier - 2000 - Science and Engineering Ethics 6 (4):467-480.
    Feminist contributions to the science curricula in higher education constitute invaluable but often overlooked resources for truly effective communication about science. Here I share a sampling of feminist science studies and discuss the origins of this effort to create inclusive and less biased science curricula that serve all students and citizens. Challenges from scientists center on assumptions and values about the appropriate relationship between science and politics, while challenges from educators extend to assumptions about how science has been (...)
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  17.  40
    Building New Bioethical Practices through Feminist Pedagogies.Sara Giordano - 2016 - International Journal of Feminist Approaches to Bioethics 9 (1):81-103.
    In this paper, I describe a collaborative project involving two feminist trained scientists1 in consultation with a bioethicist, a policy analyst, and a research scientist funded by the National Academies Keck Futures Initiative for the design and implementation of a training program for ethics in synthetic biology. In spring 2011, the project culminated in our coteaching an experimental graduate seminar on ethics and synthetic biology.Synthetic biology most commonly refers to an interdisciplinary field that aims to merge (...) and biology methods to create new technologies. The promise is that these new technologies will solve the world’s most pressing problems: for example, they may provide us with cures.. (shrink)
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  18.  40
    Body stakes: an existential ethics of care in living with biometrics and AI.Amanda Lagerkvist, Matilda Tudor, Jacek Smolicki, Charles M. Ess, Jenny Eriksson Lundström & Maria Rogg - 2024 - AI and Society 39 (1):169-181.
    This article discusses the key existential stakes of implementing biometrics in human lifeworlds. In this pursuit, we offer a problematization and reinvention of central values often taken for granted within the “ethical turn” of AI development and discourse, such as autonomy, agency, privacy and integrity, as we revisit basic questions about what it means to be human and embodied. Within a framework of existential media studies, we introduce an existential ethics of care—through a conversation between existentialism, virtue ethics, (...)
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  19.  20
    Global Engineering Ethics.Rockwell Clancy - 2017 - Cambridge, MA, United States: Elsevier. Edited by Rockwell F. Clancy.
    Global Engineering Ethics introduces the fundamentals of ethics in a context specific to engineering without privileging any one national or cultural conception of ethics. Numerous case studies from around the world help the reader to see clearly the relevance of design, safety, and professionalism to engineers. Engineering increasingly takes place in global contexts, with industrial and research teams operating across national and cultural borders. This adds a layer of complexity to already challenging ethical issues. (...)
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  20. Should Engineering Ethics be Taught?Charles J. Abaté - 2011 - Science and Engineering Ethics 17 (3):583-596.
    Should engineering ethics be taught? Despite the obvious truism that we all want our students to be moral engineers who practice virtuous professional behavior, I argue, in this article that the question itself obscures several ambiguities that prompt preliminary resolution. Upon clarification of these ambiguities, and an attempt to delineate key issues that make the question a philosophically interesting one, I conclude that engineering ethics not only should not, but cannot, be taught if we understand “teaching (...)
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  21.  23
    Engineering Ethics: Contemporary and Enduring Debates.Deborah G. Johnson - 2020 - New Haven [Connecticut]: Yale University Press.
    _An engaging, accessible survey of the ethical issues faced by engineers, designed for students_ The first engineering ethics textbook to use debates as the framework for presenting engineering ethics topics, this engaging, accessible survey explores the most difficult and controversial issues that engineers face in daily practice. Written by a leading scholar in the field of engineering and computer ethics, Deborah Johnson approaches engineering ethics with three premises: that engineering is both (...)
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  22.  87
    Engineering ethics: concepts and cases.Charles Edwin Harris, Michael S. Pritchard & Michael Jerome Rabins - 2009 - Boston, MA: Cengage. Edited by Michael S. Pritchard, Ray W. James, Elaine E. Englehardt & Michael J. Rabins.
    Packed with examples pulled straight from recent headlines, ENGINEERING ETHICS, Sixth Edition, helps engineers understand the importance of their conduct as professionals as well as reflect on how their actions can affect the health, safety and welfare of the public and the environment. Numerous case studies give readers plenty of hands-on experience grappling with modern-day ethical dilemmas, while the book's proven and structured method for analysis walks readers step by step through ethical problem-solving techniques. It also offers practical (...)
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  23.  54
    Engineering Ethics for a Globalized World.C. Murphy, P. Gardoni, H. Bashir, C. E. Harris Jr, & E. Masad (eds.) - 2015 - Dordrecht: Springer International Publishing.
    This volume identifies, discusses and addresses the wide array of ethical issues that have emerged for engineers due to the rise of a global economy. To date, there has been no systematic treatment of the particular challenges globalization poses for engineering ethics standards and education. This volume concentrates on precisely this challenge. Scholars and practitioners from diverse national and professional backgrounds discuss the ethical issues emerging from the inherent symbiotic relationship between the engineering profession and globalization. Through (...)
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  24.  8
    Engineering ethics: challenges and opportunities.W. Richard Bowen - 2009 - New York: Springer.
    Engineering Ethics: Challenges and Opportunities aims to set a new agenda for the engineering profession by developing a key challenge: can the great technical innovation of engineering be matched by a corresponding innovation in the acceptance and expression of ethical responsibility? Central features of this stimulating text include: · An analysis of engineering as a technical and ethical practice providing great opportunities for promoting the wellbeing and agency of individuals and communities. · Elucidation of the (...)
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  25. Engineering Ethics Beyond Engineers' Ethics.Josep M. Basart & Montse Serra - 2013 - Science and Engineering Ethics 19 (1):179-187.
    Engineering ethics is usually focused on engineers’ ethics, engineers acting as individuals. Certainly, these professionals play a central role in the matter, but engineers are not a singularity inside engineering ; they exist and operate as a part of a complex network of mutual relationships between many other people, organizations and groups. When engineering ethics and engineers’ ethics are taken as one and the same thing the paradigm of the ethical engineer which prevails (...)
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  26. Commentary on “transforming science curricula in higher education: Feminist contributions” (b. spanier).Bonnie Shulman - 2000 - Science and Engineering Ethics 6 (4):481-484.
  27.  44
    Engineering ethics: balancing cost, schedule, and risk--lessons learned from the space shuttle.Rosa Lynn B. Pinkus (ed.) - 1997 - New York: Cambridge University Press.
    How do engineers respond to ethical dilemmas that occur in practice? How do they view their individual and collective responsibilities? How do they make decisions before all the facts are in? Using the space shuttle programme as the framework, this book examines the role of ethical decision making in the practice of engineering. In particular, the book considers the design and development of the main engines of the space shuttle as a paradigm for how individual engineers perceive, articulate, and (...)
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  28.  30
    Engineering ethics: real world case studies.Steve Starrett - 2017 - Reston, Virginia: ASCE. Edited by Amy L. Lara & Carlos Bertha.
    Starrett, Lara, and Bertha provide in-depth analysis of real world engineering ethics cases studies with extended discussions and study questions.
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  29.  50
    Enhancing Engineering Ethics: Role Ethics and Corporate Social Responsibility.Carl Mitcham, Jessica M. Smith, Qin Zhu & Nicole M. Smith - 2021 - Science and Engineering Ethics 27 (3):1-21.
    Engineering ethics calls the attention of engineers to professional codes of ethical responsibility and personal values, but the practice of ethics in corporate settings can be more complex than either of these. Corporations too have cultures that often include corporate social responsibility (CSR) practices and policies, but few discussions of engineering ethics make any explicit reference to CSR. This article proposes critical attention to CSR and role ethics as an opportunity to help prepare engineers (...)
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  30.  26
    Engineering ethics and design for product safety.Kenneth L. D'Entremont - 2021 - New York: McGraw Hill.
    A systematic guide to product design and safety from an ethical engineering perspective This hands-on textbook offers a holistic approach to product safety and engineering ethics across many products, fields, and industries. The book shows, step by step, how to “design in” safety characteristics early in the engineering process using design for product safety (DfPS) methods. Written by a P.E. and skilled educator with industry experience, Engineering Ethics and Design for Product Safety addresses all (...)
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  31.  57
    Teaching engineering ethics by conceptual design: The somatic Marker hypothesis.Brad J. Kallenberg - 2009 - Science and Engineering Ethics 15 (4):563-576.
    In 1998, a lead researcher at a Midwestern university submitted as his own a document that had 64 instances of strings of 10 or more words that were identical to a consultant’s masters thesis and replicated a data chart, all of whose 16 entries were identical to three and four significant figures. He was fired because his actions were wrong. Curiously, he was completely unable to see that his actions were wrong. This phenomenon is discussed in light of recent advances (...)
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  32.  52
    Engineering ethics in puerto Rico: Issues and narratives.William J. Frey & Efraín O’Neill-Carrillo - 2008 - Science and Engineering Ethics 14 (3):417-431.
    This essay discusses engineering ethics in Puerto Rico by examining the impact of the Colegio de Ingenieros y Agrimensores de Puerto Rico (CIAPR) and by outlining the constellation of problems and issues identified in workshops and retreats held with Puerto Rican engineers. Three cases developed and discussed in these workshops will help outline movements in engineering ethics beyond the compliance perspective of the CIAPR. These include the Town Z case, Copper Mining in Puerto Rico, and a (...)
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  33.  78
    Engineering Ethics in China.Hengli Zhang & Michael Davis - 2018 - Business and Professional Ethics Journal 37 (1):105-135.
    This article describes China’s century-long concern with the professional ethics of engineers, especially a succession of codes of engineering ethics going back at least to 1933. This description is the result both of our own archival research and of “philosophical history”, the application of concepts from the philosophy of professions to the facts historians (or we) have discovered. Engineers, historians, social scientists, and philosophers of technology, as well as students of professional ethics, should find this description (...)
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  34.  78
    Engineering, ethics, and the environment.P. Aarne Vesilind - 1998 - New York: Cambridge University Press. Edited by Alastair S. Gunn.
    Engineering is 'the people-serving profession'. The work of engineers involves interaction with clients, other engineers, and the public at large. More than any other profession, their work also directly involves and affects the environment. This book makes the case that engineers have special professional obligations to protect and enhance the environment, and the authors - one, an engineer and the other, a philosopher - seek to provide an ethical basis for these obligations. In exploring these ethical issues, the authors (...)
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  35.  72
    Feminists Doing Ethics.Peggy Desautels, Joanne Waugh, Margaret Urban Walker, Uma Narayan, Diana Tietjens Meyers & Hilde Lindemann Nelson (eds.) - 2001 - Feminist Constructions.
    As the initial book in the Feminist Constructions series, Feminists Doing Ethics broaches the ideas of critiquing social practice and developing an ethics of universal justness. The essays collected within explore the intricacies and impact of reasoned moral action, the virtues of character, and the empowering responsibility that comes with morality. These and other essays were taken from Feminist Ethics Revisited: An International Conference on Feminist Ethics held in October of 1999. Waugh and (...)
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  36.  48
    Gaming, Texting, Learning? Teaching Engineering Ethics Through Students' Lived Experiences With Technology.Georgina Voss - 2013 - Science and Engineering Ethics 19 (3):1375-1393.
    This paper examines how young peoples’ lived experiences with personal technologies can be used to teach engineering ethics in a way which facilitates greater engagement with the subject. Engineering ethics can be challenging to teach: as a form of practical ethics, it is framed around future workplace experience in a professional setting which students are assumed to have no prior experience of. Yet the current generations of engineering students, who have been described as ‘digital (...)
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  37.  20
    Biomedical Engineering Ethics.Philip Brey - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: 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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  38.  49
    Teaching Engineering Ethics to PhD Students: A Berkeley–Delft Initiative: Commentary on “Ethics Across the Curriculum: Prospects for Broader (and Deeper) Teaching and Learning in Research and Engineering Ethics”.Behnam Taebi & William E. Kastenberg - 2019 - Science and Engineering Ethics 25 (6):1763-1770.
    A joint effort by the University of California at Berkeley and Delft University of Technology to develop a graduate engineering ethics course for PhD students encountered two types of challenges: academic and institutional. Academically, long-term collaborative research efforts between engineering and philosophy faculty members might be needed before successful engineering ethics courses can be initiated; the teaching of ethics to engineering graduate students and collaborative research need to go hand-in-hand. Institutionally, both bottom-up approaches (...)
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  39. Engineering Ethics for a Sustainable Future.Kory P. Schaff & Tonatiuh Rodriguez-Nikl - 2022 - Dubuque, IA, USA: Kendall Hunt.
    The book is intended for use in professional ethics, engineering ethics, environmental studies, computer sciences, and technology studies. Our rationale for developing it is two-fold. First, to create an excellent and accessible textbook for students at all levels of learning. Second, to include recent developments in ethics on topics such as gender, race and inequality, while providing updated case studies of interest to students, teachers, and professionals in these areas. The approach that we take is committed (...)
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  40. Feminist Ethics and the Politics of Love: Feminist Review Issue 60.The Feminist Review Collective (ed.) - 1998 - Routledge.
    First published in 1998. Routledge is an imprint of Taylor & Francis, an informa company.
     
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  41.  42
    Virtuous Engineers: Ethical Dimensions of Technical Decisions.Jon Alan Schmidt - 2021 - In Emanuele Ratti & Tom Stapleford (eds.), Science, Technology, and Virtues: Contemporary Perspectives. Oxford University Press. pp. 117-135.
    Modern approaches to engineering ethics typically involve the systematic application of universal abstract principles, reflecting the culturally dominant paradigm of technical rationality (techne). By contrast, virtue ethics recognizes that sensitivity to context and practical judgment (phronesis) are indispensable in particular concrete situations, and therefore focuses on the person who acts, rather than the action itself. Virtues are identified within a specific social practice in accordance with its proper purpose, its societal role and associated responsibilities, and the internal (...)
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  42.  50
    Teaching engineering ethics using role-playing in a culturally diverse student group.Robert H. Prince - 2006 - Science and Engineering Ethics 12 (2):321-326.
    The use of role-playing (“active learning”) as a teaching tool has been reported in areas as diverse as social psychology, history and analytical chemistry. Its use as a tool in the teaching of engineering ethics and professionalism is also not new, but the approach develops new perspectives when used in a college class of exceptionally wide cultural diversity. York University is a large urban university (40,000 undergraduates) that draws its enrolment primarily from the Greater Toronto Area, arguably one (...)
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  43. Teaching engineering ethics to first-year college students.Andrew Lau - 2004 - Science and Engineering Ethics 10 (2):359-368.
    One of the methods used at Penn State to teach engineering students about ethics is a one-credit First-Year Seminar entitled “How Good Engineers Solve Tough Problems.” Students meet in class once a week to understand ethical frameworks, develop ethical problem-solving skills, and to better understand the professional responsibilities of engineers. Emphasis is on the ubiquity of ethical problems in professional engineering. A learning objective is the development of moral imagination, similar to the development of technical imagination in (...)
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  44.  71
    Engineering Ethics: Looking Back, Looking Forward.Richard A. Burgess, Michael Davis, Marilyn A. Dyrud, Joseph R. Herkert, Rachelle D. Hollander, Lisa Newton, Michael S. Pritchard & P. Aarne Vesilind - 2013 - Science and Engineering Ethics 19 (3):1395-1404.
    The eight pieces constituting this Meeting Report are summaries of presentations made during a panel session at the 2011 Association for Practical and Professional Ethics (APPE) annual meeting held between March 3rd and 6th in Cincinnati. Lisa Newton organized the session and served as chair. The panel of eight consisted both of pioneers in the field and more recent arrivals. It covered a range of topics from how the field has developed to where it should be going, from identification (...)
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  45.  46
    Engineering ethics education, ethical leadership, and Confucian ethics.Qin Zhu - 2018 - International Journal of Ethics Education 3 (2):169-179.
    Ethical leadership skills are crucial for professionally competent engineers working in a global context. This article explores the possibility of integrating a non-Western ethical tradition of Confucian ethics into the teaching of ethical leadership in engineering ethics. First comes a brief discussion of the historical origins of Confucianism and its persistence in contemporary Chinese culture. Second is a conceptualization of the major aspects of Confucian ethical leadership including moral power, role modeling, and meritocratic ethical leadership, introducing a (...)
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  46.  26
    Teaching engineering ethics using role-playing in a culturally diverse student group.Professor Robert H. Prince - 2006 - Science and Engineering Ethics 12 (2):321-326.
    The use of role-playing (“active learning”) as a teaching tool has been reported in areas as diverse as social psychology, history and analytical chemistry. Its use as a tool in the teaching of engineering ethics and professionalism is also not new, but the approach develops new perspectives when used in a college class of exceptionally wide cultural diversity. York University is a large urban university (40,000 undergraduates) that draws its enrolment primarily from the Greater Toronto Area, arguably one (...)
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  47.  13
    Engineering Ethics.Michael S. Pritchard - 2003 - In R. G. Frey & Christopher Heath Wellman (eds.), A Companion to Applied Ethics. Malden, MA: Wiley-Blackwell. pp. 620–632.
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  48.  15
    Engineering Ethics.Michael Davis - 2005 - Routledge.
    This collection brings together the key articles on issues that have been centre stage in the field of engineering ethics since the late 1970s. Among the perennial questions addressed are what is engineering, what professional responsibilities do engineers have and why, what professional autonomy can engineers have in large organizations, what is the relationship between ethics and codes of ethics and how should engineering ethics be taught?
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  49.  81
    Enhancing engineering ethics education (EEE) for green intelligent manufacturing: Implementation performance evaluation of core mechanism of green intelligence EEE.Shi Yin & Nan Zhang - 2022 - Frontiers in Psychology 13.
    The characteristics of green intelligent engineering ethics emphasize the necessity of GI engineering ethics education. The ethics education of GI engineering is in the development stage, and it is urgent to fully understand the significance of evaluating the development of GI EEE. Only based on the GI manufacturing situation system to understand the implementation status of the core education of EEE can we objectively grasp the improvement space of GI EEE. In this study, the (...)
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    Engineering ethics.Charles Byrns Fleddermann - 2004 - Upper Saddle River, N.J.: Pearson Education.
    For Freshman or Introductory courses in Engineering and Computer Science. ESource Prentice Hall's Engineering Source provides a complete, flexible introductory engineering and computing program. Featuring over 15 modules and growing, ESource allows professors to fully customize their textbooks through the ESource website. Professors are not only able to pick and choose modules, but also sections of modules, incorporate their own materials, and re-paginate and re-index the complete project. http://emissary.prenhall.com/esource or http://www.prenhall.com/esource.
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