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  1. 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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  • 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 corresponding indicators were selected from three (...)
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  • 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 education in the context of (...)
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  • The Importance of Ethics in Modern Universities of Technology.Behnam Taebi, Jeroen van den Hoven & Stephanie J. Bird - 2019 - Science and Engineering Ethics 25 (6):1625-1632.
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  • Situating Moral Agency: How Postphenomenology Can Benefit Engineering Ethics.L. Alexandra Morrison - 2020 - Science and Engineering Ethics 26 (3):1377-1401.
    This article identifies limitations in traditional approaches to engineering ethics pedagogy, reflected in an overreliance on disaster case studies. Researchers in the field have pointed out that these approaches tend to occlude ethically significant aspects of day-to-day engineering practice and thus reductively individualize and decontextualize ethical decision-making. Some have proposed, as a remedy for these defects, the use of research and theory from Science and Technology Studies to enrich our understanding of the ways in which technology and engineering practice are (...)
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  • Teaching Engineering Ethics to PhD Students: A Berkeley–Delft Initiative: Commentary on “Ethics Across the Curriculum: Prospects for Broader (and Deeper) Teaching and Learning in Research and Engineering Ethics”.Behnam Taebi & William E. Kastenberg - 2019 - Science and Engineering Ethics 25 (6):1763-1770.
    A joint effort by the University of California at Berkeley and Delft University of Technology to develop a graduate engineering ethics course for PhD students encountered two types of challenges: academic and institutional. Academically, long-term collaborative research efforts between engineering and philosophy faculty members might be needed before successful engineering ethics courses can be initiated; the teaching of ethics to engineering graduate students and collaborative research need to go hand-in-hand. Institutionally, both bottom-up approaches at the level of the faculty and (...)
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  • Pedagogical Orientations and Evolving Responsibilities of Technological Universities: A Literature Review of the History of Engineering Education.Diana Adela Martin, Gunter Bombaerts, Maja Horst, Kyriaki Papageorgiou & Gianluigi Viscusi - 2023 - Science and Engineering Ethics 29 (6):1-29.
    Current societal changes and challenges demand a broader role of technological universities, thus opening the question of how their role evolved over time and how to frame their current responsibility. In response to urgent calls for debating and redefining the identity of contemporary technological universities, this paper has two aims. The first aim is to identify the key characteristics and orientations marking the development of technological universities, as recorded in the history of engineering education. The second aim is to articulate (...)
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  • The Survival Imperative: Commentary on “Whither the University? Universities of Technology and the Problem of Institutional Purpose”.Stephanie J. Bird - 2019 - Science and Engineering Ethics 25 (6):1699-1704.
    Humans are powerful and clever, and also more ignorant than they know. As a result, they too often fail to acknowledge or even recognize their limitations, and are more arrogant than humble regarding their capabilities. Education that explicitly recognizes and addresses the context of science and technology, their inherent values and ethical implications and concerns, and their problematic as well as beneficial impacts can potentially rescue the human species from itself.
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  • 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 use of traditional ideological and cultural (...)
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  • Transforming Ethics Education Through a Faculty Learning Community: “I’m Coming Around to Seeing Ethics as Being Maybe as Important as Calculus”.Justin L. Hess, Elizabeth Sanders, Grant A. Fore, Martin Coleman, Mary Price, Sammy Nyarko & Brandon Sorge - 2024 - Science and Engineering Ethics 30 (5):1-29.
    Ethics is central to scientific and engineering research and practice, but a key challenge for promoting students’ ethical formation involves enhancing faculty members’ ability and confidence in embedding positive ethical learning experiences into their curriculums. To this end, this paper explores changes in faculty members’ approaches to and perceptions of ethics education following their participation in a multi-year interdisciplinary faculty learning community (FLC). We conducted and thematically analyzed semi-structured interviews with 11 participants following the second year of the FLC. Qualitative (...)
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  • Artificial Intelligent Systems and Ethical Agency.Reena Cheruvalath - 2023 - Journal of Human Values 29 (1):33-47.
    The article examines the challenges involved in the process of developing artificial ethical agents. The process involves the creators or designing professionals, the procedures to develop an ethical agent and the artificial systems. There are two possibilities available to create artificial ethical agents: (a) programming ethical guidance in the artificial Intelligence (AI)-equipped machines and/or (b) allowing AI-equipped machines to learn ethical decision-making by observing humans. However, it is difficult to fulfil these possibilities due to the subjective nature of ethical decision-making. (...)
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  • Ethics and the UN Sustainable Development Goals: The Case for Comprehensive Engineering: Commentary on “Using Student Engagement to Relocate Ethics to the Core of the Engineering Curriculum”.Jeroen van den Hoven - 2019 - Science and Engineering Ethics 25 (6):1789-1797.
    In the twenty-first century, the urgent problems the world is facing (the UN Sustainable Development Goals) are increasingly related to vast and intricate ‘systems of systems’, which comprise both socio-technical and eco-systems. In order for engineers to adequately and responsibly respond to these problems, they cannot focus on only one technical or any other aspect in isolation, but must adopt a wider and multidisciplinary perspective of these systems, including an ethical and social perspective. Engineering curricula should therefore focus on what (...)
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  • Educating Engineers for the Public Good Through International Internships: Evidence from a Case Study at Universitat Politècnica de València.Alejandra Boni, José Javier Sastre & Carola Calabuig - 2015 - Science and Engineering Ethics 25 (6):1799-1815.
    At Universitat Politècnica de València, Meridies, an internship programme that places engineering students in countries of Latin America, is one of the few opportunities the students have to explore the implications of being a professional in society in a different cultural and social context. This programme was analyzed using the capabilities approach as a frame of reference for examining the effects of the programme on eight student participants. The eight pro-public-good capabilities proposed by Melanie Walker were investigated through semi-structured interviews. (...)
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  • A Rubik’s Cube-Inspired Pedagogical Tool for Teaching and Learning Engineering Ethics.Yuqi Peng - 2024 - Science and Engineering Ethics 30 (6):1-22.
    To facilitate engineering students’ understanding of engineering ethics and support instructors in developing course content, this study introduces an innovative educational tool drawing inspiration from the Rubik’s Cube metaphor. This Engineering Ethics Knowledge Rubik’s Cube (EEKRC) integrates six key aspects—ethical theories, codes of ethics, ethical issues, engineering disciplines, stakeholders, and life cycle—identified through an analysis of engineering ethics textbooks and courses across the United States, Singapore, and China. This analysis underpins the selection of the six aspects, reflecting the shared and (...)
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  • Applying a Social Constructivist Approach to an Online Course on Ethics of Research.Miri Barak & Gizell Green - 2021 - Science and Engineering Ethics 27 (1):1-24.
    The growing trend of shifting from classroom to distance learning in ethics education programs raises the need to examine ways for adapting best instructional practices to online modes. To address this need, the current study was set to apply a social constructivist approach to an online course in research ethics and to examine its effect on the learning outcomes of science and engineering graduate students. The study applied a pre-test post-test quasi-experimental research design within a framework of a mixed-methods approach. (...)
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