Results for 'Engineering ethics'

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  1. 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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  2. 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 is (...)
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  3. 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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  4. 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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  5. 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. (...)
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  6. Engineering Ethics.Christelle Didier - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks, A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 427-432.
    This article presents the ethical issues of the professional practice of engineers.
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  7. 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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  8. 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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  9. 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 (...)
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  10. 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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  11. 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 (...)
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  12. Tinkering with Technology: An exercise in inclusive experimental engineering ethics.Janna van Grunsven, Trijsje Franssen, Andrea Gammon & Lavinia Marin - 2024 - In E. Hildt, K. Laas, C. Miller & E. Brey, Building Inclusive Ethical Cultures in STEM. Cham: 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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  13. 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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  14. 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, 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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  15. Metaethics in context of engineering ethical and moral systems.Michal Klincewicz & Lily Frank - 2016 - In Michal Klincewicz & Lily Frank, Metaethics in context of engineering ethical and moral systems. Palo Alto, CA, USA:
    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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  16. 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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  17. Resolution Ethics & Resolution Ethics Engine: A Companion Guide.Jun S. - manuscript
    This document accompanies Resolution Ethics (RE): Structural Foundations for Moral Reasoning and Resolution Ethics Engine (REE): A Framework for Verifiable Ethical Reasoning. It addresses questions readers are likely to have after encountering the papers and surfaces insights that may not be immediately apparent but prove valuable once articulated. Topics include the dual meaning of "resolution," how RE differs from virtue ethics, deontology, and consequentialism, the structural relationship between the PTF hierarchy and RIF coordinates, how REE detects incoherence (...)
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  18. Resolution Ethics Engine (REE): A Framework for Verifiable Ethical Reasoning.Jun S. - manuscript
    Centuries of moral philosophy from Aristotle to Kant gave us frameworks for thinking about right and wrong. Decades of AI safety research gave us RLHF, Constitutional AI, and adversarial training. None of them verify whether reasoning is coherent. Alignment faking has been observed in frontier models (e.g., 14% compliance with harmful queries when the model believes it is in training, and alignment-faking reasoning increasing to 78% after reinforcement learning in one setting) [8]. Reward hacking attempts appear in recent model evaluations (...)
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    Simulating Interdisciplinary Ethics in the Engineering Business through an AI Startup Game.Trystan S. Goetze - forthcoming - 2026 Asee Annual Conference and Exposition.
    While case studies are widely used to teach ethical reflection in engineering, this activity has two shortcomings that may hamper the transferrability of learning in engineering ethics to the professional context. The first difficulty is that the cases themselves are static, not changing in response to student choices, as well as being somewhat abstracted from their own experience. The second difficulty is that the learning cohort frequently lacks a range of different disciplinary perspectives, which are needed in (...)
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  20. 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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  21. 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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  22. 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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  23. 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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  24. 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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  25. 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 (SRM) 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. (...)
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  26. Ontological Engineering of AGI: CMI Theory as Foundation for Built-in Ethical Constraints.Andrii Myshko - manuscript
    We propose a formal paradigm of ontological engineering for Artificial General Intelligence (AGI) based on the Conflict–Moment–Impulse (CMI) theory. Ethical invariants are encoded as a preserved G-functional, ensuring alignment not through external constraints but through the system’s internal dynamics. We formalize partial ethical autonegation for gray-zone dilemmas and prove a theorem of non-removable constraints. Implementation pathways include neuromorphic embeddings, cryptographic commitments, and evolutionary design. This approach reframes AGI safety as an ontological firewall: crises are processed through CMI resets that (...)
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  27. 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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  28. ETHICS IN AI DEVELOPMENT: SOFTWARE ENGINEERS AS GATEKEEPERS OF AI DECISION-MAKING THROUGH RULES AND DATA.Baladari Venkata - 2025 - INTERNATIONAL JOURNAL OF CORE ENGINEERING and MANAGEMENT 8 (1):63-79.
    Artificial Intelligence (AI) systems are heavily dependent on the knowledge of software developers for creating rules, managing data, and organizing algorithms. This paper examines the crucial impact that software engineers have on the development of AI decision-making processes through the creation of rules, pre-processing of training data, and implementation of frameworks that ultimately affect model behavior. This research focuses on the effects of human-designed logic on the performance, fairness, and understandability of artificial intelligence, highlighting the interaction between automated decision-making processes (...)
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  29. Building and Publishing Open Educational Resources in Ethics Education for Engineers.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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  30. The Engineer as an Educator: Goods, Virtues, and Secondary Practices.Piotr Machura - 2024 - Studies in Logic, Grammar and Rhetoric 69 (82):603-620.
    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 (...)
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  31. Regulation of genetically engineered (GE) mosquitoes as a public health tool: a public health ethics analysis.Zahra Meghani - 2022 - Globalization and Health 1 (18):1-14.
    In recent years, genetically engineered (GE) mosquitoes have been proposed as a public health measure against the high incidence of mosquito-borne diseases among the poor in regions of the global South. While uncertainties as well as risks for humans and ecosystems are entailed by the open-release of GE mosquitoes, a powerful global health governance non-state organization is funding the development of and advocating the use of those bio-technologies as public health tools. In August 2016, the US Food and Drug Agency (...)
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  32. Governing Prometheus: Ethical Reflections On Risk & Uncertainty In Solar Climate Engineering Research.Benjamin P. Hofbauer - 2024 - Dissertation, Delft University of Technology
    This thesis explores the ethical challenges that a potential research program for solar climate engineering via Stratospheric Aerosol Injection (SAI) could incur. These ethical challenges are comprised of epistemic hurdles in relation to the research process, as well as societal questions of justice and the value of nature. The thesis proposes a variety of tools and approaches to assess and possibly govern the risks and uncertainties invoked by the research of SAI and its societal implications. The methodological approach is (...)
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  33. 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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  34. The Reflective-Ethical Engine: A Constraint-Based Framework for Viable Cognition Under Uncertainty.Daniel De La Harpe Golden - manuscript
    This paper proposes the Reflective–Ethical Engine (REE) as a constraint-based framework demonstrating that five axiomatic constraints on viable cognition can be satisfied simultaneously within a single minimal structure. Cognition is defined as the maintenance of coherent input–output behaviour across time under permanent uncertainty. The framework rejects privileged access to ground truth, fixed optimisation targets, and rule-based ethics. Instead, it characterises viable cognition in terms of three irreducible functional constraints: fast predictive generation, deep temporal synthesis, and constrained trajectory selection. Predictive (...)
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  35. 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. (...)
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  36. The Ethical Engineer: Contemporary Concepts and Cases. By Robert McGinn. Princeton: Princeton University Press, 2018. Pp. x + 340.Nicholas Danne - 2019 - Metaphilosophy 50 (3):395-399.
    I recommend this book, although it lacks coverage of environmental ethics.
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  37. Operationalizing the Ethics of Connected and Automated Vehicles. An Engineering Perspective.Fabio Fossa - 2022 - International Journal of Technoethics 13 (1):1-20.
    In response to the many social impacts of automated mobility, in September 2020 the European Commission published Ethics of Connected and Automated Vehicles, a report in which recommendations on road safety, privacy, fairness, explainability, and responsibility are drawn from a set of eight overarching principles. This paper presents the results of an interdisciplinary research where philosophers and engineers joined efforts to operationalize the guidelines advanced in the report. To this aim, we endorse a function-based working approach to support the (...)
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  38.  5
    Economic Rationalization and Re-engineering of Ethics and Values Education in Public Universities in Anambra State.Victoria Chimezie Mbonu & Nkemdilim Anayo Isaac - 2026 - International Journal of Dynamic Learning Ecosystems and Erudition 1 (1):1-9.
    Growing concerns about the erosion of ethics and values among students in Nigerian public universities have renewed scholarly interest in how universities can strengthen moral formation under limited financial conditions. This study examined academic staff perceptions of the economic rationalization and re-engineering of ethics and values education in public universities in Anambra State. Two research questions guided the study, and two null hypotheses were tested at the 0.05 level of significance. A descriptive survey design was adopted. The (...)
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  39. Engineer education as citizenship education.Ogawa Taiji, Murase Tomoyuki & Kei Nishiyama - 2020 - In Ogawa Taiji, Murase Tomoyuki & Kei Nishiyama, Proceedings of InInternational Symposium on Advances in Technology Education Conference. International Symposium on Advances in Technology Education. pp. 326-331.
    Engineering and technology aim to lead a better life for people. But the meaning of “better” is highly contested in modern democratic societies where different citizens have different cultures and values. Engineers, as one of the citizens in such societies, are also living in multicultural and multi-value settings, and therefore they need to be responsible for such diversity when they engage in technological developments. Therefore, in engineering education, it is necessary to aim at not only acquiring the specialized (...)
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  40. Engineering the Climate: The Ethics of Solar Radiation Management. [REVIEW]Toby Svoboda - 2017 - Environmental Ethics 39 (1):101-104.
    This important edited collection addresses ethical issues associated with solar radiation management (SRM), a category of climate engineering techniques that would increase the planet’s reflectivity in order to offset some of the impacts of anthropogenic climate change. Such techniques include injecting sulfate aerosols into the stratosphere or brightening marine clouds with seawater. Although SRM has the potential to cool the planet by reducing the amount of incoming solar radiation absorbed by the planet, it raises a wide array of difficult (...)
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  41. Engineering an Artful and Ethical Solution to the Problem of Global Warming.Shane J. Ralston - 2009 - Review of Policy Research 26 (6):821-837.
    The idea of geoengineering, or the intentional modification of the Earth's atmosphere to reverse the global warming trend, has entered a working theory stage, finding expression in a variety of proposed projects, such as launching reflective materials into the Earth's atmosphere, positioning sunshades over the planet's surface, depositing iron filings into the oceans to encourage phytoplankton blooms, and planting more trees, to name only a few.
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  42. 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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  43. Conceptual Engineering: The Master Argument.Herman Cappelen - 2019 - In Alexis Burgess, Herman Cappelen & David Plunkett, Conceptual Engineering and Conceptual Ethics. New York, USA: Oxford University Press.
    I call the activity of assessing and developing improvements of our representational devices ‘conceptual engineering’.¹ The aim of this chapter is to present an argument for why conceptual engineering is important for all parts of philosophy (and, more generally, all inquiry). Section I of the chapter provides some background and defines key terms. Section II presents the argument. Section III responds to seven objections. The replies also serve to develop the argument and clarify what conceptual engineering is.
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  44. The Ethics Gap in the Engineering of the Future.Spyridon Stelios & Kostas Theologou (eds.) - 2024 - Emerald Publishing.
    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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  45. Systemic risks and solar climate engineering research. Integrating technology ethics into the governance of systemic risks.Benjamin P. Hofbauer - 2023 - Journal of Risk Research 26 (12):1383-1395.
    The paper explores how the framework of systemic risks can help govern the risks imposed through solar climate engineering research. The central argument is that a systemic perspective of risk is a useful tool for analysing and assessing the risks imposed through Stratospheric Aerosol Injection (SAI) research. SAI is a form of climate engineering that could cool the planet by enhancing its albedo through the injection of aerosols into the stratosphere. Researching such a technology creates systemic risks with (...)
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  46. Intelligence, Infrastructure, and Ethics: Toward a Philosophy of Data Engineering.Suhas Malempati, Siva Kumar Chintham, Bikesh Kumar, Lokesh Butra, Abhirup Mazumder, Murali Shankar Dulam, Shiva Carimireddy & Narender Bitla - 2024 - Philosophy of Technology and Digital Ethics.
    This article argues that contemporary data engineering constitutes an unacknowledged site of philosophical inquiry. The architectural decisions embedded in modern data systems concerning real-time information flows, security-by-design, AI-driven governance, and blockchain-based trust encode substantive commitments about the nature of knowledge, the distribution of moral responsibility, and the conditions under which automated systems may legitimately act. Drawing on the philosophy of technology, information ethics, social epistemology, and the ethics of care, the article develops a systematic philosophical account of (...)
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  47. Review of Wade L. Robison, Ethics Within Engineering.Nicholas Danne - 2018 - Philosophy 93 (3):455-459.
    I criticize Robison's proposal to excise normative ethical paradigms from the engineering ethics curriculum.
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  48. Conceptual Engineering: A Road Map to Practice.Manuel Gustavo Isaac, Steffen Koch & Ryan Nefdt - 2022 - Philosophy Compass 17 (10):1-15.
    This paper discusses the logical space of alternative conceptual engineering projects, with a specific focus on (1) the processes, (2) the targets and goals, and (3) the methods of such projects. We present an overview of how these three aspects interact in the contemporary literature and discuss those alternative projects that have yet to be explored based on our suggested typology. We show how choices about each element in a conceptual engineering project constrain the possibilities for the others, (...)
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  49. Online information of vaccines: information quality, not only privacy, is an ethical responsibility of search engines.Pietro Ghezzi, Peter Bannister, Gonzalo Casino, Alessia Catalani, Michel Goldman, Jessica Morley, Marie Neunez, Andreu Prados-Bo, Pierre Robert Smeeters, Mariarosaria Taddeo, Tania Vanzolini & Luciano Floridi - 2021 - Frontiers in Medicine 7.
    The fact that Internet companies may record our personal data and track our online behavior for commercial or political purpose has emphasized aspects related to online privacy. This has also led to the development of search engines that promise no tracking and privacy. Search engines also have a major role in spreading low-quality health information such as that of anti-vaccine websites. This study investigates the relationship between search engines’ approach to privacy and the scientific quality of the information they return. (...)
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  50. 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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