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  1. Rethinking Mechanistic Explanation.Stuart Glennan - 2002 - Philosophy of Science 69 (S3):S342-S353.
    Philosophers of science typically associate the causal-mechanical view of scientific explanation with the work of Railton and Salmon. In this paper I shall argue that the defects of this view arise from an inadequate analysis of the concept of mechanism. I contrast Salmon's account of mechanisms in terms of the causal nexus with my own account of mechanisms, in which mechanisms are viewed as complex systems. After describing these two concepts of mechanism, I show how the complex-systems approach avoids certain (...)
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  • Mechanisms and the nature of causation.Stuart S. Glennan - 1996 - Erkenntnis 44 (1):49--71.
    In this paper I offer an analysis of causation based upon a theory of mechanisms-complex systems whose internal parts interact to produce a system's external behavior. I argue that all but the fundamental laws of physics can be explained by reference to mechanisms. Mechanisms provide an epistemologically unproblematic way to explain the necessity which is often taken to distinguish laws from other generalizations. This account of necessity leads to a theory of causation according to which events are causally related when (...)
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  • Scientific kinds.Marc Ereshefsky & Thomas A. C. Reydon - 2015 - Philosophical Studies 172 (4):969-986.
    Richard Boyd’s Homeostatic Property Cluster Theory is becoming the received view of natural kinds in the philosophy of science. However, a problem with HPC Theory is that it neglects many kinds highlighted by scientific classifications while at the same time endorsing kinds rejected by science. In other words, there is a mismatch between HPC kinds and the kinds of science. An adequate account of natural kinds should accurately track the classifications of successful science. We offer an alternative account of natural (...)
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  • Resurrecting biological essentialism.Michael Devitt - 2008 - Philosophy of Science 75 (3):344-382.
    The article defends the doctrine that Linnaean taxa, including species, have essences that are, at least partly, underlying intrinsic, mostly genetic, properties. The consensus among philosophers of biology is that such essentialism is deeply wrong, indeed incompatible with Darwinism. I argue that biological generalizations about the morphology, physiology, and behavior of species require structural explanations that must advert to these essential properties. The objection that, according to current “species concepts,” species are relational is rejected. These concepts are primarily concerned with (...)
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  • Is Water H2O? Evidence, Realism and Pluralism.Hasok Chang - 2012 - Boston Studies in the Philosophy and History of Science.
    This book exhibits deep philosophical quandaries and intricacies of the historical development of science lying behind a simple and fundamental item of common sense in modern science, namely the composition of water as H2O. Three main phases of development are critically re-examined, covering the historical period from the 1760s to the 1860s: the Chemical Revolution, early electrochemistry, and early atomic chemistry. In each case, the author concludes that the empirical evidence available at the time was not decisive in settling the (...)
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  • Discovering Complexity: Decomposition and Localization as Strategies in Scientific Research.William Bechtel & Robert C. Richardson - 2010 - Princeton.
    An analysis of two heuristic strategies for the development of mechanistic models, illustrated with historical examples from the life sciences. In Discovering Complexity, William Bechtel and Robert Richardson examine two heuristics that guided the development of mechanistic models in the life sciences: decomposition and localization. Drawing on historical cases from disciplines including cell biology, cognitive neuroscience, and genetics, they identify a number of "choice points" that life scientists confront in developing mechanistic explanations and show how different choices result in divergent (...)
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  • Beyond Rigidity: The Unfinished Semantic Agenda of Naming and Necessity.Scott Soames - 2004 - Philosophical Quarterly 54 (217):637-640.
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  • Naming and Necessity.S. Kripke - 1972 - Tijdschrift Voor Filosofie 45 (4):665-666.
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  • Explaining the Brain.Carl F. Craver - 2007 - Oxford, GB: Oxford University Press.
    Carl F. Craver investigates what we are doing when we use neuroscience to explain what's going on in the brain. When does an explanation succeed and when does it fail? Craver offers explicit standards for successful explanation of the workings of the brain, on the basis of a systematic view about what neuroscientific explanations are.
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  • The Conscious Mind: In Search of a Fundamental Theory (2nd edition).David J. Chalmers - 1996 - Oxford University Press.
    The book is an extended study of the problem of consciousness. After setting up the problem, I argue that reductive explanation of consciousness is impossible , and that if one takes consciousness seriously, one has to go beyond a strict materialist framework. In the second half of the book, I move toward a positive theory of consciousness with fundamental laws linking the physical and the experiential in a systematic way. Finally, I use the ideas and arguments developed earlier to defend (...)
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  • Why isn't Stich an eliminativist?Fiona Cowie - 2009 - In Dominic Murphy & Michael A. Bishop (eds.), Stich and His Critics. Wiley-Blackwell. pp. 14--74.
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  • A System of Logic.John Stuart Mill - 1874 - Longman.
    Reprint of the original, first published in 1869.
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  • What Emotions Really Are: The Problem of Psychological Categories.Paul E. Griffiths - 1997 - University of Chicago Press.
    Paul E. Griffiths argues that most research on the emotions has been as misguided as Aristotelian efforts to study "superlunary objects" - objects...
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  • Explaining the brain: mechanisms and the mosaic unity of neuroscience.Carl F. Craver - 2007 - New York : Oxford University Press,: Oxford University Press, Clarendon Press.
    Carl Craver investigates what we are doing when we sue neuroscience to explain what's going on in the brain.
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  • Nature's Metaphysics: Laws and Properties.Alexander Bird - 2007 - New York: Oxford University Press.
    Professional philosophers and advanced students working in metaphysics and the philosophy of science will find this book both provocative and stimulating.
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  • Kinds, Projectibility and Explanation.Sören Häggqvist - 2005 - Croatian Journal of Philosophy 5 (1):71-87.
    Two ways of characterizing natural kinds are currently popular: the Kripke-Putnam appeal to microstructure and Boyd’s appeal to causal homeostasis. I argue that these conceptions are more divergent than is often acknowledged, that they give no credence to essentialism, and that they are both faulty. In their place, I sketch an alternative view of natural kinds, which I call “bare projectibilism”. This conception avoids the appeal to explanation common to microstructuralism and the causal homeostasis view, but is still compatible with (...)
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  • Rigidity, ontology, and semantic structure.Alan Sidelle - 1992 - Journal of Philosophy 89 (8):410-430.
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  • Two ways of thinking about fitness and natural selection.Mohan Matthen & André Ariew - 2002 - Journal of Philosophy 99 (2):55-83.
    How do fitness and natural selection relate to other evolutionary factors like architectural constraint, mode of reproduction, and drift? In one way of thinking, drawn from Newtonian dynamics, fitness is one force driving evolutionary change and added to other factors. In another, drawn from statistical thermodynamics, it is a statistical trend that manifests itself in natural selection histories. It is argued that the first model is incoherent, the second appropriate; a hierarchical realization model is proposed as a basis for a (...)
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  • Homeostasis, species, and higher taxa.Richard Boyd - 1999 - In R. A. Wilson (ed.), Species: New Interdisciplinary Essays. MIT Press. pp. 141-85.
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  • Squaring the Circle: Natural Kinds with Historical Essences.Paul E. Griffiths - 1999 - In Robert A. Wilson (ed.), Species: New Interdisciplinary Essays. MIT Press. pp. 209-228.
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  • Essence and natural kinds: When science meets preschooler intuition.Sarah-Jane Leslie - 2013 - Oxford Studies in Epistemology 4:108-66.
    The present paper focuses on essentialism about natural kinds as a case study in order to illustrate this more general point. Saul Kripke and Hilary Putnam famously argued that natural kinds have essences, which are discovered by science, and which determine the extensions of our natural kind terms and concepts. This line of thought has been enormously influential in philosophy, and is often taken to have been established beyond doubt. The argument for the conclusion, however, makes critical use of intuitions, (...)
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  • Are natural kind terms special?Åsa Wikforss - 2010 - In Helen Beebee & Nigel Sabbarton-Leary (eds.), The Semantics and Metaphysics of Natural Kinds. Routledge.
    It is commonly assumed that natural kind terms constitute a distinct semantic category. This idea emerged during the 1970's following Kripke's and Putnam's well-known remarks on natural kind terms. The idea has stayed with us, although it is now recognized that the issues are considerably more complex than initially thought. Thus, it has become clear that much of Kripke's and Putnam's discussions were based on rather simplified views of natural kinds. It also turns out that the semantic issues are less (...)
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  • Reasoning in biological discoveries.Lindley Darden - manuscript
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  • Water is not H2O.Michael Weisberg - manuscript
    In defending semantic externalism, philosophers of language have often assumed that there is a straightforward connection between scientific kinds and the natural kinds recognized by ordinary language users.1 For example, the claim that water is H2O assumes that the ordinary language kind water corresponds to a chemical kind, which contains all the molecules with molecular formula H2O as its members. This assumption about the coordination between ordinary language kinds and scientific kinds is important for the externalist program, because it is (...)
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  • Reduction of mind.David K. Lewis - 1994 - In Samuel Guttenplan (ed.), Companion to the Philosophy of Mind. Blackwell. pp. 412-431.
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  • Natural Kinds and Conceptual Change.Joseph Laporte - 2005 - Philosophical Quarterly 55 (221):672-674.
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  • Reference and Essence.Nathan U. Salmon - 1981 - Revue Philosophique de la France Et de l'Etranger 173 (3):363-364.
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  • Putnam's theory of natural kinds and their names is not the same as kripke's.Ian Hacking - 2007 - Principia: An International Journal of Epistemology 11 (1):1-24.
    Philosophers have been referring to the “Kripke–Putnam” theory of naturalkind terms for over 30 years. Although there is one common starting point, the two philosophers began with different motivations and presuppositions, and developed in different ways. Putnam’s publications on the topic evolved over the decades, certainly clarifying and probably modifying his analysis, while Kripke published nothing after 1980. The result is two very different theories about natural kinds and their names. Both accept that the meaning of a naturalkind term is (...)
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  • Natural kinds.Ian Hacking - 1990 - In Barret And Gibson (ed.), Perspectives on Quine. pp. 129--141.
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