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  1. Les invisibles et les inaudibles de l'ingénierie.Marc-Kevin Daoust - manuscript
    Une des contributions phares de Luc Bégin à l’éthique publique est d’avoir bien documenté les obstacles auxquels les gardiens institutionnels québécois doivent porter une attention particulière. Bégin s’est notamment intéressé aux conditions dans lesquelles les ordres professionnels, comme l’Ordre des ingénieurs du Québec, sont moins susceptibles de protéger le public contre des pratiques répréhensibles (corruption, collusion, etc.). Je poursuis les réflexions de Bégin à partir d’un point de vue « épistémique ». Je montre d’abord comment les ordres professionnels ont tendance (...)
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  2. Development of role-play scenarios for teaching responsible conduct of research.C. Loui - unknown - Science and Engineering Ethics.
    We describe the development, testing, and formative evaluation of nine role-play scenarios for teaching central topics in the responsible conduct of research to graduate students in science and engineering. In response to formative evaluation surveys, students reported that the role-plays were more engaging and promoted deeper understanding than a lecture or case study covering the same topic. In the future, summative evaluations will test whether students display this deeper understanding and retain the lessons of the role-play experience.
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  3. Building Epistemically Healthier Platforms.Dallas Amico-Korby, Maralee Harrell & David Danks - forthcoming - Episteme.
    When thinking about designing social media platforms, we often focus on factors such as usability, functionality, aesthetics, ethics, and so forth. Epistemic considerations have rarely been given the same level of attention in design discussions. This paper aims to rectify this neglect. We begin by arguing that there are epistemic norms that govern environments, including social media environments. Next, we provide a framework for applying these norms to the question of platform design. We then apply this framework to the real-world (...)
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  4. A Reflection on Biomedical Engineering Ethics Education from Multiple Perspectives.Adrian Chan, Monique Frize, Colleen Ennett, Daphne Ong & Amanada Cherpak - forthcoming - Ethics in Biology, Engineering and Medicine.
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  5. Volnovaya tekhnologiya i tekhnika. Nauchnye osnovy, promyshlennye ispytaniya i ikh rezul'taty, perspektivy ispol'zovaniya [Wave technology, and engineering. Scientific bases, industrial tests and their results, the prospects for using]. Moscow. [REVIEW]R. F. Ganiev - forthcoming - Logos. Anales Del Seminario de Metafísica [Universidad Complutense de Madrid, España].
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  6. Genetical Engineering in Ethical Perspective.J. Hattingh - forthcoming - A Publication by the Unit for Bioethics, University of Stellenbosch, South Africa.
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  7. The Role of Technology in Research Perspectives from Students.Mary S. Laskowski - forthcoming - Techne.
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  8. Thinking through technology: the path between engineering and.Carl Mitcham - forthcoming - Philosophy.
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  9. Does the history of engineering require the philosophy of engineering?Alireza Seghatoleslami - forthcoming - Philosophical Investigations.
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  10. Ethical issues in empirical studies of software engineering.Janice A. Singer & Norman G. Vinson - forthcoming - Philosophical Explorations.
    The popularity of empirical methods in software engineering research is on the rise. Surveys, experiments, metrics, case studies, and field studies are examples of empirical methods used to investigate both software engineering processes and products. The increased application of empirical methods has also brought about an increase in discussions about adapting these methods to the peculiarities of software engineering. In contrast, the ethical issues raised by empirical methods have received little, if any, attention in the software engineering literature. This article (...)
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  11. CS2315-F08 December 7, 2008 Ethics and Therac-25 Some may question whether Software engineering or computer programming are just careers or if they are real professions. But there is no question that they have the ability to affect the public either through good or through harm. Software Engineers do not have to have a license to practice, but they still need to abide by a code of ethics. Without this code or a set of moral rules to guide them they cannot be expected to feel accountable for their actions. [REVIEW]Christy Sylvest - forthcoming - Ethics.
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  12. Handbook of Research on Machine Ethics and Morality.Steven John Thompson (ed.) - forthcoming - Hershey, PA: IGI-Global.
    This book is dedicated to expert research topics, and analyses of ethics-related inquiry, at the machine ethics and morality level: key players, benefits, problems, policies, and strategies. Gathering some of the leading voices that recognize and understand the complexities and intricacies of human-machine ethics provides a resourceful compendium to be accessed by decision-makers and theorists concerned with identification and adoption of human-machine ethics initiatives, leading to needed policy adoption and reform for human-machine entities, their technologies, and their societal and legal (...)
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  13. A Bias Network Approach (BNA) to Encourage Ethical Reflection Among AI Developers.Gabriela Arriagada-Bruneau, Claudia López & Alexandra Davidoff - 2025 - Science and Engineering Ethics 31 (1):1-29.
    We introduce the Bias Network Approach (BNA) as a sociotechnical method for AI developers to identify, map, and relate biases across the AI development process. This approach addresses the limitations of what we call the "isolationist approach to AI bias," a trend in AI literature where biases are seen as separate occurrence linked to specific stages in an AI pipeline. Dealing with these multiple biases can trigger a sense of excessive overload in managing each potential bias individually or promote the (...)
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  14. The Routledge international handbook of engineering ethics education.Shannon Chance, Tom Børsen, Diana Adela Martin, Roland Tormey, Thomas Taro Lennerfors & Gunter Bombaerts (eds.) - 2025 - New York, NY: Routledge.
    Responding to the need for a timely and authoritative volume dedicated to this burgeoning and expansive area of research, this handbook will provide readers with a map of themes, topics, and arguments in the field of engineering ethics education (EEE). Featuring critical discussion, research collaboration, and a team of international contributors of globally recognised standing, this volume comprises six key sections which elaborate on the foundations of EEE; teaching methods; accreditation and assessment; and interdisciplinary contributions. Over 100 researchers of EEE (...)
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  15. Engineering ethics education through a critical view.Cristiano Cordeiro Cruz, Aline Medeiros Ramos & Jie Gao - 2025 - In Shannon Chance, Tom Børsen, Diana Adela Martin, Roland Tormey, Thomas Taro Lennerfors & Gunter Bombaerts, 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. This exposition illuminates (...)
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  16. Interface Design for Responsible Remote Driving: A Study on Technological Mediation.Fabio Fossa - 2025 - Applied Sciences 15 (5):1-25.
    Remote driving, i.e., the capacity of controlling road vehicles at a distance, is an innovative transportation technology often associated with potential ethical benefits, especially when deployed to tackle urban traffic issues. However, prospected benefits could only be reaped if remote driving can be executed in a safe and responsible way. This paper builds on notions elaborated in the philosophical literature on technological mediation to offer a systematic examination of the extent to which current and emerging Human–Machine Interfaces contribute to hindering (...)
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  17. REFLECTIVE AND DIALOGICAL APPROACHES IN ENGINEERING ETHICS EDUCATION.Lavinia Marin, Yousef Jalali, Alexandra Morrison & Cristina Voinea - 2025 - In Shannon Chance, Tom Børsen, Diana Adela Martin, Roland Tormey, Thomas Taro Lennerfors & Gunter Bombaerts, The Routledge international handbook of engineering ethics education. New York, NY: Routledge. pp. 441-458.
    This chapter addresses the challenges of implementing reflective thinking in engineering ethics education (EEE). It examines existing methods for teaching ethical reflection in EEE and argues that pedagogical activities aiming to foster ethical reflection need to be infused with dialogical interactions and, at a deeper level, informed by dialogism. Dialogism is understood as a relational approach to inquiry in which interactions between moral agents enable them to develop their own understandings through the process of finding shared meanings with the others (...)
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  18. (1 other version)Ethics for engineers.Martin Peterson - 2025 - New York: Oxford University Press.
    This book seeks to introduce the reader to some of the most intricate ethical issues faced by engineers and other technical experts. The author's ambition is to present the material in a manner that enables students to articulate their own moral outlook at the same time as they learn to apply ethical theories and become familiar with some of the most influential professional codes of ethics.
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  19. Il futuro della tecnologia. Progettazione etica e innovazione.Steven Umbrello - 2025 - Roma: tab edizioni. Translated by Steven Umbrello.
    Il volume approfondisce le intricate narrazioni che danno forma alla nostra comprensione della tecnologia, dai punti di vista strumentali al costruttivismo sociale, sostenendo l'interazionismo come l’interpretazione più promettente. Man mano che l’umanità intreccia nodi sempre più stretti con la tecnologia, la comprensione e l'attuazione di questi principi diventa non solo vantaggiosa ma addirittura essenziale. Ecco allora che l’articolazione del libro, dimostrata attraverso esempi e narrazioni avvincenti, svela le sfumature delle diverse posizioni filosofiche e suggerisce un chiaro percorso da seguire: i (...)
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  20. The purposes of engineering ethics education.Qin Zhu, Lavinia Marin, Aline Medeiros Ramos & Satya Sundar Sethy - 2025 - In Shannon Chance, Tom Børsen, Diana Adela Martin, Roland Tormey, Thomas Taro Lennerfors & Gunter Bombaerts, 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 what the purposes (...)
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  21. The Point of Blaming AI Systems.Hannah Altehenger & Leonhard Menges - 2024 - Journal of Ethics and Social Philosophy 27 (2).
    As Christian List (2021) has recently argued, the increasing arrival of powerful AI systems that operate autonomously in high-stakes contexts creates a need for “future-proofing” our regulatory frameworks, i.e., for reassessing them in the face of these developments. One core part of our regulatory frameworks that dominates our everyday moral interactions is blame. Therefore, “future-proofing” our extant regulatory frameworks in the face of the increasing arrival of powerful AI systems requires, among others things, that we ask whether it makes sense (...)
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  22. Dual-Use in Cybersecurity Research. Towards a New Culture of Research Ethics.Kaya Cassing & Sebastian Weydner-Volkmann - 2024 - In Elisabeth Ehrensperger, Jeannette Behringer, Michael Decker, Bert Droste-Franke, Nils B. Heyen, Mashid Sotoudeh & Birgit Weimert, Gestreamt, gelikt, flüchtig – schöne neue Kulturwelt? Digitalisierung und Kultur im Licht der Technikfolgenabschätzung. Baden-Baden: Nomos. pp. 349-359.
    The fact that information and communication technologies (ICTs) increasingly shape our online and offline lifeworlds has lead to the emergence of a new societal threat in the form of vulnerabilities in critical ICT systems that may be exploited by malicious actors. Cybersecurity researchers work on finding such vulnerabilities and on identifying new attack vectors, i.e. they systematically step into the role of attackers. Normatively, however, the goal of this research is to strengthen ICTs against cyberattacks and, thus, to reduce the (...)
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  23. L'éthique et le génie québécois.Marc-Kevin Daoust & Thomas Mekhaël - 2024 - Montréal: Presses de l'Université du Québec.
    « Les récits entendus pendant la Commission Charbonneau ont mis en lumière les manquements éthiques dans le monde de l’ingénierie, ce qui a eu l’effet d’une bombe au Québec. Certains témoignages ont aussi révélé des défaillances au sein des institutions, comme l’Ordre des ingénieurs du Québec. Dix ans après la publication du rapport de la Commission, sommes-nous à l’abri d’une nouvelle crise éthique? Comment repenser notre lien à l’éthique au sein de cette profession? L’éthique et le génie québécois poursuit deux (...)
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  24. Winds of change: An engaged ethics approach to energy justice.Brandstedt Eric, Busch Henner, Lycke Ellen & Ramasar Vasna - 2024 - Energy Research and Social Science 110 (April 2024):103427.
    Theories of energy justice are standardly used to evaluate decision-making and policy-design related to energy infrastructure. All too rarely attention is paid to the need for a method of justifying principles of justice as well as justice-based judgments that are appealed to in this context. This article responds to this need by offering an engaged ethics approach to normative justification useful for energy justice theory. More specifically, it presents a method of public reflective equilibrium and shows its potential as systematic (...)
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  25. 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.
  26. 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 imposing predetermined (...)
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  27. Patient Preferences Concerning Humanoid Features in Healthcare Robots.Dane Leigh Gogoshin - 2024 - Science and Engineering Ethics 30 (6):1-16.
    In this paper, I argue that patient preferences concerning human physical attributes associated with race, culture, and gender should be excluded from public healthcare robot design. On one hand, healthcare should be (objective, universal) needs oriented. On the other hand, patient well-being (the aim of healthcare) is, in concrete ways, tied to preferences, as is patient satisfaction (a core WHO value). The shift toward patient-centered healthcare places patient preferences into the spotlight. Accordingly, the design of healthcare technology cannot simply disregard (...)
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  28. The Better Choice? The Status Quo versus Radical Human Enhancement.Madeleine Hayenhjelm - 2024 - The Journal of Ethics 2024:1-19.
    Can it be rational to favour the status quo when the alternatives to the status quo promise considerable increases in overall value? For instance, can it be rational to favour the status quo over radical human enhancement? A reasonable response to these questions would be to say that it can only be rational if the status quo is indeed the better choice on some measure. In this paper, I argue that it can be rational to favour the status quo over (...)
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  29. Who Should obey Asimov’s Laws of Robotics? A Question of Responsibility.Maria Hedlund & Erik Persson - 2024 - In Spyridon Stelios & Kostas Theologou, The Ethics Gap in the Engineering of the Future. Emerald Publishing. pp. 9-25.
    The aim of this chapter is to explore the safety value of implementing Asimov’s Laws of Robotics as a future general framework that humans should obey. Asimov formulated laws to make explicit the safeguards of the robots in his stories: (1) A robot may not injure or harm a human being or, through inaction, allow a human being to come to harm; (2) A robot must obey the orders given to it by human beings except where such orders would conflict (...)
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  30. Moral Imagination for Engineering Teams: The Technomoral Scenario.Geoff Keeling, Benjamin Lange, Amanda McCroskery, David Weinberger, Kyle Pedersen & Ben Zevenbergen - 2024 - International Review of Information Ethics 34 (1):1-8.
    “Moral imagination” is the capacity to register that one’s perspective on a decision-making situation is limited, and to imagine alternative perspectives that reveal new considerations or approaches. We have developed a Moral Imagination approach that aims to drive a culture of responsible innovation, ethical awareness, deliberation, decision-making, and commitment in organizations developing new technologies. We here present a case study that illustrates one key aspect of our approach – the technomoral scenario – as we have applied it in our work (...)
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  31. “Emergent Abilities,” AI, and Biosecurity: Conceptual Ambiguity, Stability, and Policy.Alex John London - 2024 - Disincentivizing Bioweapons: Theory and Policy Approaches.
    Recent claims that artificial intelligence (AI) systems demonstrate “emergent abilities” have fueled excitement but also fear grounded in the prospect that such systems may enable a wider range of parties to make unprecedented advances in areas that include the development of chemical or biological weapons. Ambiguity surrounding the term “emergent abilities” has added avoidable uncertainty to a topic that has the potential to destabilize the strategic landscape, including the perception of key parties about the viability of nonproliferation efforts. To avert (...)
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  32. The Engineer as an Educator: Goods, Virtues, and Secondary Practices.Piotr Machura - 2024 - Studies in Logic, Grammar and Rhetoric 69 (82):203-220.
    How should ethical standards be maintained within engineering and engineering education? The present paper addresses this question with relation to the dominant models of engineering ethics (EE) to show that their limits might be overcome by incorporating the vocabulary of neo-Aristotelian virtue ethics. On the basis of the MacIntyrean concept of practice, the secondary role of engineering is highlighted which echoes similar debates concerning education. This similarity is picked up to argue that the role of the engineer in relation to (...)
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  33. 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 experiences through storytelling and (...)
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  34. A directional dilemma in climate innovation.Kian Mintz-Woo - 2024 - Journal of Responsible Innovation 11 (1):2346972.
    One branch of the responsible innovation literature involves the direction of innovation: if the public or decision-makers can or should direct innovation, how should innovation be directed? This paper explicates a case study where directionality – the plurality of plausible values for innovation – is directly implicated. In this case, a key technology may require a strategy for innovation, but there are contrasting normative reasons to drive that innovation in different ways, reflecting two distinct moral values, ‘effectiveness’ and responsiveness to (...)
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  35. (1 other version)Ethics within engineering: an introduction.Wade L. Robison - 2024 - New York: Bloomsbury Academic.
    Exploring key ethical concerns in the engineering industry, this 2nd edition of Ethics Within Engineering is fully revised and updated to educate a new generation of engineers in ethical decision-making. By focusing on critical issues concerning tracking harm, contract work, and collective action, Wade L. Robison provides educational tools and solutions that match the complexity of the engineering landscape today. Two new chapters on the responsibility of the engineer and the ethical issues that arise when teams work together to solve (...)
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  36. Moral hazards and solar radiation management: Evidence from a large-scale online experiment.Philipp Schoenegger & Kian Mintz-Woo - 2024 - Journal of Environmental Psychology 95:102288.
    Solar radiation management (SRM) may help to reduce the negative outcomes of climate change by minimising or reversing global warming. However, many express the worry that SRM may pose a moral hazard, i.e., that information about SRM may lead to a reduction in climate change mitigation efforts. In this paper, we report a large-scale preregistered, money-incentivised, online experiment with a representative US sample (N = 2284). We compare actual behaviour (donations to climate change charities and clicks on climate change petition (...)
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  37. Faking Biosphere.Oskari Sivula - 2024 - In Mirko Daniel Garasic & Marcello Di Paola, The philosophy of outer space: explorations, controversies, speculations. Abingdon, Oxon: Routledge. pp. 164-176.
    This chapter examines planetary engineering and human-made biospheres from the perspective of the concept of (un)naturalness using terraformed Mars as a case study. It has been suggested that in the future it may be possible to make Mars habitable for life from Earth. This hypothetical process is known as terraforming or planetary ecosynthesis. The possibility of establishing a biosphere on Mars, or some other celestial body, opens up an interesting case of a biosphere that is unnatural. Furthermore, the concept of (...)
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  38. Technology Ethics: Responsible Innovation and Design Strategies.Steven Umbrello - 2024 - Cambridge, UK: Polity.
    Technologies cannot simply be understood as neutral tools or instruments; they embody the values of their creators and may unconsciously reinforce systematic patterns of inequality, discrimination, and oppression. -/- Technology Ethics shows how responsible innovation can be achieved. Demonstrating how design and philosophy converge, the book delves into the intricate narratives that shape our understanding of technology – from instrumentalist views to social constructivism. Yet, at its core, it champions interactionalism as the most promising and responsible narrative. Through compelling examples (...)
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  39. Quantum Technologies in Industry 4.0: Navigating the Ethical Frontier with Value-Sensitive Design.Steven Umbrello - 2024 - Procedia Computer Science 232:1654-1662.
    With the emergence of quantum technologies such as quantum computing, quantum communications, and quantum sensing, new potential has emerged for smart manufacturing and Industry 4.0. These technologies, however, present ethical concerns that must be addressed in order to ensure they are developed and used responsibly. This article outlines some of the ethical challenges that quantum technologies may raise for Industry 4.0 and presents the value sensitive design methodology as a strategy for ethics-by-design of quantum computing in Industry 4.0. This research (...)
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  40. Reframing Deception for Human-Centered AI.Steven Umbrello & Simone Natale - 2024 - International Journal of Social Robotics 16 (11-12):2223–2241.
    The philosophical, legal, and HCI literature concerning artificial intelligence (AI) has explored the ethical implications and values that these systems will impact on. One aspect that has been only partially explored, however, is the role of deception. Due to the negative connotation of this term, research in AI and Human–Computer Interaction (HCI) has mainly considered deception to describe exceptional situations in which the technology either does not work or is used for malicious purposes. Recent theoretical and historical work, however, has (...)
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  41. Communities of Quantum Technologies: Stakeholder Identification, Legitimation, and Interaction.Steven Umbrello, Zeki Seskir & Pieter E. Vermaas - 2024 - International Journal of Quantum Information 22 (07):2450012.
    This paper focuses on stakeholder identification as per the value sensitive design (VSD) approach applied to the context of quantum technologies (QT). We provide two comprehensive lists of stakeholders as starting points for VSD researchers and practitioners. These lists encompass a diverse range of organizations, including private companies, government agencies, NGOs, partnerships, and professional/trade organizations. Our aim is to facilitate the recognition, legitimation, and understanding of stakeholder interactions in the development of QT. These stakeholder lists can serve as a foundation (...)
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  42. Emerging plurality of life: Assessing the questions, challenges and opportunities.Jessica Abbott, Erik Persson & Olaf Witkowski - 2023 - Frontiers Human Dynamics 5:1153668.
    Research groups around the world are currently busy trying to invent new life in the laboratory, looking for extraterrestrial life, or making machines increasingly more life-like. In the case of astrobiology, any newly discovered life would likely be very old, but when discovered it would be new to us. In the case of synthetic organic life or life-like machines, humans will have invented life that did not exist before. Together, these endeavors amount to what we call the emerging plurality of (...)
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  43. Technology, Users and Uses: Ethics and Human Interaction Through Technology and AI.Joan Casas-Roma, Jordi Conesa & Santi Caballé (eds.) - 2023 - [Bradford]: Ethics Press.
    New technological advancements have always changed the way society and human relationships work. New affordances created by technological tools inevitable modify and affect the way people interact with such tools, as well as with one another, and with the world within which this technology is embedded. -/- Technology, Users and Uses explores and discusses ethical issues around the use of technology and AI, by focusing on the way they affect individual, social and global interactions. The collection addresses topics including social (...)
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  44. Engineering Trustworthiness in the Online Environment.Hugh Desmond - 2023 - In David Collins, Iris Vidmar Jovanović, Mark Alfano & Hale Demir-Doğuoğlu, The Moral Psychology of Trust. Lexington Books. pp. 215-237.
    Algorithm engineering is sometimes portrayed as a new 21st century return of manipulative social engineering. Yet algorithms are necessary tools for individuals to navigate online platforms. Algorithms are like a sensory apparatus through which we perceive online platforms: this is also why individuals can be subtly but pervasively manipulated by biased algorithms. How can we better understand the nature of algorithm engineering and its proper function? In this chapter I argue that algorithm engineering can be best conceptualized as a type (...)
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  45. Connected and Automated Vehicles: Integrating Engineering and Ethics.Fabio Fossa & Federico Cheli (eds.) - 2023 - Cham: Springer.
    This book reports on theoretical and practical analyses of the ethical challenges connected to driving automation. It also aims at discussing issues that have arisen from the European Commission 2020 report “Ethics of Connected and Automated Vehicles. Recommendations on Road Safety, Privacy, Fairness, Explainability and Responsibility”. Gathering contributions by philosophers, social scientists, mechanical engineers, and UI designers, the book discusses key ethical concerns relating to responsibility and personal autonomy, privacy, safety, and cybersecurity, as well as explainability and human-machine interaction. On (...)
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  46. Views of stakeholders at risk for dementia about deep brain stimulation for cognition.Eran Klein, Natalia Montes Daza, Ishan Dasgupta, Kate MacDuffie, Andreas Schönau, Garrett Flynn, Dong Song & Sara Goering - 2023 - Brain Stimulation 16 (3):742-747.
  47. The Effectiveness of Embedded Values Analysis Modules in Computer Science Education: An Empirical Study.Matthew Kopec, Meica Magnani, Vance Ricks, Roben Torosyan, John Basl, Nicholas Miklaucic, Felix Muzny, Ronald Sandler, Christo Wilson, Adam Wisniewski-Jensen, Cora Lundgren, Kevin Mills & Mark Wells - 2023 - Big Data and Society 10 (1).
    Embedding ethics modules within computer science courses has become a popular response to the growing recognition that CS programs need to better equip their students to navigate the ethical dimensions of computing technologies like AI, machine learning, and big data analytics. However, the popularity of this approach has outpaced the evidence of its positive outcomes. To help close that gap, this empirical study reports positive results from Northeastern’s program that embeds values analysis modules into CS courses. The resulting data suggest (...)
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  48. 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 and privacy (...)
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  49. The Sniper and the Psychopath: A Parable in Defense of the Weapons Industry.Duncan MacIntosh - 2023 - In Daniel Schoeni, Tobias Vestner & Kevin Govern, 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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  50. Go Big or Go Home? A New Case for Integrating Micro-ethics and Macro-ethics in Engineering Ethics Education.Andrew McAninch - 2023 - Science and Engineering Ethics 29 (3):1-18.
    In this paper, I make a novel case for an expansive approach to engineering ethics education, one that regards micro-ethics and macro-ethics as essentially complementary. Although others have voiced support for including macro-ethical reflection within engineering ethics education, I advance a stronger claim, arguing that isolating engineering ethics from macro-level issues risks rendering even micro-ethical inquiry morally meaningless. I divide my proposal into four parts. First, I clarify the distinction between micro-ethics and macro-ethics as I am construing it, defending my (...)
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