Results for 'ethics in engineering design'

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  1. Breaking the filter bubble: democracy and design.Engin Bozdag & Jeroen van den Hoven - 2015 - Ethics and Information Technology 17 (4):249-265.
    It has been argued that the Internet and social media increase the number of available viewpoints, perspectives, ideas and opinions available, leading to a very diverse pool of information. However, critics have argued that algorithms used by search engines, social networking platforms and other large online intermediaries actually decrease information diversity by forming so-called “filter bubbles”. This may form a serious threat to our democracies. In response to this threat others have developed algorithms and digital tools to combat filter bubbles. (...)
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  2. Bias in algorithmic filtering and personalization.Engin Bozdag - 2013 - Ethics and Information Technology 15 (3):209-227.
    Online information intermediaries such as Facebook and Google are slowly replacing traditional media channels thereby partly becoming the gatekeepers of our society. To deal with the growing amount of information on the social web and the burden it brings on the average user, these gatekeepers recently started to introduce personalization features, algorithms that filter information per individual. In this paper we show that these online services that filter information are not merely algorithms. Humans not only affect the design of (...)
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  3.  13
    Investigation of ethical dilemmas of school principals: comparing Turkish and Canadian principals.Engin Karadag & Esra Tekel - 2020 - Asian Journal of Business Ethics 9 (1):73-92.
    Increasingly complex working environments of school principals inevitably led them to face moral dilemmas in daily life. The aim of this research is to reveal which kinds of moral dilemmas principals fall into mostly, how principals follow the road to making decisions in the moral dilemmas, and if the nature of management affects the decision-making process of their moral dilemmas or not. For data collection process snowball sampling was used. Semi-structured interviews and vignettes which were designed by researchers were used (...)
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  4.  49
    Investigating ethical issues in engineering design.Ibo Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is (...)
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  5.  88
    Investigating ethical issues in engineering design.Ibo van de Poel - 2001 - Science and Engineering Ethics 7 (3):429-446.
    This paper aims at contributing to a research agenda in engineering ethics by exploring the ethical aspects of engineering design processes. A number of ethically relevant topics with respect to design processes are identified. These topics could be a subject for further research in the field of engineering ethics. In addition, it is argued that the way design processes are now organised and should be organised from a normative point of view is (...)
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  6.  91
    Ethics in engineering practice and research.Caroline Whitbeck - 1998 - New York: Cambridge University Press.
    Engineers encounter difficult ethical problems in their practice and in research. In many ways, these problems are like design problems: they are complex, often ill-defined; resolving them involves an iterative process of analysis and synthesis; and there can be more than one acceptable solution. This book offers a real-world, problem-centered approach to engineering ethics, using a rich collection of open-ended scenarios and case studies to develop skill in recognizing and addressing ethical issues.
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  7.  24
    Editorial: Ethics and Engineering Design.Peter-Paul Verbeek & Ibo van de Poel - 2006 - Science, Technology, and Human Values 31 (3):223-236.
    Engineering ethics and science and technology studies have until now developed as separate enterprises. The authors argue that they can learn a lot from each other. STS insights can help make engineering ethics open the black box of technology and help discern ethical issues in engineering design. Engineering ethics, on the other hand, might help STS to overcome its normative sterility. The contributions in this special issue show in various ways how the (...)
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  8.  78
    Teaching ethics in engineering education through historical analysis.David P. Billington - 2006 - Science and Engineering Ethics 12 (2):205-222.
    The goal of this paper is to stress the significance of ethics for engineering education and to illustrate how it can be brought into the mainstream of higher education in a natural way that is integrated with the teaching objectives of enriching the core meaning of engineering. Everyone will agree that the practicing engineer should be virtuous, should be a good colleague, and should use professional understanding for the common good. But these injunctions to virtue do not (...)
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  9.  10
    The Need for Ethical Reflection in Engineering Design: The Relevance of Type of Design and Design Hierarchy.A. C. van Gorp & Ibo van de Poel - 2006 - Science, Technology, and Human Values 31 (3):333-360.
    The authors explore whether the need for ethical reflection on the part of designing engineers is dependent on the type of design process. They use Vincenti's distinction between normal and radical design and different levels of design hierarchy. These two dimensions are coupled with the concept of ill-structured problems, which are problems in which possible solutions cannot be ordered on a scale from better to worse. Design problems are better structured at lower hierarchical levels and in (...)
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  10. 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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  11. Beyond Inevitability: Emphasizing the Role of Intention and Ethical Responsibility in Engineering Design.Peter Kroes, Pieter E. Vermaas, Andrew Light, Steven A. Moore, Kathryn A. Neeley & Heinz C. Luegenbiehl - 2008 - In Pieter E. Vermaas, Peter Kroes, Andrew Light & Steven A. Moore (eds.), Philosophy and Design: From Engineering to Architecture. Springer.
     
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  12.  32
    Implementing AI Ethics in the Design of AI-assisted Rescue Robots.Désirée Martin, Michael W. Schmidt & Rafaela Hillerbrand - 2023 - Ieee International Symposium on Ethics in Engineering, Science, and Technology (Ethics).
    For implementing ethics in AI technology, there are at least two major ethical challenges. First, there are various competing AI ethics guidelines and consequently there is a need for a systematic overview of the relevant values that should be considered. Second, if the relevant values have been identified, there is a need for an indicator system that helps assessing if certain design features are positively or negatively affecting their implementation. This indicator system will vary with regard to (...)
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  13.  17
    The Ethics of Engineering Ethics Education Curriculum Design, Ethics Pedagogies, and the Moral Responsibilities of Ethics Educators.Qin Zhu, Dayoung Kim & Roel Snieder - forthcoming - Teaching Ethics.
    In this paper, we argue that engineering ethics education does have moral implications. More specifically, practices in engineering ethics education can lead to negative moral consequences if not conducted appropriately. Engineering ethics educators are often passionate about teaching students ways to examine the ethical implications of engineering and technology. However, ethics educators may overlook the moral significance of their instructional classroom practices. In this paper, we discuss two issues: First, we discuss the (...)
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  14.  67
    Teaching Ethics to Engineers: Ethical Decision Making Parallels the Engineering Design Process.Bridget Bero & Alana Kuhlman - 2011 - Science and Engineering Ethics 17 (3):597-605.
    In order to fulfill ABET requirements, Northern Arizona University’s Civil and Environmental engineering programs incorporate professional ethics in several of its engineering courses. This paper discusses an ethics module in a 3rd year engineering design course that focuses on the design process and technical writing. Engineering students early in their student careers generally possess good black/white critical thinking skills on technical issues. Engineering design is the first time students are exposed (...)
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  15. Integrating ethics in design through the value-sensitive design approach.Mary L. Cummings - 2006 - Science and Engineering Ethics 12 (4):701-715.
    The Accreditation Board of Engineering and Technology (ABET) has declared that to achieve accredited status, “engineering programs must demonstrate that their graduates have an understanding of professional and ethical responsibility.” Many engineering professors struggle to integrate this required ethics instruction in technical classes and projects because of the lack of a formalized ethics-in-design approach. However, one methodology developed in human-computer interaction research, the Value-Sensitive Design approach, can serve as an engineering education tool (...)
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  16.  53
    “Things that went well — No serious injuries or deaths”: Ethical reasoning in a normal engineering design process.Peter Lloyd & Jerry Busby - 2003 - Science and Engineering Ethics 9 (4):503-516.
    We argue that considering only a few ‘big’ ethical decisions in any engineering design process — both in education and practice — only reinforces the mistaken idea of engineering design as a series of independent sub-problems. Using data collected in engineering design organisations over a seven year period, we show how an ethical component to engineering decisions is much more pervasive. We distinguish three types of ethical justification for engineering decisions: (1) consequential, (...)
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  17.  30
    The widening rift between aesthetics and ethics in the design of computational things.Sabrina Hauser, Johan Redström & Heather Wiltse - 2023 - AI and Society 38 (1):227-243.
    In the face of massively increased technological complexity, it is striking that so many of today’s computational and networked things follow design ideals honed decades ago in a much different context. These strong ideals prescribe a presentation of things as useful tools through design and a withdrawal of aspects of their functionality and complexity. Beginning in the mid-twentieth century, we trace this ‘withdrawal program’ as it has persisted in the face of increasing computational complexity. Currently, design is (...)
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  18.  9
    Practical Ethics in Civil Engineering and Environmental Systems.Kory P. Schaff & Tonatiuh Rodriguez-Nikl - 2023 - Civil Engineering and Environmental Systems 40 (3):176-94.
    ABSTRACT Ethics is receiving increased emphasis in civil and environmental engineering. However, despite the proliferation of college textbooks and courses encouraging ethical reasoning, engineers in practice often limit their understanding narrowly to their individual actions. Broader issues of global importance are usually addressed in an ad-hoc manner, if at all. Our goal is to present the topic of ethics in a way that appeals to engineers, especially those receptive to ‘systems thinking’. Our broader motivation is to encourage (...)
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  19.  42
    Teaching engineering ethics by conceptual design: The somatic Marker hypothesis.Brad J. Kallenberg - 2009 - Science and Engineering Ethics 15 (4):563-576.
    In 1998, a lead researcher at a Midwestern university submitted as his own a document that had 64 instances of strings of 10 or more words that were identical to a consultant’s masters thesis and replicated a data chart, all of whose 16 entries were identical to three and four significant figures. He was fired because his actions were wrong. Curiously, he was completely unable to see that his actions were wrong. This phenomenon is discussed in light of recent advances (...)
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  20.  11
    Ethics and Engineering: An Introduction.Behnam Taebi - 2021 - New York, NY, USA: Cambridge University Press.
    The world population is growing, yet we continue to pursue higher levels of well-being, and as a result, increasing energy demands and the destructive effects of climate change are just two of many major threats that we face. Engineers play an indispensable role in addressing these challenges, and whether they recognize it or not, in doing so they will inevitably encounter a whole range of ethical choices and dilemmas. This book examines and explains the ethical issues in engineering, showing (...)
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  21.  17
    The Ethics of Pharming: Engineering Design at the Genetic Level.Abidemi O. Ologunde & Oyinlola O. Adeyanju - 2015 - Ethics in Biology, Engineering and Medicine 6 (1-2):17-25.
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  22. 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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  23.  37
    Pragmatism and Care in Engineering Ethics.Indira Nair & William M. Bulleit - 2020 - Science and Engineering Ethics 26 (1):65-87.
    Engineering is a practice that must function in an environment of incomplete and uncertain knowledge. This environment has become even more difficult in an increasingly complex world. Engineering ethics has to be framed and taught in a way that addresses these realities. This paper proposes a combination of the philosophy of pragmatism and the ethic of care as a possible framework for the practice of engineering ethics that can provide flexibility and openness to address (...) ethics problems more realistically within the ethos and culture of engineering. Embedding values into practice, pragmatism and care provide a broad, reflective, and corrective framework for engineering ethics that can accommodate the realities in which engineering operates. It is shown that these two approaches are more consonant with design methodologies and have a natural fit with design thinking, so they mesh well with what engineers do and with the complexities of their work today. As humans more and more try to alter the socio-techno-natural world, e.g., the earth’s climate, the combination of pragmatism and care will allow enhanced ethical behavior. Alterations to complex adaptive systems will produce highly uncertain results that require engineers to have a mindset that allows them to act with humility in the face of significant uncertainty and potential catastrophic failures. (shrink)
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  24.  3
    Ethics Within Engineering.Wade L. Robison - 2016 - London: Bloomsbury.
    Engineering begins with a design problem: how to make occupants of vehicles safer, settle on an inter-face for an x-ray machine, or create more legible road signs. In choosing any particular solution, engineers must make value choices. By focusing on the solving of these problems, Ethics Within Engineering: An Introduction shows how ethics is at the intellectual core of engineering. Built around a number of engaging case studies, it presents real examples of engineering (...)
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  25. The application of ethics to engineering and the engineer’s moral responsibility: Perspectives for a research agenda.Armin Grunwald - 2001 - Science and Engineering Ethics 7 (3):415-428.
    There are different possibilities for defining the areas for the application of ethics to engineering. They range from descriptive analysis of engineers’ relationship to moral criteria and extend to normative issues on how engineers should design more “sustainable” technology. In this paper, a frame of reference is proposed, which makes it possible to elaborate in a transparent manner goals for analysis of the scope of ethics in engineering. Its point of departure is marked by two (...)
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  26.  6
    Operationalizing Ethical Becoming as a Theoretical Framework for Teaching Engineering Design Ethics.Grant A. Fore & Justin L. Hess - 2020 - Science and Engineering Ethics 26 (3):1353-1375.
    Ethical becoming represents a novel framework for teaching engineering ethics. This framework insists on the complementarity of pragmatism, care, and virtue. The dispositional nature of the self is a central concern, as are relational considerations. However, unlike previous conceptual work, this paper introduces additional lenses for exploring ethical relationality by focusing on indebtedness, harmony, potency, and reflective thought. This paper first reviews relevant contributions in the engineering ethics literature. Then, the relational process ontology of Alfred North (...)
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  27. Human Participants in Engineering Research: Notes from a Fledgling Ethics Committee.David Koepsell, Willem-Paul Brinkman & Sylvia Pont - 2015 - Science and Engineering Ethics 21 (4):1033-1048.
    For the past half-century, issues relating to the ethical conduct of human research have focused largely on the domain of medical, and more recently social–psychological research. The modern regime of applied ethics, emerging as it has from the Nuremberg trials and certain other historical antecedents, applies the key principles of: autonomy, respect for persons, beneficence, non-maleficence, and justice to human beings who enter trials of experimental drugs and devices :168–175, 2001). Institutions such as Institutional Review Boards and Ethics (...)
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  28.  54
    Ethicist as Designer: A Pragmatic Approach to Ethics in the Lab.Aimee van Wynsberghe & Scott Robbins - 2014 - Science and Engineering Ethics 20 (4):947-961.
    Contemporary literature investigating the significant impact of technology on our lives leads many to conclude that ethics must be a part of the discussion at an earlier stage in the design process i.e., before a commercial product is developed and introduced. The problem, however, is the question regarding how ethics can be incorporated into an earlier stage of technological development and it is this question that we argue has not yet been answered adequately. There is no consensus (...)
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  29.  16
    Engineering ethics and design for product safety.Kenneth L. D'Entremont - 2021 - New York: McGraw Hill.
    A systematic guide to product design and safety from an ethical engineering perspective This hands-on textbook offers a holistic approach to product safety and engineering ethics across many products, fields, and industries. The book shows, step by step, how to “design in” safety characteristics early in the engineering process using design for product safety (DfPS) methods. Written by a P.E. and skilled educator with industry experience, Engineering Ethics and Design for (...)
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  30.  21
    Ethical Considerations for a Better Collaboration Between Architects and Structural Engineers: Design of Buildings with Reinforced Concrete Frame Systems in Earthquake Zones. [REVIEW]Yonca Hurol - 2014 - Science and Engineering Ethics 20 (2):597-612.
    Architects design building structures, although structural design is the profession of structural engineers. Thus, it is better for architects and structural engineers to collaborate starting from the initial phases of the architectural design. However, this is not very common because of the contradictory design processes and value systems held within the two professions. This article provides a platform upon which architects and structural engineers can resolve the value conflicts between them by analysing phases of the structural (...)
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  31.  13
    What about Ethics in Design Bioethics?Nicole Martinez-Martin & Daphne Martschenko - 2021 - American Journal of Bioethics 21 (6):61-63.
    Design bioethics, as defined by Pavarini et al. is “purpose-built, technology-driven research tools” that provide “the chance to leverage technological advances at the interface of engin...
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  32.  45
    An approach to integrating “professional responsibility” in engineering into the capstone design experience.Steven P. Nichols - 2000 - Science and Engineering Ethics 6 (3):399-412.
    ABET 2000 Criteria encourages development of proficiency in professional responsibility in engineering as part of the undergraduate curriculum. This paper discusses the use of industrially sponsored capstone design projects to encourage active discussion of professional responsibility in engineering that naturally occurs during the engineering design process. The paper also discusses student participation in designing responses and approaches to issues such as engineering ethics. The paper includes specific examples of topics addressed by students and (...)
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  33. Building a better warbot: Ethical issues in the design of unmanned systems for military applications.Robert Sparrow - 2009 - Science and Engineering Ethics 15 (2):169-187.
    Unmanned systems in military applications will often play a role in determining the success or failure of combat missions and thus in determining who lives and dies in times of war. Designers of UMS must therefore consider ethical, as well as operational, requirements and limits when developing UMS. I group the ethical issues involved in UMS design under two broad headings, Building Safe Systems and Designing for the Law of Armed Conflict, and identify and discuss a number of issues (...)
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  34.  15
    Heredity and Hope: The Case for Genetic Screening; Babies by Design: The Ethics of Genetic Choice; The Case against Perfection: Ethics in the Age of Genetic Engineering[REVIEW]Jane Maienschein - 2009 - Isis 100:134-136.
  35.  16
    Ruth Schwartz Cowan. Heredity and Hope: The Case for Genetic Screening. 292 pp., illus., figs., index. Cambridge, Mass./London: Harvard University Press, 2008. $27.95 .Ronald M. Green. Babies by Design: The Ethics of Genetic Choice. 288 pp., illus., index. New Haven, Conn./London: Yale University Press, 2007. $26 .Michael J. Sandel. The Case against Perfection: Ethics in the Age of Genetic Engineering. x + 162 pp., index. Cambridge, Mass./London: Harvard University Press, 2007. $18.95. [REVIEW]Jane Maienschein - 2009 - Isis 100 (1):134-136.
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  36.  19
    Designing ethical artifacts has resulted in creative design.Kaira Sekiguchi & Koichi Hori - 2021 - AI and Society 36 (1):101-148.
    Ethical aspects in engineering design have become increasingly important in recent years. A typical example is the recent rise of artificial intelligence ethics. This paper applies user studies of a design support tool to empirically verify that our ethical framework improves the creativity of an engineer’s design activity. The design support tool provides an environment for the promotion of ethical design perspectives and description. The experiments focus on two functionalities: semi-automatic generation and scenario (...)
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  37.  78
    Robotic Nudges: The Ethics of Engineering a More Socially Just Human Being.Jason Borenstein & Ron Arkin - 2016 - Science and Engineering Ethics 22 (1):31-46.
    Robots are becoming an increasingly pervasive feature of our personal lives. As a result, there is growing importance placed on examining what constitutes appropriate behavior when they interact with human beings. In this paper, we discuss whether companion robots should be permitted to “nudge” their human users in the direction of being “more ethical”. More specifically, we use Rawlsian principles of justice to illustrate how robots might nurture “socially just” tendencies in their human counterparts. Designing technological artifacts in such a (...)
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  38.  27
    The Roles of Implicit Understanding of Engineering Ethics in Student Teams’ Discussion.Eun Ah Lee, Magdalena Grohman, Nicholas R. Gans, Marco Tacca & Matthew J. Brown - 2017 - Science and Engineering Ethics 23 (6):1755-1774.
    Following previous work that shows engineering students possess different levels of understanding of ethics—implicit and explicit—this study focuses on how students’ implicit understanding of engineering ethics influences their team discussion process, in cases where there is significant divergence between their explicit and implicit understanding. We observed student teams during group discussions of the ethical issues involved in their engineering design projects. Through the micro-scale discourse analysis based on cognitive ethnography, we found two possible ways (...)
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  39. The Nazi Engineers: Reflections on Technological Ethics in Hell.Eric Katz - 2011 - Science and Engineering Ethics 17 (3):571-582.
    Engineers, architects, and other technological professionals designed the genocidal death machines of the Third Reich. The death camp operations were highly efficient, so these technological professionals knew what they were doing: they were, so to speak, good engineers. As an educator at a technological university, I need to explain to my students—future engineers and architects—the motivations and ethical reasoning of the technological professionals of the Third Reich. I need to educate my students in the ethical practices of this hellish regime (...)
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  40.  22
    Caring in an Algorithmic World: Ethical Perspectives for Designers and Developers in Building AI Algorithms to Fight Fake News.Galit Wellner & Dmytro Mykhailov - 2023 - Science and Engineering Ethics 29 (4):1-16.
    This article suggests several design principles intended to assist in the development of ethical algorithms exemplified by the task of fighting fake news. Although numerous algorithmic solutions have been proposed, fake news still remains a wicked socio-technical problem that begs not only engineering but also ethical considerations. We suggest employing insights from ethics of care while maintaining its speculative stance to ask how algorithms and design processes would be different if they generated care and fight fake (...)
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  41.  57
    Design, development, and evaluation of an interactive simulator for engineering ethics education (seee).Christopher A. Chung & Michael Alfred - 2009 - Science and Engineering Ethics 15 (2):189-199.
    Societal pressures, accreditation organizations, and licensing agencies are emphasizing the importance of ethics in the engineering curriculum. Traditionally, this subject has been taught using dogma, heuristics, and case study approaches. Most recently a number of organizations have sought to increase the utility of these approaches by utilizing the Internet. Resources from these organizations include on-line courses and tests, videos, and DVDs. While these individual approaches provide a foundation on which to base engineering ethics, they may be (...)
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  42.  5
    Goodness and Infinity: The Meaning of Death and Life in al-Māturīdī and al-Dabūsī’s Metaphysics.Engin Erdem - 2020 - Kader 18 (2):470-487.
    This article aims to analyze the views of two pioneering Ḥanafī scholars, Abū Manṣūr al- Māturīdī and Abū Zayd al-Dabūsī, on the meaning of death and life in terms of their general doctrine of religion. In the first part, the general framework of Māturīdī and Dabūsī’s evidentialist conception of religion are drawn. In the second part, Māturīdī's views on the meaning of death and life and are explored. In the third part, the views of Abū Zayd al-Dabūsī on the meaning (...)
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  43.  27
    Law, ethics and medicine: Privacy impact assessment in the design of transnational public health information systems: the BIRO project.C. Di Iorio, F. Carinci, J. Azzopardi, V. Baglioni & P. Beck - 2009 - Journal of Medical Ethics 35 (12):753-761.
    Objectives: To foster the development of a privacy-protective, sustainable cross-border information system in the framework of a European public health project. Materials and methods: A targeted privacy impact assessment was implemented to identify the best architecture for a European information system for diabetes directly tapping into clinical registries. Four steps were used to provide input to software designers and developers: a structured literature search, analysis of data flow scenarios or options, creation of an ad hoc questionnaire and conduction of a (...)
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  44.  52
    Values Engineering: The Ethics of Design in Community Health Centers.Benjamin Boltind & Nancy Berlinger - 2011 - Hastings Center Report 41 (1):27-28.
    Architecture, like ethics, concerns actual rather than ideal choices. William James's remarks on ethics, at a meeting of the Yale Philosophical Club in 1890, could apply equally well to the built environment:The actual possible in this world is vastly narrower than all that is demanded; and there is always a pinch between the ideal and the actual which can only be got through by leaving part of the ideal behind. There is hardly a good which we can imagine (...)
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  45. 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, (...) and privacy review procedures, and compliance controls. We characterize some distinctive benefits of our methodology for the technology sector in particular. (shrink)
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  46.  27
    Towards including end-users in the design of prosthetic hands: Ethical analysis of survey of Australians with upper-limb difference.Mary Jean Walker, Eliza Goddard, Benjamin Stephens-Fripp & Gursel Alici - 2019 - Science and Engineering Ethics (2):1-27.
    Advances in prosthetic design should benefit people with limb difference. But empirical evidence demonstrates a lack of uptake of prosthetics among those with limb difference, including of advanced designs. Non-use is often framed as a problem of prosthetic design or a user’s response to prosthetics. Few studies investigate user experience and preferences, and those that do tend to address satisfaction or dissatisfaction with functional aspects of particular designs. This results in limited data to improve designs and, we argue, (...)
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  47.  37
    Ethics in the Clinical Application of Neural Implants.Cynthia S. Kubu & Paul J. Ford - 2007 - Cambridge Quarterly of Healthcare Ethics 16 (3):317-321.
    Once a neural implant has shown some efficacy during initial research trials, it begins to enter the world of clinical application. This culminates when the implant becomes approved for a particular indication. However, the ethical challenges continue as the technology is adopted as a standard of practice. Patient eligibility criteria, as documented by inclusion and exclusion criteria with any new treatment, are not always clearly quantified and defined. These vagaries can result in considerable debate regarding who should or should not (...)
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  48.  5
    Technology and Ethics for Engineering Students.Roli Varma - 2000 - Bulletin of Science, Technology and Society 20 (3):217-224.
    Many engineering schools still do not allocate enough resources to the process of understanding the social and ethical dimensions of scientific and technological activities. This article argues that engineering curriculum in the United States should include courses that use theories and concepts from humanities and social sciences to study issues confronting the engineering profession. On the theoretical front, engineering students need to understand favorable and unfavorable consequences of technology-based progress, social and political qualities of technological designs, (...)
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  49.  41
    Implementing Ethics in Healthcare AI-Based Applications: A Scoping Review.Robyn Clay-Williams, Elizabeth Austin & Magali Goirand - 2021 - Science and Engineering Ethics 27 (5):1-53.
    A number of Artificial Intelligence (AI) ethics frameworks have been published in the last 6 years in response to the growing concerns posed by the adoption of AI in different sectors, including healthcare. While there is a strong culture of medical ethics in healthcare applications, AI-based Healthcare Applications (AIHA) are challenging the existing ethics and regulatory frameworks. This scoping review explores how ethics frameworks have been implemented in AIHA, how these implementations have been evaluated and whether (...)
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  50.  54
    Design, Development, and Evaluation of a Second Generation Interactive Simulator for Engineering Ethics Education (SEEE2).Michael Alfred & Christopher A. Chung - 2012 - Science and Engineering Ethics 18 (4):689-697.
    This paper describes a second generation Simulator for Engineering Ethics Education. Details describing the first generation activities of this overall effort are published in Chung and Alfred (Sci Eng Ethics 15:189–199, 2009). The second generation research effort represents a major development in the interactive simulator educational approach. As with the first generation effort, the simulator places students in first person perspective scenarios involving different types of ethical situations. Students must still gather data, assess the situation, and make (...)
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