Results for 'engineering, professionalization, challenges'

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  1.  8
    Engineering ethics: challenges and opportunities.W. Richard Bowen - 2009 - New York: Springer.
    Engineering Ethics: Challenges and Opportunities aims to set a new agenda for the engineering profession by developing a key challenge: can the great technical innovation of engineering be matched by a corresponding innovation in the acceptance and expression of ethical responsibility? Central features of this stimulating text include: · An analysis of engineering as a technical and ethical practice providing great opportunities for promoting the wellbeing and agency of individuals and communities. · Elucidation of the ethical opportunities of engineering (...)
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  2.  49
    Ethics and the Engineer: Professional Codes and the Rule of St. Benedict.W. Richard Bowen - 2012 - Studies in Christian Ethics 25 (3):277-294.
    Engineers make an enormous contribution to promoting the wellbeing of individuals and the communities in which they live, but engineering may also give rise to adverse consequences. Engineering therefore requires ethical awareness, and professional engineers often use ethical codes to guide their actions. The content of the Royal Academy of Engineering’s authoritative Statement of Ethical Principles is discussed and compared to the paradigmatic Rule of St Benedict. This leads to suggestions for the development of an enriched code for engineering that (...)
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  3.  1
    Postface to the issue. Five challenges for a professionalization engineering.Richard Wittorski - 2024 - Revue Phronesis 13 (4):129-131.
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  4.  94
    Engineering, business and professional ethics.Simon Robinson (ed.) - 2007 - Boston: Elsevier/Butterworth-Heinemann.
    Engineering, as a profession and business, is at the sharp end of the ethical practice. Far from being a bolt on extra to the ‘real work’ of the engineer it is at the heart of how he or she relates to the many different stakeholders in the engineering project. Engineering, Business and Professional Ethics highlights the ethical dimension of engineering and shows how values and responsibility relate to everyday practice. Looking at the underlying value systems that inform practical thinking the (...)
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  5.  23
    Engineers of Human Souls, Faceless Technocrats, or Merchants of Morality?: Changing Professional Forms and Identities in the Face of the Neo-liberal Challenge.Michael I. Reed - 2007 - In Ashly Pinnington, Rob Macklin & Tom Campbell (eds.), Human Resource Management: Ethics and Employment. Oxford University Press. pp. 171.
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  6.  36
    An engineering dilemma: sustainability in the eyes of future technology professionals.S. Haase - 2013 - Science and Engineering Ethics 19 (3):893-911.
    The ability to design technological solutions that address sustainability is considered pivotal to the future of the planet and its people. As technology professionals engineers are expected to play an important role in sustaining society. The present article aims at exploring sustainability concepts of newly enrolled engineering students in Denmark. Their understandings of sustainability and the role they ascribe to sustainability in their future professional practice is investigated by means of a critical discourse analysis including metaphor analysis and semiotic analysis. (...)
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  7.  36
    The complex challenges of ethical choices by engineers in public service.Gerald Andrews Emison - 2006 - Science and Engineering Ethics 12 (2):233-244.
    This paper proposes that engineers in public service are confronted with unavoidable complexity in their ethical considerations. The complexity begins with interactions among venues of ethical choices. Engineers must make ethical choices simultaneously at the individual, professional, organizational and societal levels. These ethical domains often conflict. The complexity also stems from situations in which physical properties may remain stable, but important social, economic, institutional and political conditions can change substantially. The paper proposes that the reflective learning approach of pragmatism can (...)
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  8. Older adults: Training engineering challenges.Florence Puech - 2024 - Revue Phronesis 13 (4):21-42.
    In France, continuing professional training is a national obligation within the framework of lifelong education (Law n° 71-575 of July 16, 1971). Although it is considered an essential tool for adapting skills in the second half of one’s career, older workers benefit less than their younger counterparts (Demailly, 2016). Some specialists also consider this population to be specific when it comes to training (Cau-Bareille et al., 2006; Kern, 2016; Tikkanen and Nyhan, 2009). In order to better understand the interest and (...)
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  9.  3
    Sustainability in the Professional Practice of an Engineer.Elena Gabriela Cabral Velázquez, José Luis Castro González & Luis Alberto Mejía-Manzano - forthcoming - Evolutionary Studies in Imaginative Culture:1090-1097.
    To meet modern society's demands, highly qualified professionals are driving the reformulation of the teaching-learning model in universities. The framework of the Tec21, the Educative Model of the Tecnologico de Monterrey, provides the focus over the training programs on the relationship between the student and the environment for the development of personal and professional competencies through the resolution of challenges linked to real-world scenarios. In this work, we present information about a challenging experiential activity for students with an undergraduate (...)
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  10.  53
    Acclimating International Graduate Students to Professional Engineering Ethics.Katherine Austin Byron Newberry, Greta Gorsuch William Lawson & Thomas Darwin - 2011 - Science and Engineering Ethics 17 (1):171-194.
    This article describes the education portion of an ongoing grant-sponsored education and research project designed to help graduate students in all engineering disciplines learn about the basic ethical principles, rules, and obligations associated with engineering practice in the United States. While the curriculum developed for this project is used for both domestic and international students, the educational materials were designed to be sensitive to the specific needs of international graduate students. In recent years, engineering programs in the United States have (...)
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  11.  64
    Responsible Authorship in Engineering Fields: An Overview of Current Ethical Challenges.Jason Borenstein - 2011 - Science and Engineering Ethics 17 (2):355-364.
    The primary aim of this article is to identify ethical challenges relating to authorship in engineering fields. Professional organizations and journals do provide crucial guidance in this realm, but this cannot replace the need for frequent and diligent discussions in engineering research communities about what constitutes appropriate authorship practice. Engineering researchers should seek to identify and address issues such as who is entitled to be an author and whether publishing their research could potentially harm the public.
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  12.  24
    COVID-19 pandemic reveals challenges in engineering ethics education.Luan M. Nguyen, Cristina Poleacovschi, Kasey M. Faust, Kate Padgett-Walsh, Scott G. Feinstein, Bobby Vaziri, Michaela LaPatin & Cassandra J. Rutherford - 2023 - International Journal of Ethics Education 8 (1):99-127.
    Engineering ethics can be divided into three spheres, namely the technical, the professional, and the social. Ideally, engineering students should engage with all three spheres of ethics, but the literature suggests that this might not be the case. How do engineering students engage with the three spheres of engineering ethics during a global pandemic? The COVID-19 pandemic represents a dramatic and ongoing real-world challenge affecting many students personally. This research explores the extent to which engineering students engage with each sphere (...)
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  13. Representation and misrepresentation: Tufte and the Morton thiokol engineers on the Challenger.Wade Robison - 2002 - Science and Engineering Ethics 8 (1):59-81.
    This paper examines the role of the Morton Thiokol engineers in the decisions surrounding the launch of the Challenger, particularly with reference to an analysis of this event by Edward Tufte. The engineers at Morton Thiokol recommended against the launch of Challenger because the projected launch temperature between 26°F to 29°F was far outside their field database of successful launches. The engineers had asked for, but not received, data necessary to determine the cause of massive blow-by on the launch the (...)
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  14. Engineering Ethics Beyond Engineers' Ethics.Josep M. Basart & Montse Serra - 2013 - Science and Engineering Ethics 19 (1):179-187.
    Engineering ethics is usually focused on engineers’ ethics, engineers acting as individuals. Certainly, these professionals play a central role in the matter, but engineers are not a singularity inside engineering ; they exist and operate as a part of a complex network of mutual relationships between many other people, organizations and groups. When engineering ethics and engineers’ ethics are taken as one and the same thing the paradigm of the ethical engineer which prevails is that of the heroic engineer, a (...)
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  15.  20
    Global Engineering Ethics.Rockwell Clancy - 2017 - Cambridge, MA, United States: Elsevier. Edited by Rockwell F. Clancy.
    Global Engineering Ethics introduces the fundamentals of ethics in a context specific to engineering without privileging any one national or cultural conception of ethics. Numerous case studies from around the world help the reader to see clearly the relevance of design, safety, and professionalism to engineers. Engineering increasingly takes place in global contexts, with industrial and research teams operating across national and cultural borders. This adds a layer of complexity to already challenging ethical issues. This book is essential reading for (...)
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  16.  44
    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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  17.  87
    Engineering ethics: concepts and cases.Charles Edwin Harris, Michael S. Pritchard & Michael Jerome Rabins - 2009 - Boston, MA: Cengage. Edited by Michael S. Pritchard, Ray W. James, Elaine E. Englehardt & Michael J. Rabins.
    Packed with examples pulled straight from recent headlines, ENGINEERING ETHICS, Sixth Edition, helps engineers understand the importance of their conduct as professionals as well as reflect on how their actions can affect the health, safety and welfare of the public and the environment. Numerous case studies give readers plenty of hands-on experience grappling with modern-day ethical dilemmas, while the book's proven and structured method for analysis walks readers step by step through ethical problem-solving techniques. It also offers practical application of (...)
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  18.  16
    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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  19.  78
    Engineering, ethics, and the environment.P. Aarne Vesilind - 1998 - New York: Cambridge University Press. Edited by Alastair S. Gunn.
    Engineering is 'the people-serving profession'. The work of engineers involves interaction with clients, other engineers, and the public at large. More than any other profession, their work also directly involves and affects the environment. This book makes the case that engineers have special professional obligations to protect and enhance the environment, and the authors - one, an engineer and the other, a philosopher - seek to provide an ethical basis for these obligations. In exploring these ethical issues, the authors aim (...)
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  20. Meaningful work: rethinking professional ethics.Mike W. Martin - 2000 - New York: Oxford University Press.
    As commonly understood, professional ethics consists of shared duties and episodic dilemmas--the responsibilities incumbent on all members of specific professions joined together with the dilemmas that arise when these responsibilities conflict. Martin challenges this "consensus paradigm" as he rethinks professional ethics to include personal commitments and ideals, of which many are not mandatory. Using specific examples from a wide range of professions, including medicine, law, high school teaching, journalism, engineering, and ministry, he explores how personal commitments motivate, guide, and (...)
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  21.  71
    Civil Engineering at the Crossroads in the Twenty-First Century.Francisco Ramírez & Andres Seco - 2012 - Science and Engineering Ethics 18 (4):681-687.
    The twenty-first century presents a major challenge for civil engineering. The magnitude and future importance of some of the problems perceived by society are directly related to the field of the civil engineer, implying an inescapable burden of responsibility for a group whose technical soundness, rational approach and efficiency is highly valued and respected by the citizen. However, the substantial changes in society and in the way it perceives the problems that it considers important call for a thorough review of (...)
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  22.  79
    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 to “grey” or multiple possible solution technical problems. To identify (...)
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  23. Beyond the code: a philosophical guide to engineering ethics.Heidi Furey - 2022 - New York, NY: Routledge. Edited by Scott Hill & Sujata K. Bhatia.
    For over 80 years, the National Society of Professional Engineers (NSPE) has been a leader in the promotion of ethical practice within the field of engineering. One of the Society's greatest contributions is the formation and adoption of the NSPE Code of Ethics. But the code, with its six "Fundamental Canons," is only truly instructive if engineers can bridge the gap between principles and action. Here there is no substitute for personal reflection on the ethical and philosophical issues that underlie (...)
     
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  24.  34
    Engineering Innovation in Healthcare.W. Richard Bowen - 2011 - Human Reproduction and Genetic Ethics 17 (2):204-221.
    Engineering makes profound contributions to our health. Many of these contributions benefit whole populations, such as clean water and sewage treatment, buildings, dependable sources of energy, efficient harvesting and storage of food, and pharmaceutical manufacture. Thus, ethical assessment of these and other engineering activities has often emphasized benefits to communities. This is in contrast to medical ethics, which has tended to emphasize the individual patient affected by a doctor’s actions. However, technological innovation is leading to an entanglement of the activities, (...)
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  25.  37
    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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  26.  24
    Bioethical analysis of sanitary engineering: a critical assessment of the profession at the crossroads of environmental and public health ethics.Igor Eterović & Toni Buterin - 2022 - Ethics in Science and Environmental Politics 22:13-24.
    Sanitary engineering is burdened by several challenges that attract bioethical attention: there are many ambiguities regarding the definition of the profession; its methodology seems to be a combination of several approaches from different sciences; and it often appears to be an amalgam of different disciplines. We argue that the bioethical perspective helps to show that these features can be taken as a stimulating challenge. Moreover, bioethics may illuminate how these features can become an asset to sanitary engineering in light (...)
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  27.  14
    Ethical Engineering for International Development and Environmental Sustainability.Marion Hersh (ed.) - 2015 - London: Imprint: Springer.
    Ensuring that their work has a positive influence on society is a responsibility and a privilege for engineers, but also a considerable challenge. This book addresses the ways in which engineers meet this challenge, working from the assumption that for a project to be truly ethical both the undertaking itself and its implementation must be ethically sound. The contributors discuss varied topics from an international and interdisciplinary perspective, including: · robot ethics; · outer space; · international development; · internet privacy (...)
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  28.  48
    Gaming, Texting, Learning? Teaching Engineering Ethics Through Students' Lived Experiences With Technology.Georgina Voss - 2013 - Science and Engineering Ethics 19 (3):1375-1393.
    This paper examines how young peoples’ lived experiences with personal technologies can be used to teach engineering ethics in a way which facilitates greater engagement with the subject. Engineering ethics can be challenging to teach: as a form of practical ethics, it is framed around future workplace experience in a professional setting which students are assumed to have no prior experience of. Yet the current generations of engineering students, who have been described as ‘digital natives’, do however have immersive personal (...)
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  29.  87
    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 reach closely enough (...)
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  30.  91
    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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  31.  95
    A Systematic Approach to Engineering Ethics Education.Jessica Li & Shengli Fu - 2012 - Science and Engineering Ethics 18 (2):339-349.
    Engineering ethics education is a complex field characterized by dynamic topics and diverse students, which results in significant challenges for engineering ethics educators. The purpose of this paper is to introduce a systematic approach to determine what to teach and how to teach in an ethics curriculum. This is a topic that has not been adequately addressed in the engineering ethics literature. This systematic approach provides a method to: (1) develop a context-specific engineering ethics curriculum using the Delphi technique, (...)
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  32.  12
    The ethical engineer: contemporary concepts and cases.Robert E. McGinn - 2018 - Oxford: Princeton University Press.
    An exploration of the ethics of practical engineering through analyses of eighteen case studies. The Ethical Engineer explores ethical issues that arise in engineering practice, from technology transfer to privacy protection to whistle-blowing. Presenting key ethics concepts and real-life examples of engineering work, Robert McGinn illuminates the ethical dimension of engineering practice and helps students and professionals determine engineers' context-specific ethical responsibilities. McGinn highlights the "ethics gap" in contemporary engineering-- the disconnect between the meager exposure to ethical issues in engineering (...)
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  33.  54
    Engineering Ethics for a Globalized World.C. Murphy, P. Gardoni, H. Bashir, C. E. Harris Jr, & E. Masad (eds.) - 2015 - Dordrecht: Springer International Publishing.
    This volume identifies, discusses and addresses the wide array of ethical issues that have emerged for engineers due to the rise of a global economy. To date, there has been no systematic treatment of the particular challenges globalization poses for engineering ethics standards and education. This volume concentrates on precisely this challenge. Scholars and practitioners from diverse national and professional backgrounds discuss the ethical issues emerging from the inherent symbiotic relationship between the engineering profession and globalization. Through their discussions (...)
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  34.  20
    Conceptual Tools to Inform Course Design and Teaching for Ethical Engineering Engagement for Diverse Student Populations.Malebogo N. Ngoepe, Kate le Roux, Corrinne B. Shaw & Brandon Collier-Reed - 2022 - Science and Engineering Ethics 28 (2):1-23.
    Contemporary engineering education recognises the need for engineering ethics content in undergraduate programmes to extend beyond concepts that form the basis of professional codes to consider relationality and context of engineering practice. Yet there is debate on how this might be done, and we argue that the design and pedagogy for engineering ethics has to consider what and to whom ethics is taught in a particular context. Our interest is in the possibilities and challenges of pursuing the dual imperatives (...)
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  35.  60
    Professional Ethics in a Virtual World: The Impact of the Internet on Traditional Notions of Professionalism.Ellen M. Harshman, James F. Gilsinan, James E. Fisher & Frederick C. Yeager - 2005 - Journal of Business Ethics 58 (1-3):227-236.
    Numerous articles in the popular press together with an examination of websites associated with the medical, legal, engineering, financial, and other professions leave no doubt that the role of professions has been impacted by the Internet. While offering the promise of the democratization of expertise – expertise made available to the public at convenient times and locations and at an affordable cost – the Internet is also driving a reexamination of the concept of professional identity and related claims of expertise (...)
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  36.  28
    Engineering Students’ Views of Corporate Social Responsibility: A Case Study from Petroleum Engineering.Jessica M. Smith, Carrie J. McClelland & Nicole M. Smith - 2017 - Science and Engineering Ethics 23 (6):1775-1790.
    The mining and energy industries present unique challenges to engineers, who must navigate sometimes competing responsibilities and codes of conduct, such as personal senses of right and wrong, professional ethics codes, and their employers’ corporate social responsibility policies. Corporate social responsibility is the current dominant framework used by industry to conceptualize firms’ responsibilities to their stakeholders, yet has it plays a relatively minor role in engineering ethics education. In this article, we report on an interdisciplinary pedagogical intervention in a (...)
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  37.  48
    Sustainable Engineering Science for Resolving Wicked Problems.Thomas Seager, Evan Selinger & Arnim Wiek - 2012 - Journal of Agricultural and Environmental Ethics 25 (4):467-484.
    Because wicked problems are beyond the scope of normal, industrial-age engineering science, sustainability problems will require reform of current engineering science and technology practices. We assert that, while pluralism concerning use of the term sustainability is likely to persist, universities should continue to cultivate research and education programs specifically devoted to sustainable engineering science, an enterprise that is formally demarcated from business-as-usual and systems optimization approaches. Advancing sustainable engineering science requires a shift in orientation away from reductionism and intellectual specialization (...)
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  38.  27
    Ethical and Legal Aspects of Computing: A Professional Perspective from Software Engineering.Gerard O'Regan - 2024 - Springer Nature Switzerland.
    This textbook presents an overview of the critically important ethical and legal issues that arise in the computing field and provides a professional perspective from software engineering. The author gained exposure to these aspects of computing while working as a software engineer at Motorola in Ireland, where he coordinated the patent programme and worked with several software suppliers. Topics and features: Presents a broad overview of ethics and the law Includes key learning topics, summaries, and review questions in each chapter, (...)
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  39.  39
    Practicing Engineering Ethics in Global Context: A Comparative Study of Expert and Novice Approaches to Cross-Cultural Ethical Situations.Qin Zhu & Brent K. Jesiek - 2020 - Science and Engineering Ethics 26 (4):2097-2120.
    Engineers and other technical professionals are increasingly challenged by the impacts of globalization. Further, engineering educators, technical managers, and human resources staff have demonstrated great interest in selecting and training engineers who are capable of working competently, professionally, and ethically in global context. However, working across countries and cultures brings considerable challenges to global engineers, including as related to understanding and navigating local and regional differences in what counts as professional ethics and integrity. In this study, we focus on (...)
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  40. Thinking like an engineer: studies in the ethics of a profession.Michael Davis - 1998 - New York: Oxford University Press.
    Michael Davis, a leading figure in the study of professional ethics, offers here both a compelling exploration of engineering ethics and a philosophical analysis of engineering as a profession. After putting engineering in historical perspective, Davis turns to the Challenger space shuttle disaster to consider the complex relationship between engineering ideals and contemporary engineering practice. Here, Davis examines how social organization and technical requirements define how engineers should (and presumably do) think. Later chapters test his analysis of engineering judgement and (...)
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  41.  25
    A Systematic Review of the 2016 National Academy of Engineering Exemplary Ethics Programs: Revisions to a Coding Framework.Justin L. Hess, Alison J. Kerr, Athena Lin & Andrew Chung - 2023 - Science and Engineering Ethics 29 (6):1-35.
    Engineering ethics is a required aspect of accredited ABET programs, but there is widespread variation in how ethics is taught, to what ends, and how those ends are assessed. This variation makes it challenging to identify practices for teaching ethics to engineers aligned with extant practices in the field. In this study, we revise a recent coding framework by reviewing exemplary engineering ethics programs recognized by the National Academy of Engineering in 2016, or what we refer to as “exemplars.” We (...)
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  42.  34
    The small Helm project: An academic activity addressing international corruption for undergraduate civil engineering and construction management students.Steven E. Benzley - 2006 - Science and Engineering Ethics 12 (2):355-363.
    This paper presents an academic project that addresses the issue of international corruption in the engineering and construction industry, in a manner that effectively incorporates several learning experiences. The major objectives of the project are to provide the students a learning activity that will 1) make a meaningful contribution within the disciplines being studied; 2) teach by experience a significant principle that can be valuable in numerous situations during an individual’s career, and 3) engage the minds, experiences, and enthusiasm of (...)
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  43.  32
    Educating Self-Reflective Engineers.Qin Zhu & Sandy Woodson - 2020 - Teaching Ethics 20 (1-2):31-46.
    Some engineering educators recognize the necessity and challenges of teaching students moral sensitivity. As recently pointed out by some scholars, along with moral sensitivity, promoting “self-knowledge” is significantly lacking in engineering curricula. We suggest that the “ethics autobiography” employed in some health and psychological science programs can serve as a useful tool for helping engineering students develop moral sensitivity and self-reflective competencies. First, this paper briefly discusses some unique potential strengths of introducing ethics autobiography as a tool for moral (...)
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  44.  13
    International Perspectives on Engineering Education: Engineering Education and Practice in Context, Volume 1.Steen Hyldgaard Christensen, Christelle Didier, Andrew Jamison, Martin Meganck, Carl Mitcham & Byron Newberry (eds.) - 2015 - Cham: Imprint: Springer.
    This inclusive cross-cultural study rethinks the nexus between engineering education and context. In so doing the book offers a reflection on contextual boundaries with an overall boundary crossing ambition and juxtaposes important cases of critical participation within engineering education with sophisticated scholarly reflection on both opportunities and discontents. Whether, and in what way engineering education is or ought to be contextualized or de-contextualized is an object of heated debate among engineering educators. The uniqueness of this study is that this debate (...)
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  45.  23
    Pedagogical Orientations and Evolving Responsibilities of Technological Universities: A Literature Review of the History of Engineering Education.Diana Adela Martin, Gunter Bombaerts, Maja Horst, Kyriaki Papageorgiou & Gianluigi Viscusi - 2023 - Science and Engineering Ethics 29 (6):1-29.
    Current societal changes and challenges demand a broader role of technological universities, thus opening the question of how their role evolved over time and how to frame their current responsibility. In response to urgent calls for debating and redefining the identity of contemporary technological universities, this paper has two aims. The first aim is to identify the key characteristics and orientations marking the development of technological universities, as recorded in the history of engineering education. The second aim is to (...)
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  46.  23
    Gender disparity in publication records: a qualitative study of women researchers in computing and engineering.Shiva Sharifzad & Mohammad Hosseini - 2021 - Research Integrity and Peer Review 6 (1).
    BackgroundThe current paper follows up on the results of an exploratory quantitative analysis that compared the publication and citation records of men and women researchers affiliated with the Faculty of Computing and Engineering at Dublin City University in Ireland. Quantitative analysis of publications between 2013 and 2018 showed that women researchers had fewer publications, received fewer citations per person, and participated less often in international collaborations. Given the significance of publications for pursuing an academic career, we used qualitative methods to (...)
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  47.  13
    What Do Engineers Want? Work Values, Job Rewards, and Job Satisfaction.Peter F. Meiksins & James M. Watson - 1991 - Science, Technology and Human Values 16 (2):140-172.
    This article reexamines the classical distinction between professional and organizational work orientations for the case of engineers. Based on data from a survey questionnaire mailed to a sample of 800 engineers in the Rochester, New York, area in 1986, it argues that the two orientations are not opposites. Instead, it is possible to score high on measures of both orientations, or to score low on both. The result is a more complex, fourfold typology of engineers' work orientations. This fourfold typology (...)
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  48.  17
    Professional responsibility and professionalism: a sociomaterial examination.Tara J. Fenwick - 2016 - New York: Routledge, Taylor & Francis Group.
    Responsibility and professionalism are increasingly issues of concern for professional associations, employers and educators alike. When bad things happen, professionals are often held personally accountable for complex situations. Professional Responsibility and Professionalism advances our approaches to professional responsibility from individual-centred, virtue-based prescriptions towards understanding and responding effectively to the multifaceted challenges encountered today by professionals working in dynamic complexity. The author applies a sociomaterial examination to specific examples drawn from different professional contexts of practice. She examines important implications for (...)
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  49.  21
    Startup Ethics: Ethically Responsible Conduct of Scientists and Engineers at Theranos.Robert E. McGinn - 2022 - Science and Engineering Ethics 28 (5):1-21.
    Studies of ethical challenges that can confront practicing scientists and engineers in the entrepreneurial stage of the overarching research-and-innovation process are virtually non-existent. This paper explores ethical challenges that arose at a specific entrepreneurial startup: Theranos, the defunct blood-testing company. The fundamental ethical responsibilities of scientists and engineers offer a framework useful for evaluating the conduct of practicing scientists and engineers from an ethical responsibility perspective. Questionable conduct by Theranos’s former top managers has been widely discussed. However, the (...)
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  50.  21
    A reciprocating engine -- like Proust.Roger Shattuck - 1996 - Philosophy and Literature 20 (1):104-110.
    In lieu of an abstract, here is a brief excerpt of the content:A Reciprocating Engine--Like ProustRoger ShattuckWould you buy a book called “How to Read a Book”? Only out of annoyance, I imagine. In the company of literary scholars, critics, and writers, we all think we know already how to read. Otherwise, we’d be professional charlatans. Still, in 1940 tens of thousands of people bought a book called How to Read a Book by Mortimer J. Adler. It stayed on the (...)
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