Results for 'teaching, engineering ethics'

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  1. 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, Design for (...)
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  2. Roleplaying Game–Based Engineering Ethics Education: Lessons from the Art of Agency.Trystan S. Goetze - 2024 - Proceedings of the 2024 American Society for Engineering Education St. Lawrence Section Annual Conference.
    How do we prepare engineering students to make ethical and responsible decisions in their professional work? This paper presents an approach that enhances engineering students’ engagement with ethical reasoning by simulating decision-making in a complex scenario. The approach has two principal inspirations. The first is Anthony Weston’s scenario-based teaching. Weston’s concept of a scenario is a situation that changes in response to choices made by participants, according to an inner logic. Scenarios can dynamically explore open-ended complex problems without (...)
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  3. 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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  4. Tinkering with Technology: An exercise in inclusive experimental engineering ethics.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 formal 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 (2.1) and its implementation (2.2), which is visually captured via photographic documentation. We then discuss (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 (4). (shrink)
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  5.  48
    Narrative ethics and narrative pedagogy in Engineering ethics education: a road not (yet) taken.Lavinia Marin - 2024 - Proceedings of the 52Nd Annual Conference of Sefi.
    The paper explores the potential of using narrative centered pedagogies in Engineering Ethics Education (EEE), drawing insights from their successful application in nursing and business ethics education. While traditional methods in EEE focus on fostering moral reasoning through case study analysis and teaching ethical theories, increasingly, there is a need for fostering soft ethical skills, such as moral sensitivity and creativity, which, in turn, demand new teaching approaches. Initially developed for nursing ethics, narrative pedagogy emphasises understanding (...)
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  6. Developing Engineering Students’ Moral Reasoning Skills Using Problem-Based Learning.Maralee Harrell - 2019 - American Association of Philosophy Teachers Studies in Pedagogy 5:123-143.
    Problem-Based Learning has become an increasingly popular instructional method for a variety of disciplines at all levels. Many studies and meta-analyses of these studies have shown the efficacy of this method for developing knowledge and skills. I adopted this method for teaching Engineering Ethics at Carnegie Mellon University, which has as its main course objectives the development of moral reasoning skills, as well as collaboration and communication skills, with special attention given to ethical dilemmas that may arise in (...)
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  7. Developing Engineering Students’ Moral Reasoning Skills Using Problem-Based Learning.Mara Harrell - 2019 - American Association of Philosophy Teachers Studies in Pedagogy 5:123-143.
    Problem-Based Learning has become an increasingly popular instructional method for a variety of disciplines at all levels. Many studies and meta-analyses of these studies have shown the efficacy of this method for developing knowledge and skills. I adopted this method for teaching Engineering Ethics at Carnegie Mellon University, which has as its main course objectives the development of moral reasoning skills, as well as collaboration and communication skills, with special attention given to ethical dilemmas that may arise in (...)
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  8. Learning to Reframe Problems Through Moral Sensitivity and Critical Thinking in Environmental Ethics for Engineers.Andrea R. Gammon & Lavinia Marin - 2022 - Teaching Ethics 22 (1):97-116.
    As attention to the pervasiveness and severity of environmental challenges grows, technical universities are responding to the need to include environmental topics in engineering curricula and to equip engineering students, without training in ethics, to understand and respond to the complex social and normative demands of these issues. But as compared to other areas of engineering ethics education, environmental ethics has received very little attention. This article aims to address this lack and raises the (...)
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  9. Building and Publishing Open Educational Resources in Ethics Education for Engineers. [REVIEW]Veraart Roel, Marin Lavinia & Borghuis Tijn - unknown
    This paper discusses the challenges and obstacles encountered in developing and publishing Open Educational Resources (OER) in engineering ethics education at a higher academic level, in the project Ethics Education for Engineers of the 4TU CEE. The main aim is to contribute to the larger project of providing OER at university level by providing insights gained from the process of gathering and publishing materials. These insights are intended to be suitable for use by other authors and teachers (...)
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  10.  38
    Ethics Within Engineering: An Introduction, 2nd edition. Wade L. Robison. London: Bloomsbury Academic, 2024; xviii + 238 pp., $90.00 (hardback), $29.95 (paperback), $26.95 (eBook formats); ISBN 978-1-3503-4044-2 (hardback), 978-1-3503-4043-5 (paperback), 978-1-3503-4046-6 (PDF), 978-1-3503-4045- 9 (epub and Mobi). US$90.00 (hardback), US$29.95 (paperback), US$26.95 (eBook format). [REVIEW]Trystan S. Goetze - 2024 - Teaching Philosophy 47 (4):614-618.
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  11. A dialogue on the ethics of science: Henri Poincaré and Pope Francis.Nicholas Matthew Danne - 2021 - European Journal for Philosophy of Science 11 (3):1-12.
    To teach the ethics of science to science majors, I follow several teachers in the literature who recommend “persona” writing, or the student construction of dialogues between ethical thinkers of interest. To engage science majors in particular, and especially those new to academic philosophy, I recommend constructing persona dialogues from Henri Poincaré’s essay, “Ethics and Science”, and the non-theological third chapter of Pope Francis’s encyclical on the environment, Laudato si. This pairing of interlocutors offers two advantages. The first (...)
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  12. Applied Ethics: Strengthening Ethical Practices.Peter Bowden (ed.) - 2012 - Tilde Publishing and Distribution.
    The claim is made in the book, Applied Ethics, published under the auspices of the Australian Association for Professional and Applied Ethics (AAPAE), that it can strengthen ethical behaviour. That claim, embodied in the subtitle, is based on more than a half dozen practices set out in the book. In total, they are drawn from an examination of ethical practices across fourteen different disciplines. The purpose of this paper is to outline and support that claim, drawing primarily on (...)
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  13. Introduction to Ethics: An Open Educational Resource, collected and edited by Noah Levin.Noah Levin, Nathan Nobis, David Svolba, Brandon Wooldridge, Kristina Grob, Eduardo Salazar, Benjamin Davies, Jonathan Spelman, Elizabeth Cady Stanton, Kristin Seemuth Whaley, Jan F. Jacko & Prabhpal Singh (eds.) - 2019 - Huntington Beach, California: N.G.E Far Press.
    Collected and edited by Noah Levin -/- Table of Contents: -/- UNIT ONE: INTRODUCTION TO CONTEMPORARY ETHICS: TECHNOLOGY, AFFIRMATIVE ACTION, AND IMMIGRATION 1 The “Trolley Problem” and Self-Driving Cars: Your Car’s Moral Settings (Noah Levin) 2 What is Ethics and What Makes Something a Problem for Morality? (David Svolba) 3 Letter from the Birmingham City Jail (Martin Luther King, Jr) 4 A Defense of Affirmative Action (Noah Levin) 5 The Moral Issues of Immigration (B.M. Wooldridge) 6 The (...) of our Digital Selves (Noah Levin) -/- UNIT TWO: TORTURE, DEATH, AND THE “GREATER GOOD” 7 The Ethics of Torture (Martine Berenpas) 8 What Moral Obligations do we have (or not have) to Impoverished Peoples? (B.M. Wooldridge) 9 Euthanasia, or Mercy Killing (Nathan Nobis) 10 An Argument Against Capital Punishment (Noah Levin) 11 Common Arguments about Abortion (Nathan Nobis & Kristina Grob) 12 Better (Philosophical) Arguments about Abortion (Nathan Nobis & Kristina Grob) -/- UNIT THREE: PERSONS, AUTONOMY, THE ENVIRONMENT, AND RIGHTS 13 Animal Rights (Eduardo Salazar) 14 John Rawls and the “Veil of Ignorance” (Ben Davies) 15 Environmental Ethics: Climate Change (Jonathan Spelman) 16 Rape, Date Rape, and the “Affirmative Consent” Law in California (Noah Levin) 17 The Ethics of Pornography: Deliberating on a Modern Harm (Eduardo Salazar) 18 The Social Contract (Thomas Hobbes) -/- UNIT FOUR: HAPPINESS 19 Is Pleasure all that Matters? Thoughts on the “Experience Machine” (Prabhpal Singh) 20 Utilitarianism (J.S. Mill) 21 Utilitarianism: Pros and Cons (B.M. Wooldridge) 22 Existentialism, Genetic Engineering, and the Meaning of Life: The Fifths (Noah Levin) 23 The Solitude of the Self (Elizabeth Cady Stanton) 24 Game Theory, the Nash Equilibrium, and the Prisoner’s Dilemma (Douglas E. Hill) -/- UNIT FIVE: RELIGION, LAW, AND ABSOLUTE MORALITY 25 The Myth of Gyges and The Crito (Plato) 26 God, Morality, and Religion (Kristin Seemuth Whaley) 27 The Categorical Imperative (Immanuel Kant) 28 The Virtues (Aristotle) 29 Beyond Good and Evil (Friedrich Nietzsche) 30 Other Moral Theories: Subjectivism, Relativism, Emotivism, Intuitionism, etc. (Jan F. Jacko). (shrink)
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  14. Gaming Google: Some Ethical Issues Involving Online Reputation Management.Jo Ann Oravec - 2013 - Journal of Business Ethics Education 10:61-81.
    Using the search engine Google to locate information linked to individuals and organizations has become part of everyday functioning. This article addresses whether the “gaming” of Internet applications in attempts to modify reputations raises substantial ethical concerns. It analyzes emerging approaches for manipulation of how personally-identifiable information is accessed online as well as critically-important international differences in information handling. Itinvestigates privacy issues involving the data mining of personally-identifiable information with search engines and social media platforms. Notions of “gaming” and “manipulation” (...)
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  15. Review of Thinking Like an Engineer: Studies in the Ethics of a Profession, by Michael Davis. [REVIEW]Edmund F. Byrne - 2000 - Teaching Philosophy 23 (3):306-309.
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  16. (1 other version)The evaluation of public health ethics, individual, collective and state with institutional, responsibilities and obligation during COVID-19 pandemics through online media reports in Turkey.Sukran Sevimli - 2021 - Eubios Journal of Asian and International Bioethics 31 (2):124-136.
    Aim: The aim of this study is to reveal the convergence of public health ethics, institutional, collective, and individual ethics obligation during the COVID-19 pandemic and give some explanations with online media reports. Method: The study method is qualitative content analysis; this method was chosen as it would suit best the purpose of the study. The Turkish Medical Association, Turkish Public Health Association, and online newspaper articles and videos have been scanned using keywords. After that, related online reports (...)
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  17. The Sniper and the Psychopath: A Parable in Defense of the Weapons Industry.Duncan MacIntosh - 2023 - In Daniel Schoeni, Tobias Vestner & Kevin Govern (eds.), Ethical Dilemmas in the Global Defense Industry. Oxford University Press. pp. 47-78.
    This chapter discusses the fundamental question of the defense industry’s role and legitimacy for societies. It begins with a parable of a psychopath doing something self-serving that has beneficial moral consequences. Analogously, it is argued, the defense industry profiting by selling weapons that can kill people makes it useful in solving moral problems not solvable by people with ordinary moral scruples. Next, the chapter argues that while the defense industry is a business, it is also implicated in the security of (...)
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  18.  73
    The purposes of engineering ethics education.Qin Zhu, Lavinia Marin, Aline Medeiros Ramos & Satya Sundar Sethy - 2025 - In Shannon Chance (ed.), The Routledge international handbook of engineering ethics education. New York, NY: Routledge. pp. 27-43.
    Defining the purposes of engineering ethics education (EEE) is paramount for the engineering education community, and understanding the purposes of EEE can be a catalyst for actively involving students in the learning process. This chapter presents a conceptual framework for systematically describing and comparing various approaches to the purposes of EEE. Such a framework is inherently embedded with a tension between a normative approach and a pragmatic approach regarding the purposes of EEE. The normative approach focuses on (...)
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  19. Holistic Engineering Ethics?Eddie Conlon, Diana Adela Martin & Brian Bowe - 2018 - Proceedings of the Engineering Education for Sustainable Development Conference.
    This paper focuses on the question of What kind of engineering ethics (EE) is needed to develop holistic engineers who can practice and promote the principles of sustainable development? -/- It is argued that, given the existence of other models, an approach to EE, as argued for at EESD 2016, centred on “training engineers for handling ethical dilemmas in sustainability contexts” (Lundqvist and Svanstrom 2016) is inadequate to address the sustainability challenge facing engineers.. We contend that while EE (...)
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  20. Engineering Ethics on Fukushima.Yusuke Kaneko - 2013 - International Journal of Humanities and Social Science 3 (3).
    In this paper, we discuss the problems of Tohoku earthquake in terms of engineering ethics. But as“engineers,”we also count seismologists. This is because, simply thinking, the recent disaster is partially attributable to seismologists. Through the discussion, including an overview of the earthquake, we reach the conclusion endorsing the abolition of nuclear power plants.
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  21. Introduction to engineering ethics.Roland Schinzinger - 2000 - Boston: McGraw Hill. Edited by Mike W. Martin.
    Introduction to Engineering Ethics provides the background for discussion of the basic issues in engineering ethics. Emphasis is given to the moral problems engineers face in the corporate setting. It places those issues within a philosophical framework, and it seems to exhibit both their social importance and their intellectual challenge. The primary goal is to stimulate critical and responsible reflection on moral issues surrounding engineering practice and to provide the conceptual tools necessary for pursuing those (...)
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  22.  66
    Engineering ethics education through a critical view.Cristiano Cordeiro Cruz, Aline Medeiros Ramos & Jie Gao - 2025 - In Shannon Chance (ed.), The Routledge international handbook of engineering ethics education. New York, NY: Routledge. pp. 149-164.
    This chapter delves into the intricate relationships among engineering, technology, ethics, and morality, highlighting their interconnected nature as they shape and are shaped by individual and collective human existence. Exploring the profound philosophical and religious underpinnings that underlie ethical and moral contemplation, the chapter also introduces seven distinct ethical systems, emphasizing three non-Western paradigms: South American Buen Vivir, African Ubuntu, and Asian Confucianism. These ethical systems are examined in the context of their implications for technology and engineering. (...)
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  23. Changing the Paradigm for Engineering Ethics.Jon Alan Schmidt - 2014 - Science and Engineering Ethics 20 (4):985-1010.
    Modern philosophy recognizes two major ethical theories: deontology, which encourages adherence to rules and fulfillment of duties or obligations; and consequentialism, which evaluates morally significant actions strictly on the basis of their actual or anticipated outcomes. Both involve the systematic application of universal abstract principles, reflecting the culturally dominant paradigm of technical rationality. Professional societies promulgate codes of ethics with which engineers are expected to comply, while courts and the public generally assign liability to engineers primarily in accordance with (...)
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  24. Fostering responsible anticipation in engineering ethics education.Janna B. Van Grunsven, Taylor Stone & Lavinia Marin - 2023 - European Journal of Engineering Education 49 (2):283-298.
    It is crucial for engineers to anticipate the socio-ethical impacts of emerging technologies. Such acts of anticipation are thoroughly normative and should be cultivated in engineering ethics education. In this paper we ask: ‘ how do we anticipate the socio-ethical implications of emerging technologies responsibly? ’ And ‘ how can such responsible anticipation be taught? ’ We o ff er a conceptual answer, building upon the framework of Responsible Innovation and its four core practices: anticipation, reflexivity, inclusion, and (...)
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  25. A Practical Role for Philosophy.Peter Bowden - 2005 - Philosophy Now 52:34-35.
    A Practical Role for Philosophy, Abstract This paper argues that philosophy departments should endeavour to assist the multitude of other departments and faculties in a university or college that have or wish to present an ethics course .A majority of departments at the writer’s university present such a course. Each department has to develop its own ethics course. The assistance would comprise an identification of which of those many ethical theories that a philosophy department teaches that would have (...)
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  26. (1 other version)Engineering Ethics.Christelle Didier - 2009 - In Jann Kyrre Berg Olsen (ed.), Companion to Philosophy of Technology. pp. 427-432.
    This article presents the ethical issues of the professional practice of engineers.
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  27. Teaching Workplace Ethics.Michael Davis - 1990 - Thinking: The Journal of Philosophy for Children 8 (4):33-42.
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  28. Teaching medical ethics and law within medical education: a model for the UK core curriculum.Richard Ashcroft & Donna Dickenson - 1998 - Journal of Medical Ethics 24:188-192.
    Consensus statement by UK teachers of medical ethics and law.
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  29. Virtue Ethics, Positive Psychology, and a New Model of Science and Engineering Ethics Education.Hyemin Han - 2015 - Science and Engineering Ethics 21 (2):441-460.
    This essay develops a new conceptual framework of science and engineering ethics education based on virtue ethics and positive psychology. Virtue ethicists and positive psychologists have argued that current rule-based moral philosophy, psychology, and education cannot effectively promote students’ moral motivation for actual moral behavior and may even lead to negative outcomes, such as moral schizophrenia. They have suggested that their own theoretical framework of virtue ethics and positive psychology can contribute to the effective promotion of (...)
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  30. Metaethics in context of engineering ethical and moral systems.Michal Klincewicz & Lily Frank - 2016 - In Michal Klincewicz & Lily Frank (eds.), Metaethics in context of engineering ethical and moral systems. Palo Alto, CA, USA: AAAI Press.
    It is not clear to what the projects of creating an artificial intelligence (AI) that does ethics, is moral, or makes moral judgments amounts. In this paper we discuss some of the extant metaethical theories and debates in moral philosophy by which such projects should be informed, specifically focusing on the project of creating an AI that makes moral judgments. We argue that the scope and aims of that project depend a great deal on antecedent metaethical commitments. Metaethics, therefore, (...)
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  31. How Engineers Can Care from a Distance: Promoting Moral Sensitivity in Engineering Ethics Education.Janna B. Van Grunsven, Lavinia Marin, Taylor Stone, Neelke Doorn & Sabine Roeser - 2023 - In Glenn Miller, Helena Mateus Jerónimo & Qin Zhu (eds.), Thinking through Science and Technology. Philosophy, Religion, and Politics in an Engineered World. Rowman & Littlefield International. pp. 141-163.
    Moral (or ethical) sensitivity is widely viewed as a foundational learning goal in engineering ethics education. We have argued in this paper is that this view of moral sensitivity cannot be readily transported from the nursing context to the engineering context on the basis of a care-analogy. The particularized care characteristic of the nursing context is decisively different from the generalized and universalized forms of care characteristic of the engineering context. Through a focus on care and (...)
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  32. Do ethics classes influence student behavior? Case study: Teaching the ethics of eating meat.Eric Schwitzgebel, Bradford Cokelet & Peter Singer - 2020 - Cognition 203 (C):104397.
    Do university ethics classes influence students’ real-world moral choices? We aimed to conduct the first controlled study of the effects of ordinary philosophical ethics classes on real-world moral choices, using non-self-report, non-laboratory behavior as the dependent measure. We assigned 1332 students in four large philosophy classes to either an experimental group on the ethics of eating meat or a control group on the ethics of charitable giving. Students in each group read a philosophy article on their (...)
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  33. The teaching of computer ethics on computer science and related degree programmes. a European survey.Ioannis Stavrakakis, Damian Gordon, Brendan Tierney, Anna Becevel, Emma Murphy, Gordana Dodig-Crnkovic, Radu Dobrin, Viola Schiaffonati, Cristina Pereira, Svetlana Tikhonenko, J. Paul Gibson, Stephane Maag, Francesco Agresta, Andrea Curley, Michael Collins & Dympna O’Sullivan - 2021 - International Journal of Ethics Education 7 (1):101-129.
    Within the Computer Science community, many ethical issues have emerged as significant and critical concerns. Computer ethics is an academic field in its own right and there are unique ethical issues associated with information technology. It encompasses a range of issues and concerns including privacy and agency around personal information, Artificial Intelligence and pervasive technology, the Internet of Things and surveillance applications. As computing technology impacts society at an ever growing pace, there are growing calls for more computer (...) content to be included in Computer Science curricula. In this paper we present the results of a survey that polled faculty from Computer Science and related disciplines about teaching practices for computer ethics at their institutions. The survey was completed by respondents from 61 universities across 23 European countries. Participants were surveyed on whether or not computer ethics is taught to Computer Science students at each institution, the reasons why computer ethics is or is not taught, how computer ethics is taught, the background of staff who teach computer ethics and the scope of computer ethics curricula. This paper presents and discusses the results of the survey. (shrink)
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  34. Genetically engineered mosquitoes, Zika and other arboviruses, community engagement, costs, and patents: Ethical issues.Zahra Meghani & Christophe Boëte - 2018 - PLoS Neglected Tropical Diseases 7 (12).
    Genetically engineered (GE) insects, such as the GE OX513A Aedes aegypti mosquitoes, have been designed to suppress their wild-type populations so as to reduce the transmission of vector-borne diseases in humans. Apart from the ecological and epidemiological uncertainties associated with this approach, such biotechnological approaches may be used by individual governments or the global community of nations to avoid addressing the underlying structural, systemic causes of those infections... We discuss here key ethical questions raised by the use of GE mosquitoes, (...)
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  35. Engineering virtue: constructionist virtue ethics.Jakob Ohlhorst - forthcoming - Inquiry: An Interdisciplinary Journal of Philosophy.
    Virtue ethics is traditionally a conservative project. It analyses the virtues that humanity has been relying on since antiquity. This conservatism unduly limits the potential of virtue ethics to contribute to moral progress. Instead, we should pay more attention to constructionist virtue ethics with the help of conceptual engineering. I will argue that revising and ameliorating the virtue concepts which a community uses directly and indirectly leads to a change of the virtues that exist in this (...)
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  36. Engaging Engineering Teams Through Moral Imagination: A Bottom-Up Approach for Responsible Innovation and Ethical Culture Change in Technology Companies.Benjamin Lange, Geoff Keeling, Amanda McCroskery, Ben Zevenbergen, Sandra Blascovich, Kyle Pedersen, Alison Lentz & Blaise Aguera Y. Arcas - 2023 - AI and Ethics 1:1-16.
    We propose a ‘Moral Imagination’ methodology to facilitate a culture of responsible innovation for engineering and product teams in technology companies. Our approach has been operationalized over the past two years at Google, where we have conducted over 50 workshops with teams from across the organization. We argue that our approach is a crucial complement to existing formal and informal initiatives for fostering a culture of ethical awareness, deliberation, and decision-making in technology design such as company principles, ethics (...)
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  37. From Classroom to Boardroom: Teaching Practical Ethics Outside the Academy.Ellen R. Klein - 1993 - Teaching Philosophy 16 (2):123-130.
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  38. Value-oriented and ethical technology engineering in Industry 5.0: a human-centric perspective for the design of the Factory of the Future.Francesco Longo, Antonio Padovano & Steven Umbrello - 2020 - Applied Sciences 10 (12):4182.
    Manufacturing and industry practices are undergoing an unprecedented revolution as a consequence of the convergence of emerging technologies such as artificial intelligence, robotics, cloud computing, virtual and augmented reality, among others. This fourth industrial revolution is similarly changing the practices and capabilities of operators in their industrial environments. This paper introduces and explores the notion of the Operator 4.0 as well as how this novel way of conceptualizing the human operator necessarily implicates human values in the technologies that constitute it. (...)
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  39. Teaching Ethics Without Confusing Questions - Illustrated By the Example of Schopenhauer's Ethics.Matthias Holweger - 2023 - Journal of Didactics of Philosophy 7:1-17.
    Like many other philosophical disciplines, ethics is sometimes highly abstract. And many key notions of the discipline are vague, ambiguous or both. Abstractness, vagueness, and ambiguity invite confusion. My objective in this paper is to draw attention to a serious problem that, despite being widespread, has so far remained largely unrecognized: the confusion of different questions in teaching ethics. This confusion occurs, for example, when a philosopher’s viewpoint is presented as an answer to one question, but in fact, (...)
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  40. Teaching & learning guide for: Carbon pricing ethics.Kian Mintz-Woo - 2022 - Philosophy Compass 17 (2):e12816.
    This teaching and learning guide accompanies the following article: Mintz-Woo, K., 2022. Carbon Pricing Ethics. Philosophy Compass 17(1):article e12803. doi:10.1111/phc3.12803. [Open access].
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  41. The Ethics of Climate Engineering: Solar Radiation Management and Non-Ideal Justice.Toby Svoboda - 2017 - Routledge.
    This book analyzes major ethical issues surrounding the use of climate engineering, particularly solar radiation management techniques, which have the potential to reduce some risks of anthropogenic climate change but also carry their own risks of harm and injustice. The book argues that we should approach the ethics of climate engineering via "non-ideal theory," which investigates what justice requires given the fact that many parties have failed to comply with their duty to mitigate greenhouse gas emissions. Specifically, (...)
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  42. Ethical Implications of Catholic Social Teachings on Human Work for the Service Industry.Ferdinand Tablan - 2014 - Journal of Religion and Business Ethics 1.
    This study examines from an ethical framework the circumstances of workers who are engaged in non-professional services that are offered through corporations that are organized to serve high volume of costumers. Drawing on the relevant ethical teachings of the Catholic social tradition (CST), it explores some practices, strategies, and policies that could address the problems experienced by many service providers in the United States today. CST refers to a wide variety of documents of the magisterium of the Catholic Church which (...)
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  43. Making Philosophy of Science Relevant for Science Students.Henrik Kragh Sørensen - 2012 - Centre for Science Studies, University of Aarhus.
    Since 2004, it has been mandated by law that all Danish undergraduate university programmes have to include a compulsory course on the philosophy of science for that particular program. At the Faculty of Science and Technology, Aarhus University, the responsibility for designing and running such courses were given to the Centre for Science Studies, where a series of courses were developed aiming at the various bachelor educations of the Faculty. Since 2005, the Centre has been running a dozen different courses (...)
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  44. Teaching ethics thro ugh using games: capacities and benefits.Morteza Tabatabaei - 2022 - Research Quarterly in Islamic Ethics 14 (54):7-26.
    One of the methods of teaching ethics, which has recently attracted the attention of researchers in the field of ethics and education and has a long history in Islamic teachings, is teaching through games, the main purpose of this article is to explain it in detail and examine the capacities and advantages of this method; With the difference that in this article, our focus is not on a specific type or case of games, but on the absolute of (...)
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  45. Teaching Ethics in the High Schools.Shane Ralston - 2008 - Teaching Ethics 9 (1):73-86.
    Should ethics be taught in the high schools? Should high school faculty teach it themselves or invite college and university professors (or instructors) into the classroom to share their expertise? In this paper, I argue that the challenge to teach ethics in the high schools has a distinctly Deweyan dimension to it, since (i) Dewey proposed that it be attempted and (ii) he provided many valuable resources with which to proceed. The paper is organized into four sections. In (...)
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  46. Teaching Ethics, Happiness, and The Good Life: An Upbuilding Discourse in the Spirits of Soren Kierkegaard and John Dewey.Alexander Stehn - 2018 - In Steven M. Cahn, Alexandra Bradner & Andrew P. Mills (eds.), Philosophers in the Classroom: Essays on Teaching. Indianapolis: Hackett Publishing Company. pp. 170-184.
    This essay narrates what I have learned from Søren Kierkegaard & John Dewey about teaching philosophy. It consists of three sections: 1) a Deweyan pragmatist’s translation of Kierkegaard’s religious insights on Christianity, as a way of life, into ethical insights on philosophy, as a way of life; 2) a brief description of the introductory course that I teach most frequently: Ethics, Happiness, & The Good Life; and 3) an exploration of three spiritual exercises from the course: a) self-cultivation by (...)
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  47. Confucian environmental ethics, climate engineering, and the “playing god” argument.Pak-Hang Wong - 2015 - Zygon 50 (1):28-41.
    The burgeoning literature on the ethical issues raised by climate engineering has explored various normative questions associated with the research and deployment of climate engineering, and has examined a number of responses to them. While researchers have noted the ethical issues from climate engineering are global in nature, much of the discussion proceeds predominately with ethical framework in the Anglo-American and European traditions, which presume particular normative standpoints and understandings of human–nature relationship. The current discussion on the (...)
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  48. The Importance of Teaching Logic to Computer Scientists and Electrical Engineers.Paul Mayer - forthcoming - IEEE.
    It is argued that logic, and in particular mathematical logic, should play a key role in the undergraduate curriculum for students in the computing fields, which include electrical engineering (EE), computer engineering (CE), and computer science (CS). This is based on 1) the history of the field of computing and its close ties with logic, 2) empirical results showing that students with better logical thinking skills perform better in tasks such as programming and mathematics, and 3) the skills (...)
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  49. Ethical relationships in the teaching profession in Slovakia.Marta Gluchmanova - 2016 - Journal of Educational Sciences and Psychology 6 (2):1-20.
    Authors deal with theoretical and social contexts of the teaching profession as a starting point for empirical research into ethical relationships among Slovak primary and secondary school teachers. They surveyed the opinions of teachers at that level regarding their relationship with students, parents, colleagues and superiors. According to the research results, more than 80% of respondents positively rate the behaviour of teachers towards their students and parents from the viewpoint of realising ethical values, based on which they could be an (...)
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  50. A Guided Tour Of Conceptual Engineering and Conceptual Ethics.Herman Cappelen & David Plunkett - 2019 - In Alexis Burgess, Herman Cappelen & David Plunkett (eds.), Conceptual Engineering and Conceptual Ethics. New York, USA: Oxford University Press. pp. 1-26.
    In this Introduction, we aim to introduce the reader to the basic topic of this book. As part of this, we explain why we are using two different expressions (‘conceptual engineering’ and ‘conceptual ethics’) to describe the topics in the book. We then turn to some of the central foundational issues that arise for conceptual engineering and conceptual ethics, and finally we outline various views one might have about their role in philosophy and inquiry more generally.
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