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  1. How the machine ‘thinks’: Understanding opacity in machine learning algorithms.Jenna Burrell - 2016 - Big Data and Society 3 (1):205395171562251.
    This article considers the issue of opacity as a problem for socially consequential mechanisms of classification and ranking, such as spam filters, credit card fraud detection, search engines, news trends, market segmentation and advertising, insurance or loan qualification, and credit scoring. These mechanisms of classification all frequently rely on computational algorithms, and in many cases on machine learning algorithms to do this work. In this article, I draw a distinction between three forms of opacity: opacity as intentional corporate or state (...)
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  • Algorithmic Accountability and Public Reason.Reuben Binns - 2018 - Philosophy and Technology 31 (4):543-556.
    The ever-increasing application of algorithms to decision-making in a range of social contexts has prompted demands for algorithmic accountability. Accountable decision-makers must provide their decision-subjects with justifications for their automated system’s outputs, but what kinds of broader principles should we expect such justifications to appeal to? Drawing from political philosophy, I present an account of algorithmic accountability in terms of the democratic ideal of ‘public reason’. I argue that situating demands for algorithmic accountability within this justificatory framework enables us to (...)
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  • Scientific explanation.James Woodward - 1979 - British Journal for the Philosophy of Science 30 (1):41-67.
    Issues concerning scientific explanation have been a focus of philosophical attention from Pre- Socratic times through the modern period. However, recent discussion really begins with the development of the Deductive-Nomological (DN) model. This model has had many advocates (including Popper 1935, 1959, Braithwaite 1953, Gardiner, 1959, Nagel 1961) but unquestionably the most detailed and influential statement is due to Carl Hempel (Hempel 1942, 1965, and Hempel & Oppenheim 1948). These papers and the reaction to them have structured subsequent discussion concerning (...)
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  • Causal and Constitutive Explanation Compared.Petri Ylikoski - 2013 - Erkenntnis 78 (2):277-297.
    This article compares causal and constitutive explanation. While scientific inquiry usually addresses both causal and constitutive questions, making the distinction is crucial for a detailed understanding of scientific questions and their interrelations. These explanations have different kinds of explananda and they track different sorts of dependencies. Constitutive explanations do not address events or behaviors, but causal capacities. While there are some interesting relations between building and causal manipulation, causation and constitution are not to be confused. Constitution is a synchronous and (...)
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  • A new dialectical theory of explanation.Douglas Walton - 2004 - Philosophical Explorations 7 (1):71 – 89.
    This paper offers a dialogue theory of explanation. A successful explanation is defined as a transfer of understanding in a dialogue system in which a questioner and a respondent take part. The questioner asks a special sort of why-question that asks for understanding of something and the respondent provides a reply that transfers understanding to the questioner. The theory is drawn from recent work on explanation in artificial intelligence (AI), especially in expert systems, but applies to scientific, legal and everyday (...)
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  • Explaining Explanation. [REVIEW]James Woodward - 1996 - Philosophy and Phenomenological Research 56 (2):477-482.
    Reviewed Work: Explaining Explanation by David-Hillel Ruben .
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  • Accountability in a computerized society.Helen Nissenbaum - 1996 - Science and Engineering Ethics 2 (1):25-42.
    This essay warns of eroding accountability in computerized societies. It argues that assumptions about computing and features of situations in which computers are produced create barriers to accountability. Drawing on philosophical analyses of moral blame and responsibility, four barriers are identified: 1) the problem of many hands, 2) the problem of bugs, 3) blaming the computer, and 4) software ownership without liability. The paper concludes with ideas on how to reverse this trend.
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  • Explanation and categorization: How “why?” informs “what?”.Tania Lombrozo - 2009 - Cognition 110 (2):248-253.
    Recent theoretical and empirical work suggests that explanation and categorization are intimately related. This paper explores the hypothesis that explanations can help structure conceptual representations, and thereby influence the relative importance of features in categorization decisions. In particular, features may be differentially important depending on the role they play in explaining other features or aspects of category membership. Two experiments manipulate whether a feature is explained mechanistically, by appeal to proximate causes, or functionally, by appeal to a function or goal. (...)
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  • Contrastive Explanation.Peter Lipton - 1990 - Royal Institute of Philosophy Supplement 27:247-266.
    According to a causal model of explanation, we explain phenomena by giving their causes or, where the phenomena are themselves causal regularities, we explain them by giving a mechanism linking cause and effect. If we explain why smoking causes cancer, we do not give the cause of this causal connection, but we do give the causal mechanism that makes it. The claim that to explain is to give a cause is not only natural and plausible, but it also avoids many (...)
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  • Counterfactuals. [REVIEW]William Parry - 1973 - Journal of Symbolic Logic 44 (2):278-281.
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  • Counterfactuals.David K. Lewis - 1973 - Malden, Mass.: Blackwell.
    Counterfactuals is David Lewis' forceful presentation of and sustained argument for a particular view about propositions which express contrary to fact conditionals, including his famous defense of realism about possible worlds and his theory of laws of nature.
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  • Counterfactuals and explanation.Boris Kment - 2006 - Mind 115 (458):261-310.
    On the received view, counterfactuals are analysed using the concept of closeness between possible worlds: the counterfactual 'If it had been the case that p, then it would have been the case that q' is true at a world w just in case q is true at all the possible p-worlds closest to w. The degree of closeness between two worlds is usually thought to be determined by weighting different respects of similarity between them. The question I consider in the (...)
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  • Mental models and causal explanation: Judgements of probable cause and explanatory relevance.Denis J. Hilton - 1996 - Thinking and Reasoning 2 (4):273 – 308.
    Good explanations are not only true or probably true, but are also relevant to a causal question. Current models of causal explanation either only address the question of the truth of an explanation, or do not distinguish the probability of an explanation from its relevance. The tasks of scenario construction and conversational explanation are distinguished, which in turn shows how scenarios can interact with conversational principles to determine the truth and relevance of explanations. The proposed model distinguishes causal discounting from (...)
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  • Knowledge-based causal attribution: The abnormal conditions focus model.Denis J. Hilton & Ben R. Slugoski - 1986 - Psychological Review 93 (1):75-88.
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  • The Theory of Communicative Action, Vol. 1, 'Reason and the Rationalization of Society'.Juergen Habermas - 1984 - Polity..
    A major contribution to contemporary social theory. Not only does it provide a compelling critique of some of the main perspectives in 20th century philosophy and social science, but it also presents a systematic synthesis of the many themse which have preoccupied Habermas for thirty years. --Times Literary Supplement.
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  • The Theory of Communicative Action. Vol. 1: Reason and the Rationalization of Society.Nanette Funk, Jurgen Habermas & Thomas McCarthy - 1986 - Philosophical Review 95 (2):269.
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  • Theories and Models in Scientific Processes: Proceedings of AFOS '94 Workshop, August 15-26, Mądralin and IUHPS '94 Conference, August 27-29, Warszawa.William E. Herfel, Wladlyslaw Krajewski, Ilkka Niiniluoto & Ryszard Wójcicki - 1995 - Rodopi.
    Contents: PART 1. MODELS IN SCIENTIFIC PROCESSES. Joseph AGASSI: Why there is no theory of models. Ma??l??gorzata CZARNOCKA: Models and symbolic nature of knowledge. Adam GROBLER: The representational and the non-representational in models of scientific theories. Stephan HARTMANN: Models as a tool for the theory construction; some strategies of preliminary physics. William HERFEL: Nonlinear dynamical models as concrete construction. Elzbieta KA??L??USZY??N??SKA: Styles of thinking. Stathis PSILLOS: The cognitive interplay between theories and models: the case of 19th century optics. PART 2. (...)
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  • Explaining Explanation.David-Hillel Ruben - 1990 - Abingdon, UK: Routledge.
    This book introduces readers to the topic of explanation. The insights of Plato, Aristotle, J.S. Mill and Carl Hempel are examined, and are used to argue against the view that explanation is merely a problem for the philosophy of science. Having established its importance for understanding knowledge in general, the book concludes with a bold and original explanation of explanation.
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  • Scientific representation and the semantic view of theories.Roman Frigg - 2006 - Theoria 21 (1):49-65.
    It is now part and parcel of the official philosophical wisdom that models are essential to the acquisition and organisation of scientific knowledge. It is also generally accepted that most models represent their target systems in one way or another. But what does it mean for a model to represent its target system? I begin by introducing three conundrums that a theory of scientific representation has to come to terms with and then address the question of whether the semantic view (...)
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  • The problem of causal selection.Germund Hesslow - 1988 - In Denis J. Hilton (ed.), Contemporary Science and Natural Explanation: Commonsense Conceptions of Causality. New York University Press.
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  • Counterfactuals.David Lewis - 1973 - Foundations of Language 13 (1):145-151.
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  • Models and Analogies in Science.Mary B. Hesse - 1966 - Philosophy and Rhetoric 3 (3):190-191.
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  • Models and Analogies in Science.Mary Hesse - 1965 - British Journal for the Philosophy of Science 16 (62):161-163.
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  • Theories and Models in Scientific Processes.W. E. Herfel, W. Krajewski & I. Niiniluoto - 1996 - British Journal for the Philosophy of Science 47 (4):658-662.
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  • Dialogical models of explanation.Douglas Walton - manuscript
    Explanation-Aware Computing: Papers from the 2007 AAAI Workshop, Association for the Advancement of Artificial Intelligence, Technical Report WS-07-06, Menlo Park California, AAAI Press, 2007, 1-9.
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