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Ethics in engineering practice and research

New York: Cambridge University Press (1998)

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  1. 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 Development of a Case-Based Course on Global Engineering Ethics in China.Rockwell F. Clancy - 2020 - International Journal of Ethics Education 6 (1):51-73.
    This article describes the development and teaching of a course on global engineering ethics in Shanghai Jiao Tong University, China. It outlines course objectives, methods, and contents, and instructor experience and plans for future development. This is done with the goal of helping educators to plan standalone courses and/or integrated modules on global engineering and technology ethics, which address challenges arising from the increasingly cross-cultural and international environments of contemporary technology and engineering practice. These efforts are motivated by the global (...)
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  • Philosophy of Science for Sustainability Science.Michiru Nagatsu, Taylor Thiel Davis, C. Tyler DesRoches, Inkeri Koskinen, Miles MacLeod, Milutin Stojanovic & Henrik Thorén - 2020 - Sustainability Science 1 (N/A):1-11.
    Sustainability science seeks to extend scientific investigation into domains characterized by a distinct problem-solving agenda, physical and social complexity, and complex moral and ethical landscapes. In this endeavor it arguably pushes scientific investigation beyond its usual comfort zones, raising fundamental issues about how best to structure such investigation. Philosophers of science have long scrutinized the structure of science and scientific practices, and the conditions under which they operate effectively. We propose a critical engagement between sustainability scientists and philosophers of science (...)
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  • Strengthening Morality and Ethics in Educational Assessment through Ubuntu in South Africa.Peter A. D. Beets - 2012 - Educational Philosophy and Theory 44 (s2):68-83.
    While assessment is regarded as integral to enhancing the quality of teaching and learning, it is also a practice fraught with moral and ethical issues. An analysis is made of current assessment practices of teachers in South Africa which seem to straddle the domains of accountability and professional codes of conduct. In the process the position of the teacher as mediator between policies and diverse learner needs is explored in the light of moral and ethical considerations. Based on the notions (...)
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  • Introduction: Exigent decision-making in engineering.Michael Pritchard, Taft H. Broome, Vivian Weil, Michael S. Pritchard, Joseph R. Herkert, Michael Davis & Taft Broome - 1999 - Science and Engineering Ethics 5 (4):541-567.
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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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  • Personal meaning and ethics in engineering.Mike W. Martin - 2002 - Science and Engineering Ethics 8 (4):545-560.
    The study of engineering ethics tends to emphasize professional codes of ethics and, to lesser degrees, business ethics and technology studies. These are all important vantage points, but they neglect personal moral commitments, as well as personal aesthetic, religious, and other values that are not mandatory for all members of engineering. This paper illustrates how personal moral commitments motivate, guide, and give meaning to the work of engineers, contributing to both self-fulfillment and public goods. It also explores some general frameworks (...)
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  • Theoretical and methodological elements for integrating ethics as a foundation into the education of professional and design disciplines.Philippe D’Anjou - 2004 - Science and Engineering Ethics 10 (2):211-218.
    The paper addresses the integration of ethics into professional education related to the disciplines responsible for the conception and creation of the artificial (artefactual or technology). The ontological-epistemological paradigm of those disciplines is understood within the frame of the sciences of the artificial as established by Herbert Simon (1969). According to that paradigm, those sciences include disciplines not only related to the production of artefacts (technology), such as engineering, architecture, industrial design, etc, but also disciplines related to devised courses of (...)
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  • The ethical cycle.I. van de Poel & L. Royakkers - 2007 - Journal of Business Ethics 71 (1):1-13.
    Arriving at a moral judgment is not a straightforward or linear process in which ethical theories are simply applied to cases. Instead it is a process in which the formulation of the moral problem, the formulation of possible “solutions”, and the ethical judging of these solutions go hand in hand. This messy character of moral problems, however, does not rule out a systematic approach. In this article, we describe a systematic approach to problem solving that does justice to the complex (...)
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  • Philosophy of technology and macro-ethics in engineering.Wha-Chul Son - 2008 - Science and Engineering Ethics 14 (3):405-415.
    The purpose of this paper is to diagnose and analyze the gap between philosophy of technology and engineering ethics and to suggest bridging them in a constructive way. In the first section, I will analyze why philosophy of technology and engineering ethics have taken separate paths so far. The following section will deal with the so-called macro-approach in engineering ethics. While appreciating the initiative, I will argue that there are still certain aspects in this approach that can be improved. In (...)
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  • Connecting to the Heart: Teaching Value-Based Professional Ethics.Roel Snieder & Qin Zhu - 2020 - Science and Engineering Ethics 26 (4):2235-2254.
    Engineering programs in the United States have been experimenting with diverse pedagogical approaches to educate future professional engineers. However, a crucial dimension of ethics education that focuses on the values, personal commitments, and meaning of engineers has been missing in many of these pedagogical approaches. We argue that a value-based approach to professional ethics education is critically needed in engineering education, because such an approach is indispensable for cultivating self-reflective and socially engaged engineers. This paper starts by briefly comparing two (...)
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  • Developing a Scientific Virtue-Based Approach to Science Ethics Training.Robert T. Pennock & Michael O’Rourke - 2017 - Science and Engineering Ethics 23 (1):243-262.
    Responsible conduct of research training typically includes only a subset of the issues that ought to be included in science ethics and sometimes makes ethics appear to be a set of externally imposed rules rather than something intrinsic to scientific practice. A new approach to science ethics training based upon Pennock’s notion of the scientific virtues may help avoid such problems. This paper motivates and describes three implementations—theory-centered, exemplar-centered, and concept-centered—that we have developed in courses and workshops to introduce students (...)
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  • Hidden in Plain View: Feminists Doing Engineering Ethics, Engineers Doing Feminist Ethics. [REVIEW]Donna Riley - 2013 - Science and Engineering Ethics 19 (1):189-206.
    How has engineering ethics addressed gender concerns to date? How have the ideas of feminist philosophers and feminist ethicists made their way into engineering ethics? What might an explicitly feminist engineering ethics look like? This paper reviews some major themes in feminist ethics and then considers three areas in which these themes have been taken up in engineering ethics to date. First, Caroline Whitbeck’s work in engineering ethics integrates considerations from her own earlier writings and those of other feminist philosophers, (...)
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  • The Ethical Cycle.I. Van De Poel & L. Royakkers - 2007 - Journal of Business Ethics 71 (1):1 - 13.
    Arriving at a moral judgment is not a straightforward or linear process in which ethical theories are simply applied to cases. Instead it is a process in which the formulation of the moral problem, the formulation of possible "solutions", and the ethical judging of these solutions go hand in hand. This messy character of moral problems, however, does not rule out a systematic approach. In this article, we describe a systematic approach to problem solving that does justice to the complex (...)
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  • Investigating ethical issues in engineering design.Ibo Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is an important topic for research.
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  • Investigating ethical issues in engineering design.Ibo van de Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is an important topic for research.
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  • Teaching research ethics: Can web-based instruction satisfy appropriate pedagogical objectives? [REVIEW]Brian Schrag - 2005 - Science and Engineering Ethics 11 (3):347-366.
    Ethical tasks faced by researchers in science and engineering as they engage in research include recognition of moral problems in their practice, finding solutions to those moral problems, judging moral actions and engaging in preventive ethics. Given these issues, appropriate pedagogical objectives for research ethics education include (1) teaching researchers to recognize moral issues in their research, (2) teaching researchers to solve practical moral problems in their research from the perspective of the moral agent, (3) teaching researchers how to make (...)
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  • Teaching engineering ethics to undergraduates: Why? What? How? [REVIEW]Michael J. Rabins - 1998 - Science and Engineering Ethics 4 (3):291-302.
    The teaching of engineering ethics is on the increase at universities around the United States. The motivation for this increase (WHY?) has several driving forces, including: a new Accreditation Board for Engineering and Technology (ABET) accreditation criteria; new questions on Professional Engineering (PE) licensing examinations; new industrial marketplace needs; and a growing awareness in the engineering profession of a need for ethical sensitivity to the consequences of our actions as engineers. The subject (WHAT?) is likely to be taught quite differently (...)
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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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  • Financial interests and research bias.David B. Resnik - 2000 - Perspectives on Science 8 (3):255-285.
    : In the last two decades, scientists, government officials, and science policy experts have expressed concerns about the increasing role of financial interests in research. Many believe that these interests are undermining research by causing bias and error, suppression of results, and even outright fraud. This paper seeks to shed some light on this view by (1) explicating the concept research bias, (2) describing some ways that financial interests can cause research biases, and (3) discussing some strategies for mitigating or (...)
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  • Technische Fiktionen: Zur Ontologie und Ethik der Gestaltung.Michael Kuhn - 2023 - transcript Verlag.
    Unentwegt werden neue technische Produkte gestaltet. Doch was macht die technische Gestaltung aus? Wie lässt sich ihr Gegenstand - (noch) nicht existierende Artefakte - adäquat auf den Begriff bringen? Michael Kuhn begreift technische Ideen vor ihrer Realisierung als Fiktionen. Er bietet eine fiktionstheoretische Rekonstruktion der Gestaltungstätigkeit und entwickelt hieraus eine Ethik der Gestaltung. Der stark interdisziplinäre Zugang zwischen Technikphilosophie und Ingenieurwissenschaften liefert neue Erkenntnisse für beide Fachrichtungen und stellt wertvolle Grundlagen bereit.
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  • International Perspectives on Engineering Education: Engineering Education and Practice in Context.Byron Newberry, Carl Mitcham, Martin Meganck, Andrew Jamison, Christelle Didier & Steen Hyldgaard Christensen (eds.) - 2015 - Springer Verlag.
    This inclusive cross-cultural study rethinks the nexus between engineering education and context. In so doing the book offers a reflection on contextual boundaries with an overall boundary crossing ambition and juxtaposes important cases of critical participation within engineering education with sophisticated scholarly reflection on both opportunities and discontents. -/- Whether and in what way engineering education is or ought to be contextualized or de-contextualized is an object of heated debate among engineering educators. The uniqueness of this study is that this (...)
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  • Human Participants in Engineering Research: Notes from a Fledgling Ethics Committee.David Koepsell, Willem-Paul Brinkman & Sylvia Pont - 2015 - Science and Engineering Ethics 21 (4):1033-1048.
    For the past half-century, issues relating to the ethical conduct of human research have focused largely on the domain of medical, and more recently social–psychological research. The modern regime of applied ethics, emerging as it has from the Nuremberg trials and certain other historical antecedents, applies the key principles of: autonomy, respect for persons, beneficence, non-maleficence, and justice to human beings who enter trials of experimental drugs and devices :168–175, 2001). Institutions such as Institutional Review Boards and Ethics Committees oversee (...)
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  • Conceptualization of Ecological Management: Practice, Frameworks and Philosophy.Milutin Stojanovic - 2019 - Journal of Agricultural and Environmental Ethics 32 (3):431-446.
    This paper investigates practice, frameworks and philosophy in the field of ecological management, a novel integrative approach to closing the gap between ecological and economic theoretical models and ecological and economic behavior. First, I will present the current status in this emerging field and discuss management in relation to various sub-disciplines, including agroecology, circular economy, industrial ecology, and urban sustainability. This provides a basis to analyze the theoretical frameworks found in profitable, ecologically-based businesses and identify key general features that characterize (...)
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  • Designing games to teach ethics.Peter Lloyd & Ibo van de Poel - 2008 - Science and Engineering Ethics 14 (3):433-447.
    This paper describes a teaching methodology whereby students can gain practical experience of ethical decision-making in the engineering design process. We first argue for the necessity to teach a ‘practical’ understanding of ethical issues in engineering education along with the usual theoretical or hypothetical approaches. We then show how this practical understanding can be achieved by using a collaborative design game, describing how, for example, the concept of responsibility can be explored from this practical basis. We conclude that the use (...)
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  • A team-taught interdisciplinary approach to engineering ethics.Glenn C. Graber & Christopher D. Pionke - 2006 - Science and Engineering Ethics 12 (2):313-320.
    This paper outlines the development and implementation of a new course in Engineering Ethics at the University of Tennessee. This is a three-semester-hour course and is jointly taught by an engineering professor and a philosophy professor. While traditional pedagogical techniques such as case studies, position papers, and classroom discussions are used, additional activities such as developing a code of ethics and student-developed scenarios are employed to encourage critical thinking. Among the topics addressed in the course are engineering as a profession (...)
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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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  • Ethics and Complexity: Why standard ethical frameworks cannot cope with socio-technological change.Clément Vidal & Francis Heylighen - forthcoming - In P. Jorion (ed.), Investigating Transhumanisms and Their Narratives.
    : Standard ethical frameworks struggle to deal with transhumanism, ecological issues and the rising technodiversity because they are focused on guiding and evaluating human behavior. Ethics needs its Copernican revolution to be able to deal with all moral agents, including not only humans, but also artificial intelligent agents, robots or organizations of all sizes. We argue that embracing the complexity worldview is the first step towards this revolution, and that standard ethical frameworks are still entrenched in the Newtonian worldview. We (...)
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  • The Design Thinking as a Method of Applied Ethics.Toshihiro Ohishi - 2013 - Kagaku Tetsugaku 46 (2):31-47.
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  • Virtues in Participatory Design: Cooperation, Curiosity, Creativity, Empowerment and Reflexivity. [REVIEW]Marc Steen - 2013 - Science and Engineering Ethics 19 (3):945-962.
    In this essay several virtues are discussed that are needed in people who work in participatory design (PD). The term PD is used here to refer specifically to an approach in designing information systems with its roots in Scandinavia in the 1970s and 1980s. Through the lens of virtue ethics and based on key texts in PD, the virtues of cooperation, curiosity, creativity, empowerment and reflexivity are discussed. Cooperation helps people in PD projects to engage in cooperative curiosity and cooperative (...)
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  • On using ethical theories to teach engineering ethics.Mathieu Bouville - 2008 - Science and Engineering Ethics 14 (1):111-120.
    Many engineering ethics classes and textbooks introduce theories such as utilitarianism and Kantianism (and most others draw from these theories without mentioning them explicitly). Yet using ethical theories to teach engineering ethics is not devoid of difficulty. First, their status is unclear (should one pick a single theory or use them all? does it make a difference?) Also, textbooks generally assume or fallaciously ‘prove’ that egoism (or even simply accounting for one’s interests) is wrong. Further, the drawbacks of ethical theories (...)
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  • Editorial: Ethics and Engineering Design.Peter-Paul Verbeek & Ibo van de Poel - 2006 - Science, Technology, and Human Values 31 (3):223-236.
    Engineering ethics and science and technology studies have until now developed as separate enterprises. The authors argue that they can learn a lot from each other. STS insights can help make engineering ethics open the black box of technology and help discern ethical issues in engineering design. Engineering ethics, on the other hand, might help STS to overcome its normative sterility. The contributions in this special issue show in various ways how the gap between STS and engineering ethics might be (...)
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  • The Ethical Education and Perspectives of Chinese Engineering Students: A Preliminary Investigation and Recommendations.Rockwell F. Clancy - 2020 - Science and Engineering Ethics 26 (4):1935-1965.
    To develop more effective ethics education for cross-cultural and international engineering, a study was conducted to determine what Chinese engineering students have learned and think about ethics. Recent research shows traditional approaches to ethics education are potentially ineffective, but also points towards ways of improving ethical behaviors. China is the world’s most populous country, graduating and employing the highest number of STEM majors, although little empirical research exists about the ethical knowledge and perspectives of Chinese engineering students. When compared to (...)
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  • Comparison of China-US Engineering Ethics Educations in Sino-Western Philosophies of Technology.Gui Hong Cao - 2015 - Science and Engineering Ethics 21 (6):1609-1635.
    Ethics education has become essential in modern engineering. Ethics education in engineering has been increasingly implemented worldwide. It can improve ethical behaviors in technology and engineering design under the guidance of the philosophy of technology. Hence, this study aims to compare China-US engineering ethics education in Sino-Western philosophies of technology by using literature studies, online surveys, observational researches, textual analyses, and comparative methods. In my original theoretical framework and model of input and output for education, six primary variables emerge in (...)
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  • Conceptual Clarification and the Task of Improving Research on Academic Ethics.Sara R. Jordan - 2013 - Journal of Academic Ethics 11 (3):243-256.
    What does the term academic ethics mean? How does this term relate to others in the academic integrity literature, such as research misconduct? Does conceptual confusion in the study of academic ethics complicate development of valid analyses of ethical behavior in an academic setting? The intended goal of many empirical projects on academic ethics is to draw causal conclusions about the factors that lead to faculty or students possessing or disregarding academic integrity. Yet, it is not clear that scholars using (...)
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  • Educating the humanitarian engineer.Kevin M. Passino - 2009 - Science and Engineering Ethics 15 (4):577-600.
    The creation of new technologies that serve humanity holds the potential to help end global poverty. Unfortunately, relatively little is done in engineering education to support engineers’ humanitarian efforts. Here, various strategies are introduced to augment the teaching of engineering ethics with the goal of encouraging engineers to serve as effective volunteers for community service. First, codes of ethics, moral frameworks, and comparative analysis of professional service standards lay the foundation for expectations for voluntary service in the engineering profession. Second, (...)
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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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  • Ethics and Academic Integrity Elements of Ethics in Electrical Engineering.Oana Vasilica Grosu & Eusebiu Toader - 2020 - Postmodern Openings 11 (4):193-206.
    Ethics is the science that studies the theoretical part of the human condition and its values. The individual has the responsibility to conduct ethic decisions and to have an ethical behavior. This article presents the ethics from the research and engineering perspective, its main characteristics; lack of honesty, confidentiality, conflict of interests and intellectual property. The engineering teaching is the act which includes multiple ethic subjects in order to educate the student about the importance of ethics and its repercussions. The (...)
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  • Methods for Practising Ethics in Research and Innovation: A Literature Review, Critical Analysis and Recommendations.Wessel Reijers, David Wright, Philip Brey, Karsten Weber, Rowena Rodrigues, Declan O’Sullivan & Bert Gordijn - 2018 - Science and Engineering Ethics 24 (5):1437-1481.
    This paper provides a systematic literature review, analysis and discussion of methods that are proposed to practise ethics in research and innovation. Ethical considerations concerning the impacts of R&I are increasingly important, due to the quickening pace of technological innovation and the ubiquitous use of the outcomes of R&I processes in society. For this reason, several methods for practising ethics have been developed in different fields of R&I. The paper first of all presents a systematic search of academic sources that (...)
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  • Teaching ethics and technology with Agora, an electronic tool.Simone Burg & Ibo Poel - 2005 - Science and Engineering Ethics 11 (2):277-297.
    Courses on ethics and technology have become compulsory for many students at the three Dutch technical universities during the past few years. During this time, teachers have faced a number of didactic problems, which are partly due to a growing number of students. In order to deal with these challenges, teachers in ethics at the three technical universities in the Netherlands — in Delft, Eindhoven and Twente — have developed a web-based computer program called Agora (see www.ethicsandtechnology.com). This program enables (...)
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  • Dissolving the Moral Dilemma of Whistleblowing.Lars Lindblom - 2007 - Journal of Business Ethics 76 (4):413-426.
    The ethical debate on whistleblowing concerns centrally the conflict between the right to political free speech and the duty of loyalty to the organization where one works. This is the moral dilemma of whistleblowing. Political free speech is justified because it is a central part of liberal democracy, whereas loyalty can be motivated as a way of showing consideration for one’s associates. The political philosophy of John Rawls is applied to this dilemma, and it is shown that the requirement of (...)
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  • Teaching ethics and technology with agora , an electronic tool.Simone van der Burg & Ibo van de Poel - 2005 - Science and Engineering Ethics 11 (2):277-297.
    Courses on ethics and technology have become compulsory for many students at the three Dutch technical universities during the past few years. During this time, teachers have faced a number of didactic problems, which are partly due to a growing number of students. In order to deal with these challenges, teachers in ethics at the three technical universities in the Netherlands — in Delft, Eindhoven and Twente — have developed a web-based computer program called Agora (see www.ethicsandtechnology.com). This program enables (...)
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  • Operationalizing Ethical Becoming as a Theoretical Framework for Teaching Engineering Design Ethics.Grant A. Fore & Justin L. Hess - 2020 - Science and Engineering Ethics 26 (3):1353-1375.
    Ethical becoming represents a novel framework for teaching engineering ethics. This framework insists on the complementarity of pragmatism, care, and virtue. The dispositional nature of the self is a central concern, as are relational considerations. However, unlike previous conceptual work, this paper introduces additional lenses for exploring ethical relationality by focusing on indebtedness, harmony, potency, and reflective thought. This paper first reviews relevant contributions in the engineering ethics literature. Then, the relational process ontology of Alfred North Whitehead is described and (...)
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  • Metaetyka systemów społecznych. Teorioetyczne aspekty koncepcji N. Luhmanna.Jacek Jaśtal - forthcoming - Etyka.
    Jedna z koncepcji historycznego rozwoju etyki stwierdza, że „teorie moralne nie mogą być oceniane w sposób zrozumiały inaczej niż w kategoriach sukcesu lub porażki w rozwiązywaniu problemów historycznie uwarunkowanych”. Celem artykułu jest próba odpowiedzenia na pytanie, czy teoria systemów N. Luhmanna może być wykorzystana do wyjaśnienia historycznej zmienności teorii etycznych i spełnić rolę swojego rodzaju metaetyki. Wymaga to zbadania, czy teoria ta pozwala wyjaśnić funkcję moralności, jej społeczną, kulturową i historyczną zmienność oraz rolę teorii etycznych. Wydaje się, że teoria L. (...)
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  • Designing ethical artifacts has resulted in creative design.Kaira Sekiguchi & Koichi Hori - 2021 - AI and Society 36 (1):101-148.
    Ethical aspects in engineering design have become increasingly important in recent years. A typical example is the recent rise of artificial intelligence ethics. This paper applies user studies of a design support tool to empirically verify that our ethical framework improves the creativity of an engineer’s design activity. The design support tool provides an environment for the promotion of ethical design perspectives and description. The experiments focus on two functionalities: semi-automatic generation and scenario path recommendation. These functions are designed around (...)
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  • Ethics and engineering courses at delft university of technology: Contents, educational setup and experiences.I. R. van de Poel, H. Zandvoort & M. Brumsen - 2001 - Science and Engineering Ethics 7 (2):267-282.
    This article reports on the development and teaching of compulsory courses on ethics and engineering at Delft University of Technology (DUT). Attention is paid to the teaching goals, the educational setup and methods, the contents of the courses, involvement of staff from engineering schools, experiences to date, and challenges for the future. The choices made with respect to the development and teaching of the courses are placed within the European and Dutch context and are compared and contrasted with the American (...)
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  • Making good use of online case study materials.Matthew Wilks Keefer - 2005 - Science and Engineering Ethics 11 (3):413-429.
    Web-based access to engaging instructional materials for SEE instruction represents an increasingly viable and attractive opportunity for educators. This paper will review research findings that demonstrate important differences in more experienced and novice ethical responses to engaging online materials, including authentic cases, codes, and commentaries. Results demonstrate that experienced ethical thinkers are more likely than novices to appeal to middle level principles that identify professional role-specific obligations (RSO); to make greater use of professional knowledge in order to recognize moral issues (...)
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  • Technology as empowerment: A capability approach to computer ethics. [REVIEW]Justine Johnstone - 2007 - Ethics and Information Technology 9 (1):73-87.
    Standard agent and action-based approaches in computer ethics tend to have difficulty dealing with complex systems-level issues such as the digital divide and globalisation. This paper argues for a value-based agenda to complement traditional approaches in computer ethics, and that one value-based approach well-suited to technological domains can be found in capability theory. Capability approaches have recently become influential in a number of fields with an ethical or policy dimension, but have not so far been applied in computer ethics. The (...)
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  • Responsibility in Engineering: Toward a New Role for Engineering Ethicists.Jessica Nihlén Fahlquist & Neelke Doorn - 2010 - Bulletin of Science, Technology and Society 30 (3):222-230.
    Traditionally, the management of technology has focused on the stages before or after development of technology. In this approach the technology itself is conceived as the result of a deterministic enterprise; a result that is to be either rejected or embraced. However, recent insights from Science and Technology Studies (STS) have shown that there is ample room to modulate technology during development. This requires technology managers and engineering ethicists to become more involved in the technological research rather than assessing it (...)
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  • The Profession and the Killer App, or What Environmental Ethicists Might Learn from Bioethics: A Commentary.Per Sandin - 2015 - Ethics, Policy and Environment 18 (3):275-282.
    In terms of output in the form of published work and attraction of resources, bioethics seems to be a more vibrant field than environmental ethics. In this commentary it is argued that bioethics is, in some respect, less humanistic than environmental ethics and that two factors––bioethics’ strong connection to a profession, and its access to an intellectual ‘killer app’––offer ways in which environmental ethicists might learn from the ‘success story’ of bioethics.
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