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  1. Integrity and the University.Damian Cox, Jacqueline Boaks & Michael P. Levine - 2024 - Philosophy of Management 23 (1):109-124.
    This paper examines the idea of the integrity of academic practice. We offer an account of the integrity of professional practice in general before applying it to academic professional practice within the contemporary, western university. We then introduce the concept of integrity traps and explain how they can make it difficult for academics working within a contemporary university environment to maintain their integrity.
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  • Disengagement with ethics in robotics as a tacit form of dehumanisation.Karolina Zawieska - 2020 - AI and Society 35 (4):869-883.
    Over the past two decades, ethical challenges related to robotics technologies have gained increasing interest among different research and non-academic communities, in particular through the field of roboethics. While the reasons to address roboethics are clear, why not to engage with ethics needs to be better understood. This paper focuses on a limited or lacking engagement with ethics that takes place within some parts of the robotics community and its implications for the conceptualisation of the human being. The underlying assumption (...)
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  • Responsibilities for Healthcare - Kantian Reflections.Garrath Williams & Ruth Chadwick - 2012 - Cambridge Quarterly of Healthcare Ethics 21 (2):155-165.
    This paper explores some ways in which Immanuel Kant’s ethical theory can be brought to bear on professional and health care ethics. Health care professionals are not mere individuals acting upon their own ends. Rather, their principles of action must be defined in terms of participation in a cooperative endeavor. This generates complex questions as to how well their roles mesh with one another and whether they comprise a well-formed collective agent. We argue that Kant’s ethics therefore, and perhaps surprisingly, (...)
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  • Just Another Day at the Office.Don Welch - 1993 - Professional Ethics, a Multidisciplinary Journal 2 (3-4):3-14.
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  • Trust in farm data sharing: reflections on the EU code of conduct for agricultural data sharing.Simone van der Burg, Leanne Wiseman & Jovana Krkeljas - 2020 - Ethics and Information Technology 23 (3):185-198.
    Digital farming technologies promise to help farmers make well-informed decisions that improve the quality and quantity of their production, with less labour and less impact on the environment. This future, however, can only become a reality if farmers are willing to share their data with agribusinesses that develop digital technologies. To foster trust in data sharing, in Europe the EU Code of Conduct for agricultural data sharing by contractual agreement was launched in 2018 which encourages transparency about data use. This (...)
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  • Connecting to the Heart: Teaching Value-Based Professional Ethics.Roel Snieder & Qin Zhu - 2020 - Science and Engineering Ethics 26 (4):2235-2254.
    Engineering programs in the United States have been experimenting with diverse pedagogical approaches to educate future professional engineers. However, a crucial dimension of ethics education that focuses on the values, personal commitments, and meaning of engineers has been missing in many of these pedagogical approaches. We argue that a value-based approach to professional ethics education is critically needed in engineering education, because such an approach is indispensable for cultivating self-reflective and socially engaged engineers. This paper starts by briefly comparing two (...)
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  • An Ethics of Commitment for Engineers.Aaron Pratt Shepherd - 2022 - Science and Engineering Ethics 28 (5):1-17.
    This paper follows a trend in engineering ethics away from universal moral theories towards more contingent/contextual approaches such as pragmatist and care ethics. These methodological considerations are treated in the context of the Volkswagen Diesel Emissions scandal as a case study in the “paradox of loyalty,”. Building upon a combined pragmatist-care ethics approach, the article outlines an “ethics of commitment,” inspired by the moral philosophy of Josiah Royce. The ethics of commitment locates the site of moral value in an individual’s (...)
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  • Engineering Codes of Ethics and the Duty to Set a Moral Precedent.Eugene Schlossberger - 2016 - Science and Engineering Ethics 22 (5):1333-1344.
    Each of the major engineering societies has its own code of ethics. Seven “common core” clauses and several code-specific clauses can be identified. The paper articulates objections to and rationales for two clauses that raise controversy: do engineers have a duty to provide pro bono services and/or speak out on major issues, and to associate only with reputable individuals and organizations? This latter “association clause” can be justified by the “proclamative principle,” an alternative to Kant’s universalizability requirement. At the heart (...)
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  • Standards of Conducts for Biostatisticians and Stem Cell Researchers: A Call for Self-formulated Aspirational Ethics Over Built-in Prohibitive Ethics.Keiko Sato & Mika Suzuki - 2022 - Science and Engineering Ethics 28 (2):1-20.
    We proposed the Standards of Conducts to provide a general framework that will serve as the basis for guiding each biostatistician and stem cell researcher to formulate their personal standards, rather than as rules with which they are required to comply. Given the responsibility and characteristics of their work, they are expected to maintain independence and work autonomously as professionals. Each of the Standards of Conducts comprises a preamble, mission and values to uphold, Standards of Conducts, and background. When one (...)
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  • When Ethics is a Technical Matter: Engineers’ Strategic Appeal to Ethical Considerations in Advocating for System Integrity.Orana Sandri, Sarah Holdsworth, Jan Hayes & Sarah Maslen - 2021 - Science and Engineering Ethics 27 (4):1-19.
    Situated in critiques of the “moral muteness” of technical rationality, we examine concepts of ethics and the avoidance of ethical language among Australian gas pipeline engineers. We identify the domains in which they saw ethics as operating, including public safety, environmental protection, sustainability, commercial probity, and modern slavery. Particularly with respect to ethical matters that bear on public safety, in the course of design and operational activities, engineers principally advocated for action using technical language, avoiding reference to potential consequences such (...)
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  • Engineers and Active Responsibility.Udo Pesch - 2015 - Science and Engineering Ethics 21 (4):925-939.
    Knowing that technologies are inherently value-laden and systemically interwoven with society, the question is how individual engineers can take up the challenge of accepting the responsibility for their work? This paper will argue that engineers have no institutional structure at the level of society that allows them to recognize, reflect upon, and actively integrate the value-laden character of their designs. Instead, engineers have to tap on the different institutional realms of market, science, and state, making their work a ‘hybrid’ activity (...)
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  • Bioethics consultation in the private sector: What is an appropriate model. [REVIEW]Kayhan Parsi - 2005 - HEC Forum 17 (2):135-145.
  • “Mind the gaps”: An empirical approach to engineering ethics, 1997–2001. [REVIEW]Robert E. McGinn - 2003 - Science and Engineering Ethics 9 (4):517-542.
    A survey on ethical issues in engineering was administered over a five-year period to Stanford engineering students and practicing engineers. Analysis of its results strongly suggests that important disconnects exist between the education of engineering students regarding ethical issues in engineering on the one hand, and the realities of contemporary engineering practice on the other. Two noteworthy consequences of these gaps are that the views of engineering students differ substantially over what makes an issue an ethical issue, while practicing engineers (...)
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  • Professional Codes of Ethics as Leading Benchmarks?Charles Marsan - 2013 - American Journal of Bioethics 13 (10):24 - 26.
  • Five versions of one code of ethics: The case study of the Israel broadcasting authority.Yehiel Limor & Iné Gabel - 2002 - Journal of Mass Media Ethics 17 (2):136 – 154.
    In this article we trace the evolution of the Israel Broadcasting Authority's (IBA) code of ethics through 5 permutations between 1972 and 1998. We question whether the code is the outcome of a search for ethical and professional guidelines or a means of protecting the IBA from external pressures. Since 1972 the code has become more detailed, reflecting ethical, organizational, and political sensitivities. We conclude that the result of these changes has been the crystallization and implementation of normative ethical guidelines (...)
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  • Climate Change and Professional Responsibility: A Declaration of Helsinki for Engineers.Rob Lawlor & Helen Morley - 2017 - Science and Engineering Ethics 23 (5):1431-1452.
    In this paper, we argue that the professional engineering institutions ought to develop a Declaration of Climate Action. Climate change is a serious global problem, and the majority of greenhouse gas emissions come from industries that are enabled by engineers and represented by the engineering professional institutions. If the professional institutions take seriously the claim that a profession should be self-regulating, with codes of ethics that go beyond mere obedience to the law, and if they take their own ethical codes (...)
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  • Do Conflicts of Interest Create a New Professional Norm? Physical Therapists and Workers' Compensation.Maude Laliberté & Anne Hudon - 2013 - American Journal of Bioethics 13 (10):26 - 28.
  • Engineering Practice and Engineering Ethics.Ronald Kline & William T. Lynch - 2000 - Science, Technology, and Human Values 25 (2):195-225.
    Diane Vaughan’s analysis of the causes of the Challenger accident suggests ways to apply science and technology studies to the teaching of engineering ethics. By sensitizing future engineers to the ongoing construction of risk during mundane engineering practice, we can better prepare them to address issues of public health, safety, and welfare before they require heroic intervention. Understanding the importance of precedents, incremental change, and fallible engineering judgment in engineering design may help them anticipate potential threats to public safety arising (...)
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  • How should we Foster the professional integrity of engineers in japan? A pride-based approach.Tetsuji Iseda - 2008 - Science and Engineering Ethics 14 (2):165-176.
    I discuss the predicament that engineering-ethics education in Japan now faces and propose a solution to this. The predicament is professional motivation, i.e., the problem of how to motivate engineering students to maintain their professional integrity. The special professional responsibilities of engineers are often explained either as an implicit social contract between the profession and society (the “social-contract” view), or as requirements for membership in the profession (the “membership-requirement” view). However, there are empirical data that suggest that such views will (...)
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  • Remembering Vivian Weil.Rachelle D. Hollander, Michael Davis, Deni Elliott & Michael S. Pritchard - 2017 - Science and Engineering Ethics 23 (3):637-651.
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  • Empowering Graduate Students to Address Ethics in Research Environments.Elisabeth Hildt, Kelly Laas, Christine Miller, Stephanie Taylor & Eric M. Brey - 2019 - Cambridge Quarterly of Healthcare Ethics 28 (3):542-550.
    :In this article, we present an educational intervention that embeds ethics education within research laboratories. This structure is designed to assist students in addressing ethical challenges in a more informed way, and to improve the overall ethical culture of research environments. The project seeks to identify factors that students and researchers consider relevant to ethical conduct in science, technology, engineering, and math and to promote the cultivation of an ethical culture in experimental laboratories by integrating research stakeholders in a bottom-up (...)
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  • A Systematic Literature Review of US Engineering Ethics Interventions.Justin L. Hess & Grant Fore - 2018 - Science and Engineering Ethics 24 (2):551-583.
    Promoting the ethical formation of engineering students through the cultivation of their discipline-specific knowledge, sensitivity, imagination, and reasoning skills has become a goal for many engineering education programs throughout the United States. However, there is neither a consensus throughout the engineering education community regarding which strategies are most effective towards which ends, nor which ends are most important. This study provides an overview of engineering ethics interventions within the U.S. through the systematic analysis of articles that featured ethical interventions in (...)
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  • The Boeing 737 MAX: Lessons for Engineering Ethics.Joseph Herkert, Jason Borenstein & Keith Miller - 2020 - Science and Engineering Ethics 26 (6):2957-2974.
    The crash of two 737 MAX passenger aircraft in late 2018 and early 2019, and subsequent grounding of the entire fleet of 737 MAX jets, turned a global spotlight on Boeing’s practices and culture. Explanations for the crashes include: design flaws within the MAX’s new flight control software system designed to prevent stalls; internal pressure to keep pace with Boeing’s chief competitor, Airbus; Boeing’s lack of transparency about the new software; and the lack of adequate monitoring of Boeing by the (...)
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  • Distributed cognition and distributed morality: Agency, artifacts and systems.Richard Heersmink - 2017 - Science and Engineering Ethics 23 (2):431-448.
    There are various philosophical approaches and theories describing the intimate relation people have to artifacts. In this paper, I explore the relation between two such theories, namely distributed cognition and distributed morality theory. I point out a number of similarities and differences in these views regarding the ontological status they attribute to artifacts and the larger systems they are part of. Having evaluated and compared these views, I continue by focussing on the way cognitive artifacts are used in moral practice. (...)
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  • Can instruction in engineering ethics change students' feelings about professional responsibility?Golnaz Hashemian & Michael C. Loui - 2010 - Science and Engineering Ethics 16 (1):201-215.
    How can a course on engineering ethics affect an undergraduate student’s feelings of responsibility about moral problems? In this study, three groups of students were interviewed: six students who had completed a specific course on engineering ethics, six who had registered for the course but had not yet started it, and six who had not taken or registered for the course. Students were asked what they would do as the central character, an engineer, in each of two short cases that (...)
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  • Internationalizing professional codes in engineering.C. E. Harris - 2004 - Science and Engineering Ethics 10 (3):503-521.
    Professional engineering societies which are based in the United States, such as the American Society of Mechanical Engineers (ASME, now ASME International) are recognizing that their codes of ethics must apply to engineers working throughout the world. An examination of the ethical code of the ASME International shows that its provisions pose many problems of application, especially in societies outside the United States. In applying the codes effectively in the international environment, two principal issues must be addressed. First, some Culture (...)
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  • Engineering responsibilities in Lesser-developed nations: The welfare requirement.Charles E. Harris - 1998 - Science and Engineering Ethics 4 (3):321-331.
    Increasing numbers of engineers from developed countries are employed during some part of their careers in lesser-developed nations (LDN’s), or they may design products for use in LDN’s. Yet determining the implications of professional engineering codes for engineers’ conduct in such settings can be difficult. Conditions are often substantially different from those in developed countries, where the codes were formulated. In this paper I explore the implications of what I call the “welfare requirement” in engineering codes for professional engineering conduct (...)
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  • Beyond Incommensurability and Appropriateness: Integrating the Telos of Medicine and Addressing Compartmentalization in the Spheres of Morality Framework.Ariel Guersenzvaig - 2023 - American Journal of Bioethics 23 (12):34-36.
    Doernberg and Truog (2023) present a thoughtful analysis of the ethical tensions that arise from physicians increasingly occupying “multiple roles in healthcare”1 I take no issue with the classific...
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  • Ethical codes in youth work: a comparative analysis.Gabrielle Evans - 2015 - Ethics and Social Welfare 9 (4):420-426.
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  • Professionalism in Science: Competence, Autonomy, and Service.Hugh Desmond - 2020 - Science and Engineering Ethics 26 (3):1287-1313.
    Some of the most significant policy responses to cases of fraudulent and questionable conduct by scientists have been to strengthen professionalism among scientists, whether by codes of conduct, integrity boards, or mandatory research integrity training programs. Yet there has been little systematic discussion about what professionalism in scientific research should mean. In this paper I draw on the sociology of the professions and on data comparing codes of conduct in science to those in the professions, in order to examine what (...)
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  • Ethics, Finance, and Automation: A Preliminary Survey of Problems in High Frequency Trading. [REVIEW]Michael Davis, Andrew Kumiega & Ben Vliet - 2013 - Science and Engineering Ethics 19 (3):851-874.
    All of finance is now automated, most notably high frequency trading. This paper examines the ethical implications of this fact. As automation is an interdisciplinary endeavor, we argue that the interfaces between the respective disciplines can lead to conflicting ethical perspectives; we also argue that existing disciplinary standards do not pay enough attention to the ethical problems automation generates. Conflicting perspectives undermine the protection those who rely on trading should have. Ethics in finance can be expanded to include organizational and (...)
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  • Ethics, Finance, and Automation: A Preliminary Survey of Problems in High Frequency Trading. [REVIEW]Michael Davis, Andrew Kumiega & Ben Van Vliet - 2013 - Science and Engineering Ethics 19 (3):851-874.
    All of finance is now automated, most notably high frequency trading. This paper examines the ethical implications of this fact. As automation is an interdisciplinary endeavor, we argue that the interfaces between the respective disciplines can lead to conflicting ethical perspectives; we also argue that existing disciplinary standards do not pay enough attention to the ethical problems automation generates. Conflicting perspectives undermine the protection those who rely on trading should have. Ethics in finance can be expanded to include organizational and (...)
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  • Moral Responsibility, Technology, and Experiences of the Tragic: From Kierkegaard to Offshore Engineering.Mark Coeckelbergh - 2012 - Science and Engineering Ethics 18 (1):35-48.
    The standard response to engineering disasters like the Deepwater Horizon case is to ascribe full moral responsibility to individuals and to collectives treated as individuals. However, this approach is inappropriate since concrete action and experience in engineering contexts seldom meets the criteria of our traditional moral theories. Technological action is often distributed rather than individual or collective, we lack full control of the technology and its consequences, and we lack knowledge and are uncertain about these consequences. In this paper, I (...)
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  • Professional ethics and the culture of trust.Andrew Brien - 1998 - Journal of Business Ethics 17 (4):391 - 409.
    The cause of ethical failure in organisations often can be traced to their organisational culture and the failure on the part of the leadership to actively promote ethical ideals and practices. This is true of all types of organisations, including the professions, which in recent years have experienced ongoing ethical problems. The questions naturally arise: what sort of professional culture promotes ethical behaviour? How can it be implemented by a profession and engendered in the individual professional? The answers to these (...)
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  • Harnessing Multidimensional Legitimacy for Codes of Ethics: A Staged Approach.Hugh Breakey - 2019 - Journal of Business Ethics 170 (2):359-373.
    How can codes of ethics acquire legitimacy—that is, how can they lay down obligations that will be seen by their subjects as morally binding? There are many answers to this question, reflecting the fact that moral agents have a host of different bases on which they may acknowledge code duties as ethically binding—or, alternatively, may reject those duties as morally irrelevant or actively corrupt. Drawing on a wide literature on legitimacy in other practical fields, this paper develops a multidimensional legitimacy (...)
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  • Reflexive Principlism as an Effective Approach for Developing Ethical Reasoning in Engineering.Jonathan Beever & Andrew O. Brightman - 2016 - Science and Engineering Ethics 22 (1):275-291.
    An important goal of teaching ethics to engineering students is to enhance their ability to make well-reasoned ethical decisions in their engineering practice: a goal in line with the stated ethical codes of professional engineering organizations. While engineering educators have explored a wide range of methodologies for teaching ethics, a satisfying model for developing ethical reasoning skills has not been adopted broadly. In this paper we argue that a principlist-based approach to ethical reasoning is uniquely suited to engineering ethics education. (...)
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  • On Loyalty and Loyalties: The Contours of a Problematic Virtue.John Kleinig - 2014 - New York, US: Oup Usa.
    This volume explores at length the contours of an important and troubling virtue -- its cognates, contrasts, and perversions; its strengths and weaknesses; its awkward relations with universal morality; its oppositional form and limits; as well as the ways in which it functions invarious associative connections, such as friendship and familial relations, organizations and professions.
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  • Experimental Design: Ethics, Integrity and the Scientific Method.Jonathan Lewis - 2020 - In Ron Iphofen (ed.), Handbook of Research Ethics and Scientific Integrity. Cham, Switzerland: pp. 459-474.
    Experimental design is one aspect of a scientific method. A well-designed, properly conducted experiment aims to control variables in order to isolate and manipulate causal effects and thereby maximize internal validity, support causal inferences, and guarantee reliable results. Traditionally employed in the natural sciences, experimental design has become an important part of research in the social and behavioral sciences. Experimental methods are also endorsed as the most reliable guides to policy effectiveness. Through a discussion of some of the central concepts (...)
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