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  1. Principles of biomedical ethics.Tom L. Beauchamp - 1994 - New York: Oxford University Press. Edited by James F. Childress.
    Over the course of its first seven editions, Principles of Biomedical Ethics has proved to be, globally, the most widely used, authored work in biomedical ethics. It is unique in being a book in bioethics used in numerous disciplines for purposes of instruction in bioethics. Its framework of moral principles is authoritative for many professional associations and biomedical institutions-for instruction in both clinical ethics and research ethics. It has been widely used in several disciplines for purposes of teaching in the (...)
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  • Does Studying ‘Ethics’ Improve Engineering Students’ Meta-Moral Cognitive Skills?Reena Cheruvalath - 2019 - Science and Engineering Ethics 25 (2):583-596.
    This study examines the assumption that training in professional ethics is a predictor of the meta-moral cognitive ability of engineering students. The main purpose of the study was to check the difference in the meta-moral cognitive abilities between those students who studied a course on professional ethics, as part of the engineering curriculum, and those who did not undertake such a course. Using the survey method, the author conducted a pilot study amongst 243 engineering undergraduates. The meta-moral cognitive awareness inventory (...)
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  • Self-Driving Cars and Engineering Ethics: The Need for a System Level Analysis.Jason Borenstein, Joseph R. Herkert & Keith W. Miller - 2019 - Science and Engineering Ethics 25 (2):383-398.
    The literature on self-driving cars and ethics continues to grow. Yet much of it focuses on ethical complexities emerging from an individual vehicle. That is an important but insufficient step towards determining how the technology will impact human lives and society more generally. What must complement ongoing discussions is a broader, system level of analysis that engages with the interactions and effects that these cars will have on one another and on the socio-technical systems in which they are embedded. To (...)
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  • Anticipating the Interaction between Technology and Morality: A Scenario Study of Experimenting with Humans in Bionanotechnology.Marianne Boenink, Tsjalling Swierstra & Dirk Stemerding - 2010 - Studies in Ethics, Law, and Technology 4 (2).
    During the last decades several tools have been developed to anticipate the future impact of new and emerging technologies. Many of these focus on ‘hard,’ quantifiable impacts, investigating how novel technologies may affect health, environment and safety. Much less attention is paid to what might be called ‘soft’ impacts: the way technology influences, for example, the distribution of social roles and responsibilities, moral norms and values, or identities. Several types of technology assessment and of scenario studies can be used to (...)
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  • Engineering Student’s Ethical Awareness and Behavior: A New Motivational Model.Diana Bairaktarova & Anna Woodcock - 2017 - Science and Engineering Ethics 23 (4):1129-1157.
    Professional communities are experiencing scandals involving unethical and illegal practices daily. Yet it should not take a national major structure failure to highlight the importance of ethical awareness and behavior, or the need for the development and practice of ethical behavior in engineering students. Development of ethical behavior skills in future engineers is a key competency for engineering schools as ethical behavior is a part of the professional identity and practice of engineers. While engineering educators have somewhat established instructional methods (...)
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  • An Ethical (Descriptive) Framework for Judgment of Actions and Decisions in the Construction Industry and Engineering–Part I.Omar J. Alkhatib & Alaa Abdou - 2018 - Science and Engineering Ethics 24 (2):585-606.
    The construction industry is usually characterized as a fragmented system of multiple-organizational entities in which members from different technical backgrounds and moral values join together to develop a particular business or project. The greatest challenge in the construction process for the achievement of a successful practice is the development of an outstanding reputation, which is built on identifying and applying an ethical framework. This framework should reflect a common ethical ground for myriad people involved in this process to survive and (...)
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  • A Value-Sensitive Design Approach to Intelligent Agents.Steven Umbrello & Angelo Frank De Bellis - 2018 - In Yampolskiy Roman (ed.), Artificial Intelligence Safety and Security. CRC Press. pp. 395-410.
    This chapter proposed a novel design methodology called Value-Sensitive Design and its potential application to the field of artificial intelligence research and design. It discusses the imperatives in adopting a design philosophy that embeds values into the design of artificial agents at the early stages of AI development. Because of the high risk stakes in the unmitigated design of artificial agents, this chapter proposes that even though VSD may turn out to be a less-than-optimal design methodology, it currently provides a (...)
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  • A Pragmatic Approach to Ethical Decision-Making in Engineering Practice: Characteristics, Evaluation Criteria, and Implications for Instruction and Assessment.Qin Zhu & Brent K. Jesiek - 2017 - Science and Engineering Ethics 23 (3):663-679.
    This paper begins by reviewing dominant themes in current teaching of professional ethics in engineering education. In contrast to more traditional approaches that simulate ethical practice by using ethical theories to reason through micro-level ethical dilemmas, this paper proposes a pragmatic approach to ethics that places more emphasis on the practical plausibility of ethical decision-making. In addition to the quality of ethical justification, the value of a moral action also depends on its effectiveness in solving an ethical dilemma, cultivating healthy (...)
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  • Changing the Engineering Student Culture with Respect to Academic Integrity and Ethics.Tammy VanDeGrift, Heather Dillon & Loreal Camp - 2017 - Science and Engineering Ethics 23 (4):1159-1182.
    Engineers create airplanes, buildings, medical devices, and software, amongst many other things. Engineers abide by a professional code of ethics to uphold people’s safety and the reputation of the profession. Likewise, students abide by a code of academic integrity while learning the knowledge and necessary skills to prepare them for the engineering and computing professions. This paper reports on studies designed to improve the engineering student culture with respect to academic integrity and ethics. To understand the existing culture at a (...)
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  • Imaginative Value Sensitive Design: Using Moral Imagination Theory to Inform Responsible Technology Design.Steven Umbrello - 2020 - Science and Engineering Ethics 26 (2):575-595.
    Safe-by-Design (SBD) frameworks for the development of emerging technologies have become an ever more popular means by which scholars argue that transformative emerging technologies can safely incorporate human values. One such popular SBD methodology is called Value Sensitive Design (VSD). A central tenet of this design methodology is to investigate stakeholder values and design those values into technologies during early stage research and development (R&D). To accomplish this, the VSD framework mandates that designers consult the philosophical and ethical literature to (...)
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  • Developing Tools to Counteract and Prevent Suicide Bomber Incidents: A Case Study in Value Sensitive Design.Lambèr Royakkers & Marc Steen - 2017 - Science and Engineering Ethics 23 (4):1041-1058.
    Developers and designers make all sorts of moral decisions throughout an innovation project. In this article, we describe how teams of developers and designers engaged with ethics in the early phases of innovation based on case studies in the SUBCOP project. For that purpose, Value Sensitive Design will be used as a reference. Specifically, we focus on the following two research questions: How can researchers/developers learn about users’ perspectives and values during the innovation process? and How can researchers/developers take into (...)
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  • Methods for Practising Ethics in Research and Innovation: A Literature Review, Critical Analysis and Recommendations.Wessel Reijers, David Wright, Philip Brey, Karsten Weber, Rowena Rodrigues, Declan O’Sullivan & Bert Gordijn - 2018 - Science and Engineering Ethics 24 (5):1437-1481.
    This paper provides a systematic literature review, analysis and discussion of methods that are proposed to practise ethics in research and innovation. Ethical considerations concerning the impacts of R&I are increasingly important, due to the quickening pace of technological innovation and the ubiquitous use of the outcomes of R&I processes in society. For this reason, several methods for practising ethics have been developed in different fields of R&I. The paper first of all presents a systematic search of academic sources that (...)
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  • Understanding Engineers’ Responsibilities: A Prerequisite to Designing Engineering Education.Colleen Murphy & Paolo Gardoni - 2017 - Science and Engineering Ethics:1-4.
    The development of the curriculum for engineering education should be based on a comprehensive understanding of engineers’ responsibilities. The responsibilities that are constitutive of being an engineer include striving to fulfill the standards of excellence set by technical codes; to improve the idealized models that engineers use to predict, for example, the behavior of alternative designs; and to achieve the internal goods such as safety and sustainability as they are reflected in the design codes. Globalization has implications for these responsibilities (...)
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  • Strategies for Teaching Professional Ethics to IT Engineering Degree Students and Evaluating the Result.Rafael Miñano, Ángel Uruburu, Ana Moreno-Romero & Diego Pérez-López - 2017 - Science and Engineering Ethics 23 (1):263-286.
    This paper presents an experience in developing professional ethics by an approach that integrates knowledge, teaching methodologies and assessment coherently. It has been implemented for students in both the Software Engineering and Computer Engineering degree programs of the Technical University of Madrid, in which professional ethics is studied as a part of a required course. Our contribution of this paper is a model for formative assessment that clarifies the learning goals, enhances the results, simplifies the scoring and can be replicated (...)
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  • What Values in Design? The Challenge of Incorporating Moral Values into Design.Noëmi Manders-Huits - 2011 - Science and Engineering Ethics 17 (2):271-287.
    Recently, there is increased attention to the integration of moral values into the conception, design, and development of emerging IT. The most reviewed approach for this purpose in ethics and technology so far is Value-Sensitive Design (VSD). This article considers VSD as the prime candidate for implementing normative considerations into design. Its methodology is considered from a conceptual, analytical, normative perspective. The focus here is on the suitability of VSD for integrating moral values into the design of technologies in a (...)
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  • Martin Peterson: The Ethics of Technology: A Geometric Analysis of Five Moral Principles: Oxford University Press, 2017, 252 pp, USD 74.00 , ISBN: 9780190652265.Gert-Jan C. Lokhorst - 2018 - Science and Engineering Ethics 24 (5):1641-1643.
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  • Holding the Project Accountable: Research Governance, Ethics, and Democracy.Matthias Leese - 2017 - Science and Engineering Ethics 23 (6):1597-1616.
    This paper seeks to address research governance by highlighting the notion of public accountability as a complementary tool for the establishment of an ethical resonance space for emerging technologies. Public accountability can render development and design process of emerging technologies transparent through practices of holding those in charge of research accountable for their actions, thereby fostering ethical engagement with their potential negative consequences or side-effects. Through practices such as parliamentary questions, audits, and open letters emerging technologies could be effectively rendered (...)
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  • The Strength of Ethical Matrixes as a Tool for Normative Analysis Related to Technological Choices: The Case of Geological Disposal for Radioactive Waste.Céline Kermisch & Christophe Depaus - 2018 - Science and Engineering Ethics 24 (1):29-48.
    The ethical matrix is a participatory tool designed to structure ethical reflection about the design, the introduction, the development or the use of technologies. Its collective implementation, in the context of participatory decision-making, has shown its potential usefulness. On the contrary, its implementation by a single researcher has not been thoroughly analyzed. The aim of this paper is precisely to assess the strength of ethical matrixes implemented by a single researcher as a tool for conceptual normative analysis related to technological (...)
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  • Ethical Design of Intelligent Assistive Technologies for Dementia: A Descriptive Review.Marcello Ienca, Tenzin Wangmo, Fabrice Jotterand, Reto W. Kressig & Bernice Elger - 2018 - Science and Engineering Ethics 24 (4):1035-1055.
    The use of Intelligent Assistive Technology in dementia care opens the prospects of reducing the global burden of dementia and enabling novel opportunities to improve the lives of dementia patients. However, with current adoption rates being reportedly low, the potential of IATs might remain under-expressed as long as the reasons for suboptimal adoption remain unaddressed. Among these, ethical and social considerations are critical. This article reviews the spectrum of IATs for dementia and investigates the prevalence of ethical considerations in the (...)
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  • Toward a Method for Exposing and Elucidating Ethical Issues with Human Cognitive Enhancement Technologies.Bjørn Hofmann - 2017 - Science and Engineering Ethics 23 (2):413-429.
    To develop a method for exposing and elucidating ethical issues with human cognitive enhancement. The intended use of the method is to support and facilitate open and transparent deliberation and decision making with respect to this emerging technology with great potential formative implications for individuals and society. Literature search to identify relevant approaches. Conventional content analysis of the identified papers and methods in order to assess their suitability for assessing HCE according to four selection criteria. Method development. Amendment after pilot (...)
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  • Smart-Glasses: Exposing and Elucidating the Ethical Issues.Bjørn Hofmann, Dušan Haustein & Laurens Landeweerd - 2017 - Science and Engineering Ethics 23 (3):701-721.
    The objective of this study is to provide an overview over the ethical issues relevant to the assessment, implementation, and use of smart-glasses. The purpose of the overview is to facilitate deliberation, decision making, and the formation of knowledge and norms for this emerging technology. An axiological question-based method for human cognitive enhancement including an extensive literature search on smart-glasses is used to identify relevant ethical issues. The search is supplemented with relevant ethical issues identified in the literature on human (...)
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  • Using Insights from Applied Moral Psychology to Promote Ethical Behavior Among Engineering Students and Professional Engineers.Scott D. Gelfand - 2016 - Science and Engineering Ethics 22 (5):1513-1534.
    In this essay I discuss a novel engineering ethics class that has the potential to significantly decrease the likelihood that students will inadvertently or unintentionally act unethically in the future. This class is different from standard engineering ethics classes in that it focuses on the issue of why people act unethically and how students can avoid a variety of hurdles to ethical behavior. I do not deny that it is important for students to develop cogent moral reasoning and ethical decision-making (...)
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  • Principles of Biomedical Ethics.Ezekiel J. Emanuel, Tom L. Beauchamp & James F. Childress - 1995 - Hastings Center Report 25 (4):37.
    Book reviewed in this article: Principles of Biomedical Ethics. By Tom L. Beauchamp and James F. Childress.
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  • Safe-(for whom?)-by-Design: Adopting a Posthumanist Ethics for Technology Design.Steven Umbrello - 2018 - Dissertation, York University
    This research project aims to accomplish two primary objectives: (1) propose an argument that a posthuman ethics in the design of technologies is sound and thus warranted and, (2) how can existent SBD approaches begin to envision principled and methodological ways of incorporating nonhuman values into design. In order to do this this MRP will provide a rudimentary outline of what constitutes SBD approaches. A particular design approach - Value Sensitive Design (VSD) - is taken up as an illustrative example (...)
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