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  1. Review of Instructional Approaches in Ethics Education. [REVIEW]Tyler J. Mulhearn, Logan M. Steele, Logan L. Watts, Kelsey E. Medeiros, Michael D. Mumford & Shane Connelly - 2017 - Science and Engineering Ethics 23 (3):883-912.
    Increased investment in ethics education has prompted a variety of instructional objectives and frameworks. Yet, no systematic procedure to classify these varying instructional approaches has been attempted. In the present study, a quantitative clustering procedure was conducted to derive a typology of instruction in ethics education. In total, 330 ethics training programs were included in the cluster analysis. The training programs were appraised with respect to four instructional categories including instructional content, processes, delivery methods, and activities. Eight instructional approaches were (...)
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  • Comparison of Engagement with Ethics Between an Engineering and a Business Program.Steven M. Culver, Ishwar K. Puri, Richard E. Wokutch & Vinod Lohani - 2013 - Science and Engineering Ethics 19 (2):585-597.
    Increasing university students’ engagement with ethics is becoming a prominent call to action for higher education institutions, particularly professional schools like business and engineering. This paper provides an examination of student attitudes regarding ethics and their perceptions of ethics coverage in the curriculum at one institution. A particular focus is the comparison between results in the business college, which has incorporated ethics in the curriculum and has been involved in ethics education for a longer period, with the engineering college, which (...)
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  • A Systematic Review of the 2016 National Academy of Engineering Exemplary Ethics Programs: Revisions to a Coding Framework.Justin L. Hess, Alison J. Kerr, Athena Lin & Andrew Chung - 2023 - Science and Engineering Ethics 29 (6):1-35.
    Engineering ethics is a required aspect of accredited ABET programs, but there is widespread variation in how ethics is taught, to what ends, and how those ends are assessed. This variation makes it challenging to identify practices for teaching ethics to engineers aligned with extant practices in the field. In this study, we revise a recent coding framework by reviewing exemplary engineering ethics programs recognized by the National Academy of Engineering in 2016, or what we refer to as “exemplars.” We (...)
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  • Responsibility among bachelor degree nursing students: A concept analysis.Saeed Ghasemi, Fazlollah Ahmadi & Anoshirvan Kazemnejad - forthcoming - Nursing Ethics:096973301875436.
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  • A Systematic Literature Review of US Engineering Ethics Interventions.Justin L. Hess & Grant Fore - 2018 - Science and Engineering Ethics 24 (2):551-583.
    Promoting the ethical formation of engineering students through the cultivation of their discipline-specific knowledge, sensitivity, imagination, and reasoning skills has become a goal for many engineering education programs throughout the United States. However, there is neither a consensus throughout the engineering education community regarding which strategies are most effective towards which ends, nor which ends are most important. This study provides an overview of engineering ethics interventions within the U.S. through the systematic analysis of articles that featured ethical interventions in (...)
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  • A Meta-analytic Comparison of Face-to-Face and Online Delivery in Ethics Instruction: The Case for a Hybrid Approach.E. Michelle Todd, Logan L. Watts, Tyler J. Mulhearn, Brett S. Torrence, Megan R. Turner, Shane Connelly & Michael D. Mumford - 2017 - Science and Engineering Ethics 23 (6):1719-1754.
    Despite the growing body of literature on training in the responsible conduct of research, few studies have examined the effectiveness of delivery formats used in ethics courses. The present effort sought to address this gap in the literature through a meta-analytic review of 66 empirical studies, representing 106 ethics courses and 10,069 participants. The frequency and effectiveness of 67 instructional and process-based content areas were also assessed for each delivery format. Process-based contents were best delivered face-to-face, whereas contents delivered online (...)
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  • Ethics Across the Curriculum: Prospects for Broader (and Deeper) Teaching and Learning in Research and Engineering Ethics.Carl Mitcham & Elaine E. Englehardt - 2016 - Science and Engineering Ethics 25 (6):1735-1762.
    The movements to teach the responsible conduct of research and engineering ethics at technological universities are often unacknowledged aspects of the ethics across the curriculum movement and could benefit from explicit alliances with it. Remarkably, however, not nearly as much scholarly attention has been devoted to EAC as to RCR or to engineering ethics, and RCR and engineering ethics educational efforts are not always presented as facets of EAC. The emergence of EAC efforts at two different institutions—the Illinois Institute of (...)
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  • Beyond Ethical Frameworks: Using Moral Experimentation in the Engineering Ethics Classroom.Olivia Walling - 2015 - Science and Engineering Ethics 21 (6):1637-1656.
    Although undergraduate engineering ethics courses often include the development of moral sensitivity as a learning objective and the use of active learning techniques, teaching centers on the transmission of cognitive knowledge. This article describes a complementary assignment asking students to perform an ethics “experiment” on themselves that has a potential to enhance affective learning and moral imagination. The article argues that the focus on cognitive learning may not promote, and may even impair, our efforts to foster moral sensitivity. In contrast, (...)
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  • A Survey of Student Opinions on Ethical Design Standards in Taiwan.Yingying Lee, Manlai You & Ming-Ying Yang - 2015 - Science and Engineering Ethics 21 (2):505-530.
    Design ethics has been offered as a course in undergraduate design programs in Taiwan for over a decade, but research on teaching design ethics and the results of teaching these courses is scant. We conducted two tests to examine the effect of an ethics course, and the differences among the effects of design department, gender, and study year on student opinions regarding ethical design standards at the National Yunlin University of Science and Technology in Taiwan. The participants comprised 934 undergraduates (...)
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  • Ethical Issues in Engineering Models: An Operations Researcher’s Reflections.J. Kleijnen - 2011 - Science and Engineering Ethics 17 (3):539-552.
    This article starts with an overview of the author’s personal involvement—as an Operations Research consultant—in several engineering case-studies that may raise ethical questions; e.g., case-studies on nuclear waste, water management, sustainable ecology, military tactics, and animal welfare. All these case studies employ computer simulation models. In general, models are meant to solve practical problems, which may have ethical implications for the various stakeholders; namely, the modelers, the clients, and the public at large. The article further presents an overview of codes (...)
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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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  • The Boeing 737 MAX: Lessons for Engineering Ethics.Joseph Herkert, Jason Borenstein & Keith Miller - 2020 - Science and Engineering Ethics 26 (6):2957-2974.
    The crash of two 737 MAX passenger aircraft in late 2018 and early 2019, and subsequent grounding of the entire fleet of 737 MAX jets, turned a global spotlight on Boeing’s practices and culture. Explanations for the crashes include: design flaws within the MAX’s new flight control software system designed to prevent stalls; internal pressure to keep pace with Boeing’s chief competitor, Airbus; Boeing’s lack of transparency about the new software; and the lack of adequate monitoring of Boeing by the (...)
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