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  1. A philosophical guide to conditionals.Jonathan Bennett - 2003 - New York: Oxford University Press.
    Conditional sentences are among the most intriguing and puzzling features of language, and analysis of their meaning and function has important implications for, and uses in, many areas of philosophy. Jonathan Bennett, one of the world's leading experts, distils many years' work and teaching into this Philosophical Guide to Conditionals, the fullest and most authoritative treatment of the subject. An ideal introduction for undergraduates with a philosophical grounding, it also offers a rich source of illumination and stimulation for graduate students (...)
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  • Laws and symmetry.Bas C. Van Fraassen - 1989 - New York: Oxford University Press.
    Metaphysicians speak of laws of nature in terms of necessity and universality; scientists, in terms of symmetry and invariance. In this book van Fraassen argues that no metaphysical account of laws can succeed. He analyzes and rejects the arguments that there are laws of nature, or that we must believe there are, and argues that we should disregard the idea of law as an adequate clue to science. After exploring what this means for general epistemology, the author develops the empiricist (...)
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  • Bangs, Crunches, Whimpers, and Shrieks: Singularities and Acausalities in Relativistic Spacetimes.John Earman - 1995 - Oxford University Press.
    Indeed, this is the first serious book-length study of the subject by a philosopher of science.
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  • The contrary-to-fact conditional.Roderick M. Chisholm - 1946 - Mind 55 (220):289-307.
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  • Laws of nature.John W. Carroll - 1994 - Philosophy and Phenomenological Research.
    John Carroll undertakes a careful philosophical examination of laws of nature, causation, and other related topics. He argues that laws of nature are not susceptible to the sort of philosophical treatment preferred by empiricists. Indeed he shows that emperically pure matters of fact need not even determine what the laws are. Similar, even stronger, conclusions are drawn about causation. Replacing the traditional view of laws and causation requiring some kind of foundational legitimacy, the author argues that these phenomena are inextricably (...)
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  • Counterfactuals and temporal direction.Jonathan Bennett - 1984 - Philosophical Review 93 (1):57-91.
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  • What is a Law of Nature?D. M. Armstrong - 1983 - New York: Cambridge University Press. Edited by Sydney Shoemaker.
    This is a study of a crucial and controversial topic in metaphysics and the philosophy of science: the status of the laws of nature. D. M. Armstrong works out clearly and in comprehensive detail a largely original view that laws are relations between properties or universals. The theory is continuous with the views on universals and more generally with the scientific realism that Professor Armstrong has advanced in earlier publications. He begins here by mounting an attack on the orthodox and (...)
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  • Asymmetries in Time.Paul Horwich - 1990 - Noûs 24 (5):804-806.
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  • Introduction” to his.D. Lewis - 1986 - Philosophical Papers 2.
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  • Fact, Fiction, and Forecast.Nelson Goodman - 1965 - Cambridge, Mass.: Harvard University Press.
    In his new foreword to this edition, Hilary Putnam forcefully rejects these nativist claims.
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  • Principled chances.Jonathan Schaffer - 2003 - British Journal for the Philosophy of Science 54 (1):27-41.
    There are at least three core principles that define the chance role: (1) the Principal Principle, (2) the Basic Chance Principle, and (3) the Humean Principle. These principles seem mutually incompatible. At least, no extant account of chance meets more than one of them. I offer an account of chance which meets all three: L*-chance. So the good news is that L*-chance meets (1)–(3). The bad news is that L*-chance turns out unlawful and unstable.
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  • David Lewis’s Humean Theory of Objective Chance.Barry Loewer - 2004 - Philosophy of Science 71 (5):1115--25.
    The most important theories in fundamental physics, quantum mechanics and statistical mechanics, posit objective probabilities or chances. As important as chance is there is little agreement about what it is. The usual “interpretations of probability” give very different accounts of chance and there is disagreement concerning which, if any, is capable of accounting for its role in physics. David Lewis has contributed enormously to improving this situation. In his classic paper “A Subjectivist's Guide to Objective Chance” he described a framework (...)
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  • Philosophical papers.David Kellogg Lewis - 1983 - New York: Oxford University Press.
    This is the second volume of philosophical essays by one of the most innovative and influential philosophers now writing in English. Containing thirteen papers in all, the book includes both new essays and previously published papers, some of them with extensive new postscripts reflecting Lewis's current thinking. The papers in Volume II focus on causation and several other closely related topics, including counterfactual and indicative conditionals, the direction of time, subjective and objective probability, causation, explanation, perception, free will, and rational (...)
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  • Humean Supervenience Debugged.David Lewis - 1994 - Mind 103 (412):473--490.
    Tn this paper I explore and to an extent defend HS. The main philosophical challenges to HS come from philosophical views that say that nomic concepts-laws, chance, and causation-denote features of the world that fail to supervene on non-nomic features. Lewis rejects these views and has labored mightily to construct HS accounts of nomic concepts. His account of laws is fundamental to his program, since his accounts of the other nomic notions rely on it. Recently, a number of philosophers have (...)
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  • A beautiful supertask.Jon Perez Laraudogoitia - 1996 - Mind 105 (417):81-83.
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  • Who’s Afraid of C eteris-Paribus Laws? Or: How I Learned to Stop Worrying and Love Them.Marc Lange - 2002 - Erkenntnis 57 (3):407-423.
    Ceteris-paribus clauses are nothing to worry about; aceteris-paribus qualifier is not poisonously indeterminate in meaning. Ceteris-paribus laws teach us that a law need not be associated straightforwardly with a regularity in the manner demanded by regularity analyses of law and analyses of laws as relations among universals. This lesson enables us to understand the sense in which the laws of nature would have been no different under various counterfactual suppositions — a feature even of those laws that involve no ceteris-paribus (...)
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  • Natural laws in scientific practice.Marc Lange - 2000 - New York: Oxford University Press.
    It is often presumed that the laws of nature have special significance for scientific reasoning. But the laws' distinctive roles have proven notoriously difficult to identify--leading some philosophers to question if they hold such roles at all. This study offers original accounts of the roles that natural laws play in connection with counterfactual conditionals, inductive projections, and scientific explanations, and of what the laws must be in order for them to be capable of playing these roles. Particular attention is given (...)
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  • Laws, counterfactuals, stability, and degrees of lawhood.Marc Lange - 1999 - Philosophy of Science 66 (2):243-267.
    I identify the special sort of stability (invariance, resilience, etc.) that distinguishes laws from accidental truths. Although an accident can have a certain invariance under counterfactual suppositions, there is no continuum between laws and accidents here; a law's invariance is different in kind, not in degree, from an accident's. (In particular, a law's range of invariance is not "broader"--at least in the most straightforward sense.) The stability distinctive of the laws is used to explicate what it would mean for there (...)
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  • Laws and meta-laws of nature: Conservation laws and symmetries.Marc Lange - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (3):457-481.
    Symmetry principles are commonly said to explain conservation laws—and were so employed even by Lagrange and Hamilton, long before Noether's theorem. But within a Hamiltonian framework, the conservation laws likewise entail the symmetries. Why, then, are symmetries explanatorily prior to conservation laws? I explain how the relation between ordinary (i.e., first-order) laws and the facts they govern (a relation involving counterfactuals) may be reproduced one level higher: as a relation between symmetries and the ordinary laws they govern. In that event, (...)
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  • Laws and their stability.Marc Lange - 2005 - Synthese 144 (3):415Ð432.
    Many philosophers have believed that the laws of nature differ from the accidental truths in their invariance under counterfactual perturbations. Roughly speaking, the laws would still have held had q been the case, for any q that is consistent with the laws. (Trivially, no accident would still have held under every such counterfactual supposition.) The main problem with this slogan (even if it is true) is that it uses the laws themselves to delimit qs range. I present a means of (...)
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  • How to account for the relation between chancy facts and deterministic laws.Marc Lange - 2006 - Mind 115 (460):917--946.
    Suppose that unobtanium-346 is a rare radioactive isotope. Consider: (1) Every Un346 atom, at its creation, decays within 7 microseconds (µs). (50%) Every Un346 atom, at its creation, has a 50% chance of decaying within 7µs. (1) and (50%) can be true together, but (1) and (50%) cannot together be laws of nature. Indeed, (50%)'s mere (non-vacuous) truth logically precludes (1)'s lawhood. A satisfactory analysis of chance and lawhood should nicely account for this relation. I shall argue first that David (...)
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  • How Can Instantaneous Velocity Fulfill Its Causal Role?Marc Lange - 2005 - Philosophical Review 114 (4):433-468.
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  • How can instantaneous velocity fulfill its causal role?Marc Lange - 2005 - Philosophical Review 114 (4):433-468.
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  • Do chances receive equal treatment under the laws? Or: Must chances be probabilities?Marc Lange - 2006 - British Journal for the Philosophy of Science 57 (2):383-403.
    I offer an argument regarding chances that appears to yield a dilemma: either the chances at time t must be determined by the natural laws and the history through t of instantiations of categorical properties, or the function ch(•) assigning chances need not satisfy the axioms of probability. The dilemma's first horn might seem like a remnant of determinism. On the other hand, this horn might be inspired by our best scientific theories. In addition, it is entailed by the familiar (...)
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  • A causal theory of counterfactuals.Frank Jackson - 1977 - Australasian Journal of Philosophy 55 (1):3 – 21.
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  • Is classical mechanics really time-reversible and deterministic?Keith Hutchison - 1993 - British Journal for the Philosophy of Science 44 (2):307-323.
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  • The Character of Physical Law.Richard Feynman - 1965 - MIT Press.
    The law of gravitation, an example of physical law The relation of mathematics to physics The great conservation principles Symmetry in physical law The distinction of past and future Probability and uncertainty: the quantum mechanical view of nature Seeking new laws.
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  • A Philosophical Guide to Conditionals.Jonathan Bennett - 2003 - Tijdschrift Voor Filosofie 66 (2):379-380.
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  • Laws of Nature.John Carroll - 1995 - British Journal for the Philosophy of Science 46 (4):603-609.
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