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Philosophy of natural science

Englewood Cliffs, N.J.,: Prentice-Hall (1966)

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  1. Can agent‐based models assist decisions on large‐scale practical problems? A philosophical analysis.Dominique Gross & Roger Strand - 2000 - Complexity 5 (6):26-33.
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  • Ad hoc auxiliary hypotheses and falsificationism.Adolf Grünbaum - 1976 - British Journal for the Philosophy of Science 27 (4):329-362.
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  • From mere coincidences to meaningful discoveries.Thomas L. Griffiths & Joshua B. Tenenbaum - 2007 - Cognition 103 (2):180-226.
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  • Cebus uses tools, but what about representation? Comparative evidence for generalized cognitive structures.Patricia M. Greenfield - 1989 - Behavioral and Brain Sciences 12 (3):599-600.
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  • Lessons from the History and Philosophy of Science regarding the Research Assessment Exercise.Donald Gillies - 2007 - Royal Institute of Philosophy Supplement 61:37-73.
    The Research Assessment Exercise was introduced in 1986 by Thatcher, and was continued by Blair. So it has now been running for 21 years. During this time, the rules governing the RAE have changed considerably, and the interval between successive RAEs has also varied. These changes are not of great importance as far as the argument of this paper is concerned. We will concentrate on the main features of the RAE which can be summarised as follows.
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  • What does explanatory coherence explain?Ronald N. Giere - 1989 - Behavioral and Brain Sciences 12 (3):475-476.
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  • Tool use in cebus monkeys: Moving from orthodox to neo-Piagetian analyses.Kathleen R. Gibson - 1989 - Behavioral and Brain Sciences 12 (3):598-599.
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  • Genetically determined neural modules versus mental constructional acts in the genesis of human intelligence.Kathleen R. Gibson - 1991 - Behavioral and Brain Sciences 14 (2):308-309.
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  • History, Philosophy, and the Central Metaphor.Peter Galison - 1988 - Science in Context 2 (1):197-212.
    The ArgumentBehind the dispute over the relative priority of theory and experiment lie conflicting philosophical images of the nature of scientific inquiry. One crucial image arose in the 1920s, when the logical positivists agitated for a “unity of science” that would ground all meaningful scientific activity on an observational foundation. Their goals and rhetoric dovetailed with the larger movements of architectural, literary, and philosophical modernism. Historians of science followed the positivists by tracking experimental science as the basis for scientific progress. (...)
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  • Coherence: Beyond constraint satisfaction.Gareth Gabrys & Alan Lesgold - 1989 - Behavioral and Brain Sciences 12 (3):475-475.
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  • Ontologically simple theories do not indicate the true nature of complex biological systems: three test cases.Michael Fry - 2020 - History and Philosophy of the Life Sciences 42 (2):1-44.
    A longstanding philosophical premise perceives simplicity as a desirable attribute of scientific theories. One of several raised justifications for this notion is that simple theories are more likely to indicate the true makeup of natural systems. Qualitatively parsimonious hypotheses and theories keep to a minimum the number of different postulated entities within a system. Formulation of such ontologically simple working hypotheses proved to be useful in the experimental probing of narrowly defined bio systems. It is less certain, however, whether qualitatively (...)
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  • Tool use, imitation, and insight: Apples, oranges, and conceptual pea soup.Dorothy M. Fragaszy - 1989 - Behavioral and Brain Sciences 12 (3):596-598.
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  • How Should We Explain Remote Correlations?John Forge - 1993 - Philosophica 51.
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  • Paul Ricoeur's methodological parallelism.Patricia Ann Fleming - 1990 - Human Studies 13 (3):221 - 236.
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  • A constructivist perspective on physics.Peter Fletcher - 2002 - Philosophia Mathematica 10 (1):26-42.
    This paper examines the problem of extending the programme of mathematical constructivism to applied mathematics. I am not concerned with the question of whether conventional mathematical physics makes essential use of the principle of excluded middle, but rather with the more fundamental question of whether the concept of physical infinity is constructively intelligible. I consider two kinds of physical infinity: a countably infinite constellation of stars and the infinitely divisible space-time continuum. I argue (contrary to Hellman) that these do not. (...)
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  • What's in a link?Jerome A. Feldman - 1989 - Behavioral and Brain Sciences 12 (3):474-475.
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  • When the mind goes awry: Schizophrenia and the emergence of culture.Jay R. Feierman - 1991 - Behavioral and Brain Sciences 14 (2):307-308.
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  • Primate tool use: But what about their brains?Dean Falk - 1989 - Behavioral and Brain Sciences 12 (3):595-596.
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  • Contributions of Neuropsychology to the Study of Ancient Literature.Franco Fabbro, Anastasia Fabbro & Cristiano Crescentini - 2018 - Frontiers in Psychology 9:350114.
    The present work introduces the neuropsychological paradigm as a new approach to studying ancient literature. In the first part of the article, an epistemological framework for the proper use of neuropsychology in relation to ancient literature is presented. The article then discusses neuropsychological methods of studying different human experiences and dimensions already addressed by ancient literatures. The experiences of human encounters with gods among ancient cultures are first considered, through the contributions of Julian Jaynes and Eric R. Dodds. The concepts (...)
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  • Interactive Vision and Experimental Traditions: How to Frame the Relationship.Anna Estany - 2013 - Open Journal of Philosophy 3 (2):292-301.
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  • On the testability of ECHO.D. C. Earle - 1989 - Behavioral and Brain Sciences 12 (3):474-474.
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  • Contact with the nomic: A challenge for deniers of Humean supervenience about laws of nature part II: The epistemological argument for Humean supervenience.John Earman & John T. Roberts - 2005 - Philosophy and Phenomenological Research 71 (2):253–286.
    In Part I, we presented and motivated a new formulation of Humean Supervenience about Laws of Nature (HS). Here in Part II, we present an epistemological argument in defense of HS, thus formulated. Our contention is that one can combine a modest realism about laws of nature with a proper recognition of the importance of empirical testability in the epistemology of science only if one accepts HS.
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  • On Anti Humeanism and Medical Singular Causation.Stefan Dragulinescu - 2012 - Acta Analytica 27 (3):265-292.
    Abstract In this paper I offer an anti-Humean interpretation of the causal interactions in somatic medicine. I focus on life-threatening pathological states and show how Nancy Cartwright’s capacities can offer a plausible epistemology for medical processes and the singular causal claims advanced in medical diagnoses. I argue that the capacities manifested in the emergence of symptoms and signs could be tracked down if healthy organisms are construed as nomological machines and suggest that the causal reasoning from current medical practice bears (...)
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  • Hypothetico-nomological aspects of medical diagnosis Part I: General structure of the diagnostic process and its hypothesis-directed stage.Jan Doroszewski - 1980 - Metamedicine 1 (2):177-194.
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  • Hypothetico-nomological aspects of medical diagnosis part I: General structure of the diagnostic process and its hypothesis-directed stage.Jan Doroszewski - 1980 - Theoretical Medicine and Bioethics 1 (2):177-194.
    In medical diagnostic examination three main stages may be distinguished: (a) initial exploration, (b) hypothesis-directed investigation, and (c) final diagnosis making. The purpose of this work is to study some methodological problems concerning the second of the above stages of the diagnosis and to prepare a background for a mathematical model [30] of this process.In diagnostic problem solving, the reasoning proceeds along the main lines traced by some initial suggestions and passes through various intermediate elements which are connected with one (...)
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  • The concepts of influences and of attributes as seen in connection with Bell's theorem.B. D'Espagnat - 1981 - Foundations of Physics 11 (3-4):205-234.
    With regard to the notion of cause—or more generally of influence—the various methods of proof of Bell's theorem do not all have the same bearing. The differences between two of these methods are analyzed, with regard to both their conceptual basis and their conclusions. It is shown that both methods give valuable information but, not too surprisingly, the one that is based on the more detailed and specific definition of the concept of influences, and that makes use of the concept (...)
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  • Holism and Reductionism in Biology and Ecology the Mutual Dependence of Higher and Lower Level Research Programmes.Rick C. Looijen - 2000 - Springer.
    Holism and reductionism are usually seen as opposite and mutually exclusive approaches to nature. Recently, some have come to see them as complementary rather than mutually exclusive. In this book I have argued that, even stronger, they should be seen as mutually dependent and co-operating research programmes. I have discussed holism and reductionism in biology in general and in ecology in particular. After an introductory chapter I have provided an overview of holistic and reductionistic positions in biology, and of the (...)
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  • Genuine Biological Autonomy: How can the Spooky Finger of Mind play on the Physical Keyboard of the Brain?Grandpierre Attila - 2012 - In Dr Gregory T. Papanikos (ed.), ATINER CONFERENCE PAPER SERIES No: PHI2012-0197.
    Although biological autonomy is widely discussed, its description in scientific terms remains elusive. I present here a series of recent evidences on the existence of genuine biological autonomy. Nevertheless, nowadays it seems that the only acceptable ground to account for any natural phenomena, including biological autonomy, is physics. But if this were the case, then arguably there would be no way to account for genuine biological autonomy. The way out of such a situation is to build up an exact theoretical (...)
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  • On the dispensability of grounding: Ground-breaking work on metaphysical explanation.James Norton - 2017 - Dissertation, The University of Sydney
    Primitive, unanalysable grounding relations are considered by many to be indispensable constituents of the metaphysician’s toolkit. Yet, as a primitive ontological posit, grounding must earn its keep by explaining features of the world not explained by other tools already at our disposal. Those who defend grounding contend that grounding is required to play two interconnected roles: accounting for widespread intuitions regarding what is ontologically prior to what, and forming the backbone of a theory of metaphysical explanation, in much the same (...)
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  • Default Reasoning and the Law: A Dialogue.Penco Carlo & Canale Damiano - 2022 - Revus. Journal for Constitutional Theory and Philosophy of Law / Revija Za Ustavno Teorijo in Filozofijo Prava 47.
    Reasoning by default is a relevant aspect of everyday life that has traditionally attracted the attention of many fields of research, from psychology to the philosophy of logic, from economics to artificial intelligence. Also in the field of law, default reasoning is widely used by lawyers, judges and other legal decision-makers. In this paper, a philosopher of language (Carlo Penco) and a philosopher of law (Damiano Canale) attempt to explore some uses of default reasoning that are scarcely considered by legal (...)
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  • Heuristics, Concepts, and Cognitive Architecture: Toward Understanding How The Mind Works.Sheldon J. Chow - unknown
    Heuristics are often invoked in the philosophical, psychological, and cognitive science literatures to describe or explain methodological techniques or "shortcut" mental operations that help in inference, decision-making, and problem-solving. Yet there has been surprisingly little philosophical work done on the nature of heuristics and heuristic reasoning, and a close inspection of the way(s) in which "heuristic" is used throughout the literature reveals a vagueness and uncertainty with respect to what heuristics are and their role in cognition. This dissertation seeks to (...)
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  • Mathematical Modeling in Biology: Philosophy and Pragmatics.Rasmus Grønfeldt Winther - 2012 - Frontiers in Plant Evolution and Development 2012:1-3.
    Philosophy can shed light on mathematical modeling and the juxtaposition of modeling and empirical data. This paper explores three philosophical traditions of the structure of scientific theory—Syntactic, Semantic, and Pragmatic—to show that each illuminates mathematical modeling. The Pragmatic View identifies four critical functions of mathematical modeling: (1) unification of both models and data, (2) model fitting to data, (3) mechanism identification accounting for observation, and (4) prediction of future observations. Such facets are explored using a recent exchange between two groups (...)
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  • A Biological Account of Design in Nature.Attila Grandpierre - 2012 - In Swan Liz, Gordon Richard & Seckbach Joseph (eds.), Origin of Design in Nature.
    We consider first the most fundamental „design in Nature”, the explanatory structure of the Universe on the basis of the natural sciences, and the related problem of teleology in Nature. We point out that it is necessary to generalize the presently used explanatory scheme of physics. We derive here the first essentially complete scientific world picture, and obtain new insights answering to the problem of cosmic design. Considering some important objections against teleology, we present counter-arguments, give a new classification of (...)
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  • Evolution, Creation, and the Philosophy of Science.Paul Thagard - unknown
    Debates about evolution and creation inevitably raise philosophical issues about the nature of scientific knowledge. What is a theory? What is an explanation? How is science different from non- science? How should theories be evaluated? Does science achieve truth? The aim of this chapter is to give a concise and accessible introduction to the philosophy of science, focusing on questions relevant to understanding evolution by natural selection, creation, and intelligent design. For the questions just listed, I state what I think (...)
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  • Critical principles: on the negative side.Mark H. Bickhard - 2002 - New Ideas in Psychology 20:1-34.
    neglected aspect: knowledge of error, or ‘‘negative’’ knowledge. The development of knowledge of what counts as error occurs via a kind of internal variation and selection, or quasi-evolutionary, process. Processes of reflection generate a hierarchy of principles of error.
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  • The ubiquity of background knowledge.Jaap Kamps - 2005 - Poznan Studies in the Philosophy of the Sciences and the Humanities 84 (1):317-337.
    Scientific discourse leaves implicit a vast amount of knowledge, assumes that this background knowledge is taken into account – even taken for granted – and treated as undisputed. In particular, the terminology in the empirical sciences is treated as antecedently understood. The background knowledge surrounding a theory is usually assumed to be true or approximately true. This is in sharp contrast with logic, which explicitly ignores underlying presuppositions and assumes uninterpreted languages. We discuss the problems that background knowledge may cause (...)
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  • Epistemological tensions between linguistic description and ordinary speakers' intuitive knowledge: examples from French verb morphology.Surcouf Christian - unknown
    In this article, I address epistemological questions regarding the status of linguistic rules and the pervasive--though seldom discussed--tension that arises between theory-driven object perception by linguists on the one hand, and ordinary speakers' possible intuitive knowledge on the other hand. Several issues will be discussed using examples from French verb morphology, based on the 6500 verbs from Le Petit Robert dictionary (2013).
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  • Towards the Methodological Turn in the Philosophy of Science.Hsiang-Ke Chao, Szu-Ting Chen & Roberta L. Millstein - 2013 - In Hsiang-Ke Chao, Szu-Ting Chen & Roberta L. Millstein (eds.), Mechanism and Causality in Biology and Economics. Springer.
    This chapter provides an introduction to the study of the philosophical notions of mechanisms and causality in biology and economics. This chapter sets the stage for this volume, Mechanism and Causality in Biology and Economics, in three ways. First, it gives a broad review of the recent changes and current state of the study of mechanisms and causality in the philosophy of science. Second, consistent with a recent trend in the philosophy of science to focus on scientific practices, it in (...)
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  • Epistemological issues in the theory of Chinese medicine.Hai Hong - 2012 - Dissertation, London School of Economics and Political Science
    Traditional Chinese Medicine has been criticized for being unscientific because the theory on which it is based involves entities like qi and ’meridians’ that appear ambiguous and because the internal ‘organs’ like the kidney and the spleen are very different from those of modern anatomy and physiology. Even more so, TCM methods of therapy based on the yin-yang principle, the model of the five elements, and the classification of illnesses according to standard constellations of symptoms are largely unproven by the (...)
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  • Common Cause Abduction: Its Scope and Limits.Patryk Dziurosz-Serafinowicz - 2012 - Filozofia Nauki 20 (4).
    This article aims to analyze the scope and limits of common cause abduction which is a version of explanatory abduction based on Hans Reichenbach’s Principle of the Common Cause. First, it is argued that common cause abduction can be regarded as a rational inferential mechanism that enables us to accept hypotheses that aim to account for the surprising correlations of events. Three arguments are presented in support of common cause abduction: the argument from screening-off, the argument from likelihood, and the (...)
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  • The Ontic Account of Scientific Explanation.Carl F. Craver - 2014 - In Marie I. Kaiser, Oliver R. Scholz, Daniel Plenge & Andreas Hüttemann (eds.), Explanation in the Special Sciences: The Case of Biology and History. Springer Verlag. pp. 27-52.
    According to one large family of views, scientific explanations explain a phenomenon (such as an event or a regularity) by subsuming it under a general representation, model, prototype, or schema (see Bechtel, W., & Abrahamsen, A. (2005). Explanation: A mechanist alternative. Studies in History and Philosophy of Biological and Biomedical Sciences, 36(2), 421–441; Churchland, P. M. (1989). A neurocomputational perspective: The nature of mind and the structure of science. Cambridge: MIT Press; Darden (2006); Hempel, C. G. (1965). Aspects of scientific (...)
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  • Die Architektur der Synthese. Entstehung und Philosophie der modernen Evolutionstheorie.Marcel Weber - 1996 - Dissertation, University of Konstanz
    This Ph.D. thesis provides a pilosophical account of the structure of the evolutionary synthesis of the 1930s and 40s. The first, more historical part analyses how classical genetics came to be integrated into evolutionary thinking, highlighting in particular the importance of chromosomal mapping of Drosophila strains collected in the wild by Dobzansky, but also the work of Goldschmidt, Sumners, Timofeeff-Ressovsky and others. The second, more philosophical part attempts to answer the question wherein the unity of the synthesis consisted. I argue (...)
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  • Epistemology and Social Work: Integrating theory, research and practice through philosophical pragmatism.Steve J. Hothersall - unknown
    Debates regarding theory and practice in social work have often avoided detailed discussion regarding the nature of knowledge itself and the various ways this can be created. As a result, positivistic conceptions of knowledge are still assumed by many to be axiomatic, such that context-dependent and practitioner-oriented approaches to knowledge creation and use are assumed to lack epistemological rigor and credibility. By drawing on epistemology, this theoretical paper outlines the case for a renewed approach to knowledge definition, creation and use (...)
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  • Mental mechanisms and psychological construction.Mitchell Herschbach & William Bechtel - 2014 - In Lisa Feldman Barrett & James Russell (eds.), The Psychological Construction of Emotion. Guilford Press. pp. 21-44.
    Psychological construction represents an important new approach to psychological phenomena, one that has the promise to help us reconceptualize the mind both as a behavioral and as a biological system. It has so far been developed in the greatest detail for emotion, but it has important implications for how researchers approach other mental phenomena such as reasoning, memory, and language use. Its key contention is that phenomena that are characterized in (folk) psychological vocabulary are not themselves basic features of the (...)
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  • How to Foster Scientists' Creativity.Seungbae Park - 2016 - Creativity Studies 9 (2):117-126.
    Scientific progress can be credited to creative scientists, who constantly ideate new theories and experiments. I explore how the three central positions in philosophy of science – scientific realism, scientific pessimism, and instrumentalism – are related to the practical issue of how scientists’ creativity can be fostered. I argue that realism encourages scientists to entertain new theories and experiments, pessimism discourages them from doing so, and instrumentalism falls in between realism and pessimism in terms of its effects on scientists’ creativity. (...)
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  • The role of inversion in the genesis, development and the structure of scientific knowledge.Nagarjuna G. - manuscript
    The main thrust of the argument of this thesis is to show the possibility of articulating a method of construction or of synthesis--as against the most common method of analysis or division--which has always been (so we shall argue) a necessary component of scientific theorization. This method will be shown to be based on a fundamental synthetic logical relation of thought, that we shall call inversion--to be understood as a species of logical opposition, and as one of the basic monadic (...)
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  • Artificial science – a simulation test-bed for studying the social processes of science.Bruce Edmonds - unknown
    it is likely that there are many different social processes occurring in different parts of science and at different times, and that these processes will impact upon the nature, quality and quantity of the knowledge that is produced in a multitude of ways and to different extents. It seems clear to me that sometimes the social processes act to increase the reliability of knowledge (such as when there is a tradition of independently reproducing experiments) but sometimes does the opposite (when (...)
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  • Rethinking unification : unification as an explanatory value in scientific practice.Merel Lefevere - 2018 - Dissertation, University of Ghent
    This dissertation starts with a concise overview of what philosophers of science have written about unification and its role in scientific explanation during the last 50 years to provide the reader with some background knowledge. In order to bring unification back into the picture, I have followed two strategies, resulting respectively in Parts I and II of this dissertation. In Part I the idea of unification is used to refine and enrich the dominant causalmechanist and causal-interventionist accounts of scientific explanation. (...)
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  • Can similarity-based models of induction handle negative evidence.Daniel Heussen, Wouter Voorspoels & Gert Storms - 2010 - In S. Ohlsson & R. Catrambone (eds.), Proceedings of the 32nd Annual Conference of the Cognitive Science Society. Cognitive Science Society. pp. 2033--2038.
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  • Dispositional Explanations of Behavior.Rob Vanderbeeken & Erik Weber - 2002 - Behavior and Philosophy 30:43 - 59.
    If dispositions are conceived as properties of systems that refer to possible causal relations, dispositions can be used in singular causal explanations. By means of these dispositional explanations, we can explain behavior B of a system x by (i) referring to a situation of type S that triggered B, given that x has a disposition D to do B in S, or (ii) by referring to a disposition D of x to do B in S, given that x is in (...)
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