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A Quantum-Theoretic Argument Against Naturalism

In Bruce L. Gordon & William A. Dembski (eds.), The Nature of Nature: Examining the Role of Naturalism in Science. Wilmington, DE: ISI Books. pp. 179-214 (2011)

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  1. Berkeley.Lisa Downing - 2014 - Routledge.
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  • Perspectives on Quantum Reality: Non-Relativistic, Relativistic, and Field-Theoretic.Rob Clifton - 1996 - Springer.
    Theoretical physicists and philosophers of science tackle the conceptual problems of quantum mechanics from a variety of mathematical and philosophical angles in 18 papers, most from a conference at the University of Western Ontario in the autumn of 1994. Nearly half treat the largely uncharted territory of relativistic quantum mechanics and quantum field theory. Others provide innovative approaches to longstanding problems about measurement, irreversibility, nonlocality, contextualism, and the classical limit of quantum mechanics. No index. Annotation copyright by Book News, Inc., (...)
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  • The causation debate in modern philosophy, 1637-1739.Kenneth C. Clatterbaugh - 1999 - New York: Routledge.
    The Causation Debate in Modern Philosophy examines the debate that began as modern science separated itself from natural philosophy in the sixteenth and seventeenth centuries. The book specifically explores the two dominant approaches to causation as a metaphysical problem and as a scientific problem. As philosophy and science turned from the ideas of Aristotle that dominated western thought throughout the renaissance, one of the most pressing intellectual problems was how to replace Aristotelian science with its doctine of the four causes. (...)
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  • The Interpretation of Quantum Mechanics.Roland Omnès - 1994 - Princeton University Press.
    The interpretation of quantum mechanics has been controversial since the introduction of quantum theory in the 1920s. Although the Copenhagen interpretation is commonly accepted, its usual formulation suffers from some serious drawbacks. Based mainly on Bohr's concepts, the formulation assumes an independent and essential validity of classical concepts running in parallel with quantum ones, and leaves open the possibility of their ultimate conflict. In this book, Roland Omn s examines a number of recent advances, which, combined, lead to a consistent (...)
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  • Conceptual Problems of Quantum Gravity.Abhay Ashtekar & John Stachel (eds.) - 1991 - Birkhauser.
    Introduction: The Winding Road to Quantum Gravity Abhay Ashtekar Traveler, there are no paths; Paths are made by walking. ...
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  • Interpreting Bodies: Classical and Quantum Objects in Modern Physics.Elena Castellani (ed.) - 1998 - Princeton University Press.
    Bewildering features of modern physics, such as relativistic space-time structure and the peculiarities of so-called quantum statistics, challenge traditional ways of conceiving of objects in space and time. Interpreting Bodies brings together essays by leading philosophers and scientists to provide a unique overview of the implications of such physical theories for questions about the nature of objects. The collection combines classic articles by Max Born, Werner Heisenberg, Hans Reichenbach, and Erwin Schrodinger with recent contributions, including several papers that have never (...)
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  • A Primer on Determinism.John Earman - 1986 - D. Reidel.
    Determinism is a perennial topic of philosophical discussion. Very little acquaintance with the philosophical literature is needed to reveal the Tower of ...
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  • No Free Lunch: Why Specified Complexity Cannot Be Purchased Without Intelligence.William A. Dembski - 2002 - Rowman & Littlefield.
    Darwin's greatest accomplishment was to show how life might be explained as the result of natural selection. But does Darwin's theory mean that life was unintended? William A. Dembski argues that it does not. In this book Dembski extends his theory of intelligent design. Building on his earlier work in The Design Inference (Cambridge, 1998), he defends that life must be the product of intelligent design. Critics of Dembski's work have argued that evolutionary algorithms show that life can be explained (...)
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  • Material Constitution: A Reader.Michael Cannon Rea (ed.) - 1997 - Lanham, Md.: Rowman & Littlefield Publishers.
    The only anthology available on material constitution, this book collects important recent work on well known puzzles in metaphysics and philosophy of mind. The extensive, clearly written introduction helps to make the essays accessible to a wide audience.
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  • A Theory of Conditionals.Robert Stalnaker - 1968 - In Nicholas Rescher (ed.), Studies in Logical Theory (American Philosophical Quarterly Monographs 2). Oxford: Blackwell. pp. 98-112.
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  • Causal Powers: A Theory of Natural Necessity.E. H. Madden - 1978 - Mind 87 (346):305-306.
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  • Models and mathematics in physics: The role of group theory.Steven French - 1999 - In Jeremy Butterfield & Constantine Pagonis (eds.), From Physics to Philosophy. Cambridge University Press. pp. 187--207.
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  • Do Correlations Need to be Explained?Arthur Fine - 1989 - In James T. Cushing & Ernan McMullin (eds.), Philosophical Consequences of Quantum Theory. University of Notre Dame Press. pp. 175--194.
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  • On the withering away of physical objects.Steven French - 1998 - In Elena Castellani (ed.), Interpreting Bodies. Princeton University Press. pp. 93--113.
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  • Observations on hyperplanes: II. Dynamical variables and localization observables.Gordon N. Fleming - unknown
    This is the second of two papers responding (somewhat belatedly) to ‘recent’ commentary on various aspects of hyperplane dependence (HD) by several authors. In this paper I focus on the issues of the general need for HD dynamical variables, the identification of physically meaningful localizable properties, the basis vectors representing such properties and the relationship between the concepts of ‘localizable within’ and ‘measureable within’. The authors responded to here are de Koning, Halvorson, Clifton and Wallace. In the first paper of (...)
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  • Pre-socratic quantum gravity.Gordon Belot & John Earman - 2001 - In Craig Callender & Nick Huggett (eds.), Physics Meets Philosophy at the Planck Scale. Cambridge University Press. pp. 213--55.
    Physicists who work on canonical quantum gravity will sometimes remark that the general covariance of general relativity is responsible for many of the thorniest technical and conceptual problems in their field.1 In particular, it is sometimes alleged that one can trace to this single source a variety of deep puzzles about the nature of time in quantum gravity, deep disagreements surrounding the notion of ‘observable’ in classical and quantum gravity, and deep questions about the nature of the existence of spacetime (...)
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  • Counterfactuals.David Lewis - 1973 - Philosophy of Science 42 (3):341-344.
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  • Algebraic quantum field theory.Hans Halvorson & Michael Mueger - 2006 - In J. Butterfield & J. Earman (eds.), Handbook of the philosophy of physics. Kluwer Academic Publishers.
    Algebraic quantum field theory provides a general, mathematically precise description of the structure of quantum field theories, and then draws out consequences of this structure by means of various mathematical tools -- the theory of operator algebras, category theory, etc.. Given the rigor and generality of AQFT, it is a particularly apt tool for studying the foundations of QFT. This paper is a survey of AQFT, with an orientation towards foundational topics. In addition to covering the basics of the theory, (...)
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  • Quantum spacetime: What do we know?Carlo Rovelli - 2001 - In Craig Callender & Nick Huggett (eds.), Physics Meets Philosophy at the Planck Scale. Cambridge University Press. pp. 101--22.
    This is a contribution to a book on quantum gravity and philosophy. I discuss nature and origin of the problem of quantum gravity. I examine the knowledge that may guide us in addressing this problem, and the reliability of such knowledge. In particular, I discuss the subtle modification of the notions of space and time engendered by general relativity, and how these might merge into quantum theory. I also present some reflections on methodological questions, and on some general issues in (...)
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  • Observations on hyperplanes: I State reduction and unitary evolution.Gordon N. Fleming - unknown
    This is the first of two papers responding to ‘recent’ commentary on various aspects of hyperplane dependence by several authors. In this paper I focus on the issues of the relations of HD to state reduction and unitary evolution. The authors who’s comments I address here are Maudlin and Myrvold. In the second paper of this set I focus on HD dynamical variables and localizable properties and measurements and address comments of de Koning, Halvorson, Clifton and Wallace. Each paper ends (...)
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  • Absolute Creation.Thomas V. Morris & Christopher Menzel - 1986 - American Philosophical Quarterly 23 (4):353 - 362.
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  • Lorentz Invariant State Reduction, and Localization.Gordon N. Fleming - 1988 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1988:112-126.
    In this paper I will present conceptions of state reduction and particle and/or system localization which render these subjects fully compatible with the general requirements of a relativistic, i.e. Lorentz invariant, quantum theory. The approach consists of a systematic generalization of the concepts of initial data assignment at definite times, initiation and completion of measurements at definite times, and dynamical evolution as time dependence, to the concepts of initial data assignment on arbitrary space-like hyperplanes, initiation and completion of measurements on (...)
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  • Correlations and Physical Locality.Arthur Fine - 1980 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1980:535 - 562.
    Two principles of locality used in discussions about quantum mechanics are distinguished. The intuitive no-action-at-a distance requirement is called physical locality. There is also a mathematical requirement of a kind of factorizability which is referred to as "locality". It is argued in this paper that factorizability is not necessary for physical locality. Ways of producing models that are physically local although not factorizable which are concerned with correlations between the behavior of pairs of particles are suggested. These models can account (...)
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  • Part and whole in quantum mechanics.Tim Maudlin - 1998 - In Elena Castellani (ed.), Interpreting Bodies. Princeton University Press. pp. 46--60.
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