Results for 'ethics education for engineers in Japan'

992 found
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  1.  69
    Ethics education for professionals in japan: A critical review.Yasushi Maruyama & Tetsu Ueno - 2010 - Educational Philosophy and Theory 42 (4):438-447.
    Ethics education for professionals has become popular in Japan over the last two decades. Many professional schools now require students to take an applied ethics or professional ethics course. In contrast, very few courses of professional ethics for teaching exist or have been taught in Japan. In order to obtain suggestions for teacher education, this paper reviews and examines practices of ethics education for engineers and nurses in Japan (...)
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  2.  4
    Ethics Education for Professionals in Japan: A critical review.Tetsu Ueno Yasushi Maruyama - 2010 - Educational Philosophy and Theory 42 (4):438-447.
    Ethics education for professionals has become popular in Japan over the last two decades. Many professional schools now require students to take an applied ethics or professional ethics course. In contrast, very few courses of professional ethics for teaching exist or have been taught in Japan. In order to obtain suggestions for teacher education, this paper reviews and examines practices of ethics education for engineers and nurses in Japan (...)
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  3.  22
    Engineering Ethics Education: A Comparative Study of Japan and Malaysia.Balamuralithara Balakrishnan, Fumihiko Tochinai & Hidekazu Kanemitsu - 2019 - Science and Engineering Ethics 25 (4):1069-1083.
    This paper reports the findings of a comparative study in which students’ perceived attainment of the objectives of an engineering ethics education and their attitude towards engineering ethics were investigated and compared. The investigation was carried out in Japan and Malaysia, involving 163 and 108 engineering undergraduates respectively. The research method used was based on a survey in which respondents were sent a questionnaire to elicit relevant data. Both descriptive and inferential statistical analyses were performed on (...)
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  4.  45
    How should we Foster the professional integrity of engineers in japan? A pride-based approach.Tetsuji Iseda - 2008 - Science and Engineering Ethics 14 (2):165-176.
    I discuss the predicament that engineering-ethics education in Japan now faces and propose a solution to this. The predicament is professional motivation, i.e., the problem of how to motivate engineering students to maintain their professional integrity. The special professional responsibilities of engineers are often explained either as an implicit social contract between the profession and society (the “social-contract” view), or as requirements for membership in the profession (the “membership-requirement” view). However, there are empirical data that suggest (...)
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  5.  25
    Deliberative Consultation as an Educational Tool for Teaching Bioethics in Japan: Case of Organ Donation.Sylwia Maria Olejarz - 2015 - Ethics in Biology, Engineering and Medicine 6 (1-2):81-104.
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  6.  70
    Engineering ethics and identity: Emerging initiatives in comparative perspective. [REVIEW]Gary Lee Downey, Juan C. Lucena & Carl Mitcham - 2007 - Science and Engineering Ethics 13 (4):463-487.
    This article describes and accounts for variable interests in engineering ethics in France, Germany, and Japan by locating recent initiatives in relation to the evolving identities of engineers. A key issue in ethics education for engineers concerns the relationship between the identity of the engineer and the responsibilities of engineering work. This relationship has varied significantly over time and from place to place around the world. One methodological strategy for sorting out similarities and differences (...)
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  7.  15
    Towards a Framework for Research Ethics Education for Physicians in Serbia.Tatjana Gazibara, Jelena Dotlic, Dejan Donev, Vida Jeremic Stojkovic & Darija Kisic-Tepavcevic - 2020 - Science and Engineering Ethics 26 (3):1249-1266.
    With growing opportunities for medical doctors to work either in academia and industry, research ethics education for health sciences research, meaning research which includes humans and animals and/or their tissues and cells with the goal to understand underlying mechanisms of disease occurrence and disease treatment, is of paramount importance, especially in regions, such as Serbia, where comprehensive research ethics curricula for physician researchers are lacking. This article addresses the spectrum of research ethics topics that were identified (...)
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  8.  49
    Ethical education in software engineering: Responsibility in the production of complex systems.Gonzalo Génova, M. Rosario González & Anabel Fraga - 2007 - Science and Engineering Ethics 13 (4):505-522.
    Among the various contemporary schools of moral thinking, consequence-based ethics, as opposed to rule-based, seems to have a good acceptance among professionals such as software engineers. But naïve consequentialism is intellectually too weak to serve as a practical guide in the profession. Besides, the complexity of software systems makes it very hard to know in advance the consequences that will derive from professional activities in the production of software. Therefore, following the spirit of well-known codes of ethics (...)
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  9.  32
    Ethics education in the consulting engineering environment: Where do we start?Keith E. Elder - 2004 - Science and Engineering Ethics 10 (2):325-336.
    As a result of in-house discussions stimulated by previous Gonzaga engineering ethics conferences, Coffman Engineers began the implementation of what is to be a company-wide ethics training program. While preparing a curriculum aimed at consulting engineers, we found very little guidance as to how to proceed with most available literature being oriented towards the academic environment. We consulted a number of resources that address the teaching of engineering ethics in higher education, but questioned their (...)
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  10.  54
    Developing an ethical code for engineers: The discursive approach.J. Félix Lozano Aguilar - 2006 - Science and Engineering Ethics 12 (2):245-256.
    From the Hippocratic Oath on, deontological codes and other professional self-regulation mechanisms have been used to legitimize and identify professional groups. New technological challenges and, above all, changes in the socioeconomic environment require adaptable codes which can respond to new demands.We assume that ethical codes for professionals should not simply focus on regulative functions, but must also consider ideological and educative functions. Any adaptations should take into account both contents (values, norms and recommendations) and the drafting process itself.In this article (...)
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  11.  31
    Socio-ethical Education in Nanotechnology Engineering Programmes: A Case Study in Malaysia. [REVIEW]Balamuralithara Balakrishnan, Pek Hoon Er & Punita Visvanathan - 2013 - Science and Engineering Ethics 19 (3):1341-1355.
    The unique properties of nanotechnology have made nanotechnology education and its related subjects increasingly important not only for students but for mankind at large. This particular technology brings educators to work together to prepare and produce competent engineers and scientists for this field. One of the key challenges in nanotechnology engineering is to produce graduate students who are not only competent in technical knowledge but possess the necessary attitude and awareness toward the social and ethical issues related to (...)
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  12.  18
    The Ethics of Engineering Ethics Education Curriculum Design, Ethics Pedagogies, and the Moral Responsibilities of Ethics Educators.Qin Zhu, Dayoung Kim & Roel Snieder - forthcoming - Teaching Ethics.
    In this paper, we argue that engineering ethics education does have moral implications. More specifically, practices in engineering ethics education can lead to negative moral consequences if not conducted appropriately. Engineering ethics educators are often passionate about teaching students ways to examine the ethical implications of engineering and technology. However, ethics educators may overlook the moral significance of their instructional classroom practices. In this paper, we discuss two issues: First, we discuss the moral impacts (...)
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  13.  32
    The Ethical Education and Perspectives of Chinese Engineering Students: A Preliminary Investigation and Recommendations.Rockwell F. Clancy - 2020 - Science and Engineering Ethics 26 (4):1935-1965.
    To develop more effective ethics education for cross-cultural and international engineering, a study was conducted to determine what Chinese engineering students have learned and think about ethics. Recent research shows traditional approaches to ethics education are potentially ineffective, but also points towards ways of improving ethical behaviors. China is the world’s most populous country, graduating and employing the highest number of STEM majors, although little empirical research exists about the ethical knowledge and perspectives of Chinese (...)
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  14.  50
    The other objective of ethics education: Re-humanising the accounting profession – a study of ethics education in law, engineering, medicine and accountancy. [REVIEW]Ken McPhail - 2001 - Journal of Business Ethics 34 (3-4):279 - 298.
    Recently within the critical accounting literature Funnell (1998) has argued that accounting was implicated in the Holocaust. This charge is primarily related to the technical, mathematical nature of accounting and its ability to dehumanise individuals. Broadbent (1998, see also DeMoss and McCann, 1997) has also contended that "accounting logic" excludes emotion. She suggests that a more emancipatory form of accounting could be possible if emotion were given a voice and allowed to be heard within accounting discourse (see also Kjonstad and (...)
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  15.  17
    Go Big or Go Home? A New Case for Integrating Micro-ethics and Macro-ethics in Engineering Ethics Education.Andrew McAninch - 2023 - Science and Engineering Ethics 29 (3):1-18.
    In this paper, I make a novel case for an expansive approach to engineering ethics education, one that regards micro-ethics and macro-ethics as essentially complementary. Although others have voiced support for including macro-ethical reflection within engineering ethics education, I advance a stronger claim, arguing that isolating engineering ethics from macro-level issues risks rendering even micro-ethical inquiry morally meaningless. I divide my proposal into four parts. First, I clarify the distinction between micro-ethics and (...)
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  16.  5
    Engineering Ethics in accreditation system for engineering education, what and how to educate? 정진우 - 2007 - 동서철학연구(Dong Seo Cheol Hak Yeon Gu; Studies in Philosophy East-West) 43:175-193.
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  17.  72
    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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  18.  75
    Katrina: Macro-Ethical Issues for Engineers[REVIEW]Byron Newberry - 2010 - Science and Engineering Ethics 16 (3):535-571.
    Hurricane Katrina was one of the worst disasters in United States history. Failures within New Orleans’ engineered hurricane protection system (levees and floodwalls) contributed to the severity of the event and have drawn considerable public attention. In the time since Katrina, forensic investigations have uncovered a range of issues and problems related to the engineering work. In this article, my goal is to distill from these investigations, and the related literature that has accumulated, some overarching macro-ethical issues that are relevant (...)
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  19.  28
    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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  20.  36
    Developing an ethical code for engineers: The discursive approach. [REVIEW]Dr J. Félix Lozano Aguilar - 2006 - Science and Engineering Ethics 12 (2):245-256.
    From the Hippocratic Oath on, deontological codes and other professional self-regulation mechanisms have been used to legitimize and identify professional groups. New technological challenges and, above all, changes in the socioeconomic environment require adaptable codes which can respond to new demands.We assume that ethical codes for professionals should not simply focus on regulative functions, but must also consider ideological and educative functions. Any adaptations should take into account both contents (values, norms and recommendations) and the drafting process itself.In this article (...)
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  21.  12
    Fictional Film in Engineering Ethics Education: With Miyazaki’s The Wind Rises as Exemplar.Sarah Jayne Hitt & Thomas Taro Lennerfors - 2022 - Science and Engineering Ethics 28 (5):1-16.
    This paper aims to call attention to the potential of using film in engineering ethics education, which has not been thoroughly discussed as a pedagogical method in this field. A review of current approaches to teaching engineering ethics reveals that there are both learning outcomes that need more attention as well as additional pedagogical methods that could be adopted. Scholarship on teaching with film indicates that film can produce ethical experiences that go beyond those produced by both (...)
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  22.  33
    Comparison of China-US Engineering Ethics Educations in Sino-Western Philosophies of Technology.Gui Hong Cao - 2015 - Science and Engineering Ethics 21 (6):1609-1635.
    Ethics education has become essential in modern engineering. Ethics education in engineering has been increasingly implemented worldwide. It can improve ethical behaviors in technology and engineering design under the guidance of the philosophy of technology. Hence, this study aims to compare China-US engineering ethics education in Sino-Western philosophies of technology by using literature studies, online surveys, observational researches, textual analyses, and comparative methods. In my original theoretical framework and model of input and output for (...)
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  23.  36
    How do bioethics teachers in Japan cope with ethical disagreement among healthcare university students in the classroom? A survey on educators in charge.K. Itai - 2006 - Journal of Medical Ethics 32 (5):303-308.
    Objective: The purpose of this study was to demonstrate how educators involved in the teaching of bioethics to healthcare university students in Japan would cope with ethical disagreement in the classroom, and to identify factors influencing them.Methods: A cross sectional survey was conducted using self administered questionnaires mailed to a sample of university faculty in charge of bioethics curriculum for university healthcare students.Results: A total of 107 usable questionnaires were returned: a response rate of 61.5%. When facing ethical disagreement (...)
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  24.  88
    Roleplaying Game–Based Engineering Ethics Education: Lessons from the Agency of Art.Trystan S. Goetze - forthcoming - Proceedings of the 2024 American Society for Engineering Education St. Lawrence Section Annual Conference.
    How do we prepare engineering students to make ethical and responsible decisions in their professional work? This paper presents an approach that enhances engineering students’ engagement with ethical reasoning by simulating decision-making in a complex scenario. The approach has two principal inspirations. The first is Anthony Weston’s scenario-based teaching. Weston’s concept of a scenario is a situation that changes in response to choices made by participants, according to an inner logic. Scenarios can dynamically explore open-ended complex problems without imposing predetermined (...)
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  25.  36
    A Multi-level Review of Engineering Ethics Education: Towards a Socio-technical Orientation of Engineering Education for Ethics.Diana Adela Martin, Eddie Conlon & Brian Bowe - 2021 - Science and Engineering Ethics 27 (5):1-38.
    This paper aims to review the empirical and theoretical research on engineering ethics education, by focusing on the challenges reported in the literature. The analysis is conducted at four levels of the engineering education system. First, the individual level is dedicated to findings about teaching practices reported by instructors. Second, the institutional level brings together findings about the implementation and presence of ethics within engineering programmes. Third, the level of policy situates findings about engineering ethics (...)
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  26. Fostering responsible anticipation in engineering ethics education.Janna B. Van Grunsven, Taylor Stone & Lavinia Marin - 2023 - European Journal of Engineering Education 49 (2):283-298.
    It is crucial for engineers to anticipate the socio-ethical impacts of emerging technologies. Such acts of anticipation are thoroughly normative and should be cultivated in engineering ethics education. In this paper we ask: ‘ how do we anticipate the socio-ethical implications of emerging technologies responsibly? ’ And ‘ how can such responsible anticipation be taught? ’ We o ff er a conceptual answer, building upon the framework of Responsible Innovation and its four core practices: anticipation, reflexivity, inclusion, (...)
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  27.  36
    Comparison of Cross Culture Engineering Ethics Training Using the Simulator for Engineering Ethics Education.Christopher Chung - 2015 - Science and Engineering Ethics 21 (2):471-478.
    This paper describes the use and analysis of the Simulator for Engineering Ethics Education to perform cross culture engineering ethics training and analysis. Details describing the first generation and second generation development of the SEEE are published in Chung and Alfred, Science and Engineering Ethics, vol. 15, 2009 and Alfred and Chung, Science and Engineering Ethics, vol. 18, 2012. In this effort, a group of far eastern educated students operated the simulator in the instructional, training, (...)
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  28.  11
    Development of Ethics Education in Science and Technology in Technical Universities in China: Commentary on “Ethics ‘upfront’: Generating an Organizational Framework for a New University of Technology”.Qian Wang & Ping Yan - 2019 - Science and Engineering Ethics 25 (6):1721-1733.
    In order to solve a series of problems brought about by rapid development of science and technology, it is necessary not only to conduct in-depth research on science and technology ethics, but also to strengthen ethics education in science and technology. China’s five technical universities exemplify the specific situation and characteristics of ethics at Chinese technical universities, and can be compared to the situation in South Africa. China’s ethics education in the 5TU emphasizes the (...)
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  29.  29
    The Importance of Formative Assessment in Science and Engineering Ethics Education: Some Evidence and Practical Advice.Matthew W. Keefer, Sara E. Wilson, Harry Dankowicz & Michael C. Loui - 2013 - Science and Engineering Ethics 20 (1):249-260.
    Recent research in ethics education shows a potentially problematic variation in content, curricular materials, and instruction. While ethics instruction is now widespread, studies have identified significant variation in both the goals and methods of ethics education, leaving researchers to conclude that many approaches may be inappropriately paired with goals that are unachievable. This paper speaks to these concerns by demonstrating the importance of aligning classroom-based assessments to clear ethical learning objectives in order to help students (...)
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  30.  26
    Development of Ethics Education in Science and Technology in Technical Universities in China: Commentary on “Ethics ‘upfront’: Generating an Organizational Framework for a New University of Technology”.Qian Wang & Ping Yan - 2019 - Science and Engineering Ethics 25 (6):1721-1733.
    In order to solve a series of problems brought about by rapid development of science and technology, it is necessary not only to conduct in-depth research on science and technology ethics, but also to strengthen ethics education in science and technology. China’s five technical universities exemplify the specific situation and characteristics of ethics at Chinese technical universities, and can be compared to the situation in South Africa. China’s ethics education in the 5TU emphasizes the (...)
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  31.  14
    Development of Ethics Education in Science and Technology in Technical Universities in China: Commentary on “Ethics ‘upfront’: Generating an Organizational Framework for a New University of Technology”.Qian Wang & Ping Yan - 2019 - Science and Engineering Ethics 25 (6):1721-1733.
    In order to solve a series of problems brought about by rapid development of science and technology, it is necessary not only to conduct in-depth research on science and technology ethics, but also to strengthen ethics education in science and technology. China’s five technical universities exemplify the specific situation and characteristics of ethics at Chinese technical universities, and can be compared to the situation in South Africa. China’s ethics education in the 5TU emphasizes the (...)
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  32.  5
    Ethical Challenges for the Biomedical Engineer of the Future.Pamela Saha - 2020 - Ethics in Biology, Engineering and Medicine 11 (1):55-74.
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  33.  56
    Design, Development, and Evaluation of a Second Generation Interactive Simulator for Engineering Ethics Education (SEEE2).Michael Alfred & Christopher A. Chung - 2012 - Science and Engineering Ethics 18 (4):689-697.
    This paper describes a second generation Simulator for Engineering Ethics Education. Details describing the first generation activities of this overall effort are published in Chung and Alfred (Sci Eng Ethics 15:189–199, 2009). The second generation research effort represents a major development in the interactive simulator educational approach. As with the first generation effort, the simulator places students in first person perspective scenarios involving different types of ethical situations. Students must still gather data, assess the situation, and make (...)
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  34.  26
    The holistic curriculum.John P. Miller & Ontario Institute for Studies in Education - 2019 - Buffalo: University of Toronto Press.
    Used as the basis of the program at the Equinox Holistic Alternative School in Toronto, The Holistic Curriculum advocates for an integrative approach to teaching and learning with a focus on developing a deep connection between mind and body.
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  35.  57
    Design, development, and evaluation of an interactive simulator for engineering ethics education (seee).Christopher A. Chung & Michael Alfred - 2009 - Science and Engineering Ethics 15 (2):189-199.
    Societal pressures, accreditation organizations, and licensing agencies are emphasizing the importance of ethics in the engineering curriculum. Traditionally, this subject has been taught using dogma, heuristics, and case study approaches. Most recently a number of organizations have sought to increase the utility of these approaches by utilizing the Internet. Resources from these organizations include on-line courses and tests, videos, and DVDs. While these individual approaches provide a foundation on which to base engineering ethics, they may be limited in (...)
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  36.  51
    Ethics Teaching in Higher Education for Principled Reasoning: A Gateway for Reconciling Scientific Practice with Ethical Deliberation.Mehmet Aközer & Emel Aközer - 2017 - Science and Engineering Ethics 23 (3):825-860.
    This paper proposes laying the groundwork for principled moral reasoning as a seminal goal of ethics interventions in higher education, and on this basis, makes a case for educating future specialists and professionals with a foundation in philosophical ethics. Identification of such a seminal goal is warranted by the progressive dissociation of scientific practice and ethical deliberation since the onset of a problematic relationship between science and ethics around the mid-19th century, and the extensive mistrust of (...)
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  37. 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, the (...)
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  38.  77
    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 (...)
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  39.  46
    Research Ethics Education in the STEM Disciplines: The Promises and Challenges of a Gaming Approach.Adam Briggle, J. Britt Holbrook, Joseph Oppong, Joesph Hoffmann, Elizabeth K. Larsen & Patrick Pluscht - 2016 - Science and Engineering Ethics 22 (1):237-250.
    While education in ethics and the responsible conduct of research is widely acknowledged as an essential component of graduate education, particularly in the STEM disciplines, little consensus exists on how best to accomplish this goal. Recent years have witnessed a turn toward the use of games in this context. Drawing from two NSF-funded grants, this paper takes a critical look at the use of games in ethics and RCR education. It does so by: setting the (...)
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  40. How to Teach Engineering Ethics?: A Retrospective and Prospective Sketch of TU Delft’s Approach to Engineering Ethics Education.J. B. van Grunsven, L. Marin, T. W. Stone, S. Roeser & N. Doorn - 2021 - Advances in Engineering Education 9 (4).
    This paper provides a retrospective and prospective overview of TU Delft’s approach to engineering ethics education. For over twenty years, the Ethics and Philosophy of Technology Section at TU Delft has been at the forefront of engineering ethics education, offering education to a wide range of engineering and design students. The approach developed at TU Delft is deeply informed by the research of the Section, which is centered around Responsible Research and Innovation, Design for (...)
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  41. Educating for moral and ethical life.Moral Education - 1995 - In Wendy Kohli (ed.), Critical Conversations in Philosophy of Education. Routledge. pp. 127.
     
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  42. Virtue Ethics, Positive Psychology, and a New Model of Science and Engineering Ethics Education.Hyemin Han - 2015 - Science and Engineering Ethics 21 (2):441-460.
    This essay develops a new conceptual framework of science and engineering ethics education based on virtue ethics and positive psychology. Virtue ethicists and positive psychologists have argued that current rule-based moral philosophy, psychology, and education cannot effectively promote students’ moral motivation for actual moral behavior and may even lead to negative outcomes, such as moral schizophrenia. They have suggested that their own theoretical framework of virtue ethics and positive psychology can contribute to the effective promotion (...)
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  43.  7
    What Is Engineering Ethics Education? Exploring How the Education of Ethics Is Defined by Engineering Instructors.Diana Adela Martin & Eddie Conlon - 2023 - In Albrecht Fritzsche & Andrés Santa-María (eds.), Rethinking Technology and Engineering: Dialogues Across Disciplines and Geographies. Springer Verlag. pp. 263-282.
    The literature on engineering ethics education highlights the diversity of goals and topics employed in its instruction. The contribution aims to examine the conceptualisation of engineering ethics education in terms of how it is defined and how its goals are articulated. The research is conducted in cooperation with the national accrediting body Engineers Ireland. It is based on interviews with instructors teaching courses self-identified by engineering programmes as having a strong ethical component and evaluators serving (...)
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  44.  7
    Report on the Establishment of the Consortium for Hospital Ethics Committees in Japan and the First Collaboration Conference of Hospital Ethics Committees.Kei Takeshita, Noriko Nagao, Hiroyuki Kaneda, Yasuhiko Miura, Takanobu Kinjo & Yoshiyuki Takimoto - 2022 - Asian Bioethics Review 14 (4):307-316.
    Hospital ethics committees (HECs) are expected to play extremely broad and pivotal roles such as case consultation, education of staffs on healthcare ethics, and institutional policy formation. Despite the growing importance of HECs, there are no standards for setup and operation of HECs, and composition and activities of HECs at each institution are rarely disclosed in Japan. In addition, there is also a lack of information sharing and collaboration among HECs. Therefore, the authors established the Consortium (...)
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  45. Learning to Reframe Problems Through Moral Sensitivity and Critical Thinking in Environmental Ethics for Engineers.Andrea R. Gammon & Lavinia Marin - 2022 - Teaching Ethics 22 (1):97-116.
    As attention to the pervasiveness and severity of environmental challenges grows, technical universities are responding to the need to include environmental topics in engineering curricula and to equip engineering students, without training in ethics, to understand and respond to the complex social and normative demands of these issues. But as compared to other areas of engineering ethics education, environmental ethics has received very little attention. This article aims to address this lack and raises the question: How (...)
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  46. Education and Work What Will Happen to Our Young People?Shirley Williams & Ontario Institute for Studies in Education - 1981 - Ontario Institute for Studies in Education.
     
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  47.  79
    Business ethics in japan.Iwao Taka - 1997 - Journal of Business Ethics 16 (14):1499-1508.
    Business ethics in Japan has developed in five stages. Especially in the last stage (in the 1990s), there have appeared two clear-cut trends in business ethics activities: positive and passive. For the rise of business ethics, the passive trend is much more important. Once entered the 1990s, an increasing number of business scandals have been revealed. Because of this, the Japanese business community cannot but help take business ethics much more seriously than it ever has.Not (...)
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  48.  2
    Japan's engineering ethics and Western culture: social status, democracy, and economic globalization.Kenichi Natsume - 2021 - Lanham: Lexington Books.
    This book examines the broad historical process of introducing engineering ethics in Japan from the late nineteenth century to the twentieth century. The author discusses this process from a comprehensive perspective, including not only engineering education but also various issues in science, technology, and society studies.
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  49. Ethics training: A genuine dilemma for engineering educators. [REVIEW]John Lincourt & Robert Johnson - 2004 - Science and Engineering Ethics 10 (2):353-358.
    This is an examination of three main strategies used by engineering educators to integrate ethics into the engineering curriculum. They are: (1) the standalone course, (2) the ethics imperative mandating ethics content for all engineering courses, and (3) outsourcing ethics instruction to an external expert. The expectations from each approach are discussed and their main limitations described. These limitations include the insular status of the stand-alone course, the diffuse and uneven integration with the ethics imperative, (...)
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  50.  10
    Ethics Education for Contemporary Clinical Pharmacy Practice in Nigeria: Shortfalls and Needs.Roland N. Okoro - 2020 - Bangladesh Journal of Bioethics 10 (1):1-5.
    The past decade has witnessed a shift in the ambitions of pharmacists away from the core role of dispensing medicines towards more interesting and rewarding relationships and responsibilities with other healthcare providers and patients. The patient-centred role of pharmacists has allowed ethical issues experienced in medical practice to surface in pharmacy practice, resulting in an increase in the number and variety of ethical dilemmas that pharmacists face in their routine pharmacy practice. Pharmacy education prepares pharmacy students for practice and (...)
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