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  1. The Metaphysics within Physics.[author unknown] - 2007 - Tijdschrift Voor Filosofie 69 (3):610-611.
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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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  • (7) law and causality.Frank Ramsey - 1961 - In John Langshaw Austin (ed.), Philosophical Papers. Oxford, England: Clarendon Press. pp. 140-163.
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  • Time and Chance.David Z. Albert - 2000 - Cambridge, Mass.: Harvard University Press.
    This book is an attempt to get to the bottom of an acute and perennial tension between our best scientific pictures of the fundamental physical structure of the world and our everyday empirical experience of it. The trouble is about the direction of time. The situation (very briefly) is that it is a consequence of almost every one of those fundamental scientific pictures--and that it is at the same time radically at odds with our common sense--that whatever can happen can (...)
  • A Church–Fitch proof for the universality of causation.Christopher Gregory Weaver - 2013 - Synthese 190 (14):2749-2772.
    In an attempt to improve upon Alexander Pruss’s work (The principle of sufficient reason: A reassessment, pp. 240–248, 2006), I (Weaver, Synthese 184(3):299–317, 2012) have argued that if all purely contingent events could be caused and something like a Lewisian analysis of causation is true (per, Lewis’s, Causation as influence, reprinted in: Collins, Hall and paul. Causation and counterfactuals, 2004), then all purely contingent events have causes. I dubbed the derivation of the universality of causation the “Lewisian argument”. The Lewisian (...)
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  • What could be caused must actually be caused.Christopher Gregory Weaver - 2012 - Synthese 184 (3):299-317.
    I give two arguments for the claim that all events which occur at the actual world and are such that they could be caused, are also such that they must actually be caused. The first argument is an improvement of a similar argument advanced by Alexander Pruss, which I show to be invalid. It uses Pruss’s Brouwer Analog for counterfactual logic, and, as a consequence, implies inconsistency with Lewis’s semantics for counterfactuals. While (I suggest) this consequence may not be objectionable, (...)
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  • Causal Relations.Donald Davidson - 2004 - In Tim Crane & Katalin Farkas (eds.), Metaphysics: A Guide and Anthology. Oxford University Press UK.
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  • Lewis Carroll's Symbolic Logic.Lewis Carroll - 1896 - New York, NY, USA: Potter.
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  • Material Beings.Peter Van Inwagen - 1990 - Ithaca, N.Y.: Cornell University Press.
    According to Peter van Inwagen, visible inanimate objects do not, strictly speaking, exist. In defending this controversial thesis, he offers fresh insights on such topics as personal identity, commonsense belief, existence over time, the phenomenon of vagueness, and the relation between metaphysics and ordinary language.
  • Naturalism In Question.Mario De Caro & David Macarthur (eds.) - 2004 - Cambridge, Mass.: Harvard University Press.
    Today most philosophers in the English-speaking world adhere to “naturalist” credos that philosophy is continuous with science, and that the natural sciences provide a complete account of all that exists. This volume presents a group of leading thinkers who criticize scientific naturalism in order to defend a more inclusive or liberal naturalism.
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  • Bangs, Crunches, Whimpers, and Shrieks: Singularities and Acausalities in Relativistic Spacetimes.John Earman - 1995 - Oxford University Press USA.
    Focusing on spacetime singularities, Earman engages with a host of foundational issues at the intersection of science and philosophy, ranging from the big bang to the possibility of time travel.
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  • The cement of the universe.John Leslie Mackie - 1974 - Oxford,: Clarendon Press.
    Studies causation both as a concept and as it is 'in the objects.' Offers new accounts of the logic of singular causal statements, the form of causal regularities, the detection of causal relationships, the asymmetry of cause and effect, and necessary connection, and it relates causation to functional and statistical laws and to teleology.
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  • Erratum to: What could be caused must actually be caused.Christopher Gregory Weaver - 2011 - Synthese 183 (2):279-279.
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  • The arrow of time and the initial conditions of the universe.Robert M. Wald - 2006 - Studies in History and Philosophy of Modern Physics 37 (3):394-398.
    The existence of a thermodynamic arrow of time in the present universe implies that the initial state of the observable portion of our universe at the tt"big bangtt" must have been very tt"specialtt". We argue that it is not plausible that these special initial conditions have a dynamical origin.
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  • Material beings.Peter Van Inwagen - 1990 - Ithaca: Cornell University Press.
    The topic of this book is material objects. Like most interesting concepts, the concept of a material object is one without precise boundaries.
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  • What’s So Bad About Overdetermination. [REVIEW]Theodore Sider - 2003 - Philosophy and Phenomenological Research 67 (3):719 - 726.
    The intimate relationship between X and Y consists in the existence of (metaphysically) necessary truths correlating their occurrences/existences/instantiations. E would be in some sense “overdetermined” if caused by both X and Y.2 Some philosophers say this would be bad, that this cannot or does not happen, that we should construct theories ruling it out, at least in certain cases.3 But why? Given the necessary truths correlating objects and their parts, objects and events concerning those objects, physical and supervenient mental properties, (...)
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  • Overdetermining causes.Jonathan Schaffer - 2003 - Philosophical Studies 114 (1-2):23 - 45.
    When two rocks shatter the window at once, what causes the window to shatter? Is the throwing of each individual rock a cause of the window shattering, or are the throwings only causes collectively? This question bears on the analysis of causation, and the metaphysics of macro-causation. I argue that the throwing of each individual rock is a cause of the window shattering, and generally that individual overdeterminers are causes.
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  • In defense of mereological universalism.Michael C. Rea - 1998 - Philosophy and Phenomenological Research 58 (2):347-360.
    This paper defends Mereological Universalism(the thesis that, for any set S of disjoint objects, there is an object that the members of S compose. Universalism is unpalatable to many philosophers because it entails that if there are such things as my left tennis shoe, W. V. Quine, and the Taj Mahal, then there is another object that those three things compose. This paper presents and criticizes Peter van Inwagen's argument against Universalism and then presents a new argument in favor of (...)
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  • In Defense of Mereological Universalism.Michael C. Rea - 1998 - Philosophy and Phenomenological Research 58 (2):347-360.
    This paper defends Mereological Universalism (the thesis that, for any set S of disjoint objects, there is an object that the members of S compose. Universalism is unpalatable to many philosophers because it entails that if there are such things as my left tennis shoe, W. V. Quine, and the Taj Mahal, then there is another object that those three things compose. This paper presents and criticizes Peter van Inwagen’s argument against Universalism and then presents a new argument in favor (...)
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  • Time’s arrow and Archimedes’ point.Huw Price - 1996 - Philosophical and Phenomenological Research 59 (4):1093-1096.
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  • Time’s Arrow and Archimedes’ Point: New Directions for the Physics of Time.Huw Price - 1996 - New York, US: Oup Usa.
    Why is the future so different from the past? Why does the past affect the future and not the other way round? The universe began with the Big Bang - will it end with a `Big Crunch'? Now in paperback, this book presents an innovative and controversial view of time and contemporary physics. Price urges physicists, philosophers, and anyone who has ever pondered the paradoxes of time to look at the world from a fresh perspective, and throws fascinating new light (...)
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  • Review of *The Metaphysics within Physics* by Tim Maudlin. [REVIEW]Chris Daly - 2009 - Analysis 69 (2):374-375.
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  • The metaphysics within physics.Tim Maudlin - 2007 - New York: Oxford University Press.
    A modest proposal concerning laws, counterfactuals, and explanations - - Why be Humean? -- Suggestions from physics for deep metaphysics -- On the passing of time -- Causation, counterfactuals, and the third factor -- The whole ball of wax -- Epilogue : a remark on the method of metaphysics.
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  • Two accounts of laws and time.Barry Loewer - 2012 - Philosophical Studies 160 (1):115-137.
    Among the most important questions in the metaphysics of science are "What are the natures of fundamental laws and chances?" and "What grounds the direction of time?" My aim in this paper is to examine some connections between these questions, discuss two approaches to answering them and argue in favor of one. Along the way I will raise and comment on a number of issues concerning the relationship between physics and metaphysics and consequences for the subject matter and methodology of (...)
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  • Determinism and Chance.Barry Loewer - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 32 (4):609-620.
    It is generally thought that objective chances for particular events different from 1 and 0 and determinism are incompatible. However, there are important scientific theories whose laws are deterministic but which also assign non-trivial probabilities to events. The most important of these is statistical mechanics whose probabilities are essential to the explanations of thermodynamic phenomena. These probabilities are often construed as 'ignorance' probabilities representing our lack of knowledge concerning the microstate. I argue that this construal is incompatible with the role (...)
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  • New work for a theory of universals.David K. Lewis - 1983 - Australasian Journal of Philosophy 61 (4):343-377.
  • 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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  • Causation.David Lewis - 1973 - Journal of Philosophy 70 (17):556-567.
  • Counterfactuals. [REVIEW]William Parry - 1973 - Journal of Symbolic Logic 44 (2):278-281.
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  • The myth of non-reductive materialism.Jaegwon Kim - 1989 - Proceedings and Addresses of the American Philosophical Association 63 (3):31-47.
    Somewhat loose arguments that non-reductive physicalist realism is untenable. Anomalous monism makes the mental irrelevant, functionalism is compatible with species-specific reduction, and supervenience is weak or reductive.
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  • Mechanism, purpose, and explanatory exclusion.Jaegwon Kim - 1989 - Philosophical Perspectives 3:77-108.
  • The Big Picture: On the Origins of Life, Meaning, and the Universe Itself.Sean Carroll - 2016 - Dutton.
    I discuss "Poetic Naturalism" -- there is only one world, the natural world, but there are many ways of talking about it -- both as a general concept, and how it accounts for our actual world. I talk about emergence, fundamental physics, entropy and complexity, the origins of life and consciousness, and moral constructivism.
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  • From Eternity to Here: The Quest for the Ultimate Theory of Time.Sean Carroll - 2010 - Dutton.
    This book provides an account of the nature of time, especially time's arrow and the role of entropy, at a semi-popular level. Special attention is given to statistical mechanics, the past hypothesis, and possible cosmological explanations thereof.
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  • The “Past Hypothesis”: Not even false.John Earman - 2006 - Studies in History and Philosophy of Modern Physics 37 (3):399-430.
    It has become something of a dogma in the philosophy of science that modern cosmology has completed Boltzmann's program for explaining the statistical validity of the Second Law of thermodynamics by providing the low entropy initial state needed to ground the asymmetry in entropic behavior that underwrites our inference about the past. This dogma is challenged on several grounds. In particular, it is argued that it is likely that the Boltzmann entropy of the initial state of the universe is an (...)
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  • Dependencies, Connections, and Other Relations: A Theory of Mental Causation.Wim de Muijnck - 2003 - Springer Verlag.
    This work covers, in its subsequent parts, ontology, the metaphysics of causation, and the philosophy of mind. It provides a firm theoretical basis for believing that in our all-physical world mental causation is perfectly real, and that it can be understood.
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  • Causal relations.Donald Davidson - 1967 - Journal of Philosophy 64 (21):691-703.
  • Events without times an essay on ontology.Roderick M. Chisholm - 1990 - Noûs 24 (3):413-427.
  • Does the Universe Need God?Sean Carroll - 2012 - In J. B. Stump & Alan G. Padgett (eds.), The Blackwell Companion to Science and Christianity. Chichester, UK: Wiley-Blackwell. pp. 185-197.
    I ask whether what we know about the universe from modern physics and cosmology, including fine-tuning, provides compelling evidence for the existence of God, and answer largely in the negative.
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  • The past hypothesis meets gravity.Craig Callender - 2010 - In Andreas Hüttemann & Gerhard Ernst (eds.), Time, Chance and Reduction. Cambridge, UK: Cambridge University Press. pp. 34-58.
    The Past Hypothesis is the claim that the Boltzmann entropy of the universe was extremely low when the universe began. Can we make sense of this claim when *classical* gravitation is included in the system? I first show that the standard rationale for not worrying about gravity is too quick. If the paper does nothing else, my hope is that it gets the problems induced by gravity the attention they deserve in the foundations of physics. I then try to make (...)
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  • Measures, explanations and the past: Should ‘special’ initial conditions be explained?Craig Callender - 2004 - British Journal for the Philosophy of Science 55 (2):195-217.
    For the generalizations of thermodynamics to obtain, it appears that a very ‘special’ initial condition of the universe is required. Is this initial condition itself in need of explanation? I argue that it is not. In so doing, I offer a framework in which to think about ‘special’ initial conditions in all areas of science, though I concentrate on the case of thermodynamics. I urge the view that it is not always a serious mark against a theory that it must (...)
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  • Bangs, Crunches, Whimpers, and Shrieks: Singularities and Acausalities in Relativistic Spacetimes.Craig Callender & John Earman - 1998 - Philosophical Review 107 (1):142.
    For much of this century, philosophers hoped that Einstein’s general theory of relativity would play the role of physician to philosophy. Its development would positively influence the philosophy of methodology and confirmation, and its ontology would answer many traditional philosophical debates—for example, the issue of spacetime substantivalism. In physics, by contrast, the attitude is increasingly that GTR itself needs a physician. The more we learn about GTR the more we discover how odd are the spacetimes that it allows. Not only (...)
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  • Causal overdetermination.Martin Bunzl - 1979 - Journal of Philosophy 76 (3):134-150.
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  • Unbounded Entropy in Spacetimes with Positive Cosmological Constant.Raphael Bousso, Oliver DeWolfe & Robert C. Myers - 2003 - Foundations of Physics 33 (2):297-321.
    In theories of gravity with a positive cosmological constant, we consider product solutions with flux, of the form (A)dS p ×S q . Most solutions are shown to be perturbatively unstable, including all uncharged dS p ×S q spacetimes. For dimensions greater than four, the stable class includes universes whose entropy exceeds that of de Sitter space, in violation of the conjectured “N-bound.” Hence, if quantum gravity theories with finite-dimensional Hilbert space exist, the specification of a positive cosmological constant will (...)
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  • Physics and Chance: Philosophical Issues in the Foundations of Statistical Mechanics.Robert Batterman & Lawrence Sklar - 1995 - Philosophical Review 104 (4):624.
    Philosophers of physics are very familiar with foundational problems in quantum mechanics and in the theory of relativity. In both fields, the puzzles, if not solved, are at least reasonably well formulated and possess well-characterized solution strategies. Sklar’s book Physics and Chance focuses on a pair of theories, thermodynamics and statistical mechanics, for which puzzles and foundational paradoxes abound, but where there is very little agreement upon the means with which they may best be approached. As he notes in the (...)
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  • Measurement outcomes and probability in Everettian quantum mechanics.David J. Baker - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (1):153-169.
    The decision-theoretic account of probability in the Everett or many-worlds interpretation, advanced by David Deutsch and David Wallace, is shown to be circular. Talk of probability in Everett presumes the existence of a preferred basis to identify measurement outcomes for the probabilities to range over. But the existence of a preferred basis can only be established by the process of decoherence, which is itself probabilistic.
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  • Measurement outcomes and probability in Everettian quantum mechanics.David Baker - 2006 - Studies in History and Philosophy of Modern Physics 38 (1):153-169.
    The decision-theoretic account of probability in the Everett or many-worlds interpretation, advanced by David Deutsch and David Wallace, is shown to be circular. Talk of probability in Everett presumes the existence of a preferred basis to identify measurement outcomes for the probabilities to range over. But the existence of a preferred basis can only be established by the process of decoherence, which is itself probabilistic.
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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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  • Time and Chance.S. French - 2005 - Mind 114 (453):113-116.
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  • Time and chance.David Z. Albert - 2000 - Cambridge, Mass.: Harvard University Press.
    This book is an attempt to get to the bottom of an acute and perennial tension between our best scientific pictures of the fundamental physical structure of the ...
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  • After Physics.David Z. Albert - 2015 - Cambridge, Massachusetts: Harvard University Press.
    Here the philosopher and physicist David Z Albert argues, among other things, that the difference between past and future can be understood as a mechanical phenomenon of nature and that quantum mechanics makes it impossible to present the entirety of what can be said about the world as a narrative of “befores” and “afters.”.
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