Results for 'research on engineering ethics'

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  1.  19
    Investigation of ethical dilemmas of school principals: comparing Turkish and Canadian principals.Engin Karadag & Esra Tekel - 2020 - Asian Journal of Business Ethics 9 (1):73-92.
    Increasingly complex working environments of school principals inevitably led them to face moral dilemmas in daily life. The aim of this research is to reveal which kinds of moral dilemmas principals fall into mostly, how principals follow the road to making decisions in the moral dilemmas, and if the nature of management affects the decision-making process of their moral dilemmas or not. For data collection process snowball sampling was used. Semi-structured interviews and vignettes which were designed by researchers were (...)
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  2.  27
    Software engineering code of ethics and professional practice: version 4.Corporate Ieee-cs-acm Joint Task Force On Software Engineering Ethics - 1998 - Acm Sigcas Computers and Society 28 (2):29-32.
  3.  36
    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 (...)
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  4.  66
    A special section on research in engineering ethics towards a research programme for ethics and technology.Michiel Brumsen & Ibo van de Poel - 2001 - Science and Engineering Ethics 7 (3):365-378.
    In this editorial contribution, two issues relevant to the question, what should be at the top of the research agenda for ethics and technology, are identified and discussed. Firstly: can, and do, engineers make a difference to the degree to which technology leads to morally desirable outcomes? What role does professional autonomy play here, and what are its limits? And secondly, what should be the scope of engineers’ responsibility; that is to say, on which issues are they, as (...)
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  5.  31
    Reengineering Biomedical Translational Research with Engineering Ethics.Mary E. Sunderland & Rahul Uday Nayak - 2015 - Science and Engineering Ethics 21 (4):1019-1031.
    It is widely accepted that translational research practitioners need to acquire special skills and knowledge that will enable them to anticipate, analyze, and manage a range of ethical issues. While there is a small but growing literature that addresses the ethics of translational research, there is a dearth of scholarship regarding how this might apply to engineers. In this paper we examine engineers as key translators and argue that they are well positioned to ask transformative ethical questions. (...)
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  6.  29
    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 (...)
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  7.  61
    Ethical Guidelines for Human Embryonic Stem Cell Research (A Recommended Manuscript).Chinese National Human Genome Center at Shanghai Ethics Committee - 2004 - Kennedy Institute of Ethics Journal 14 (1):47-54.
    In lieu of an abstract, here is a brief excerpt of the content:Kennedy Institute of Ethics Journal 14.1 (2004) 47-54 [Access article in PDF] Ethical Guidelines for Human Embryonic Stem Cell Research*(A Recommended Manuscript) Adopted on 16 October 2001Revised on 20 August 2002 Ethics Committee of the Chinese National Human Genome Center at Shanghai, Shanghai 201203 Human embryonic stem cell (ES) research is a great project in the frontier of biomedical science for the twenty-first century. Be- (...)
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  8. Future directions in engineering ethics research: Microethics, macroethics and the role of professional societies.Joseph R. Herkert - 2001 - Science and Engineering Ethics 7 (3):403-414.
    Three frames of reference for engineering ethics are discussed—individual, professional and social—which can be further broken down into “microethics” concerned with individuals and the internal relations of the engineering profession and “macroethics” referring to the collective social responsibility of the engineering profession and to societal decisions about technology. Few attempts have been made at integrating microethical and macroethical approaches to engineering ethics. The approach suggested here is to focus on the role of professional (...) societies in linking individual and professional ethics and in linking professional and social ethics. A research program is outlined using ethics support as an example of the former, and the issuance of position statements on product liability as an example of the latter. (shrink)
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  9. Plural Values and Environmental Evaluation.Wilfred Beckerman, Joanna Pasek & Centre for Social and Economic Research on the Global Environment - 1996 - Centre for Social and Economic Research on the Global Environment.
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  10.  76
    The professional approach to engineering ethics: Five research questions.Michael Davis - 2001 - Science and Engineering Ethics 7 (3):379-390.
    This paper argues that research for engineering ethics should routinely involve philosophers, social scientists, and engineers, and should focus for now on certain basic questions such as: Who is an engineer? What is engineering? What do engineers do? How do they make decisions? And how much control do they actually have over what they do?
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  11. Negatif Teoloji Bağlamında Apophasis ile Aphairesis ve Aristoteles'te Olası Terim Kökeni Araştırması.Engin Yurt - 2017 - Kutadgubilig Felsefe-Bilim Araştırmaları Dergisi 34 (34):111-137.
    In this work, it has been mainly aimed to make a research on origin, meaning and context of two terms [Apophasis and Aphairesis]. These two terms which have an important place within the negative theology that has been thought explicitly appeared first with Pseudo-Dionysos Areopagita –but if required, it can be started in Plotinus, Aristotle, Plato or Parmenides– in history of philosophy [terms which also have been a subject to a misunderstanding, to a problem due to their being understood (...)
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  12. Yol ve Yolcu Arasındaki İlişki Üzerine Kısa bir Felsefi-Edebi İnceleme: Herakleitos DK 22B60 VE Frost'un Road Not Taken Şiirinden Hareketle Yol.Engin Yurt - 2018 - Journal of History School (JOHS) 11 (XXXIV):987-1003.
    In here, philosophical-literate thinking on the way is mainly tried. On one side, making a philosophical analysis of Heraclitus’ fragment 60 is aimed. The different views on what Heraclitus might have meant in this article which is generally translated as the way up and the way down are one and the same are examined. On the other side, with a reading of Robert Frost’s famous poem of Road Not Taken, it has been tried whether a phenomenological interpretation of the way (...)
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  13.  43
    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 (...)
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  14. Exploring the relations between ethical reasoning and moral intuitions among Chinese engineering students in a course on global engineering ethics.Rockwell Clancy & Qin Zhu - manuscript
    Research in engineering ethics has assessed the ethical reasoning of students in mostly the US. However, it is not clear that ethical judgments are primarily the result of ethical reasoning, or that conclusions based on US samples would be true of global populations. China now graduates and employs more STEM (science technology engineering and mathematics) majors than any other country in the world, but the moral cognition and ethics education of Chinese engineers remains understudied. To (...)
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  15.  29
    Engineering Ethics Education: A Comparative Study of Japan and Malaysia.Balamuralithara Balakrishnan, Fumihiko Tochinai & Hidekazu Kanemitsu - 2019 - Science and Engineering Ethics 25 (4):1069-1083.
    This paper reports the findings of a comparative study in which students’ perceived attainment of the objectives of an engineering ethics education and their attitude towards engineering ethics were investigated and compared. The investigation was carried out in Japan and Malaysia, involving 163 and 108 engineering undergraduates respectively. The research method used was based on a survey in which respondents were sent a questionnaire to elicit relevant data. Both descriptive and inferential statistical analyses were (...)
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  16.  29
    Subject Selection for Clinical Trials.American Medical Association Council on Ethical and Judicial Affairs - forthcoming - IRB: Ethics & Human Research.
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  17. How to Teach Engineering Ethics?: A Retrospective and Prospective Sketch of TU Delft’s Approach to Engineering Ethics Education.J. B. van Grunsven, L. Marin, T. W. Stone, S. Roeser & N. Doorn - 2021 - Advances in Engineering Education 9 (4).
    This paper provides a retrospective and prospective overview of TU Delft’s approach to engineering ethics education. For over twenty years, the Ethics and Philosophy of Technology Section at TU Delft has been at the forefront of engineering ethics education, offering education to a wide range of engineering and design students. The approach developed at TU Delft is deeply informed by the research of the Section, which is centered around Responsible Research and Innovation, (...)
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  18.  34
    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 (...)
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  19.  42
    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 (...)
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  20.  33
    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 (...)
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  21.  17
    Global Engineering Ethics at the University of Michigan-Shanghai Jiao Tong University Joint Institute (China).Rockwell F. Clancy - 2022 - Techné Research in Philosophy and Technology 26 (3):477-503.
    Engineering is more cross-cultural and international than ever before, presenting challenges and opportunities in the way engineering ethics is conceived and delivered. To assist in providing more effective ethics education to increasingly diverse groups, this paper shares three related projects implemented at the University of Michigan-Shanghai Jiao Tong University Joint Institute (China). These projects are united in their attempts to address challenges arising from the increasingly global nature of engineering. The first is a course on (...)
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  22.  55
    Ethical issues in research on preventing HIV infection among injecting drug users.Don C. Des Jarlais, Paul A. Gaist & Samuel R. Friedman - 1995 - Science and Engineering Ethics 1 (2):133-144.
    The ethical issues in conducting research on preventing HIV infection are among the most complex of any area of human subjects research. This article is an update of a 1987 article that addressed potential conflicts between research design and ethics with respect to AIDS prevention among injecting drug users. The present article reviews current ethical issues that arise in the design and conduct of HIV/AIDS prevention research focused on injecting drug users.
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  23.  27
    Influences on the ethical beliefs of graduate students concerning research.Robert L. Sprague, Jessica Daw & Glyn C. Roberts - 2001 - Science and Engineering Ethics 7 (4):507-520.
    Development of and influence on ethical beliefs were surveyed at a major research university campus. Courses were ranked by faculty and students as most important. Mentors were ranked eighth in a list of nine factors. Of the 1,152 returned student questionnaires, 97 (8.4%) made the effort to write comments, and of the 610 faculty questionnaires returned, 64 (10%) wrote comments. These comments were rich in detail and description.
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  24.  24
    Statement on the formulation of a code of conduct for research integrity for projects funded by the European Commission.European Group on Ethics in Science and New Technologies - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):237-240.
    Name der Zeitschrift: Jahrbuch für Wissenschaft und Ethik Jahrgang: 20 Heft: 1 Seiten: 237-240.
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  25. Bias in algorithmic filtering and personalization.Engin Bozdag - 2013 - Ethics and Information Technology 15 (3):209-227.
    Online information intermediaries such as Facebook and Google are slowly replacing traditional media channels thereby partly becoming the gatekeepers of our society. To deal with the growing amount of information on the social web and the burden it brings on the average user, these gatekeepers recently started to introduce personalization features, algorithms that filter information per individual. In this paper we show that these online services that filter information are not merely algorithms. Humans not only affect the design of the (...)
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  26.  39
    Understanding Ill-Structured Engineering Ethics Problems Through a Collaborative Learning and Argument Visualization Approach.Michael Hoffmann & Jason Borenstein - 2014 - Science and Engineering Ethics 20 (1):261-276.
    As a committee of the National Academy of Engineering recognized, ethics education should foster the ability of students to analyze complex decision situations and ill-structured problems. Building on the NAE’s insights, we report about an innovative teaching approach that has two main features: first, it places the emphasis on deliberation and on self-directed, problem-based learning in small groups of students; and second, it focuses on understanding ill-structured problems. The first innovation is motivated by an abundance of scholarly (...) that supports the value of deliberative learning practices. The second results from a critique of the traditional case-study approach in engineering ethics. A key problem with standard cases is that they are usually described in such a fashion that renders the ethical problem as being too obvious and simplistic. The practitioner, by contrast, may face problems that are ill-structured. In the collaborative learning environment described here, groups of students use interactive and web-based argument visualization software called “AGORA-net: Participate – Deliberate!”. The function of the software is to structure communication and problem solving in small groups. Students are confronted with the task of identifying possible stakeholder positions and reconstructing their legitimacy by constructing justifications for these positions in the form of graphically represented argument maps. The argument maps are then presented in class so that these stakeholder positions and their respective justifications become visible and can be brought into a reasoned dialogue. Argument mapping provides an opportunity for students to collaborate in teams and to develop critical thinking and argumentation skills. (shrink)
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  27.  38
    Survey on Using Ethical Principles in Environmental Field Research with Place-Based Communities.Dianne Quigley, Alana Levine, David A. Sonnenfeld, Phil Brown, Qing Tian & Xiaofan Wei - 2019 - Science and Engineering Ethics 25 (2):477-517.
    Researchers of the Northeast Ethics Education Partnership at Brown University sought to improve an understanding of the ethical challenges of field researchers with place-based communities in environmental studies/sciences and environmental health by disseminating a questionnaire which requested information about their ethical approaches to these researched communities. NEEP faculty sought to gain actual field guidance to improve research ethics and cultural competence training for graduate students and faculty in environmental sciences/studies. Some aspects of the ethical challenges in field (...)
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  28.  13
    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 (...)
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  29.  36
    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 (...) ethics education in the context of accreditation. Finally, there is the level of the culture of engineering education. The multi-level analysis allows us to address some of the limitations of higher education research which tends to focus on individual actors such as instructors or remains focused on the levels of policy and practice without examining the deeper levels of paradigm and purpose guiding them. Our approach links some of the challenges of engineering ethics education with wider debates about its guiding paradigms. The main contribution of the paper is to situate the analysis of the theoretical and empirical findings reported in the literature on engineering ethics education in the context of broader discussions about the purpose of engineering education and the aims of reform programmes. We conclude by putting forward a series of recommendations for a socio-technical oriented reform of engineering education for ethics. (shrink)
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  30.  57
    Multi-cellular engineered living systems: building a community around responsible research on emergence.Matthew Sample, Marion Boulicault, Caley Allen, Rashid Bashir, Insoo Hyun, Megan Levis, Caroline Lowenthal, David Mertz & Nuria Montserrat - 2019 - Biofabrication 11 (4).
    Ranging from miniaturized biological robots to organoids, multi-cellular engineered living systems (M-CELS) pose complex ethical and societal challenges. Some of these challenges, such as how to best distribute risks and benefits, are likely to arise in the development of any new technology. Other challenges arise specifically because of the particular characteristics of M-CELS. For example, as an engineered living system becomes increasingly complex, it may provoke societal debate about its moral considerability, perhaps necessitating protection from harm or recognition of positive (...)
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  31.  7
    What Is Engineering Ethics Education? Exploring How the Education of Ethics Is Defined by Engineering Instructors.Diana Adela Martin & Eddie Conlon - 2023 - In Albrecht Fritzsche & Andrés Santa-María (eds.), Rethinking Technology and Engineering: Dialogues Across Disciplines and Geographies. Springer Verlag. pp. 263-282.
    The literature on engineering ethics education highlights the diversity of goals and topics employed in its instruction. The contribution aims to examine the conceptualisation of engineering ethics education in terms of how it is defined and how its goals are articulated. The research is conducted in cooperation with the national accrediting body Engineers Ireland. It is based on interviews with instructors teaching courses self-identified by engineering programmes as having a strong ethical component and evaluators (...)
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  32.  43
    Commentary on “the gladiator Sparrow: Ethical issues in behavioral research on captive populations of wild animals”.Brian Schrag - 2004 - Science and Engineering Ethics 10 (4):726-730.
    This case involves invasive research on captive wild populations of birds to study aggressive animal behavior. The case and associated commentaries raise and examine fundamental issues: whether and under what conditions, such research is ethically justified when the research has no expected, direct application to the human species; the moral status of animals and how one balances concern for the animal’s interests against the value of gains in scientific knowledge. They also emphasize the issue of the importance (...)
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  33. Tinkering with Technology: How Experiential Engineering Ethics Pedagogy Can Accommodate Neurodivergent Students and Expose Ableist Assumptions.Janna B. Van Grunsven, Trijsje Franssen, Andrea Gammon & Lavinia Marin - 2024 - In E. Hildt, K. Laas, C. Miller & E. Brey (eds.), Building Inclusive Ethical Cultures in STEM. Springer Verlag. pp. 289-311.
    The guiding premise of this chapter is that we, as teachers in higher education, must consider how the content and form of our teaching can foster inclusivity through a responsiveness to neurodiverse learning styles. A narrow pedagogical focus on lectures, textual engagement, and essay-writing threatens to exclude neurodivergent students whose ways of learning and making sense of the world may not be best supported through these traditional forms of pedagogy. As we discuss in this chapter, we, as engineering (...) educators, designed and implemented a new engineering ethics exercise with which we aimed to promote inclusivity at the levels of form and content. At the content level, students were invited to critically engage with inclusivity-undermining ableist assumptions in technology development. This took shape, at the form level, through a hands-on ‘material tinkering’ workshop in which students collaboratively and creatively altered (or ‘hacked’) artifacts used in contexts of disability and healthcare, so as to operationalize values of inclusivity and accessibility. Our hunch was that this hands-on tinkering workshop would simultaneously encourage a meaningful way of engagement with these ethical issues and values, while also enacting a more inclusive learning environment by enriching the range of pedagogical activities and learning formats available to our students.As we aim to show in this chapter, we believe this hunch largely panned out – though there are clear areas for future improvement pertaining to the pilot exercise itself and the research we conducted on the exercise. We begin by offering a description of our tinkering exercise. We discuss the exercise’s source of inspiration (Sect. 16.2.1) and its implementation (Sect. 16.2.2), which is visually captured via photographic documentation. We then discuss (Sect. 16.3) how we utilized a triangulated research method to assess the pedagogical value of the exercise. After we discuss our findings, we conclude by identifying areas for future improvement (Sect. 16.4). (shrink)
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  34.  12
    Fictional Film in Engineering Ethics Education: With Miyazaki’s The Wind Rises as Exemplar.Sarah Jayne Hitt & Thomas Taro Lennerfors - 2022 - Science and Engineering Ethics 28 (5):1-16.
    This paper aims to call attention to the potential of using film in engineering ethics education, which has not been thoroughly discussed as a pedagogical method in this field. A review of current approaches to teaching engineering ethics reveals that there are both learning outcomes that need more attention as well as additional pedagogical methods that could be adopted. Scholarship on teaching with film indicates that film can produce ethical experiences that go beyond those produced by (...)
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    Clinical Ethics Committee in an Oncological Research Hospital: two-years Report.Marta Perin, Ludovica De Panfilis & on Behalf of the Clinical Ethics Committee of the Azienda Usl-Irccs di Reggio Emilia - 2023 - Nursing Ethics 30 (7-8):1217-1231.
    Research question and aimClinical Ethics Committees (CECs) aim to support healthcare professionals (HPs) and healthcare organizations to deal with the ethical issues of clinical practice. In 2020,...
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  36. Toward ethical norms and institutions for climate engineering research.David R. Morrow, Robert E. Kopp & Michael Oppenheimer - 2009 - Environmental Research Letters 4.
    Climate engineering (CE), the intentional modification of the climate in order to reduce the effects of increasing greenhouse gas concentrations, is sometimes touted as a potential response to climate change. Increasing interest in the topic has led to proposals for empirical tests of hypothesized CE techniques, which raise serious ethical concerns. We propose three ethical guidelines for CE researchers, derived from the ethics literature on research with human and animal subjects, applicable in the event that CE (...) progresses beyond computer modeling. The Principle of Respect requires that the scientific community secure the global public's consent, voiced through their governmental representatives, before beginning any empirical research. The Principle of Beneficence and Justice requires that researchers strive for a favorable risk–benefit ratio and a fair distribution of risks and anticipated benefits, all while protecting the basic rights of affected individuals. Finally, the Minimization Principle requires that researchers minimize the extent and intensity of each experiment by ensuring that no experiments last longer, cover a greater geographical extent, or have a greater impact on the climate, ecosystem, or human welfare than is necessary to test the specific hypotheses in question. Field experiments that might affect humans or ecosystems in significant ways should not proceed until a full discussion of the ethics of CE research occurs and appropriate institutions for regulating such experiments are established. (shrink)
     
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  37. Hıristiyanlıkta Kutsalın Doğasına Dair Fikir Ayrılığı ve Buna Kilise Babaları'nda Olası bir Çözüm.Engin Yurt - 2018 - Felsefi Düsün 10 (10):337-363.
    This article mainly aims to make an examination over the holy. It has been inquired into how something being ascribed holy can have a meaning in philosophy. As the article's research area, the differences in both opinion and execution which have later divided Christianity into two as Catholic and Orthodox Churches have been selected. The separation of these two churches under the subject titles such as Filioque controversy, the idea of First Among Equals (primas inter pares), and ritual of (...)
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  38.  6
    Goodness and Infinity: The Meaning of Death and Life in al-Māturīdī and al-Dabūsī’s Metaphysics.Engin Erdem - 2020 - Kader 18 (2):470-487.
    This article aims to analyze the views of two pioneering Ḥanafī scholars, Abū Manṣūr al- Māturīdī and Abū Zayd al-Dabūsī, on the meaning of death and life in terms of their general doctrine of religion. In the first part, the general framework of Māturīdī and Dabūsī’s evidentialist conception of religion are drawn. In the second part, Māturīdī's views on the meaning of death and life and are explored. In the third part, the views of Abū Zayd al-Dabūsī on the meaning (...)
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  39.  41
    Commentary on “the gladiator Sparrow: Ethical issues in behavioral research on captive populations of wild animals”.Todd M. Freeberg - 2004 - Science and Engineering Ethics 10 (4):721-725.
    This case involves invasive research on captive wild populations of birds to study aggressive animal behavior. The case and associated commentaries raise and examine fundamental issues: whether and under what conditions, such research is ethically justified when the research has no expected, direct application to the human species; the moral status of animals and how one balances concern for the animal’s interests against the value of gains in scientific knowledge. They also emphasize the issue of the importance (...)
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  40.  7
    Decentering an Engineering Ethics Center.Donna Riley, Justin Hess & Brent Jesiek - 2021 - Teaching Ethics 21 (2):199-212.
    In this article we reflect on ethical issues arising amid our efforts over the past four years to set up a university-level engineering ethics center to facilitate faculty, staff, and student collaborations across disciplines. In this account we place considerable emphasis on relations with campus administration, including conflicts arising over the interests of potential donors and research sponsors; state and national political contexts; turf ; and the scope and role of ethics in a STEM-focused public land (...)
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  41.  79
    Commentary on “the gladiator Sparrow: Ethical issues in behavioral research on captive populations of wild animals”.Lida Anestidou - 2004 - Science and Engineering Ethics 10 (4):731-734.
    This case involves invasive research on captive wild populations of birds to study aggressive animal behavior. The case and associated commentaries raise and examine fundamental issues: whether and under what conditions, such research is ethically justified when the research has no expected, direct application to the human species; the moral status of animals and how one balances concern for the animal’s interests against the value of gains in scientific knowledge. They also emphasize the issue of the importance (...)
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  42.  40
    ‘Ethical concepts regarding the genetic engineering of laboratory animals’: A confrontation with moral beliefs from the practice of biomedical research.R. de Vries - 2006 - Medicine, Health Care and Philosophy 9 (2):211-225.
    Intrinsic value and animal integrity are two key concepts in the debate on the ethics of the genetic engineering of laboratory animals. These concepts have, on the one hand, a theoretical origin and are, on the other hand, based on the moral beliefs of people not directly involved in the genetic modification of animals. This ‘external’ origin raises the question whether these concepts need to be adjusted or extended when confronted with the moral experiences and opinions of people (...)
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  43.  2
    Handbook of research on teaching ethics in business and management education.Charles Wankel (ed.) - 2012 - Hershey, PA: Information Science Reference.
    This book is an examination of the inattention of business schools to moral education, addressing lessons learned from the most recent business corruption scandals and financial crises, and also questioning what we're teaching now and what should be considering in educating future business leaders to cope with the challenges of leading with integrity in the global environment"--Provided by publisher.
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  44.  68
    Teaching for adaptive expertise in biomedical engineering ethics.Taylor Martin, Karen Rayne, Nate J. Kemp, Jack Hart & Kenneth R. Diller - 2005 - Science and Engineering Ethics 11 (2):257-276.
    This paper considers an approach to teaching ethics in bioengineering based on the How People Learn (HPL) framework. Curricula based on this framework have been effective in mathematics and science instruction from the kindergarten to the college levels. This framework is well suited to teaching bioengineering ethics because it helps learners develop “adaptive expertise”. Adaptive expertise refers to the ability to use knowledge and experience in a domain to learn in unanticipated situations. It differs from routine expertise, which (...)
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  45.  97
    An Analysis on the Research Ethics Cases Managed by the Committee on Publication Ethics (COPE) Between 1997 and 2010.Jong Yong Abdiel Foo & Stephen James Wilson - 2012 - Science and Engineering Ethics 18 (4):621-631.
    The growing emphasis on the importance of publishing scientific findings in the academic world has led to increasing prevalence of potentially significant publications in which scientific and ethical rigour may be questioned. This has not only hindered research progress, but also eroded public trust in all scientific advances. In view of the increasing concern and the complexity of research misconduct, the Committee on Publication Ethics (COPE) was established in 1997 to manage cases with ethical implications. In order (...)
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  46.  14
    ‘Ethical concepts regarding the genetic engineering of laboratory animals’: A confrontation with moral beliefs from the practice of biomedical research.R. Vries - 2006 - Medicine, Health Care and Philosophy 9 (2):211-225.
    Intrinsic value and animal integrity are two key concepts in the debate on the ethics of the genetic engineering of laboratory animals. These concepts have, on the one hand, a theoretical origin and are, on the other hand, based on the moral beliefs of people not directly involved in the genetic modification of animals. This ‘external’ origin raises the question whether these concepts need to be adjusted or extended when confronted with the moral experiences and opinions of people (...)
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  47.  77
    Ethical Aspects of the Mitigation Obstruction Argument against Climate Engineering Research.David R. Morrow - 2014 - Philosophical Transactions of the Royal Society A 372:20140062.
    Many commentators fear that climate engineering research might lead policy-makers to reduce mitigation efforts. Most of the literature on this so-called ‘moral hazard’ problem focuses on the prediction that climate engineering research would reduce mitigation efforts. This paper focuses on a related ethical question: Why would it be a bad thing if climate engineering research obstructed mitigation? If climate engineering promises to be effective enough, it might justify some reduction in mitigation. Climate policy (...)
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  48.  39
    Acclimating International Graduate Students to Professional Engineering Ethics.Katherine Austin Byron Newberry, Greta Gorsuch William Lawson & Thomas Darwin - 2011 - Science and Engineering Ethics 17 (1):171-194.
    This article describes the education portion of an ongoing grant-sponsored education and research project designed to help graduate students in all engineering disciplines learn about the basic ethical principles, rules, and obligations associated with engineering practice in the United States. While the curriculum developed for this project is used for both domestic and international students, the educational materials were designed to be sensitive to the specific needs of international graduate students. In recent years, engineering programs in (...)
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  49.  30
    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 (...)
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  50.  44
    Teaching research ethics and working together: Commentary on “pedagogical objectives in teaching research ethics in science and engineering”.Michael S. Pritchard - 2005 - Science and Engineering Ethics 11 (3):367-371.
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