Results for 'Engineering, general'

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  1. Yol ve Yolcu Arasındaki İlişki Üzerine Kısa bir Felsefi-Edebi İnceleme: Herakleitos DK 22B60 VE Frost'un Road Not Taken Şiirinden Hareketle Yol.Engin Yurt - 2018 - Journal of History School (JOHS) 11 (XXXIV):987-1003.
    In here, philosophical-literate thinking on the way is mainly tried. On one side, making a philosophical analysis of Heraclitus’ fragment 60 is aimed. The different views on what Heraclitus might have meant in this article which is generally translated as the way up and the way down are one and the same are examined. On the other side, with a reading of Robert Frost’s famous poem of Road Not Taken, it has been tried whether a phenomenological interpretation of the way (...)
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  2. Felsefede İnsan-Hayvan Sorunu: Derrida ve Levinas Arasındaki Karşıtlığa Yeni Bir Yaklaşım: Kucaklama Olarak Sarılma Üzerine.Engin Yurt - 2018 - Flsf 25 (25):181-206.
    In this article, the difference between human and animal in philosophy is mainly handled. This difference is thought over the concept of “the other” and Heidegger’s phenomenological distinction between human and animal. With respect to especially the views of Derrida and Levinas regarding to this matter, it has been attempted to exhibit this difference. Therefore, the two approaches -which were represented as the opposition of Derrida and Levinas- have been tried to clarify. After this, as a new approach to this (...)
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  3.  15
    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 (...)
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  4.  3
    Nelson algebras, residuated lattices and rough sets: A survey.Lut School of Engineering Science Jouni Järvinen Sándor Radeleczki Umberto Rivieccio A. SOftware Engineering, Finlandb Institute Of Mathematics Lahti, Uned Hungaryc Departamento de Lógica E. Historia Y. Filosofía de la Ciencia & Spain Madrid - 2024 - Journal of Applied Non-Classical Logics 34 (2):368-428.
    Over the past 50 years, Nelson algebras have been extensively studied by distinguished scholars as the algebraic counterpart of Nelson's constructive logic with strong negation. Despite these studies, a comprehensive survey of the topic is currently lacking, and the theory of Nelson algebras remains largely unknown to most logicians. This paper aims to fill this gap by focussing on the essential developments in the field over the past two decades. Additionally, we explore generalisations of Nelson algebras, such as N4-lattices which (...)
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  5.  38
    Engineering the Climate: The Ethics of Solar Radiation Management.Christopher James Preston (ed.) - 2012 - Lexington Books.
    Engineering the Climate: The Ethics of Solar Radiation Management is a wide-ranging and expert analysis of the ethics of the intentional management of solar radiation. This book will be a useful tool for policy-makers, a provocation for ethicists, and an eye-opening analysis for both the scientist and the general reader with interest in climate change.
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  6. Conceptual Engineering: The Master Argument.Herman Cappelen - 2019 - In Alexis Burgess, Herman Cappelen & David Plunkett, Conceptual Engineering and Conceptual Ethics. New York, USA: Oxford University Press.
    I call the activity of assessing and developing improvements of our representational devices ‘conceptual engineering’.¹ The aim of this chapter is to present an argument for why conceptual engineering is important for all parts of philosophy (and, more generally, all inquiry). Section I of the chapter provides some background and defines key terms. Section II presents the argument. Section III responds to seven objections. The replies also serve to develop the argument and clarify what conceptual engineering is.
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  7.  32
    Engineering Students as Co-creators in an Ethics of Technology Course.Gunter Bombaerts, Karolina Doulougeri, Shelly Tsui, Erik Laes, Andreas Spahn & Diana Adela Martin - 2021 - Science and Engineering Ethics 27 (4):1-26.
    Research on the effectiveness of case studies in teaching engineering ethics in higher education is underdeveloped. To add to our knowledge, we have systematically compared the outcomes of two case approaches to an undergraduate course on the ethics of technology: a detached approach using real-life cases and a challenge-based learning approach with students and stakeholders acting as co-creators. We first developed a practical typology of case-study approaches and subsequently tested an evaluation method to assess the students’ learning experiences and outcomes (...)
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  8.  58
    Enhancing Engineering Ethics: Role Ethics and Corporate Social Responsibility.Carl Mitcham, Jessica M. Smith, Qin Zhu & Nicole M. Smith - 2021 - Science and Engineering Ethics 27 (3):1-21.
    Engineering ethics calls the attention of engineers to professional codes of ethical responsibility and personal values, but the practice of ethics in corporate settings can be more complex than either of these. Corporations too have cultures that often include corporate social responsibility (CSR) practices and policies, but few discussions of engineering ethics make any explicit reference to CSR. This article proposes critical attention to CSR and role ethics as an opportunity to help prepare engineers to think through the ethics of (...)
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  9.  52
    Engineers’ Moral Responsibility: A Confucian Perspective.Shan Jing & Neelke Doorn - 2020 - Science and Engineering Ethics 26 (1):233-253.
    Moral responsibility is one of the core concepts in engineering ethics and consequently in most engineering ethics education. Yet, despite a growing awareness that engineers should be trained to become more sensitive to cultural differences, most engineering ethics education is still based on Western approaches. In this article, we discuss the notion of responsibility in Confucianism and explore what a Confucian perspective could add to the existing engineering ethics literature. To do so, we analyse the Citicorp case, a widely discussed (...)
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  10.  64
    Conceptual Engineering and Philosophy of Technology: Amelioration or Adaptation?Jeroen Hopster & Guido Löhr - 2023 - Philosophy and Technology 36 (4):1-17.
    Conceptual Engineering (CE) is thought to be generally aimed at ameliorating deficient concepts. In this paper, we challenge this assumption: we argue that CE is frequently undertaken with the orthogonal aim of _conceptual adaptation_. We develop this thesis with reference to the interplay between technology and concepts. Emerging technologies can exert significant pressure on conceptual systems and spark ‘conceptual disruption’. For example, advances in Artificial Intelligence raise the question of whether AIs are agents or mere objects, which can be construed (...)
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  11.  31
    Genetic Engineering in Contemporary Islamic Thought.Vardit Rispler-Chaim - 1998 - Science in Context 11 (3-4):567-573.
    The ArgumentMuslims share with others both the interest in and the concern about genetic engineering. Naturally their reactions and views stem from general Islamic dogma and from Islamic medical ethics, but they are not unaware of Western scientific data. Particularly relevant is the Islamic religious prohibition against “changing what Allah has created.” Muslim muftis try to offer practical solutions for individuals. Islamic law is concerned about maintaining pure lineage. Consanguineous matings are very common, but induced abortions are usually ruled (...)
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  12.  16
    (1 other version)General Education for Scientists and Engineers: Current Issues and Challenges.Margaret L. A. MacVicar - 1987 - Bulletin of Science, Technology and Society 7 (5-6):592-597.
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  13.  25
    The Rules of Ferrous Metallurgy: Genesis and Structure of a Field of Engineering Science, 1870–1914.Stefan Krebs - 2010 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 18 (1):29-60.
    The ways in which the sciences have been delineated and categorized throughout history provide insights into the formation, stabilization, and establishment of scientific systems of knowledge. The Dresdener school’s approach for explaining and categorizing the genesis of the engineering disciplines is still valid, but needs to be complemented by further-reaching methodological and theoretical reflections. Pierre Bourdieu’s theory of social practice is applied to the question of how individual agents succeed in influencing decisively a discipline’s changing object orientation, institutionalisation and self-reproduction. (...)
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  14.  52
    Teaching Ethics to Engineers: A Socratic Experience.Gonzalo Génova & M. Rosario González - 2016 - Science and Engineering Ethics 22 (2):567-580.
    In this paper we present the authors’ experience of teaching a course in Ethics for Engineers, which has been delivered four times in three different universities in Spain and Chile. We begin by presenting the material context of the course, and especially the intellectual background of the participating students, in terms of their previous understanding of philosophy in general, and of ethics in particular. Next we set out the objectives of the course and the main topics addressed, as well (...)
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  15.  50
    Embodiment in Neuro-engineering Endeavors: Phenomenological Considerations and Practical Implications.Sadaf Soloukey Tbalvandany, Biswadjiet Sanjay Harhangi, Awee W. Prins & Maartje H. N. Schermer - 2018 - Neuroethics 12 (3):231-242.
    The field of Neuro-Engineering seems to be on the fast track towards accomplishing its ultimate goal of potentially replacing the nervous system in the face of disease. Meanwhile, the patients and professionals involved are continuously dealing with human bodily experience and especially how neuro-engineering devices could become part of a user’s body schema: the domain of ‘embodied phenomenology’. This focus on embodiment, however, is not sufficiently reflected in the current literature on ethical and philosophical issues in neuro-engineering. In this article (...)
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  16.  48
    Engineering Entanglement, Conceptualizing Quantum Information.Chen-Pang Yeang - 2011 - Annals of Science 68 (3):325-350.
    Summary Proposed by Einstein, Podolsky, and Rosen (EPR) in 1935, the entangled state has played a central part in exploring the foundation of quantum mechanics. At the end of the twentieth century, however, some physicists and mathematicians set aside the epistemological debates associated with EPR and turned it from a philosophical puzzle into practical resources for information processing. This paper examines the origin of what is known as quantum information. Scientists had considered making quantum computers and employing entanglement in communications (...)
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  17.  19
    Educating Engineering Students to Address Bias and Discrimination Within Their Project Teams.Roland Tormey, Nihat Kotluk & Siara Isaac - 2023 - Science and Engineering Ethics 29 (1):1-21.
    What training should engineering students receive to enable them to contribute to reducing bias, discrimination and the persistent lack of diversity in engineering? Collaboration is central to professional engineering work and, consequently, teamwork and group projects are increasingly present in engineering curricula. However, the influence of unconscious bias on interactions within teams can negatively affect women and underrepresented groups and is now recognised as an important engineering ethics issue. This paper describes a workshop designed to enable engineering students to work (...)
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  18. Safety Engineering for Artificial General Intelligence.Roman Yampolskiy & Joshua Fox - 2012 - Topoi 32 (2):217-226.
    Machine ethics and robot rights are quickly becoming hot topics in artificial intelligence and robotics communities. We will argue that attempts to attribute moral agency and assign rights to all intelligent machines are misguided, whether applied to infrahuman or superhuman AIs, as are proposals to limit the negative effects of AIs by constraining their behavior. As an alternative, we propose a new science of safety engineering for intelligent artificial agents based on maximizing for what humans value. In particular, we challenge (...)
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  19.  41
    Empowering Engineering Students in Ethical Risk Management: An Experimental Study.Yoann Guntzburger, Thierry C. Pauchant & Philippe A. Tanguy - 2019 - Science and Engineering Ethics 25 (3):911-937.
    The complexity of industrial reality, the plurality of legitimate perspectives on risks and the role of emotions in decision-making raise important ethical issues in risk management that are usually overlooked in engineering. Using a questionnaire answered by 200 engineering students from a major engineering school in Canada, the purpose of this study was to assess how their training has influenced their perceptions toward these issues. While our results challenge the stereotypical portrait of the engineer, they also suggest that the current (...)
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  20. Function-Based Conceptual Engineering and the Authority Problem.Matthieu Queloz - 2022 - Mind 131 (524):1247-1278.
    In this paper, I identify a central problem for conceptual engineering: the problem of showing concept-users why they should recognise the authority of the concepts advocated by engineers. I argue that this authority problem cannot generally be solved by appealing to the increased precision, consistency, or other theoretical virtues of engineered concepts. Outside contexts in which we anyway already aim to realise theoretical virtues, solving the authority problem requires engineering to take a functional turn and attend to the functions of (...)
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  21.  76
    Engineering Identities, Epistemologies and Values: Engineering Education and Practice in Context.Byron Newberry, Carl Mitcham, Martin Meganck, Andrew Jamison, Christelle Didier & Steen Hyldgaard Christensen (eds.) - 2015 - Springer Verlag.
    This second companion volume on engineering studies considers engineering practice including contextual analyses of engineering identity, epistemologies and values. Key overlapping questions examine such issues as an engineering identity, engineering self-understandings enacted in the professional world, distinctive characters of engineering knowledge and how engineering science and engineering design interact in practice. -/- Authors bring with them perspectives from their institutional homes in Europe, North America, Australia\ and Asia. The volume includes 24 contributions by more than 30 authors from engineering, the (...)
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  22.  25
    Guiding Engineering Student Teams’ Ethics Discussions with Peer Advising.Eun Ah Lee, Nicholas Gans, Magdalena Grohman, Marco Tacca & Matthew J. Brown - 2020 - Science and Engineering Ethics 26 (3):1743-1769.
    This study explores how peer advising affects student project teams’ discussions of engineering ethics. Peer ethics advisors from non-engineering disciplines are expected to provide diverse perspectives and to help engineering student teams engage and sustain ethics discussions. To investigate how peer advising helps engineering student teams’ ethics discussions, three student teams in different peer advising conditions were closely observed: without any advisor, with a single volunteer advisor, and with an advising team working on the ethics advising project. Micro-scale discourse analysis (...)
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  23.  28
    Genetically Engineered Foods and Moral Absolutism: A Representative Study from Germany.Johanna Jauernig, Matthias Uhl & Gabi Waldhof - 2023 - Science and Engineering Ethics 29 (5):1-17.
    There is an ongoing debate about genetic engineering (GE) in food production. Supporters argue that it makes crops more resilient to stresses, such as drought or pests, and should be considered by researchers as a technology to address issues of global food security, whereas opponents put forward that GE crops serve only the economic interests of transnational agrifood-firms and have not yet delivered on their promises to address food shortage and nutrient supply. To address discourse failure regarding the GE debate, (...)
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  24. Conceptual Engineering Between Representational Skepticism and Complacency: Is There a Third Way?Delia Belleri - 2023 - Topoi 42 (4):1051-1062.
    Conceptual engineering has been linked by Herman Cappelen to a position called “representational skepticism”, described as one’s refusal to uncritically take over the conceptual representations one is handed. This position is contrasted with an uncritical attitude, called “representational complacency”. Arguably, neither position, or a hybrid of the two, is rationally sustainable. This paper therefore proposes an alternative option, called “critical concept conservatism”, stating that having a concept makes it rational (in a suitable sense of “rational”) for one to retain it, (...)
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  25. How Engineers Can Care from a Distance: Promoting Moral Sensitivity in Engineering Ethics Education.Janna B. Van Grunsven, Lavinia Marin, Taylor Stone, Neelke Doorn & Sabine Roeser - 2023 - In Glenn Miller, Helena Mateus Jerónimo & Qin Zhu, Thinking through Science and Technology. Philosophy, Religion, and Politics in an Engineered World. Rowman & Littlefield International. pp. 141-163.
    Moral (or ethical) sensitivity is widely viewed as a foundational learning goal in engineering ethics education. We have argued in this paper is that this view of moral sensitivity cannot be readily transported from the nursing context to the engineering context on the basis of a care-analogy. The particularized care characteristic of the nursing context is decisively different from the generalized and universalized forms of care characteristic of the engineering context. Through a focus on care and maintenance, the engineering student’s (...)
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  26.  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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  27.  74
    Engineering education in Europe and the U.S.A., 1750–1930: The rise to dominance of school culture and the engineering professions. [REVIEW]Peter Lundgreen - 1990 - Annals of Science 47 (1):33-75.
    Summary The rise to dominance of school culture in engineering education took place much later in England and the U.S.A. than in France or Germany. Why? This comparative essay argues that explanations are to be sought within the context of bureaucracy rather than in that of industrialization. The academic training of state engineers set a powerful role model in Continental Europe but was absent in Anglo-America. Consequently, the academic training of engineers for the private sector of the economy started earlier (...)
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  28. Population Engineering and the Fight against Climate Change.Colin Hickey, Travis N. Rieder & Jake Earl - 2016 - Social Theory and Practice 42 (4):845-870.
    Contrary to political and philosophical consensus, we argue that the threats posed by climate change justify population engineering, the intentional manipulation of the size and structure of human populations. Specifically, we defend three types of policies aimed at reducing fertility rates: choice enhancement, preference adjustment, and incentivization. While few object to the first type of policy, the latter two are generally rejected because of their potential for coercion or morally objectionable manipulation. We argue that forms of each policy type are (...)
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  29.  23
    Conceptual Engineering and the Philosophical Fallacies of Language.Martin Hinton - 2024 - Topoi 43 (5):1661-1670.
    Conceptual Engineering, the practice of stipulating a change in the meaning of a word in order to improve it in some fashion, for some end, has proved a popular topic among philosophers of language in recent times. Deutsch (Philos Stud 177:3935–3957, 2020) has argued that it has received an undue degree of interest since its implementation falls onto one of the horns of a dilemma: either the change to be effected is in the global semantic meaning of the given word/concept, (...)
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  30.  21
    Biomedical Engineering Ethics.Philip Brey - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks, A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 392–396.
    This chapter contains sections titled: General Ethical Issues Cellular, Genetic and Tissue Engineering Biomaterials, Prostheses and Implants Biomedical Imaging and Optics Neural Engineering References and Further Reading.
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  31.  26
    Engineering the Climate: The Ethics of Solar Radiation Management.Albert Borgmann, Holly Jean Buck, Wylie Carr, Forrest Clingerman, Maialen Galarraga, Benjamin Hale, Marion Hourdequin, Ashley Mercer, Konrad Ott, Clare Palmer, Ronald Sandler, Patrick Taylor Smith, Bronislaw Szerszynski & Kyle Powys Whyte (eds.) - 2012 - Lexington Books.
    Engineering the Climate: The Ethics of Solar Radiation Management is a wide-ranging and expert analysis of the ethics of the intentional management of solar radiation. This book will be a useful tool for policy-makers, a provocation for ethicists, and an eye-opening analysis for both the scientist and the general reader with interest in climate change.
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  32.  43
    Teaching Engineering Ethics using BLOCKS Game.Shiew Wei Lau, Terence Peng Lian Tan & Suk Meng Goh - 2013 - Science and Engineering Ethics 19 (3):1357-1373.
    The aim of this study was to investigate the use of a newly developed design game called BLOCKS to stimulate awareness of ethical responsibilities amongst engineering students. The design game was played by seventeen teams of chemical engineering students, with each team having to arrange pieces of colored paper to produce two letters each. Before the end of the game, additional constraints were introduced to the teams such that they faced similar ambiguity in the technical facts that the engineers involved (...)
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  33.  13
    Engineering Design.Peter Kroes - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks, A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 112–117.
    This chapter contains sections titled: General Characterization A Design The Design Process Rationality and Creativity in Engineering Design References and Further Reading.
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  34.  19
    An Engineering Approach to Sustainable Decision Making.Kelly Bryck & Naoko Ellis - 2016 - Environmental Values 25 (6):639-662.
    Climate change is often tackled via a two-pronged approach of behaviour change and technological advancement. Policy studies and social sciences generally take ownership of influencing behaviours, while natural sciences and engineering tackle generating newer, more efficient technologies. Fusion of these methodologies is severely lacking. Engineers are uniquely situated to contribute to positive environmental action in both technological and behavioural realms. This article explores the psychological mindset of engineers as they make decisions to dissect factors that undermine sustainable behaviour. The Theory (...)
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  35.  27
    Corporate Social Responsibility Practices of Colombian Companies as Perceived by Industrial Engineering Students.Silvia Teresa Morales-Gualdrón, Daniel Andrés La Rotta Forero, Juliana Andrea Arias Vergara, Juliana Montoya Ardila & Carolina Herrera Bañol - 2020 - Science and Engineering Ethics 26 (6):3183-3215.
    This work describes the perceptions that Industrial Engineering students have regarding Colombian firms’ corporate social responsibility (CSR) practices. It also explores the incidence of gender, academic level, work experience and entrepreneurial intention on students’ vision. A survey with 70 CSR practices was designed based on previous research. Practices were grouped in ten dimensions: shareholders, customers, employees, suppliers, stakeholders, ethics, environment, legal, human rights and society. A representative sample of 142 students was used. Results show that students perceive a higher commitment (...)
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  36.  75
    Reverse-Engineering Risk.Angela O’Sullivan & Lilith Mace - forthcoming - Erkenntnis:1-26.
    Three philosophical accounts of risk dominate the contemporary literature. On the probabilistic account, risk has to do with the probability of a disvaluable event obtaining; on the modal account, it has to do with the modal closeness of that event obtaining; on the normic account, it has to do with the normalcy of that event obtaining. The debate between these accounts has proceeded via counterexample-trading, with each account having some cases it explains better than others, and some cases that it (...)
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  37.  9
    Engineering the mind: the arts of memory, writing literature and economic agency in digital technology.Mats Haraldsen - forthcoming - AI and Society:1-16.
    From a 4E cognition framework, this article compares earlier cultural and technologically mediated expert practices with contemporary use of digital technology. I discuss two case studies. First, the art of memory, where I look at how medieval monks constructed memory palaces inside their minds to enable creative thinking and how Renaissance thinker Giulio Camillo built on this tradition to create a complex machine to think. The second example is of literary writing, where I look at how writers engage with the (...)
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  38. Changing the Paradigm for Engineering Ethics.Jon Alan Schmidt - 2014 - Science and Engineering Ethics 20 (4):985-1010.
    Modern philosophy recognizes two major ethical theories: deontology, which encourages adherence to rules and fulfillment of duties or obligations; and consequentialism, which evaluates morally significant actions strictly on the basis of their actual or anticipated outcomes. Both involve the systematic application of universal abstract principles, reflecting the culturally dominant paradigm of technical rationality. Professional societies promulgate codes of ethics with which engineers are expected to comply, while courts and the public generally assign liability to engineers primarily in accordance with the (...)
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  39.  47
    Engineers and the other: the role of narrative ethics.M. A. Hersh - 2016 - AI and Society 31 (3):327-345.
    The paper presents a new seven-step methodology for using narrative ethics and two case studies illustrating its application. A brief discussion of the importance of ethics to engineers and the need to consider outcomes and macroethics introduce the paper. This is followed by overviews of the literature on narrative ethics, the ethics of care, and virtue ethics and moral exemplars. The ethics of care and virtue ethics are included due to their relationship to narrative and the fact they are probably (...)
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  40. Ethics for Construction Engineers and Managers in a Globalized Market.John Buckeridge & George Wang - 2015 - In C. Murphy, P. Gardoni, H. Bashir, Harris Jr & E. Masad, Engineering Ethics for a Globalized World. Dordrecht: Springer International Publishing.
    Ethical decision-making is central to the practice of construction engineering and management. This is no more evident than in the twenty-first century, when the construction industry must function in very diverse organizational contexts. Whilst construction companies pursue projects in international markets, many investors are buying or forming joint ventures with domestic companies. New and varied professional attitudes have recently arrived in western markets such as the United States and Australia because construction companies are increasingly employing managers from developing nations to (...)
     
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  41.  12
    Empathy’s Role in Engineering Ethics: Empathizing with One’s Self to Others Across the Globe.Justin L. Hess - 2024 - Science and Engineering Ethics 30 (6):1-23.
    Engineers make decisions with global impacts and empathy can motivate ethical reasoning and behavior that is sensitive to the needs and perspectives of stakeholders across the globe. Microethics and macroethics offer two frames of reference for engineering ethics education, but different dimensions of empathy play distinct roles in micro- and macroethics. Microethics emphasizes individual responsibility and interpersonal relationships whereas macroethics emphasizes societal obligations and impacts. While empathy can support ethical reasoning and behavior for each, in this paper I argue that (...)
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  42.  16
    Engineering Disputed Concepts and the Meeting of Minds.Davide Coraci & Piero Avitabile - 2024 - Topoi 43 (5):1607-1619.
    Critical discussions can often require conceptual engineering, a process in which speakers are engaged in revising each other’s concepts. We show that the analysis of conceptual engineering can benefit from integrating argumentation theory with models of conceptual representation. Argumentation theory accounts for the argumentative moves of the discussants, allowing the detection of speakers’ conceptual disagreements, for which some fallacies can be seen as cues. Models of conceptual representation, such as Conceptual spaces and the theory of meeting of minds, allow us (...)
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  43.  85
    Conceptual Engineering: Be Careful What You Wish for.Mark Richard - 2023 - Topoi 42 (4):1063-1073.
    Many trans women (men) say that they know that they are women (men). Anti-trans activists deny the claims trans people say they know. Many say that social kinds like woman, Latinx, and consent are in some important sense constructed in the social world and are thus open to a certain amount of engineering. I think the claims to knowledge trans people make are correct, and I think it correct that such things as gender, race, and consent are constructed by society (...)
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  44. Social Responsibility in French Engineering Education: A Historical and Sociological Analysis.Christelle Didier & Antoine Derouet - 2013 - Science and Engineering Ethics 19 (4):1577-1588.
    In France, some institutions seem to call for the engineer’s sense of social responsibility. However, this call is scarcely heard. Still, engineering students have been given the opportunity to gain a general education through courses in literature, law, economics, since the nineteenth century. But, such courses have long been offered only in the top ranked engineering schools. In this paper, we intend to show that the wish to increase engineering students’ social responsibility is an old concern. We also aim (...)
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  45. Truth and objectivity in conceptual engineering.Sarah Sawyer - 2020 - Inquiry: An Interdisciplinary Journal of Philosophy 63 (9):1001-1022.
    Conceptual engineering is to be explained by appeal to the externalist distinction between concepts and conceptions. If concepts are determined by non-conceptual relations to objective properties rather than by associated conceptions (whether individual or communal), then topic preservation through semantic change will be possible. The requisite level of objectivity is guaranteed by the possibility of collective error and does not depend on a stronger level of objectivity, such as mind-independence or independence from linguistic or social practice more generally. This means (...)
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  46.  87
    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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  47.  25
    Comparing First-Year Engineering Student Conceptions of Ethical Decision-Making to Performance on Standardized Assessments of Ethical Reasoning.Richard T. Cimino, Scott C. Streiner, Daniel D. Burkey, Michael F. Young, Landon Bassett & Joshua B. Reed - 2024 - Science and Engineering Ethics 30 (3):1-21.
    The Defining Issues Test 2 (DIT-2) and Engineering Ethical Reasoning Instrument (EERI) are designed to measure ethical reasoning of general (DIT-2) and engineering-student (EERI) populations. These tools—and the DIT-2 especially—have gained wide usage for assessing the ethical reasoning of undergraduate students. This paper reports on a research study in which the ethical reasoning of first-year undergraduate engineering students at multiple universities was assessed with both of these tools. In addition to these two instruments, students were also asked to create (...)
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    Genetically Engineering Human-Animal Chimeras and Lives Worth Living.Dennis R. Cooley - 2008 - Between the Species 13 (8):1.
    Genetic engineering often generates fear of out of control scientists creating Frankenstein creatures that will terrorize the general populace, especially in the cases of human-animal chimeras. While sometimes an accurate characterization of some researchers, this belief is often the result of repugnance for new technology rather than being rationally justified. To facilitate thoughtful discussion the moral issues raised by human-animal chimeras, ethicists and other stakeholders must develop a rational ethical framework before raw emotion has a chance of becoming the (...)
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    Chatbots, search engines, and the sealing of knowledges.Nora Freya Lindemann - forthcoming - AI and Society:1-14.
    In 2023, online search engine provider Microsoft integrated a language model that provides direct answers to search queries into its search engine Bing. Shortly afterwards, Google also introduced a similar feature to its search engine with the launch of Google Gemini. This introduction of direct answers to search queries signals an important and significant change in online search. This article explores the implications of this new search paradigm. Drawing on Donna Haraway’s theory of _Situated Knowledges_ and Rainer Mühlhoff’s concept of (...)
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    Genetic Engineering Revolution.Benjamin Gregg - 2023 - In Nathanaël Wallenhorst & Christoph Wulf, Handbook of the Anthropocene. Springer. pp. 505-510.
    Genetic engineering in general, and human genetic editing in particular, is revolutionizing humankind’s self-understanding: an evolved organism taking ever greater control of its own evolution. This Anthropocenic phenomenon is deeply equivocal (Gregg B. Human genetic engineering: biotic justice in the anthropocene? In: DellaSala D, Goldstein M (eds) Encyclopedia of the Anthropocene, vol 4. Elsevier, Oxford, pp 351–359, 2018). While delivering humans from some risks, it renders them vulnerable to unintended consequences as well. Even in the face of seemingly intractable (...)
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