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Encyclopedia of Applied Ethics: J-R

Elsivier (1997)

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  1. Playing God: Symbolic Arguments Against Technology.Massimiliano Simons - 2022 - NanoEthics 16 (2):151-165.
    In ethical reflections on new technologies, a specific type of argument often pops up, which criticizes scientists for “playing God” with these new technological possibilities. The first part of this article is an examination of how these arguments have been interpreted in the literature. Subsequently, this article aims to reinterpret these arguments as symbolic arguments: they are grounded not so much in a set of ontological or empirical claims, but concern symbolic classificatory schemes that ground our value judgments in the (...)
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  • Scapegoats.Gregory Mellema - 2000 - Criminal Justice Ethics 19 (1):3-9.
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  • Co-responsibility for research integrity.Carl Mitcham - 2003 - Science and Engineering Ethics 9 (2):273-290.
    To enlarge the discussion of scientific responsibility for research integrity, this paper offers two historico-philosophical observations. First, in the broad history of ideas, modern ethics replaces social role responsibility with appeals to abstract principles; by contrast, discussions within the scientific community of responsibility for research integrity constitute a rediscovery of the continuing vitality of role responsibility. This is a rediscovery from which philosophy itself may benefit. Second, within the context of scientists’ concerns, the idea of role responsibility has undergone significant (...)
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  • The Diversity of Responsibility: The Value of Explication and Pluralization.Silke Schicktanz & Mark Schweda - 2012 - Medicine Studies 3 (3):131-145.
    Purpose Although the term “responsibility” plays a central role in bioethics and public health, its meaning and implications are often unclear. This paper defends the importance of a more systematic conception of responsibility to improve moral philosophical as well as descriptive analysis. Methods We start with a formal analysis of the relational conception of responsibility and its meta-ethical presuppositions. In a brief historical overview, we compare global-collective, professional, personal, and social responsibility. The value of our analytical matrix is illustrated by (...)
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  • “Now Is a Time for Optimism”: The Politics of Personalized Medicine in Mental Health Research.Jonas Rüppel - 2019 - Science, Technology, and Human Values 44 (4):581-611.
    Since the completion of the Human Genome Project, personalized medicine has become one of the most influential visions guiding medical research. This paper focuses on the politics of personalized medicine in psychiatry as a medical specialty, which has rarely been investigated by social science scholars. I examine how this vision is being sustained and even increasingly institutionalized within the mental health arena, even though related research has repeatedly failed. Based on a document analysis and expert interviews, this article identifies discursive (...)
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  • Ethics Across the Curriculum: Prospects for Broader (and Deeper) Teaching and Learning in Research and Engineering Ethics.Carl Mitcham & Elaine E. Englehardt - 2016 - Science and Engineering Ethics 25 (6):1735-1762.
    The movements to teach the responsible conduct of research and engineering ethics at technological universities are often unacknowledged aspects of the ethics across the curriculum movement and could benefit from explicit alliances with it. Remarkably, however, not nearly as much scholarly attention has been devoted to EAC as to RCR or to engineering ethics, and RCR and engineering ethics educational efforts are not always presented as facets of EAC. The emergence of EAC efforts at two different institutions—the Illinois Institute of (...)
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  • The wisdom of nature in integrating science, ethics and the arts.Anton Moser - 2000 - Science and Engineering Ethics 6 (3):365-382.
    This paper deals with an approach to the integration of science (with technology and economics), ethics (with religion and mysticism), the arts (aesthetics) and Nature, in order to establish a world-view based on holistic, evolutionary ethics that could help with problem solving. The author suggests that this integration is possible with the aid of “Nature’s wisdom” which is mirrored in the macroscopic pattern of the ecosphere. The corresponding eco-principles represent the basis for unifying soft and hard sciences resulting in “deep (...)
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  • Uncertainties of Nutrigenomics and Their Ethical Meaning.Michiel Korthals & Rixt Komduur - 2010 - Journal of Agricultural and Environmental Ethics 23 (5):435-454.
    Again and again utopian hopes are connected with the life sciences (no hunger, health for everyone; life without diseases, longevity), but simultaneously serious research shows uncertain, incoherent, and ambivalent results. It is unrealistic to expect that these uncertainties will disappear. We start by providing a not exhaustive list of five different types of uncertainties end-users of nutrigenomics have to cope with without being able to perceive them as risks and to subject them to risk-analysis. First, genes connected with the human (...)
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  • Societal Sentience: Constructions of the Public in Animal Research Policy and Practice.Ashley Davies & Pru Hobson-West - 2018 - Science, Technology, and Human Values 43 (4):671-693.
    The use of nonhuman animals as models in research and drug testing is a key route through which contemporary scientific knowledge is certified. Given ethical concerns, regulation of animal research promotes the use of less “sentient” animals. This paper draws on a documentary analysis of legal documents and qualitative interviews with Named Veterinary Surgeons and others at a commercial laboratory in the UK. Its key claim is that the concept of animal sentience is entangled with a particular imaginary of how (...)
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  • Bibliografía temática de bioética.David Rodriguez-Arias & Marial del Mar Cabezas - 2008 - Azafea: Revista de Filosofia 10 (1).
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