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  1. Living Ethics.Joseph Solberg, Kelly C. Strong & Charles McGuire - 1995 - Journal of Business Ethics 14 (1):71-81.
    Much has been written recently about both the urgency and efficacy of teaching business ethics. The results of our survey of AACSB member schools confirm prior reports of similar surveys: The teaching of business ethics is indiscriminate, unorganized, and undisciplined in most North American schools of business. If universities are to be taken seriously in their efforts to create more ethical awareness and better moral decision-making skills among their graduates, they must provide a rigorous and well-developed system in which students (...)
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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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  • Ethics for the new millennium.Dalai Lama Xiv, Dalai Lama Xiv Bstan-ʼdzin-Rgya-Mtsho, Dalai Lama, Alexander Norman, Bstan 'Dzin Rgya Mtsho Xiv, Dalai Lama Xiv Tenzin Gyatso & Bstan-'Dzin-Rgy - 1999 - New York: Riverhead Books.
    One of humanity's most respected figures presents a plan for a new human and social paradigm, arguing that humankind is not inherently sinful, and discussing how redirection in the perception of our fundamental natures can bring powerful and positive change. 50,000 first printing.
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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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  • Review of Daniel Callahan and Sissela Bok: Ethics Teaching in Higher Education[REVIEW]Daniel Callahan & Sissela Bok - 1982 - Ethics 92 (3):549-552.
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  • Development of Role-Play Scenarios for Teaching Responsible Conduct of Research.Bradley J. Brummel, C. K. Gunsalus, Kerri L. Anderson & Michael C. Loui - 2010 - Science and Engineering Ethics 16 (3):573-589.
    We describe the development, testing, and formative evaluation of nine role-play scenarios for teaching central topics in the responsible conduct of research to graduate students in science and engineering. In response to formative evaluation surveys, students reported that the role-plays were more engaging and promoted deeper understanding than a lecture or case study covering the same topic. In the future, summative evaluations will test whether students display this deeper understanding and retain the lessons of the role-play experience.
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  • Moral Responsibility for Engineers.Kenneth D. Alpern - 1983 - Business and Professional Ethics Journal 2 (2):39-48.
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  • 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 engineering ethics” to mean (...)
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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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  • Philosophy Has Consequences! Developing Metacognition and Active Learning in the Ethics Classroom.Patrick Stokes - 2012 - Teaching Philosophy 35 (2):143-169.
    The importance of enchancing metacognition and encouraging active learning in philosophy teaching has been increasingly recognised in recent years. Yet traditional teaching methods have not always centralised helping students to become reflectively and critically aware of the quality and consistency of their own thinking. This is particularly relevant when teaching moral philosophy, where apparently inconsistent intuitions and responses are common. In this paper I discuss the theoretical basis of the relevance of metacognition and active learning for teaching moral philosophy. Applying (...)
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  • Teaching Societal and Ethical Implications of Nanotechnology to Engineering Students Through Science Fiction.Joachim Schummer & Rosalyn W. Berne - 2005 - Bulletin of Science, Technology and Society 25 (6):459-468.
    Societal and ethical implications of nanotechnology have become a hot topic of public debates in many countries because both revolutionary changes and strong public concerns are expected from its development. Because nanotechnology is, at this point, mostly articulated in visionary and futuristic terms, it is difficult to apply standard methods of technology assessment and even more difficult to consider it in engineering ethics courses. In this article, the authors suggest using selected science fiction stories in the engineering ethics classroom to (...)
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  • Service-learning and engineering ethics.Michael S. Pritchard - 2000 - Science and Engineering Ethics 6 (3):413-422.
    This paper explores ways in which service-learning programs can enhance ethics education in engineering. Service-learning programs combine volunteer work and academic study. The National Society for Professional Engineers (NSPE) and American Society for Civil Engineers (ASCE) codes of ethics explicitly encourage engineers to seek opportunities, beyond their work-related responsibilities, to serve their communities. Examples of how this can be encouraged as a part of the educational experiences of engineering students are explored. Calvin: How good do you have to be to (...)
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  • Professional responsibility: Focusing on the exemplary. [REVIEW]Michael S. Pritchard - 1998 - Science and Engineering Ethics 4 (2):215-233.
    The literature on ethics in science and engineering tends to dwell on the negative, emphasizing disasters, scandals, and problems of wrongdoing in everyday practice. This paper shifts to the positive, focusing on the exemplary. After outlining different possible conceptions of responsibility (ranging from a minimalist view of “staying out of trouble” to “going above and beyond the call of duty”), the paper discusses the importance of certain virtues for scientists and engineers. Finally, a broad range of examples of exemplary practice (...)
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  • Quandaries and Virtues: Against Reductivism in Ethics. [REVIEW]Lester H. Hunt - 1989 - Philosophical Review 98 (2):249-251.
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  • Educating the humanitarian engineer.Kevin M. Passino - 2009 - Science and Engineering Ethics 15 (4):577-600.
    The creation of new technologies that serve humanity holds the potential to help end global poverty. Unfortunately, relatively little is done in engineering education to support engineers’ humanitarian efforts. Here, various strategies are introduced to augment the teaching of engineering ethics with the goal of encouraging engineers to serve as effective volunteers for community service. First, codes of ethics, moral frameworks, and comparative analysis of professional service standards lay the foundation for expectations for voluntary service in the engineering profession. Second, (...)
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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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  • Cases and goals for ethics education: Commentary on “connecting case-based ethics instruction with educational theory”.Karen Muskavitch - 2005 - Science and Engineering Ethics 11 (3):431-434.
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  • Cases and goals for ethics education: Commentary on “connecting case-based ethics instruction with educational theory” (M. W. Keefer). [REVIEW]Karen Muskavitch - 2005 - Science and Engineering Ethics 11 (3):431-434.
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  • Fieldwork and Cooperative Learning in Professional Ethics.Michael C. Loui - 2000 - Teaching Philosophy 23 (2):139-156.
    Many college and university courses are complemented by collaborative or cooperative activities such as role playing, team projects, or problem solving in small groups. This paper summarizes the importance of multidisciplinary collaboration in professional ethics, describes two courses (Engineering Ethics and Professional Ethics) that involved a fieldwork component where students were required to interview a group of professional who deal with an ethical problem, and articulates the pedagogical value of complementing a course using a fieldwork assignment. By integrating a fieldwork (...)
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  • Designing games to teach ethics.Peter Lloyd & Ibo van de Poel - 2008 - Science and Engineering Ethics 14 (3):433-447.
    This paper describes a teaching methodology whereby students can gain practical experience of ethical decision-making in the engineering design process. We first argue for the necessity to teach a ‘practical’ understanding of ethical issues in engineering education along with the usual theoretical or hypothetical approaches. We then show how this practical understanding can be achieved by using a collaborative design game, describing how, for example, the concept of responsibility can be explored from this practical basis. We conclude that the use (...)
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  • A Systematic Approach to Engineering Ethics Education.Jessica Li & Shengli Fu - 2012 - Science and Engineering Ethics 18 (2):339-349.
    Engineering ethics education is a complex field characterized by dynamic topics and diverse students, which results in significant challenges for engineering ethics educators. The purpose of this paper is to introduce a systematic approach to determine what to teach and how to teach in an ethics curriculum. This is a topic that has not been adequately addressed in the engineering ethics literature. This systematic approach provides a method to: (1) develop a context-specific engineering ethics curriculum using the Delphi technique, a (...)
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  • Review of Mark Johnson: Moral imagination: implications of cognitive science for ethics[REVIEW]Jonathan E. Adler - 1995 - Ethics 105 (2):401-404.
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  • Moral imagination: implications of cognitive science for ethics.Mark Johnson - 1993 - Chicago: University of Chicago Press.
    Using path-breaking discoveries of cognitive science, Mark Johnson argues that humans are fundamentally imaginative moral animals, challenging the view that morality is simply a system of universal laws dictated by reason. According to the Western moral tradition, we make ethical decisions by applying universal laws to concrete situations. But Johnson shows how research in cognitive science undermines this view and reveals that imagination has an essential role in ethical deliberation. Expanding his innovative studies of human reason in Metaphors We Live (...)
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  • Learner Outcome Attainment in Teaching Applied Ethics versus Case Methodology.Brian J. Huschle - 2012 - Teaching Philosophy 35 (3):243-262.
    The primary purpose of this study is to identify differences in at­tainment of learning outcomes for ethics courses delivered using two distinct teaching approaches. The first approach uses a case based method in the context of applied moral issues within medical practice. The second approach surveys moral theories in the context of applied moral issues. Significant differences are found in the attainment of learner outcomes between the two groups. In particular, attainment of outcomes related to moral decision-making is higher in (...)
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  • Moral pedagogy and practical ethics.Chuck Huff & William Frey - 2005 - Science and Engineering Ethics 11 (3):389-408.
    Online science and engineering ethics (SEE) education can support appropriate goals for SEE and the highly interactive pedagogy that attains those goals. Recent work in moral psychology suggests pedagogical goals for SEE education that are surprisingly similar to goals enunciated by several panels in SEE. Classroom-based interactive study of SEE cases is a suitable method to achieve these goals. Well-designed cases, with appropriate goals and structure can be easily adapted to courses that have online components. It is less clear that (...)
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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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  • Collaborative learning in engineering ethics.Joseph R. Herkert - 1997 - Science and Engineering Ethics 3 (4):447-462.
    This paper discusses collaborative learning and its use in an elective course on ethics in engineering. Collaborative learning is a form of active learning in which students learn with and from one another in small groups. The benefits of collaborative learning include improved student performance and enthusiasm for learning, development of communication skills, and greater student appreciation of the importance of judgment and collaboration in solving real-world problems such as those encountered in engineering ethics. Collaborative learning strategies employed in the (...)
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  • The importance of meta-ethics in engineering education.David R. Haws - 2004 - Science and Engineering Ethics 10 (2):204-210.
    Our shared moral framework is negotiated as part of the social contract. Some elements of that framework are established (tell the truth under oath), but other elements lack an overlapping consensus (just when can an individual lie to protect his or her privacy?). The tidy bits of our accepted moral framework have been codified, becoming the subject of legal rather than ethical consideration. Those elements remaining in the realm of ethics seem fragmented and inconsistent. Yet, our engineering students will need (...)
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  • Can instruction in engineering ethics change students' feelings about professional responsibility?Golnaz Hashemian & Michael C. Loui - 2010 - Science and Engineering Ethics 16 (1):201-215.
    How can a course on engineering ethics affect an undergraduate student’s feelings of responsibility about moral problems? In this study, three groups of students were interviewed: six students who had completed a specific course on engineering ethics, six who had registered for the course but had not yet started it, and six who had not taken or registered for the course. Students were asked what they would do as the central character, an engineer, in each of two short cases that (...)
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  • Service-Learning and the Socially Responsible Ethics Class.Patrick Fitzgerald - 1997 - Teaching Philosophy 20 (3):251-267.
    Despite the great promise that service learning has shown and the attention paid to it by educators, it is not commonly taken up in the courses or discussions of ethicists. But service learning should concern ethicists (especially applied ethicists) if it should concern anyone: ethicists frequently devote their courses and studies to questions of social responsibility and service learning provides a unique opportunity for students and teachers to fulfill that responsibility. After rehearsing several arguments for the basis of social responsibility, (...)
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  • Emotional engagement in professional ethics.W. Scott Dunbar - 2005 - Science and Engineering Ethics 11 (4):535-551.
    Recent results from two different studies show evidence of strong emotional engagement in moral dilemmas that require personal involvement or ethical problems that involve significant inter-personal issues. This empirical evidence for a connection between emotional engagement and moral or ethical choices is interesting because it is related to a fundamental survival mechanism rooted in human evolution. The results lead one to question when and how emotional engagement might occur in a professional ethical situation. However, the studies employed static dilemmas or (...)
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  • Ethics and the University.Michael Davis - 1998 - New York: Routledge.
    _Ethics and the University_ brings together two closely related topics, the practice of ethics in the university and the teaching of practical or applied ethics in the university. This volume is divided into four parts: * A survey of practical ethics, offering an explanation of its recent emergence as a university subject, situating that subject into a wider social and historical context and identifying some problems that the subject generates for universities * An examination of research ethics, including the problem (...)
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  • Three approaches to teaching business ethics.G. J. Rossouw - 2002 - Teaching Business Ethics 6 (4):411-433.
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