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Results for 'Life-engineering'

971 found
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  1.  14
    (1 other version)Life Engineering: The Good Life as an Engineered Product.Kenneth A. Anderson - 2021 - Global Philosophy 32 (6):1169-1187.
    Drawing on broad definitions of technology and engineering as well as precedents in the philosophical literature, this paper makes the novel argument that the purposeful design of one’s unique good life using existing philosophical concepts is an engineering activity. Whether as a metaphor or as an engineering activity in its own right, a sampling of important benefits and perspectives provided for well-being by the presented “life engineering” framework are highlighted. A key strength of the (...)
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  2.  81
    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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  3.  71
    Investigation of ethical dilemmas of school principals: comparing Turkish and Canadian principals.Engin Karadag & Esra Tekel - 2020 - Asian Journal of Business Ethics 9 (1):73-92.
    Increasingly complex working environments of school principals inevitably led them to face moral dilemmas in daily life. The aim of this research is to reveal which kinds of moral dilemmas principals fall into mostly, how principals follow the road to making decisions in the moral dilemmas, and if the nature of management affects the decision-making process of their moral dilemmas or not. For data collection process snowball sampling was used. Semi-structured interviews and vignettes which were designed by researchers were (...)
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  4. Conceptual Engineering and the Politics of Implementation.Matthieu Queloz & Friedemann Bieber - 2022 - Pacific Philosophical Quarterly 103 (3):670-691.
    Conceptual engineering is thought to face an ‘implementation challenge’: the challenge of securing uptake of engineered concepts. But is the fact that implementation is challenging really a defect to be overcome? What kind of picture of political life would be implied by making engineering easy to implement? We contend that the ambition to obviate the implementation challenge goes against the very idea of liberal democratic politics. On the picture we draw, the implementation challenge can be overcome by (...)
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  5. Climate Engineering and the Cessation Requirement: The Ethics of a Life-Cycle.Christopher J. Preston - 2016 - Environmental Values 25 (1):91-107.
    Much of the work on the ethics of climate engineering over the last few years has focused on the front-end of the potential timeline for climate intervention. Topics have included the initial taboo on bringing the discussion of climate engineering into the open, guidelines to put in place before commencing research, and governance arrangements before first deployment. While this work is clearly important, the current paper considers what insights can be gleaned from considering the tail-end, that is, by (...)
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  6.  78
    Engineering Life Expectancy and Non-identity Cases.Tatjana Višak - 2018 - Journal of Agricultural and Environmental Ethics 31 (2):281-293.
    In his paper “Eating Animals the Nice Way” McMahan : 66–76, 2008) explores whether there are ways of routinely using non-human animals for human consumption that are morally acceptable. He dismisses a practice of benign animal husbandry, in which animals are killed prematurely and believes that a practice in which animals were engineered to drop down dead instantaneously at the same age would be equally wrong, even though it would not involve killing. Yet, McMahan considers his intuition that both practices (...)
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  7. Moral Engines: Exploring the Ethical Drives in Human Life.Cheryl Mattingly, Rasmus Dyring, Maria Louw & Thomas Schwarz Wentzer (eds.) - 2022 - New York, Oxford: Berghahn Books.
    In the past fifteen years, there has been a virtual explosion of anthropological literature arguing that morality should be considered central to human practice. Out of this explosion new and invigorating conversations have emerged between anthropologists and philosophers. Moral Engines: Exploring the Ethical Drives in Human Life includes essays from some of the foremost voices in the anthropology of morality, offering unique interdisciplinary conversations between anthropologists and philosophers about the moral engines of ethical life, addressing the question: What (...)
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  8.  38
    Human Life as Terra Nullius: Socially Blind Engineering in Facebook’s Foundational Technologies.João C. Magalhães & Nick Couldry - 2025 - Philosophy and Technology 38 (4):140.
    Critical platform scholars have long suggested, if indirectly, that social media power is somehow akin to social engineering. This article argues that the parallel is analytically productive, but for reasons that are more complex than has previously been appreciated. By examining Facebook’s foundational technologies, as described in patents that sought to protect the company’s early innovations, we argue that, unlike previous technocratic attempts to reconstruct society, the platform’s equally consequential rendering of social reality into a legible and controllable social (...)
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  9. Engineers of Life? A Critical Examination of the Concept of Life in the Debate on Synthetic Biology.Johannes Steizinger - 2016 - In Toepfer Georg & Engelhard Margret, Ambivalences of Creating Life – Societal and Philosophical Dimensions of Synthetic Biology. Springer. pp. 275−292.
    The concept of life plays a crucial role in the debate on synthetic biology. The first part of this chapter outlines the controversial debate on the status of the concept of life in current science and philosophy. Against this background, synthetic biology and the discourse on its scientific and societal consequences is revealed as an exception. Here, the concept of life is not only used as buzzword but also discussed theoretically and links the ethical aspects with the (...)
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  10.  92
    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 (...)
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  11. Engineering the trust machine. Aligning the concept of trust in the context of blockchain applications.Eva Pöll - 2024 - Ethics and Information Technology 26 (2):1-16.
    Complex technology has become an essential aspect of everyday life. We rely on technology as part of basic infrastructure and repeatedly for tasks throughout the day. Yet, in many cases the relation surpasses mere reliance and evolves to trust in technology. A new, disruptive technology is blockchain. It claims to introduce trustless relationships among its users, aiming to eliminate the need for trust altogether—even being described as “the trust machine”. This paper presents a proposal to adjust the concept of (...)
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  12.  62
    Ethical engineering: a practical guide with case studies.Eugene Schlossberger - 2023 - Boca Raton: CRC Press.
    Ethical Engineering: A Practical Guide with Case Studies provides detailed and practical guidance in making decisions about the many ethical issues practicing engineers may face in their professional lives. It outlines a decision-making procedure and helps engineers construct an ethics toolkit consisting of professional models, a comprehensive set of ethical considerations and factors that help in weighing those considerations, and analyses of particular issues, such as reverse engineering a patented process. Illustrating case studies, both brief and detailed, are (...)
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  13. The Future of Engineering: Philosophical Foundations, Ethical Problems and Application Cases.Albrecht Fritzsche & Sascha Julian Oks (eds.) - 2018 - Cham: Springer Verlag.
    In a world permeated by digital technology, engineering is involved in every aspect of human life. Engineers address a wider range of design problems than ever before, raising new questions and challenges regarding their work, as boundaries between engineering, management, politics, education and art disappear in the face of comprehensive socio-technical systems. It is therefore necessary to review our understanding of engineering practice, expertise and responsibility. This book advances the idea that the future of engineering (...)
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  14. Genetic engineering and the sacred.Bernard E. Rollin - 2005 - Zygon 40 (4):939-952.
    Genetic engineering of life forms could well have a profound effect upon our sense of the sacred. Integrating the experience of the sacred as George Bataille does, we can characterize it as a phenomenological encounter with prelinguistic, noncategoreal experience. This view of the sacred is similar to Friedrich Nietzsche's Dionysian experience or Rudolf Otto's mysterium tremendum and diminishes one's sense of self. It seems similar to the eighteenth‐century aesthetic categorization of “the sublime.” Despite the dominant rational approach to (...)
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  15.  63
    Playing God: Genetic Engineering and the Manipulation of Life.June Goodfield - 1977 - Random House (NY).
  16.  83
    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 (...)
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  17. Failure of Engineering Artifacts: A Life Cycle Approach.Luca Del Frate - 2013 - Science and Engineering Ethics 19 (3):913-944.
    Failure is a central notion both in ethics of engineering and in engineering practice. Engineers devote considerable resources to assure their products will not fail and considerable progress has been made in the development of tools and methods for understanding and avoiding failure. Engineering ethics, on the other hand, is concerned with the moral and social aspects related to the causes and consequences of technological failures. But what is meant by failure, and what does it mean that (...)
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  18. 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 (...)
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  19.  41
    Rethinking Engineering Design and Decision Making in Response to Economic, Social, and Environmental Crises.Willem H. Vanderburg - 2009 - Bulletin of Science, Technology and Society 29 (5):421-432.
    High levels of specialization have created knowledge with little or no “peripheral vision,” and the resulting “blind spots” are causing many “collisions” with human life, society, and the biosphere. Each discipline and specialty must be equipped with a “map” showing its connections to everything else, but especially the negative consequences that tend to be associated with its practices. Preventively oriented practices can improve the ratio of desired to undesired effects of design and decision making to create ways of (...) that are more sustainable across the board, as opposed to treating symptoms (such as global warming). This new approach has already fired the imagination of many students in engineering. (shrink)
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  20.  19
    Genetically Engineered Nonhuman Animals: A Global Overview and Research Agenda.Oliver Keane - 2019 - Society and Animals 29 (2):173-202.
    This paper suggests studies on genetically engineering nonhuman animal genes have globalized over the last 30 years. The results unveil maps that give a global overview of universities’ studies into engineering animal genes, by purpose and by species, at a state scale. A network map also shows how studies on engineering animal genes are co-constituted internationally, at a state scale. Some of the more notable map findings are developed using a novel ontological approach. This ontology relates the (...)
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  21.  22
    The Third Stage of Engineering Activity: Using Artifacts and Living a Life.Bocong Li - 2021 - In An Introduction to the Philosophy of Engineering: I Create, Therefore I Am. Berlin, Heidelberg: Springer Berlin Heidelberg. pp. 139-183.
    The third stage of engineering activityStagethe third stage of engineering activity is the using artifactsArtifactsusing artifacts and living a life. ForEngineeringphilosophy of engineering philosophy of engineering, artifacts are created in order to be used. Value is not only a major economic concept but also a philosophical one. Engineering and scientificScientistsscientific activityactivitiesActivityscientific activities differ in that the former are value-directed activities whereas the latter are mostly truth-directed ones. This chapter combines economic, semanticSemantics, sociological, and philosophical (...)
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  22. (1 other version)Human Engineering and Climate Change.S. Matthew Liao, Anders Sandberg & Rebecca Roache - 2012 - Ethics, Policy and Environment 15 (2):206 - 221.
    Anthropogenic climate change is arguably one of the biggest problems that confront us today. There is ample evidence that climate change is likely to affect adversely many aspects of life for all people around the world, and that existing solutions such as geoengineering might be too risky and ordinary behavioural and market solutions might not be sufficient to mitigate climate change. In this paper, we consider a new kind of solution to climate change, what we call human engineering, (...)
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  23.  84
    Controlling Life: Jacques Loeb and the Engineering Ideal in BiologyPhilip J. Pauly.Keith Benson - 1990 - Isis 81 (3):600-601.
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  24.  50
    Engineering Life.Christopher Coenen - 2019 - NanoEthics 13 (3):151-153.
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  25.  62
    The life and legend of James Watt: collaboration, natural philosophy, and the improvement of the steam engine.Jan Golinski - forthcoming - Annals of Science:1-3.
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  26. Genetic Engineering: Life as a Plaything.Robert L. Sinsheimer - 1987 - In A. Pablo Iannone, Contemporary moral controversies in technology. New York: Oxford University Press. pp. 128--131.
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  27.  73
    Chemistry and the Engineering of Life Around 1900: Research and Reflections by Jacques Loeb.Ute Deichmann - 2009 - Biological Theory 4 (4):323-332.
    Dissatisfied with the descriptive and speculative methods of evolutionary biology of his time, the physiologist Jacques Loeb, best known for his “engineering” approach to biology, reflected on the possibilities of artificially creating life in the laboratory. With the objective of experimentally tackling one of the crucial questions of organic evolution, i.e., the origin of life from inanimate matter, he rejected claims made by contemporary scientists of having produced artificial life through osmotic growth processes in inorganic salt (...)
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  28. Predicting the Remaining Useful Life of an Aircraft Engine Using a Stacked Sparse Autoencoder with Multilayer Self-Learning.Jian Ma, Hua Su, Wan-lin Zhao & Bin Liu - 2018 - Complexity 2018:1-13.
    Because they are key components of aircraft, improving the safety, reliability and economy of engines is crucial. To ensure flight safety and reduce the cost of maintenance during aircraft engine operation, a prognostics and health management system that focuses on fault diagnosis, health assessment, and life prediction is introduced to solve the problems. Predicting the remaining useful life is the most important information for making decisions about aircraft engine operation and maintenance, and it relies largely on the selection (...)
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  29. Engineering Human Beauty.Matteo Ravasio - 2023 - Australasian Journal of Philosophy 101 (4):998-1011.
    ABSTRACT Individual differences in bodily beauty result in significant differences in life outcomes. Some such differences seem unwarranted. On this basis, various authors have argued that there is a kind of discrimination—lookism—that affects those who are aesthetically disadvantaged. Several strategies have been proposed to address lookism. One aim of this paper is to draw a distinction between two sorts of anti-lookist strategies. Redistributive approaches propose to alter the current distribution of beauty, either by broadening beauty standards, or by giving (...)
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  30. Roleplaying Game–Based Engineering Ethics Education: Lessons from the Art of Agency.Trystan S. Goetze - 2024 - Proceedings of the 2024 American Society for Engineering Education St. Lawrence Section Annual Conference.
    How do we prepare engineering students to make ethical and responsible decisions in their professional work? This paper presents an approach that enhances engineering students’ engagement with ethical reasoning by simulating decision-making in a complex scenario. The approach has two principal inspirations. The first is Anthony Weston’s scenario-based teaching. Weston’s concept of a scenario is a situation that changes in response to choices made by participants, according to an inner logic. Scenarios can dynamically explore open-ended complex problems without (...)
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  31. Conceptual Engineering and Neurath’s Boat: A Return to the Political Roots of Logical Empiricism.Audrey Yap - 2022 - In David Bordonaba Plou, Víctor Fernández Castro & José Ramón Torices, The Political Turn in Analytic Philosophy: Reflections on Social Injustice and Oppression. Berlin, Boston: De Gruyter. pp. 31-52.
    Logical empiricism is not frequently associated with social and political philosophy, but several of the logical empiricists were politically active during their earlier careers and did consider the ways in which their scientific philosophy could provide tools for political engagement. The scientific worldview that they explicitly endorsed was intended to be allied with other modernist projects for the improvement of ordinary life. This chapter argues that some of the philosophical tools and frameworks they developed for those ends can be (...)
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  32. Engineering affect: emotion regulation, the internet, and the techno-social niche.Joel Krueger & Lucy Osler - 2019 - Philosophical Topics 47 (2):205-231.
    Philosophical work exploring the relation between cognition and the Internet is now an active area of research. Some adopt an externalist framework, arguing that the Internet should be seen as environmental scaffolding that drives and shapes cognition. However, despite growing interest in this topic, little attention has been paid to how the Internet influences our affective life — our moods, emotions, and our ability to regulate these and other feeling states. We argue that the Internet scaffolds not only cognition (...)
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  33.  28
    Engineering the Skin: Embodied Experiences of Healing from Acne Among YouTube Vloggers.Miranda P. Dotson & Marc Lafrance - 2024 - Body and Society 30 (1):31-54.
    We examine how 24 adult YouTube vloggers tell their ‘acne stories’ by means of videos posted on YouTube between 2015 and 2020. In doing so, we study the relationship between embodied experiences of acne and health-seeking practices, particularly as they pertain to managing the everyday life of the body, abandoning medical expertise and embracing lay knowledge, living with disability, and engineering an improved self. Overall, we suggest that the vloggers share a general scepticism about the clinical management of (...)
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  34. 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. (...)
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  35.  94
    The Diversity of Engineering in Synthetic Biology.Massimiliano Simons - 2020 - NanoEthics 14 (1):71-91.
    A recurrent theme in the characterization of synthetic biology is the role of engineering. This theme is widespread in the accounts of scholars studying this field and the biologists working in it, in those of the biologists themselves, as well as in policy documents. The aim of this article is to open this black-box of engineering that is supposed to influence and change contemporary life sciences. Too often, both synthetic biologists and their critics assume a very narrow (...)
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  36.  43
    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 (...)
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  37. Metaphysics, Function and the Engineering of Life: the Problem of Vitalism.Charles T. Wolfe, Bohang Chen & Cécilia Bognon-Küss - 2018 - Kairos 20 (1):113-140.
    Vitalism was long viewed as the most grotesque view in biological theory: appeals to a mysterious life-force, Romantic insistence on the autonomy of life, or worse, a metaphysics of an entirely living universe. In the early twentieth century, attempts were made to present a revised, lighter version that was not weighted down by revisionary metaphysics: “organicism”. And mainstream philosophers of science criticized Driesch and Bergson’s “neovitalism” as a too-strong ontological commitment to the existence of certain entities or “forces”, (...)
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  38.  67
    (1 other version)Engineering as “Technology of Technology” and the Subjugated Technical Practice.Bono Po-Jen Shih - 2023 - Techné Research in Philosophy and Technology 27 (1):86-114.
    This article calls into question the simplistic identification of modern technology with quantitative efficiency in order to develop three main themes. First, I establish that technology, broadly construed, is the use of knowledge and resources to meet specific human needs. Accordingly, dominant technical practice that favors efficiency and numerical criteria and discriminates against other technologies should more appropriately be called “technology of technology.” Second, I delineate how dominant practice in engineering is an exemplar of technology of technology, when it (...)
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  39.  57
    Software Engineering Ethics.Daniela Marcu, Dan Laurenţiu Milici & Mirela Danubianu - 2020 - Postmodern Openings 11 (4):248-261.
    Over the past 30 years, computer engineering has developed a lot. Currently, computer and software applications have a central role in business, medicine, security, communications, industry, education, and everyday life. Software developers, peoples who manage computer networks, data security analysts can do well, but they also have the potential to cause suffering and harm to the clients or ordinary peoples, willingly or not. For this reason, IT activities must be regulated by specific laws. From the beginning, we argue (...)
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  40.  30
    Conceptual Engineering: A Footnote to Plato.Scott Berman - forthcoming - History of Philosophy & Logical Analysis.
    If concepts are to what the predicates in our language refer, then Plato would say that concepts are nonspatiotemporal entities, called “Forms,” and as such cannot be created, changed, or destroyed. Thus, if conceptual engineering requires that concepts can be created or changed, then Plato could not accurately be called a conceptual engineer. On the other hand, Plato did think that we can create or change the sights and sounds we use as tools by means of our shared thinking (...)
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  41. Engineering flesh: towards an ethics of lived integrity. [REVIEW]Mechteld-Hanna Gertrud Derksen & Klasien Horstman - 2008 - Medicine, Health Care and Philosophy 11 (3):269-283.
    The objective of tissue engineering is to create living body parts that will fully integrate with the recipient’s body. With respect to the ethics of tissue engineering, one can roughly distinguish two perspectives. On the one hand, this technology is considered morally good because tissue engineering is ‘copying nature’ On the other hand, tissue engineering is considered morally dangerous because it defies nature: bodies constructed in the laboratory are seen as unnatural. In this article, we develop (...)
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  42. On Pluralism and Conceptual Engineering: Introduction and Overview.Delia Belleri - forthcoming - Inquiry: An Interdisciplinary Journal of Philosophy:1-19.
    Pluralism is relevant to conceptual engineering in many ways. First of all, we face the issue of pluralism when trying to characterise the very object(s) of conceptual engineering. Is it just concepts? Could concepts be pluralistically conceived for the purposes of conceptual engineering? Or rather, is it concepts and other representational devices as well? Second, one may wonder whether concepts have only one function in our mental life (representation) or, rather, a plurality of functions (including non-representational (...)
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  43. Introducing Survival Ethics into Engineering Education and Practice.C. Verharen, J. Tharakan, G. Middendorf, M. Castro-Sitiriche & G. Kadoda - 2011 - Science and Engineering Ethics 19 (2):599-623.
    Given the possibilities of synthetic biology, weapons of mass destruction and global climate change, humans may achieve the capacity globally to alter life. This crisis calls for an ethics that furnishes effective motives to take global action necessary for survival. We propose a research program for understanding why ethical principles change across time and culture. We also propose provisional motives and methods for reaching global consensus on engineering field ethics. Current interdisciplinary research in ethics, psychology, neuroscience and evolutionary (...)
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  44. Russian Engineering in the Context of Philosophical and Sociological Studies.Elena E. Chebotareva - 2020 - Epistemology and Philosophy of Science 57 (1):131-145.
    This article explores the problems of Russian engineering in the context of the world studies in philosophy of engineering. Firstly, the author highlights the main questions and topics of the modern philosophy of engineering: what engineering is, the “magic” and “human-oriented” nature of technologies, and models of engineering ethics. Secondly, the article presents a specific mythological narrative of domestic engineers (“the theory of a missed chance”) and shows the inclusion of this “theory” in alternate historical (...)
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  45. Genetic engineering and environmental ethics.Andrew Dobson - 1997 - Cambridge Quarterly of Healthcare Ethics 6 (2):205.
    When God gave humankind dominion over the earth he may not have known exactly what we would be able to do with it. The technical capacities to which the production and reproduction of our everyday life have given rise have grown at an astonishing and, it seems, ever-increasing rate. The instruments that we use to do work on the world have become sharper and more refined, and the implications of human interventions in the nonhuman environment are much more far-reaching (...)
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  46.  82
    Purification: Engineering Water and Producing Politics.Astrid Oberborbeck Andersen - 2018 - Science, Technology, and Human Values 43 (3):379-400.
    In Arequipa, Peru’s second largest city, engineers work hard to control water flows and provide different sectors with clean and sufficient water. In 2011, only 10 percent of the totality of water used daily by Arequipa’s then close to 1 million people—in households, tourism, industry, and mining—was treated before it was returned to the river where it continues its flow downstream towards cultivated fields and, finally, into the Pacific Ocean. It takes specialized knowledge and manifold technologies to manage water and (...)
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  47.  27
    Engineering Invention: Frank J. Sprague and the U.S. Electrical Industry.Frederick Dalzell, W. Bernard Carlson & John Sprague - 2009 - MIT Press.
    The technological breakthroughs and entrepreneurial adventures of Frank J. Sprague during the transformative years of the early electrical industry. Over the course of a little less than twenty years, inventor Frank J. Sprague achieved an astonishing series of technological breakthroughs--from pioneering work in self-governing motors to developing the first full-scale operational electric railway system--all while commercializing his inventions and promoting them to financial backers and the public. In Engineering Invention, Frederick Dalzell tells Sprague's story, setting it against the backdrop (...)
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  48.  48
    The Engineering Project: Its Nature, Ethics, and Promise.Gene Moriarty - 2015 - University Park, USA: Pennsylvania State University Press.
    We all live our daily lives surrounded by the products of technology that make what we do simpler, faster, and more efficient. These are benefits we often just take for granted. But at the same time, as these products disburden us of unwanted tasks that consumed much time and effort in earlier eras, many of them also leave us more disengaged from our natural and even human surroundings. It is the task of what Gene Moriarty calls focal engineering to (...)
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  49.  80
    The Engineering-Business Nexus: Symbiosis, Tension and Co-Evolution.Mike Murphy, Martin Meganck, Christelle Didier, Bernard Delahousse & Steen Christensen (eds.) - 2018 - Cham: Springer Verlag.
    Fascinating and compelling in equal measure this volume presents a critical examination of the multilayered relationships between engineering and business. In so doing the study also stimulates ethical reflection on how these relationships either enhance or inhibit strategies to address vital issues of our time. In the context of geopolitical, economic, and environmental tendencies the authors explore the world that we should want to create and the role of the engineer and the business manager in this endeavor. Throughout this (...)
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  50.  37
    Biological Engineering, Risk, and Uncertainty.David A. Relman - 2014 - Hastings Center Report 44 (S5):36-37.
    Most discussions about the risks associated with synthetic biology tend to begin and end with the same message. That is, in these revolutionary times, when the capabilities for designing and reengineer­ing biological agents are advancing at previously unimag­inable rates but have still not realized their full potential, when risks therefore remain uncertain, and where the actors are generally well‐meaning people who seek im­portant benefits for society and environment, the most reasonable approach is to exercise “prudent vigilance,” to minimize proscriptive oversight, (...)
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