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  1. Second-Guessing Scientists and Engineers: Post Hoc Criticism and the Reform of Practice in Green Chemistry and Engineering.William T. Lynch - 2015 - Science and Engineering Ethics 21 (5):1217-1240.
    The article examines and extends work bringing together engineering ethics and Science and Technology Studies, which had built upon Diane Vaughan’s analysis of the Challenger shuttle accident as a test case. Reconsidering the use of her term “normalization of deviance,” the article argues for a middle path between moralizing against and excusing away engineering practices contributing to engineering disaster. To explore an illustrative pedagogical case and to suggest avenues for constructive research developing this middle path, it examines the emergence of (...)
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  • Improving Epistemological Beliefs and Moral Judgment Through an STS-Based Science Ethics Education Program.Hyemin Han & Changwoo Jeong - 2014 - Science and Engineering Ethics 20 (1):197-220.
    This study develops a Science–Technology–Society (STS)-based science ethics education program for high school students majoring in or planning to major in science and engineering. Our education program includes the fields of philosophy, history, sociology and ethics of science and technology, and other STS-related theories. We expected our STS-based science ethics education program to promote students’ epistemological beliefs and moral judgment development. These psychological constructs are needed to properly solve complicated moral and social dilemmas in the fields of science and engineering. (...)
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  • (1 other version)Changes in the Social Responsibility Attitudes of Engineering Students Over Time.Nathan E. Canney & Angela R. Bielefeldt - 2016 - Science and Engineering Ethics 22 (5):1535-1551.
    This research explored how engineering student views of their responsibility toward helping individuals and society through their profession, so-called social responsibility, change over time. A survey instrument was administered to students initially primarily in their first year, senior year, or graduate studies majoring in mechanical, civil, or environmental engineering at five institutions in September 2012, April 2013, and March 2014. The majority of the students did not change significantly in their social responsibility attitudes, but 23 % decreased and 20 % (...)
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  • Strategies for Teaching Professional Ethics to IT Engineering Degree Students and Evaluating the Result.Rafael Miñano, Ángel Uruburu, Ana Moreno-Romero & Diego Pérez-López - 2017 - Science and Engineering Ethics 23 (1):263-286.
    This paper presents an experience in developing professional ethics by an approach that integrates knowledge, teaching methodologies and assessment coherently. It has been implemented for students in both the Software Engineering and Computer Engineering degree programs of the Technical University of Madrid, in which professional ethics is studied as a part of a required course. Our contribution of this paper is a model for formative assessment that clarifies the learning goals, enhances the results, simplifies the scoring and can be replicated (...)
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  • Introduction of Interdisciplinary Teaching: Two Case Studies: Commentary on “Teaching Science, Technology, and Society to Engineering Students: A Sixteen Year Journey”.Hartwig Spitzer - 2013 - Science and Engineering Ethics 19 (4):1451-1454.
    Interdisciplinary courses on science, engineering and society have been successfully established in two cases, at Bilkent University, Ankara, Turkey, and at the University of Hamburg, Germany. In both cases there were institutional and perceptual barriers that had to be overcome in the primarily disciplinary departments. The ingredients of success included a clear vision of interdisciplinary themes and didactics, and the exploitation of institutional opportunities. Haldun M. Ozaktas in Ankara used the dynamics of an accreditation process to establish courses on engineering (...)
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  • To Describe, Transmit or Inquire: Ethics and technology in school.Viktor Gardelli - 2016 - Dissertation, Luleå University of Technology
    Ethics is of vital importance to the Swedish educational system, as in many other educational systems around the world.Yet, it is unclear how ethics should be dealt with in school, and prior research and evaluations have found serious problems regarding ethics in education.The field of moral education lacks clear and widely accepted definitions of key concepts, and these ambiguities negatively impact both research and educational practice. This thesis draws a distinction between three approaches to ethics in school – the descriptive (...)
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  • Corporate Social Responsibility Practices of Colombian Companies as Perceived by Industrial Engineering Students.Silvia Teresa Morales-Gualdrón, Daniel Andrés La Rotta Forero, Juliana Andrea Arias Vergara, Juliana Montoya Ardila & Carolina Herrera Bañol - 2020 - Science and Engineering Ethics 26 (6):3183-3215.
    This work describes the perceptions that Industrial Engineering students have regarding Colombian firms’ corporate social responsibility (CSR) practices. It also explores the incidence of gender, academic level, work experience and entrepreneurial intention on students’ vision. A survey with 70 CSR practices was designed based on previous research. Practices were grouped in ten dimensions: shareholders, customers, employees, suppliers, stakeholders, ethics, environment, legal, human rights and society. A representative sample of 142 students was used. Results show that students perceive a higher commitment (...)
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  • (1 other version)Changes in the Social Responsibility Attitudes of Engineering Students Over Time.Angela R. Bielefeldt & Nathan E. Canney - 2016 - Science and Engineering Ethics 22 (5):1535-1551.
    This research explored how engineering student views of their responsibility toward helping individuals and society through their profession, so-called social responsibility, change over time. A survey instrument was administered to students initially primarily in their first year, senior year, or graduate studies majoring in mechanical, civil, or environmental engineering at five institutions in September 2012, April 2013, and March 2014. The majority of the students did not change significantly in their social responsibility attitudes, but 23 % decreased and 20 % (...)
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  • Editors' Overview Perspectives on Teaching Social Responsibility to Students in Science and Engineering.Henk Zandvoort, Tom Børsen, Michael Deneke & Stephanie J. Bird - 2013 - Science and Engineering Ethics 19 (4):1413-1438.
    Global society is facing formidable current and future problems that threaten the prospects for justice and peace, sustainability, and the well-being of humanity both now and in the future. Many of these problems are related to science and technology and to how they function in the world. If the social responsibility of scientists and engineers implies a duty to safeguard or promote a peaceful, just and sustainable world society, then science and engineering education should empower students to fulfil this responsibility. (...)
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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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  • Design and Development of a Course in Professionalism and Ethics for CDIO Curriculum in China.Yinghui Fan, Xingwei Zhang & Xinlu Xie - 2015 - Science and Engineering Ethics 21 (5):1381-1389.
    At Shantou University in 2008, a stand-alone engineering ethics course was first included within a Conceive–Design–Implement–Operate curriculum to address the scarcity of engineering ethics education in China. The philosophy of the course design is to help students to develop an in-depth understanding of social sustainability and to fulfill the obligations of engineers in the twenty-first century within the context of CDIO engineering practices. To guarantee the necessary cooperation of the relevant parties, we have taken advantage of the top-down support from (...)
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