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  1. 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 natives’, do however have immersive personal (...)
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  • Ethical decision-making of banking and finance professionals and students.Ngo Thai Phuong, Greg Fisher & Bahaudin G. Mujtaba - 2014 - Asian Journal of Business Ethics 3 (2):141-153.
    The evidence from the recent financial crisis in the USA indicates the importance of ethical decision making in the banking and finance industry. This study surveyed 90 banking and finance professionals and students in Vietnam to examine the differences in their ethical decision making. The questionnaire consisted of eight vignettes describing practical ethical dilemmas which banking and finance professionals may face in their daily work. We found significant differences in ethical decision making between these two groups in their overall ethical (...)
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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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  • Teaching Engineering Ethics using BLOCKS Game.Shiew Wei Lau, Terence Peng Lian Tan & Suk Meng Goh - 2013 - Science and Engineering Ethics 19 (3):1357-1373.
    The aim of this study was to investigate the use of a newly developed design game called BLOCKS to stimulate awareness of ethical responsibilities amongst engineering students. The design game was played by seventeen teams of chemical engineering students, with each team having to arrange pieces of colored paper to produce two letters each. Before the end of the game, additional constraints were introduced to the teams such that they faced similar ambiguity in the technical facts that the engineers involved (...)
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  • Confessions of a Shoveler: STS Subcultures and Engineering Ethics.Joseph R. Herkert - 2006 - Bulletin of Science, Technology and Society 26 (5):410-418.
    Mainstream science, technology, and society scholars have shown little interest in engineering ethics, one going so far as to label engineering ethics activists as “shit shovelers.” Detachment from engineering ethics on the part of most STS scholars is related to a broader and long-standing split between the scholar-oriented and activist-oriented wings of STS. This article discusses the various STS “subcultures” and argues that the much-maligned activist STS subculture is far more likely than the mainstream scholar subculture to have a significant (...)
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  • Threats to Moral Identity: Testing the Effects of Incentives and Consequences of One's Actions on Moral Cleansing.Lauren N. Harkrider, Michael A. Tamborski, Xiaoqian Wang, Ryan P. Brown, Michael D. Mumford, Shane Connelly & Lynn D. Devenport - 2013 - Ethics and Behavior 23 (2):133-147.
    Individuals engage in moral cleansing, a compensatory process to reaffirm one's moral identity, when one's moral self-concept is threatened. However, too much moral cleansing can license individuals to engage in future unethical acts. This study examined the effects of incentives and consequences of one's actions on cheating behavior and moral cleansing. Results found that incentives and consequences interacted such that unethical thoughts were especially threatening, resulting in more moral cleansing, when large incentives to cheat were present and cheating explicitly harmed (...)
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  • Exploring Societal and Ethical Views of Nanotechnology REUs.Gina M. Eosco, Meghnaa Tallapragada, Katherine A. McComas & Merrill Brady - 2014 - NanoEthics 8 (1):91-99.
    Little previous research has examined attitudes about societal and ethical issues (SEI) among interns participating in research experience for undergraduate programs (REUs) in nanotechnology, thus neglecting an important population for understanding the burgeoning views of the next generation of nanotechnology researchers. This study surveyed a sample of interns (N = 85) participating in the National Nanotechnology Infrastructure Network’s (NNIN) REU program during the summer of 2012. Our questions focused on interns’ experiences with education on ethical issues, as well as their (...)
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  • An effective strategy for integrating ethics across the curriculum in engineering: An ABET 2000 challenge.José A. Cruz & William J. Frey - 2003 - Science and Engineering Ethics 9 (4):543-568.
    This paper describes a one-day workshop format for introducing ethics into the engineering curriculum prepared at the University of Puerto Rico at Mayagüez (UPRM). It responds to the ethics criteria newly integrated into the accreditation process by the Accreditation Board of Engineering and Technology (ABET). It also employs an ethics across the curriculum (EAC) approach; engineers identify the ethical issues, write cases that dramatize these issues, and then develop exercises making use of these cases that are specially tailored to mainstream (...)
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  • ABET Criterion 3.f: How Much Curriculum Content is Enough?B. E. Barry & M. W. Ohland - 2012 - Science and Engineering Ethics 18 (2):369-392.
    Even after multiple cycles of ABET accreditation, many engineering programs are unsure of how much curriculum content is needed to meet the requirements of ABET’s Criterion 3.f (an understanding of professional and ethical responsibility). This study represents the first scholarly attempt to assess the impact of curriculum reform following the introduction of ABET Criterion 3.f. This study sought to determine how much professional and ethical responsibility curriculum content was used between 1995 and 2005, as well as how, when, why, and (...)
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  • The University and the Responsible Conduct of Research: Who is Responsible for What? [REVIEW]Katherine Alfredo & Hillary Hart - 2011 - Science and Engineering Ethics 17 (3):447-457.
    Research misconduct has been thoroughly discussed in the literature, but mainly in terms of definitions and prescriptions for proper conduct. Even when case studies are cited, they are generally used as a repository of “lessons learned.” What has been lacking from this conversation is how the lessons of responsible conduct of research are imparted in the first place to graduate students, especially those in technical fields such as engineering. Nor has there been much conversation about who is responsible for what (...)
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