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  1. 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, engineers and drama.John Monk - 2009 - Science and Engineering Ethics 15 (1):111-123.
    This paper describes four plays which illustrate ethical themes relevant to engineers and which could be used as a resource for engineers who wish to explore ethical topics and their relationship with professional practice. The plays themselves have been chosen because a character in the play is involved in engineering activities. Each play is analysed to highlight some of the ethical issues the play raises. Often ethical topics are presented in abstract terms but the plays relate ethical issues to individuals (...)
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  • The Effectiveness of Embedded Values Analysis Modules in Computer Science Education: An Empirical Study.Matthew Kopec, Meica Magnani, Vance Ricks, Roben Torosyan, John Basl, Nicholas Miklaucic, Felix Muzny, Ronald Sandler, Christo Wilson, Adam Wisniewski-Jensen, Cora Lundgren, Kevin Mills & Mark Wells - 2023 - Big Data and Society 10 (1).
    Embedding ethics modules within computer science courses has become a popular response to the growing recognition that CS programs need to better equip their students to navigate the ethical dimensions of computing technologies like AI, machine learning, and big data analytics. However, the popularity of this approach has outpaced the evidence of its positive outcomes. To help close that gap, this empirical study reports positive results from Northeastern’s program that embeds values analysis modules into CS courses. The resulting data suggest (...)
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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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  • Good computing: a pedagogically focused model of virtue in the practice of computing (part 2).Chuck Huff, Laura Barnard & William Frey - 2008 - Journal of Information, Communication and Ethics in Society 6 (4):284-316.
    PurposeThe purpose of this paper is to present a four component model of ethical behavior that integrates literature in moral psychology, computing ethics, and virtue ethics as informed by research on moral exemplars in computing. This is part 2 of a two part contribution, part 1 having appeared in Vol. 6 No. 3.Design/methodology/approachThis psychologically based and philosophically informed model argues that moral action is grounded in relatively stable personality characteristics, guided by integration of morality into the self‐system, shaped by the (...)
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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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  • Teaching Science, Technology, and Society to Engineering Students: A Sixteen Year Journey.Haldun M. Ozaktas - 2013 - Science and Engineering Ethics 19 (4):1439-1450.
    The course Science, Technology, and Society is taken by about 500 engineering students each year at Bilkent University, Ankara. Aiming to complement the highly technical engineering programs, it deals with the ethical, social, cultural, political, economic, legal, environment and sustainability, health and safety, reliability dimensions of science, technology, and engineering in a multidisciplinary fashion. The teaching philosophy and experiences of the instructor are reviewed. Community research projects have been an important feature of the course. Analysis of teaching style based on (...)
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  • Beyond course-based engineering ethics instruction: Commentary on “topics and cases for online education in engineering”.Debbie Chachra - 2005 - Science and Engineering Ethics 11 (3):459-461.
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  • Ética para la inteligencia artificial sostenible.Antonio Luis Terrones Rodríguez - 2022 - Arbor 198 (806):a683.
    El acelerado proceso de degradación ambiental alerta sobre una grave situación en la que la inteligencia artificial (IA) no puede mantenerse al margen. Las propuestas de Aimee van Wynsbergue y Mark Coeckelbergh sobre una IA comprometida con la sostenibilidad ambiental, suponen un primer paso para plantear un desarrollo alternativo de esta tecnología disruptiva. Sin embargo, es necesario ofrecer un fundamento teórico para plantear una inteligencia artificial sostenible (IAS). Este fundamento puede originarse en dos propuestas éticas familiarizadas con la responsabilidad y (...)
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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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  • Editors' Overview: The Emergence of Ecological Ethics. [REVIEW]Ben A. Minteer, James P. Collins & Stephanie J. Bird - 2008 - Science and Engineering Ethics 14 (4):473-481.
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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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  • Exploratory Investigation of Personal Influences on Educators’ Engagement in Engineering Ethics and Societal Impacts Instruction.Madeline Polmear, Angela R. Bielefeldt, Daniel Knight, Chris Swan & Nathan Canney - 2020 - Science and Engineering Ethics 26 (6):3143-3165.
    Cultivating an understanding of ethical responsibilities and the societal impacts of technology is increasingly recognized as an important component in undergraduate engineering curricula. There is growing research on how ethics-related topics are taught and outcomes are attained, especially in the context of accreditation criteria. However, there is a lack of theoretical and empirical understanding of the role that educators play in ethics and societal impacts instruction and the factors that motivate and shape their inclusion of this subject in the courses (...)
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  • Engineers and the other: the role of narrative ethics.M. A. Hersh - 2016 - AI and Society 31 (3):327-345.
    The paper presents a new seven-step methodology for using narrative ethics and two case studies illustrating its application. A brief discussion of the importance of ethics to engineers and the need to consider outcomes and macroethics introduce the paper. This is followed by overviews of the literature on narrative ethics, the ethics of care, and virtue ethics and moral exemplars. The ethics of care and virtue ethics are included due to their relationship to narrative and the fact they are probably (...)
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  • Engineering ethics in puerto Rico: Issues and narratives.William J. Frey & Efraín O’Neill-Carrillo - 2008 - Science and Engineering Ethics 14 (3):417-431.
    This essay discusses engineering ethics in Puerto Rico by examining the impact of the Colegio de Ingenieros y Agrimensores de Puerto Rico (CIAPR) and by outlining the constellation of problems and issues identified in workshops and retreats held with Puerto Rican engineers. Three cases developed and discussed in these workshops will help outline movements in engineering ethics beyond the compliance perspective of the CIAPR. These include the Town Z case, Copper Mining in Puerto Rico, and a hypothetical case researched by (...)
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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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  • 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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  • Good computing: a pedagogically focused model of virtue in the practice of computing (part 1).Chuck Huff, Laura Barnard & William Frey - 2008 - Journal of Information, Communication and Ethics in Society 6 (3):246-278.
    PurposeThe purpose of this paper is to present a four component model of ethical behavior (PRIMES) that integrates literature in moral psychology, computing ethics, and virtue ethics as informed by research on moral exemplars in computing. This is part 1 of a two‐part contribution.Design/methodology/approachThis psychologically based and philosophically informed model argues that moral action is: grounded in relatively stable PeRsonality characteristics (PR); guided by integration of morality into the self‐system; shaped by the context of the surrounding moral ecology; and facilitated (...)
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  • A model for teaching research ethics.Arri Eisen & Kathy P. Parker - 2004 - Science and Engineering Ethics 10 (4):693-704.
    A model is described for implementing a program in research ethics education in the face of federal and institutional mandates and current resource, disciplinary, and infrastructure limitations. Also discussed are the historical background, content and evaluation process of the workshop at the heart of the program, which reaches a diverse group of over 250 students per year—from first-year graduate students in basic research labs to clinical fellows. The workshop addresses central issues in both everyday laboratory ethics and in larger societal (...)
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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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