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  1. “Mind the gaps”: An empirical approach to engineering ethics, 1997–2001. [REVIEW]Robert E. McGinn - 2003 - Science and Engineering Ethics 9 (4):517-542.
    A survey on ethical issues in engineering was administered over a five-year period to Stanford engineering students and practicing engineers. Analysis of its results strongly suggests that important disconnects exist between the education of engineering students regarding ethical issues in engineering on the one hand, and the realities of contemporary engineering practice on the other. Two noteworthy consequences of these gaps are that the views of engineering students differ substantially over what makes an issue an ethical issue, while practicing engineers (...)
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  • Ways of thinking about and teaching ethical problem solving: Microethics and macroethics in engineering. [REVIEW]Joseph R. Herkert - 2005 - Science and Engineering Ethics 11 (3):373-385.
    Engineering ethics entails three frames of reference: individual, professional, and social. “Microethics” considers individuals and internal relations of the engineering profession; “macroethics” applies to the collective social responsibility of the profession and to societal decisions about technology. Most research and teaching in engineering ethics, including online resources, has had a “micro” focus. Mechanisms for incorporating macroethical perspectives include: integrating engineering ethics and science, technology and society (STS); closer integration of engineering ethics and computer ethics; and consideration of the influence of (...)
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  • Teaching ethics in science and engineering: Effective online education.Stephanie J. Bird & Joan E. Sieber - 2005 - Science and Engineering Ethics 11 (3):323-328.
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  • The dilemma of ethics in engineering education.ron Newberry - 2004 - Science and Engineering Ethics 10 (2):343-351.
    This paper briefly summarizes current thinking in engineering ethics education, argues that much of that ethical instruction runs the risk of being only superficially effective, and explores some of the underlying systemic barriers within academia that contribute to this result. This is not to criticize or discourage efforts to improve ethics instruction. Rather it is to point to some more fundamental problems that still must be addressed in order to realize the full potential of enhanced ethics instruction. Issues discussed will (...)
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  • The dilemma of ethics in engineering education.Byron Newberry - 2004 - Science and Engineering Ethics 10 (2):343-351.
    This paper briefly summarizes current thinking in engineering ethics education, argues that much of that ethical instruction runs the risk of being only superficially effective, and explores some of the underlying systemic barriers within academia that contribute to this result. This is not to criticize or discourage efforts to improve ethics instruction. Rather it is to point to some more fundamental problems that still must be addressed in order to realize the full potential of enhanced ethics instruction. Issues discussed will (...)
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  • 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 the humanities approach, which is concerned (...)
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  • Do Artifacts Have Dual Natures? Two Points of Commentary on the Delft Project.Carl Mitcham - 2002 - Techné: Research in Philosophy and Technology 6 (2):93-95.
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  • Reply to Critics.Anthonie Meijers - 2002 - Techné: Research in Philosophy and Technology 6 (2):110-116.
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  • Understanding Technological Function Introduction to the special issue on the Dual Nature programme.Sven Ove Hansson - 2002 - Techné: Research in Philosophy and Technology 6 (2):87-92.
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  • The Topics of Applied Ethics.Sven Ove Hansson - 2011 - Theoria 77 (3):195-197.
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  • Engineering Ethics and Social Responsibility: Reflections on Recent Development in the Usa.Paul T. Durbin - 1997 - Bulletin of Science, Technology and Society 17 (2-3):77-83.
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  • The professional approach to engineering ethics: Five research questions.Michael Davis - 2001 - Science and Engineering Ethics 7 (3):379-390.
    This paper argues that research for engineering ethics should routinely involve philosophers, social scientists, and engineers, and should focus for now on certain basic questions such as: Who is an engineer? What is engineering? What do engineers do? How do they make decisions? And how much control do they actually have over what they do?
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  • Philosophy of Technology after the Empirical Turn.Philip Brey - 2010 - Techné: Research in Philosophy and Technology 14 (1):36-48.
    What are the strengths and weaknesses of contemporary philosophy of technology, and how may the field be developed and improved in the future? That is the question I will address in this paper. I will argue that in the past twenty-five years, philosophy of technology has entered a new era. This era has arrived with new and distinct issues and approaches that differ from those that came before it. Many of the new developments have been for the good. Yet, I (...)
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  • Ethics and the Engineer: Developing the Basis of a Theological Approach.W. Richard Bowen - 2010 - Studies in Christian Ethics 23 (3):227-248.
    Engineers have made an enormous contribution to promoting human wellbeing. Their work can also be the cause of immense human suffering. However, theological approaches to engineering ethics are scarce. Good starting points for a theological approach are provided by the ethics of Buber and Levinas, especially when combined with the idea of engineering as a practice in MacIntyre’s sense. A further strengthening of the importance of persons and a strong emphasis on the significance of community can be introduced through consideration (...)
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  • Ethics as a core competency in science and engineering.Stephanie J. Bird - 2003 - Science and Engineering Ethics 9 (4):443-444.
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  • What the Best College Teachers Do.K. Bain - 2006 - British Journal of Educational Studies 54 (2):258-260.
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  • American Philosophy of Technology: The Empirical Turn.Hans Achterhuis (ed.) - 2001 - Indiana University Press.
    Introduces contemporary American philosophy of technology through six of its leading figures. The six American philosophers of technology whose work is profiled in this clear and concise introduction to the field—Albert Borgmann, Hubert Dreyfus, Andrew Feenberg, Donna Haraway, Don Ihde, and Langdon Winner—represent a new, empirical direction in the philosophical study of technology that has developed mainly in North America. In place of the grand philosophical schemes of the classical generation of European philosophers of technology, the contemporary American generation addresses (...)
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  • 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 application of (...)
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  • The Empirical turn in the philosophy of technology.Peter Kroes & Anthonie Meijers (eds.) - 2001 - New York: JAI.
    THERE'S NO TURN LIKE THE EMPIRICAL TURN Arie Rip Philosophers of technology now turn to the phenomena in order to learn from them - always, and unavoidably, ...
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  • Thinking like an engineer: studies in the ethics of a profession.Michael Davis - 1998 - New York: Oxford University Press.
    Michael Davis, a leading figure in the study of professional ethics, offers here both a compelling exploration of engineering ethics and a philosophical analysis of engineering as a profession. After putting engineering in historical perspective, Davis turns to the Challenger space shuttle disaster to consider the complex relationship between engineering ideals and contemporary engineering practice. Here, Davis examines how social organization and technical requirements define how engineers should (and presumably do) think. Later chapters test his analysis of engineering judgement and (...)
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  • (1 other version)Ethics in engineering practice and research.Caroline Whitbeck - 1998 - New York: Cambridge University Press.
    Engineers encounter difficult ethical problems in their practice and in research. In many ways, these problems are like design problems: they are complex, often ill-defined; resolving them involves an iterative process of analysis and synthesis; and there can be more than one acceptable solution. This book offers a real-world, problem-centered approach to engineering ethics, using a rich collection of open-ended scenarios and case studies to develop skill in recognizing and addressing ethical issues.
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  • Ethics as first philosophy: the significance of Emmanuel Levinas for philosophy, literature, and religion.Adriaan Theodoor Peperzak (ed.) - 1995 - New York: Routledge.
    Ethics as First Philosophy brings together original essays by an outstanding group of international scholars that discuss the work of Emmanuel Levinas. The book explores the significance of Levinas' work for philsophy, psychology and religion. Ethics as First Philosophy comprises an excellent collection of work on this major contemporary thinker. The book presents Levinas philosophy from a wide and well-balanced variety of perspectives. The contributions range from thematic discussions of Levinas central concepts to explorations of his affinities and differences with (...)
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  • 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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  • Investigating ethical issues in engineering design.Ibo van de Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is an important topic for research.
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  • Investigating ethical issues in engineering design.Ibo Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is an important topic for research.
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  • Upon Opening the Black Box and Finding It Full: Exploring the Ethics in Design Practices.Marc Steen - 2015 - Science, Technology, and Human Values 40 (3):389-420.
    Contemporary design practices, such as participatory design, human-centered design, and codesign, have inherent ethical qualities, which often remain implicit and unexamined. Three design projects in the high-tech industry were studied using three ethical traditions as lenses. Virtue ethics helped to understand cooperation, curiosity, creativity, and empowerment as virtues that people in PD need to cultivate, so that they can engage, for example, in mutual learning and collaborative prototyping. Ethics of alterity helped to understand human-centered design as a fragile encounter between (...)
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