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Laws and Explanations in Biology and Chemistry: Philosophical Perspectives and Educational Implications

In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1203-1233 (2014)

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  1. Annals of the New York Academy of Sciences.Joseph E. Earley (ed.) - 2003 - New York: New York Academy of Science.
    This volume addresses relations between macroscopic and microscopic description; essential roles of visualization and representation in chemical understanding; historical questions involving chemical concepts; the impacts of chemical ideas on wider cultural concerns; and relationships between contemporary chemistry and other sciences. The authors demonstrate, assert, or tacitly assume that chemical explanation is functionally autonomous. This volume should he of interest not only to professional chemists and philosophers, but also to workers in medicine, psychology, and other fields in which relationships between explanations (...)
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  • What makes biology unique?: considerations on the autonomy of a scientific discipline.Ernst Mayr - 2004 - New York: Cambridge University Press.
    This collection of revised and new essays argues that biology is an autonomous science rather than a branch of the physical sciences. Ernst Mayr, widely considered the most eminent evolutionary biologist of the 20th century, offers insights on the history of evolutionary thought, critiques the conditions of philosophy to the science of biology, and comments on several of the major developments in evolutionary theory. Notably, Mayr explains that Darwin's theory of evolution is actually five separate theories, each with its own (...)
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  • Chemical laws and theories: A response to Vihalemm. [REVIEW]John R. Christie & Maureen Christie - 2003 - Foundations of Chemistry 5 (2):165-174.
    A recent article by Vihalemm (Foundations of Chemistry, 2003) is critical of an earlier essay. We find that there is some justification for his criticism of vagueness in defining terms. Nevertheless the main conclusions of the earlier work, when carefully restated to deflect Vihalemm’s criticisms, are unaffected by his arguments. The various dicta that are used as the bases of chemical explanations are different in character, and are used in a different way from the laws and theories in classical physics.
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  • How the laws of physics lie.Nancy Cartwright - 1983 - New York: Oxford University Press.
    In this sequence of philosophical essays about natural science, the author argues that fundamental explanatory laws, the deepest and most admired successes of modern physics, do not in fact describe regularities that exist in nature. Cartwright draws from many real-life examples to propound a novel distinction: that theoretical entities, and the complex and localized laws that describe them, can be interpreted realistically, but the simple unifying laws of basic theory cannot.
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  • Lineage Explanations: Explaining How Biological Mechanisms Change.Brett Calcott - 2009 - British Journal for the Philosophy of Science 60 (1):51-78.
    This paper describes a pattern of explanation prevalent in the biological sciences that I call a ‘lineage explanation’. The aim of these explanations is to make plausible certain trajectories of change through phenotypic space. They do this by laying out a series of stages, where each stage shows how some mechanism worked, and the differences between each adjacent stage demonstrates how one mechanism, through minor modifications, could be changed into another. These explanations are important, for though it is widely accepted (...)
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  • Kinds and criteria of scientific laws.Mario Bunge - 1961 - Philosophy of Science 28 (3):260-281.
    Factual statements that might qualify for the status of law statements are classed from various philosophically relevant standpoints (referents, precision, structure of predicates, extension, systemicity, inferential power, inception, ostensiveness, testability, levels, and determination categories). More than seven dozen of not mutually exclusive kinds of lawlike statements emerge. Strictly universal and counterfactually powerful statements are seen to constitute just one kind of lawlike statements; classificatory and some statistical laws, e.g., are shown not to comply with the requirements of universality and counterfactual (...)
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  • A ‘Semantic’ View of Scientific Models for Science Education.Agustín Adúriz-Bravo - 2013 - Science & Education 22 (7):1593-1611.
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  • The nature of explanation.Peter Achinstein - 1983 - New York: Oxford University Press.
    Offering a new approach to scientific explanation, this book focuses initially on the explaining act itself.
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  • Foundations of Biophilosophy.Martin Mahner & Mario Bunge - 2013 - Springer Verlag.
    Over the past three decades, the philosophy of biology has emerged from the shadow of the philosophy of physics to become a respectable and thriving philosophical subdiscipline. The authors take a fresh look at the life sciences and the philosophy of biology from a strictly realist and emergentist-naturalist perspective. They outline a unified and science-oriented philosophical framework that enables the clarification of many foundational and philosophical issues in biology. This book will be of interest both to life scientists and philosophers.
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  • Models and Analogies in Science.Mary B. Hesse - 1963 - [Notre Dame, Ind.]: University of Notre Dame Press.
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  • Viability explanation.Arno Wouters - 1995 - Biology and Philosophy 10 (4):435-457.
    This article deals with a type of functional explanation, viability explanation, that has been overlooked in recent philosophy of science. Viability explanations relate traits of organisms and their environments in terms of what an individual needs to survive and reproduce. I show that viability explanations are neither causal nor historical and that, therefore, they should be accounted for as a distinct type of explanation.
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  • Design explanation: determining the constraints on what can be alive.Arno G. Wouters - 2007 - Erkenntnis 67 (1):65-80.
    This paper is concerned with reasonings that purport to explain why certain organisms have certain traits by showing that their actual design is better than contrasting designs. Biologists call such reasonings 'functional explanations'. To avoid confusion with other uses of that phrase, I call them 'design explanations'. This paper discusses the structure of design explanations and how they contribute to scientific understanding. Design explanations are contrastive and often compare real organisms to hypothetical organisms that cannot possibly exist. They are not (...)
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  • Law and explanation in biology: Invariance is the kind of stability that matters.James Woodward - 2001 - Philosophy of Science 68 (1):1-20.
    This paper develops an account of explanation in biology which does not involve appeal to laws of nature, at least as traditionally conceived. Explanatory generalizations in biology must satisfy a requirement that I call invariance, but need not satisfy most of the other standard criteria for lawfulness. Once this point is recognized, there is little motivation for regarding such generalizations as laws of nature. Some of the differences between invariance and the related notions of stability and resiliency, due respectively to (...)
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  • Philosophy of Chemistry: Between the Manifest and the Scientific Image.Jap van Brakel - 2000 - Leuven University Press..
    This book addresses themes in the newly emerging discipline of philosophy of chemistry, in particular issues in connection with discussions in general philosophy of science on natural kinds, reduction and ceteris paribus laws. The philosophical issue addressed in all chapters is the relation between, on the one hand, the manifest image (the daily practice or common-sense-life-form) and on the other the scientific image, both of which claim to be the final arbiter of "everything." With respect to chemistry, the question raised (...)
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  • On the neglect of the philosophy of chemistry.J. van Brakel - 1999 - Foundations of Chemistry 1 (2):111-174.
    In this paper I present a historiography of the recent emergence of philosophy of chemistry. Special attention is given to the interest in this domain in Eastern Europe before the collapse of the USSR. It is shown that the initial neglect of the philosophy of chemistry is due to the unanimous view in philosophy and philosophy of science that only physics is a proper science (to put in Kant's words). More recently, due to the common though incorrect assumption that chemistry (...)
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  • The case for the philosophy of chemistry.Eric Scerri & Lee McIntyre - 1997 - Synthese 111 (3):213-232.
    The philosophy of chemistry has been sadly neglected by most contempory literature in the philosophy of science. This paper argues that this neglect has been unfortunate and that there is much to be learned from paying greater philosophical attention to the set of issues defined by the philosophy of chemistry. The potential contribution of this field to such current topics as reduction, laws, explanation, and supervenience is explored, as are possible applications of insights gained by such study to the philosophy (...)
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  • A critique of Atkins' periodic kindom and some writings on electronic structure.Eric R. Scerri - 1999 - Foundations of Chemistry 1 (3):295-303.
    This article consists of a critique of the writings of Peter Atkins. The topics discussed include the quantum mechanical explanation of the periodic system, the aufbau principle and the order of occupation of orbitals by electrons. It is also argued that Atkins fails to appreciate the philosophical significance of the more general version of the Pauli Exclusion Principle and that this omission has ramifications in the popular presentation of chemistry as well as chemical education and philosophy of chemistry in general.
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  • Scientific Explanation and the Causal Structure of the World.Wesley C. Salmon - 1984 - Princeton University Press.
    The philosophical theory of scientific explanation proposed here involves a radically new treatment of causality that accords with the pervasively statistical character of contemporary science. Wesley C. Salmon describes three fundamental conceptions of scientific explanation--the epistemic, modal, and ontic. He argues that the prevailing view is untenable and that the modal conception is scientifically out-dated. Significantly revising aspects of his earlier work, he defends a causal/mechanical theory that is a version of the ontic conception. Professor Salmon's theory furnishes a robust (...)
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  • Is the World Really “Dappled”? A Response to Cartwright’s Charge against “Cross‐Wise Reduction”.Stéphanie Ruphy - 2003 - Philosophy of Science 70 (1):57-67.
    Nancy Cartwright's charge against horizontal reductionism leads to a claim about how the world is, namely "dappled." By proposing a simple thought-experiment, I show that Cartwright's division of the world into "nomological" machines and "messy" systems for which no law applies is meaningless. The thought-experiment shows that for a system, having the property of being a nomological machine depends on what kind of questions you ask about it. No metaphysical conclusion about the world being unruly or not can be drawn (...)
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  • Physical explanations and biological explanations, empirical laws and a priori laws.Joel Press - 2009 - Biology and Philosophy 24 (3):359-374.
    Philosophers intent upon characterizing the difference between physics and biology often seize upon the purported fact that physical explanations conform more closely to the covering law model than biological explanations. Central to this purported difference is the role of laws of nature in the explanations of these two sciences. However, I argue that, although certain important differences between physics and biology can be highlighted by differences between physical and biological explanations, these differences are not differences in the degree to which (...)
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  • Pragmatic laws.Sandra D. Mitchell - 1997 - Philosophy of Science 64 (4):479.
    Beatty, Brandon, and Sober agree that biological generalizations, when contingent, do not qualify as laws. Their conclusion follows from a normative definition of law inherited from the Logical Empiricists. I suggest two additional approaches: paradigmatic and pragmatic. Only the pragmatic represents varying kinds and degrees of contingency and exposes the multiple relationships found among scientific generalizations. It emphasizes the function of laws in grounding expectation and promotes the evaluation of generalizations along continua of ontological and representational parameters. Stability of conditions (...)
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  • Dimensions of scientific law.Sandra D. Mitchell - 2000 - Philosophy of Science 67 (2):242-265.
    Biological knowledge does not fit the image of science that philosophers have developed. Many argue that biology has no laws. Here I criticize standard normative accounts of law and defend an alternative, pragmatic approach. I argue that a multidimensional conceptual framework should replace the standard dichotomous law/ accident distinction in order to display important differences in the kinds of causal structure found in nature and the corresponding scientific representations of those structures. To this end I explore the dimensions of stability, (...)
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  • Integrating Epistemological Perspectives on Chemistry in Chemical Education: The Cases of Concept Duality, Chemical Language, and Structural Explanations.Ebru Kaya & Sibel Erduran - 2013 - Science & Education 22 (7):1741-1755.
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  • Studies in the Logic of Explanation.Carl Hempel & Paul Oppenheim - 1948 - Journal of Symbolic Logic 14 (2):133-133.
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  • Structural formulas and explanation in organic chemistry.W. M. Goodwin - 2008 - Foundations of Chemistry 10 (2):117-127.
    Organic chemists have been able to develop a robust, theoretical understanding of the phenomena they study; however, the primary theoretical devices employed in this field are not mathematical equations or laws, as is the case in most other physical sciences. Instead it is diagrams, and in particular structural formulas and potential energy diagrams, that carry the explanatory weight in the discipline. To understand how this is so, it is necessary to investigate both the nature of the diagrams employed in organic (...)
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  • Science without laws.Ronald N. Giere - 1999 - Chicago: University of Chicago Press.
    Debate over the nature of science has recently moved from the halls of academia into the public sphere, where it has taken shape as the "science wars." At issue is the question of whether scientific knowledge is objective and universal or socially mediated, whether scientific truths are independent of human values and beliefs. Ronald Giere is a philosopher of science who has been at the forefront of this debate from its inception, and Science without Laws offers a much-needed mediating perspective (...)
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  • There may be strict empirical laws in biology, after all.Mehmet Elgin - 2006 - Biology and Philosophy 21 (1):119-134.
    This paper consists of four parts. Part 1 is an introduction. Part 2 evaluates arguments for the claim that there are no strict empirical laws in biology. I argue that there are two types of arguments for this claim and they are as follows: (1) Biological properties are multiply realized and they require complex processes. For this reason, it is almost impossible to formulate strict empirical laws in biology. (2) Generalizations in biology hold contingently but laws go beyond describing contingencies, (...)
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  • Biology’s First Law: The Tendency for Diversity and Complexity to Increase in Evolutionary Systems.Daniel W. McShea & Robert N. Brandon - 2010 - University of Chicago Press.
    1 The Zero-Force Evolutionary Law 2 Randomness, Hierarchy, and Constraint 3 Diversity 4 Complexity 5 Evidence, Predictions, and Tests 6 Philosophical Foundations 7 Implications.
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  • Philosophy of Biology.Brian Garvey - 2006 - Stocksfield: Routledge.
    This major new series in the philosophy of science aims to provide a new generation of textbooks for the subject. The series will not only offer fresh treatments of core topics in the theory and methodology of scientific knowledge, but also introductions to newer areas of the discipline. Furthermore, the series will cover topics in current science that raise significant foundational issues both for scientific theory and for philosophy more generally. Biology raises distinct questions of its own not only for (...)
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  • Philosophy of Biology: A Contemporary Introduction.Alexander Rosenberg & Daniel W. McShea - 2007 - New York, NY: Routledge. Edited by Daniel W. McShea.
    Is life a purely physical process? What is human nature? Which of our traits is essential to us? In this volume, Daniel McShea and Alex Rosenberg – a biologist and a philosopher, respectively – join forces to create a new gateway to the philosophy of biology; making the major issues accessible and relevant to biologists and philosophers alike. Exploring concepts such as supervenience; the controversies about genocentrism and genetic determinism; and the debate about major transitions central to contemporary thinking about (...)
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  • Evidence and Evolution: The Logic Behind the Science.Elliott Sober - 2008 - Cambridge University Press.
    How should the concept of evidence be understood? And how does the concept of evidence apply to the controversy about creationism as well as to work in evolutionary biology about natural selection and common ancestry? In this rich and wide-ranging book, Elliott Sober investigates general questions about probability and evidence and shows how the answers he develops to those questions apply to the specifics of evolutionary biology. Drawing on a set of fascinating examples, he analyzes whether claims about intelligent design (...)
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  • Philosophy of Biology Today: On the Outside of Europe Looking In.Michael Ruse - 1988 - State University of New York Press.
    This short and highly accessible volume opens up the subject of the philosophy of biology to professionals and to students in both disciplines. The text covers briefly and clearly all of the pertinent topics in the subject, dealing with both human and non-human issues, and quite uniquely surveying not only scholars in the English-speaking world but others elsewhere, including the Eastern block. As molecular biologists peer ever more deeply into life’s mysteries, there are those who fear that such ‘reductionism’ conceals (...)
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  • Unifying Scientific Theories: Physical Concepts and Mathematical Structures.Margaret Morrison - 2000 - Cambridge University Press.
    This book is about the methods used for unifying different scientific theories under one all-embracing theory. The process has characterized much of the history of science and is prominent in contemporary physics; the search for a 'theory of everything' involves the same attempt at unification. Margaret Morrison argues that, contrary to popular philosophical views, unification and explanation often have little to do with each other. The mechanisms that facilitate unification are not those that enable us to explain how or why (...)
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  • Of Minds and Molecules: New Philosophical Perspectives on Chemistry.Nalini Bhushan & Stuart M. Rosenfeld (eds.) - 2000 - Oxford University Press.
    The essays, written by both chemists and philosophers, adopt distinctive philosophical perspectives on chemistry and collectively offer both a conceptualization ...
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  • Unsimple Truths: Science, Complexity, and Policy.Sandra D. Mitchell - 2009 - London: University of Chicago Press.
    The world is complex, but acknowledging its complexity requires an appreciation for the many roles context plays in shaping natural phenomena. In _Unsimple Truths, _Sandra Mitchell argues that the long-standing scientific and philosophical deference to reductive explanations founded on simple universal laws, linear causal models, and predict-and-act strategies fails to accommodate the kinds of knowledge that many contemporary sciences are providing about the world. She advocates, instead, for a new understanding that represents the rich, variegated, interdependent fabric of many levels (...)
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  • Philosophy of Science.Alexander Bird - 1998 - Mcgill-Queen's University Press.
    Many introductions to this field start with the problem of justifying scientific knowledge but Alexander Bird begins by examining the subject matter, or metaphysics, of science. Using topical scientific debates he vividly elucidates what it is for the world to be governed by laws of nature. This idea provides the basis for explanations and causes and leads to a discussion of natural kinds and theoretical entities. With this foundation in place he goes on to consider the epistemological issues of how (...)
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  • Philosophy of chemistry.Michael Weisberg, Paul Needham & Robin Hendry - 2011 - Stanford Encyclopedia of Philosophy.
    Chemistry is the study of the structure and transformation of matter. When Aristotle founded the field in the 4th century BCE, his conceptual grasp of the nature of matter was tailored to accommodate a relatively simple range of observable phenomena. In the 21st century, chemistry has become the largest scientific discipline, producing over half a million publications a year ranging from direct empirical investigations to substantial theoretical work. However, the specialized interest in the conceptual issues arising in chemistry, hereafter Philosophy (...)
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  • Modes of explanation.Rom Harré - 1988 - In Denis J. Hilton (ed.), Contemporary Science and Natural Explanation: Commonsense Conceptions of Causality. New York University Press.
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  • Special Sciences, or Disunity of Science as a Working Hypothesis.Jerry Fodor - 1974 - Synthese 28 (2):97--115.
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  • Teleology: the explanation that bedevils biology.David Hanke - 2004 - In John Cornwell (ed.), Explanations: Styles of Explanation in Science. Oxford University Press. pp. 143--155.
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  • Developing views of nature of science in an authentic context: An explicit approach to bridging the gap between nature of science and scientific inquiry.Reneé S. Schwartz, Norman G. Lederman & Barbara A. Crawford - 2004 - Science Education 88 (4):610-645.
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  • Explanation‐driven inquiry: Integrating conceptual and epistemic scaffolds for scientific inquiry.William A. Sandoval & Brian J. Reiser - 2004 - Science Education 88 (3):345-372.
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  • Students' perceptions of the nature of evolutionary theory.Zoubeida R. Dagher & Saouma Boujaoude - 2005 - Science Education 89 (3):378-391.
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  • Toward a philosophically more valid science curriculum.Derek Hodson - 1988 - Science Education 72 (1):19-40.
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  • Explanation and description in science teaching.R. Herbert Horwood - 1988 - Science Education 72 (1):41-49.
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  • Philosophy of Biology.Ingo Brigandt - 2011 - In Steven French & Juha Saatsi (eds.), The Bloomsbury Companion to the Philosophy of Science. London: Bloomsbury Academic. pp. 246-267.
    This overview of philosophy of biology lays out what implications biology and recent philosophy of biology have for general philosophy of science. The following topics are addressed in five sections: natural kinds, conceptual change, discovery and confirmation, explanation and reduction, and naturalism.
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  • The oil drop experiment: Do physical chemistry textbooks refer to its controversial nature?Mansoor Niaz & María A. Rodríguez - 2005 - Science & Education 14 (1):43-57.
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  • Philosophy of chemistry—a new interdisciplinary field?Eric Scerri - 2000 - Journal of Chemical Education 77:522-526.
    Philosophy of Chemistry—A New Interdisciplinary Field? What could possibly be the connection between chemistry and philosophy, apart from the obvious superficial one of their both representing quests for knowledge? How do contemporary chemists and philosophers generally view one another? These are some of the questions I will try to put before going on to describe the connections that have recently been forged between these two seemingly very diverse fields of academic study.
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  • The Structure of Science: Problems in the Logic of Scientific Explanation.Ernest Nagel - 1962 - Philosophy 37 (142):372-374.
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  • Theories of explanation.Joseph C. Pitt - 1989 - Revue Philosophique de la France Et de l'Etranger 179 (4):654-655.
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