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  1. Principles of Biomedical Ethics.Ezekiel J. Emanuel, Tom L. Beauchamp & James F. Childress - 1995 - Hastings Center Report 25 (4):37.
    Book reviewed in this article: Principles of Biomedical Ethics. By Tom L. Beauchamp and James F. Childress.
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  • Intelligent Virtue.Julia Annas - 2011 - Oxford, GB: Oxford University Press.
    Julia Annas offers a new account of virtue and happiness as central ethical ideas. She argues that exercising a virtue involves practical reasoning of the kind we find in someone exercising an everyday practical skill, such as farming, building, or playing the piano. This helps us to see virtue as part of an agent's happiness or flourishing.
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  • The Ethics of AI Ethics: An Evaluation of Guidelines.Thilo Hagendorff - 2020 - Minds and Machines 30 (1):99-120.
    Current advances in research, development and application of artificial intelligence systems have yielded a far-reaching discourse on AI ethics. In consequence, a number of ethics guidelines have been released in recent years. These guidelines comprise normative principles and recommendations aimed to harness the “disruptive” potentials of new AI technologies. Designed as a semi-systematic evaluation, this paper analyzes and compares 22 guidelines, highlighting overlaps but also omissions. As a result, I give a detailed overview of the field of AI ethics. Finally, (...)
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  • Technology and the Virtues: A Philosophical Guide to a Future Worth Wanting.Shannon Vallor - 2016 - New York, NY: Oxford University Press USA.
    New technologies from artificial intelligence to drones, and biomedical enhancement make the future of the human family increasingly hard to predict and protect. This book explores how the philosophical tradition of virtue ethics can help us to cultivate the moral wisdom we need to live wisely and well with emerging technologies.
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  • (1 other version)A united framework of five principles for AI in society.Luciano Floridi & Josh Cowls - 2019 - Harvard Data Science Review 1 (1).
    Artificial Intelligence (AI) is already having a major impact on society. As a result, many organizations have launched a wide range of initiatives to establish ethical principles for the adoption of socially beneficial AI. Unfortunately, the sheer volume of proposed principles threatens to overwhelm and confuse. How might this problem of ‘principle proliferation’ be solved? In this paper, we report the results of a fine-grained analysis of several of the highest-profile sets of ethical principles for AI. We assess whether these (...)
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  • From what to how: an initial review of publicly available AI ethics tools, methods and research to translate principles into practices.Jessica Morley, Luciano Floridi, Libby Kinsey & Anat Elhalal - 2020 - Science and Engineering Ethics 26 (4):2141-2168.
    The debate about the ethical implications of Artificial Intelligence dates from the 1960s :741–742, 1960; Wiener in Cybernetics: or control and communication in the animal and the machine, MIT Press, New York, 1961). However, in recent years symbolic AI has been complemented and sometimes replaced by Neural Networks and Machine Learning techniques. This has vastly increased its potential utility and impact on society, with the consequence that the ethical debate has gone mainstream. Such a debate has primarily focused on principles—the (...)
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  • Principles alone cannot guarantee ethical AI.Brent Mittelstadt - 2019 - Nature Machine Intelligence 1 (11):501-507.
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  • Online Manipulation: Hidden Influences in a Digital World.Daniel Susser, Beate Roessler & Helen Nissenbaum - 2019 - Georgetown Law Technology Review 4:1-45.
    Privacy and surveillance scholars increasingly worry that data collectors can use the information they gather about our behaviors, preferences, interests, incomes, and so on to manipulate us. Yet what it means, exactly, to manipulate someone, and how we might systematically distinguish cases of manipulation from other forms of influence—such as persuasion and coercion—has not been thoroughly enough explored in light of the unprecedented capacities that information technologies and digital media enable. In this paper, we develop a definition of manipulation that (...)
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  • Ethical Implications and Accountability of Algorithms.Kirsten Martin - 2018 - Journal of Business Ethics 160 (4):835-850.
    Algorithms silently structure our lives. Algorithms can determine whether someone is hired, promoted, offered a loan, or provided housing as well as determine which political ads and news articles consumers see. Yet, the responsibility for algorithms in these important decisions is not clear. This article identifies whether developers have a responsibility for their algorithms later in use, what those firms are responsible for, and the normative grounding for that responsibility. I conceptualize algorithms as value-laden, rather than neutral, in that algorithms (...)
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  • Soft ethics and the governance of the digital.Luciano Floridi - 2018 - Philosophy and Technology 31 (1):1-8.
    What is the relation between the ethics, the law, and the governance of the digital? In this article I articulate and defend what I consider the most reasonable answer.
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  • A Misdirected Principle with a Catch: Explicability for AI.Scott Robbins - 2019 - Minds and Machines 29 (4):495-514.
    There is widespread agreement that there should be a principle requiring that artificial intelligence be ‘explicable’. Microsoft, Google, the World Economic Forum, the draft AI ethics guidelines for the EU commission, etc. all include a principle for AI that falls under the umbrella of ‘explicability’. Roughly, the principle states that “for AI to promote and not constrain human autonomy, our ‘decision about who should decide’ must be informed by knowledge of how AI would act instead of us” :689–707, 2018). There (...)
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  • Soft ethics: its application to the General Data Protection Regulation and its dual advantage.Luciano Floridi - 2018 - Philosophy and Technology 31 (1):163-167.
    In previous works (Floridi 2018) I introduced the distinction between hard ethics (which may broadly be described as what is morally right and wrong independently of whether something is legal or illegal), and soft or post-compliance ethics (which focuses on what ought to be done over and above existing legislation). This paper analyses the applicability of soft ethics to the General Data Protection Regulation and advances the theory that soft ethics has a dual advantage—as both an opportunity strategy and a (...)
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  • Bias in algorithmic filtering and personalization.Engin Bozdag - 2013 - Ethics and Information Technology 15 (3):209-227.
    Online information intermediaries such as Facebook and Google are slowly replacing traditional media channels thereby partly becoming the gatekeepers of our society. To deal with the growing amount of information on the social web and the burden it brings on the average user, these gatekeepers recently started to introduce personalization features, algorithms that filter information per individual. In this paper we show that these online services that filter information are not merely algorithms. Humans not only affect the design of the (...)
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  • Microethics: The Ethics of Everyday Clinical Practice.Robert D. Truog, Stephen D. Brown, David Browning, Edward M. Hundert, Elizabeth A. Rider, Sigall K. Bell & Elaine C. Meyer - 2015 - Hastings Center Report 45 (1):11-17.
    Over the past several decades, medical ethics has gained a solid foothold in medical education and is now a required course in most medical schools. Although the field of medical ethics is by nature eclectic, moral philosophy has played a dominant role in defining both the content of what is taught and the methodology for reasoning about ethical dilemmas. Most educators largely rely on the case‐based method for teaching ethics, grounding the ethical reasoning in an amalgam of theories drawn from (...)
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  • From bioethics to microethics: Ethical debate and clinical medicine.Paul Komesaroff - 1995 - In Paul A. Komesaroff (ed.), Troubled bodies: critical perspectives on postmodernism, medical ethics, and the body. Durham: Duke University Press. pp. 62--86.
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  • Embedded EthiCS: Integrating Ethics Across CS Education.Barbara J. Grosz, David Gray Grant, Kate Vredenburgh, Jeff Behrends, Lily Hu, Alison Simmons & Jim Waldo - 2019 - Communications of the Acm 62 (8):54-61.
    The particular design of any technology may have profound social implications. Computing technologies are deeply intermeshed with the activities of daily life, playing an ever more central role in how we work, learn, communicate, socialize, and participate in government. Despite the many ways they have improved life, they cannot be regarded as unambiguously beneficial or even value-neutral. Recent experience shows they can lead to unintended but harmful consequences. Some technologies are thought to threaten democracy through the spread of propaganda on (...)
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  • Environmental Virtue Ethics: What It Is and What It Needs to Be.Matt Zwolinski & David Schmidtz - 2013 - In Daniel C. Russell (ed.), The Cambridge companion to virtue ethics. New York: Cambridge University Press. pp. 221.
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  • “Ethics When You Least Expect It”: A Modular Approach to Short Course Data Ethics Instruction.Louise Bezuidenhout, Robert Quick & Hugh Shanahan - 2020 - Science and Engineering Ethics 26 (4):2189-2213.
    Data science skills are rapidly becoming a necessity in modern science. In response to this need, institutions and organizations around the world are developing research data science curricula to teach the programming and computational skills that are needed to build and maintain data infrastructures and maximize the use of available data. To date, however, few of these courses have included an explicit ethics component, and developing such components can be challenging. This paper describes a novel approach to teaching data ethics (...)
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  • Phronesis and Automated Science: The Case of Machine Learning and Biology.Emanuele Ratti - 2020 - In Marta Bertolaso & Fabio Sterpetti (eds.), A Critical Reflection on Automated Science: Will Science Remain Human? Cham: Springer.
    The applications of machine learning and deep learning to the natural sciences has fostered the idea that the automated nature of algorithmic analysis will gradually dispense human beings from scientific work. In this paper, I will show that this view is problematic, at least when ML is applied to biology. In particular, I will claim that ML is not independent of human beings and cannot form the basis of automated science. Computer scientists conceive their work as being a case of (...)
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