Results for 'N. Huggett'

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  1. Philosophical foundations of quantum field theory.N. Huggett - 2000 - British Journal for the Philosophy of Science 51 (4):617-637.
    Much attention has been directed to the philosophical implications of quantum field theory (QFT) in recent years; this paper attempts a survey in low-technical terms. First the relations of QFT to other kinds of theory, classical and quantum, particle and field, are discussed. Then various formulations of QFT are introduced, along with related interpretations. Finally a review is made of some of the most interesting foundational problems.
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  2. Spacetime "Emergence".Nick Huggett - 2022 - In Eleanor Knox & Alastair Wilson (eds.), The Routledge Companion to Philosophy of Physics. London, UK: Routledge.
    Could spacetime be derived rather than fundamental? The question is pressing because attempts to quantize gravity have led to theories in which (arguably) there are either no, or only extremely thin, spacetime structures. Moreover, recent proposals for the interpretation of quantum mechanics have suggested that 3-dimensional space may be an ‘appearance’ derived from the 3N-dimensional space in which an N-particle wavefunction lives (cross- reference). In fact, I will largely assume a positive answer, and investigate how it could be; in particular, (...)
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  3. Book Review of: "Everywhere and Everywhen: Adventures in Physics and Philosophy" by N. Huggett[REVIEW]Valia Allori - 2011 - Notre Dame Philosophical Reviews 2011 (1).
    Book Review of: "Everywhere and Everywhen: Adventures in Physics and Philosophy" by Nick Huggett.
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  4.  31
    The geometric universe: Science, geometry, and the work of Roger Penrose - Huggett, S. A., Mason, L. J., Tod, K. P., Tsou, S. T., and Woodhouse, N. M. J. (eds.), Oxford university press, oxford, 1998, 456 pp., price US $48.00, UK £34.50 hardback, ISBN 0-19-850059-. [REVIEW]A. Valentini - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (1):131-135.
  5.  59
    Jose EncarnacionJr., On Ushenko's version of the liar-paradox. Mind, n.s. vol. 64 , pp. 99–100. - A. P. Ushenko. A note on the liar-paradox. Mind, n.s. vol. 64 , p. 543. - Eric Toms. The Liar Paradox. The philosophical review, vol. 65 , pp. 542–547. - Keith S. Donnellan. A note on the liar paradox. The philosophical review, vol. 66 , pp. 394–397. - A. P. Ushenko. An addendum to the note on the liar-paradox. Mind, n.s. vol. 66 , p. 98. - Eric Toms. Reply to a note on the liar paradox. The philosophical review, vol. 67 , pp. 101–105. - William W. Rozeboom. Is Epimenides still lying?Analysis , vol. 18 no. 5 , pp. 105–113. - W. J. Huggett. Paradox lost. Analysis , vol. 19 no. 1 , pp. 21–23. - C. H. Whiteley. Let Epimenides lie! Analysis , vol. 19 no. 1 , pp. 23–24. - Sibanban. Mr. Eric Toms on the liar paradox. Mind, n.s. vol. 74 , pp. 421–423. [REVIEW]Jonathan Bennett - 1967 - Journal of Symbolic Logic 32 (1):108-112.
  6.  55
    Everywhere and everywhen: adventures in physics and philosophy.Nick Huggett - 2010 - New York: Oxford University Press.
    Why does time pass and space does not? Are there just three dimensions? What is a quantum particle? Nick Huggett shows that philosophy -- armed with a power to analyze fundamental concepts and their relationship to the human experience -- has much to say about these profound questions about the universe. In Everywhere and Everywhen, Huggett charts a journey that peers into some of the oldest questions about the world, through some of the newest, such as: What shape (...)
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  7.  30
    Beyond Spacetime: The Foundations of Quantum Gravity.Nick Huggett, Keizo Matsubara & Christian Wüthrich (eds.) - 2020 - Cambridge: Cambridge University Press..
    A collection of essays discussing the philosophy and foundations of quantum gravity. Written by leading philosophers and physicists in the field, chapters cover the important conceptual questions in the search for a quantum theory of gravity, and the current state of understanding among philosophers and physicists.
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  8.  74
    Indistinguishability.Nick Huggett & Tom Imbo - 2009 - In Daniel Greenberger, Klaus Hentschel & Friedel Weinert (eds.), Compendium of Quantum Physics. Springer. pp. 311-317.
    an article written with Tom Imbo for the forthcoming Compendium of Quantum Mechanics.
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  9. Philosophical Foundations of Quantum Field Theory.Nick Huggett - 2003 - In Peter Clark & Katherine Hawley (eds.), Philosophy of science today. Oxford University Press UK.
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  10.  9
    Una visión sisteḿica y cibernet́ica del derecho: en el mundo globalizado del siglo XXI.Ernesto Grün - 2004 - Buenos Aires: Editorial Dunken.
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  11. Physics meets philosophy at the planck scale.Craig Callender & Nicholas Huggett - manuscript
    This is the table of contents and first chapter of Physics Meets Philosophy at the Planck Scale (Cambridge University Press, 2001), edited by Craig Callender and Nick Huggett. The chapter discusses the question of why there should be a theory of quantum gravity. We tackle arguments that purport to show that the gravitational field *must* be quantized. We then introduce various programs in quantum gravity and discuss areas where quantum gravity and philosophy seem to have something to say to (...)
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  12. Emergent spacetime and empirical (in) coherence.Nick Huggett & Christian Wüthrich - 2013 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 44 (3):276-285.
    Numerous approaches to a quantum theory of gravity posit fundamental ontologies that exclude spacetime, either partially or wholly. This situation raises deep questions about how such theories could relate to the empirical realm, since arguably only entities localized in spacetime can ever be observed. Are such entities even possible in a theory without fundamental spacetime? How might they be derived, formally speaking? Moreover, since by assumption the fundamental entities cannot be smaller than the derived and so cannot ‘compose’ them in (...)
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  13.  17
    Physics Meets Philosophy at the Planck Scale: Contemporary Theories in Quantum Gravity.Craig Callender & Nick Huggett - 2001 - Cambridge University Press.
    Was the first book to examine the exciting area of overlap between philosophy and quantum mechanics with chapters by leading experts from around the world.
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  14. Physics Meets Philosophy at the Planck Scale, Contemporary Theories in Quantum Gravity.Callender Craig & Huggett Nick - 2001 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (3):531-537.
     
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  15.  26
    Das Ende der Kunst: Analyse und Kritik der Voraussetzungen von Hegels These.Tae-Jung KwŏN - 2004 - Würzburg: Königshausen & Neumann.
    Das Thema dieser Arbeit ist Hegels berühmte und berüchtigte These vom "Ende der Kunst". Der Verfasser bemüht sich insbesondere darum, diese These im Zusammenhang mit ihren Voraussetzungen zu analysieren und einer Kritik zu unterziehen.
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  16.  4
    Problema sootnoshenii︠a︡ bytii︠a︡ i nebytii︠a︡: po materialam vserossiĭskogo seminara.N. M. Solodukho (ed.) - 2004 - Kazanʹ: Izd-vo Kazan. gos. tekhn. un-ta.
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  17. Groups in Mind.David Hilbert & Nick Huggett - 2006 - Philosophy of Science 73 (5):765-777.
    We consider the question of the manner of the internalization of the geometry and topology of physical space in the mind, both the mechanism of internalization and precisely what structures are internalized. Though we will not argue for the point here, we agree with the long tradition which holds that an understanding of this issue is crucial for addressing many metaphysical and epistemological questions concerning space.
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  18. Introduction.Craig Callender & Nick Huggett - 2001 - In Craig Callender & Nick Huggett (eds.), Physics Meets Philosophy at the Panck Scale. Cambridge University Press.
     
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  19. Out of Nowhere: Spacetime from causality: causal set theory.Christian Wüthrich & Nick Huggett - manuscript
    This is a chapter of the planned monograph "Out of Nowhere: The Emergence of Spacetime in Quantum Theories of Gravity", co-authored by Nick Huggett and Christian Wüthrich and under contract with Oxford University Press. (More information at www<dot>beyondspacetime<dot>net.) This chapter introduces causal set theory and identifies and articulates a 'problem of space' in this theory.
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  20. Target space ≠ space.Nick Huggett - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 59:81-88.
    This paper investigates the significance of T-duality in string theory: the indistinguisha- bility with respect to all observables, of models attributing radically different radii to space – larger than the observable universe, or far smaller than the Planck length, say. Two interpretational branch points are identified and discussed. First, whether duals are physically equivalent or not: by considering a duality of the familiar simple harmonic oscillator, I argue that they are. Unlike the oscillator, there are no measurements ‘outside’ string theory (...)
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  21. The (A)temporal Emergence of Spacetime.Nick Huggett & Christian Wüthrich - 2018 - Philosophy of Science 85 (December):1190-1203.
    This paper examines two cosmological models of quantum gravity to investigate the foundational and conceptual issues arising from quantum treatments of the big bang. While the classical singularity is erased, the quantum evolution that replaces it may not correspond to classical spacetime: it may instead be a non-spatiotemporal region, which somehow transitions to a spatiotemporal state. The different kinds of transition involved are partially characterized, the concept of a physical transition without time is investigated, and the problem of empirical incoherence (...)
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  22.  8
    Aupanishadika Brahmavidyā aura Śāṇḍilyavidyā.Mithileśa Pāṇḍeya - 2004 - Naī Dillī: Rādhā Pablikeśansa.
    Study of concept of Brahman in Upanishads with special reference to the philosophy of Śāṇḍilya.
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  23. Deriving General Relativity from String Theory.Nick Huggett & Tiziana Vistarini - 2015 - Philosophy of Science 82 (5):1163-1174.
    Weyl symmetry of the classical bosonic string Lagrangian is broken by quantization, with profound consequences described here. Reimposing symmetry requires that the background space-time satisfy the equations of general relativity: general relativity, hence classical space-time as we know it, arises from string theory. We investigate the logical role of Weyl symmetry in this explanation of general relativity: it is not an independent physical postulate but required in quantum string theory, so from a certain point of view it plays only a (...)
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  24. Out of Nowhere: duality.Nick Huggett & Christian Wüthrich - manuscript
    This is a chapter of the planned monograph "Out of Nowhere: The Emergence of Spacetime in Quantum Theories of Gravity", co-authored by Nick Huggett and Christian Wüthrich and under contract with Oxford University Press. (More information at www<dot>beyondspacetime<dot>net.) This chapter investigates the meaning and significance of string theoretic dualities, arguing they reveal a surprising physical indeterminateness to spacetime.
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  25. The regularity account of relational spacetime.Nick Huggett - 2006 - Mind 115 (457):41--73.
    A version of relationism that takes spatiotemporal structures—spatial geometry and a standard of inertia—to supervene on the history of relations between bodies is described and defended. The account is used to explain how the relationist should construe models of Newtonian mechanics in which absolute acceleration manifestly does not supervene on the relations; Ptolemaic and Copernican models for example. The account introduces a new way in which a Lewis-style ‘best system’ might capture regularities in a broadly Humean world; a defence is (...)
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  26. Weak Discernibility for Quanta, the Right Way.Nick Huggett & Josh Norton - 2014 - British Journal for the Philosophy of Science 65 (1):39-58.
    Muller and Saunders ([2008]) purport to demonstrate that, surprisingly, bosons and fermions are discernible; this article disputes their arguments, then derives a similar conclusion in a more satisfactory fashion. After briefly explicating their proof and indicating how it escapes earlier indiscernibility results, we note that the observables which Muller and Saunders argue discern particles are (i) non-symmetric in the case of bosons and (ii) trivial multiples of the identity in the case of fermions. Both problems undermine the claim that they (...)
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  27. Time in quantum gravity.Nick Huggett, Tiziana Vistarini & Christian Wuthrich - 2012 - .
    Quantum gravity--the marriage of quantum physics with general relativity--is bound to contain deep and important lessons for the nature of physical time. Some of these lessons shall be canvassed here, particularly as they arise from quantum general relativity and string theory and related approaches. Of particular interest is the question of which of the intuitive aspects of time will turn out to be fundamental, and which 'emergent' in some sense.
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  28.  4
    Priroda dukhovnosti cheloveka: monografii︠a︡.N. S. Katunina - 2005 - Moskva: Izd-vo "Prometeĭ".
    Исследование посвящено философскому осознанию природы духовности человека. Автор рассматривает духовность внутреннего мира человека как единство высших чувств души и нравственного сознания. Для специалистов в области философии, методологии науки.
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  29. The renormalisation group and effective field theories.Nick Huggett & Robert Weingard - 1995 - Synthese 102 (1):171 - 194.
    Much apprehension has been expressed by philosophers about the method of renormalisation in quantum field theory, as it apparently requires illegitimate procedure of infinite cancellation. This has lead to various speculations, in particular in Teller (1989). We examine Teller's discussion of perturbative renormalisation of quantum fields, and show why it is inadequate. To really approach the matter one needs to understand the ideas and results of the renormalisation group, so we give a simple but comprehensive account of this topic. With (...)
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  30. Atomic metaphysics.Nick Huggett - 1999 - Journal of Philosophy 96 (1):5-24.
  31. Absolute and relational theories of space and motion.Nick Huggett - 2008
    Since antiquity, natural philosophers have struggled to comprehend the nature of three tightly interconnected concepts: space, time, and motion. A proper understanding of motion, in particular, has been seen to be crucial for deciding questions about the natures of space and time, and their interconnections. Since the time of Newton and Leibniz, philosophers’ struggles to comprehend these concepts have often appeared to take the form of a dispute between absolute conceptions of space, time and motion, and relational conceptions. This article (...)
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  32.  38
    Atomic Metaphysics.Nick Huggett - 1999 - Journal of Philosophy 96 (1):5.
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  33. Wronging by Requesting.N. G. Laskowski & Kenneth Silver - 2022 - In Mark C. Timmons (ed.), Oxford Studies in Normative Ethics, Volume 11.
    Upon doing something generous for someone with whom you are close, some kind of reciprocity may be appropriate. But it often seems wrong to actually request reciprocity. This chapter explores the wrongness in making these requests, and why they can nevertheless appear appropriate. After considering several explanations for the wrongness at issue (involving, e.g. distinguishing oughts from obligation, the suberogatory, imperfect duties, and gift-giving norms), a novel proposal is advanced. The requests are disrespectful; they express that their agent insufficiently trusts (...)
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  34. Identity, Quantum Mechanics and Common Sense.Nick Huggett - 1997 - The Monist 80 (1):118-130.
    I want to review some ways in which Quantum Mechanics seems to affront our “common-sense” notions of identity. Let’s start with a list.
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  35.  1
    Chosŏn hugi yurim ŭi sasang kwa hwaltong.O. -yŏng Kwŏn - 2003 - Sŏul Tʻŭkpyŏlsi: Tolbegae.
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  36.  7
    Chosŏn hugi sirhak ŭi saengsŏng, palchŏn yŏnʼgu.Yu-han Wŏn - 2003 - Sŏul-si: Hyean.
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  37.  97
    Reflections on parity nonconservation.Nick Huggett - 2000 - Philosophy of Science 67 (2):219-241.
    This paper considers the implications for the relational-substantival debate of observations of parity nonconservation in weak interactions, a much neglected topic. It is argued that 'geometric proofs' of absolute space, first proposed by Kant (1768), fail, but that parity violating laws allow 'mechanical proofs', like Newton's laws. Parity violating laws are explained and arguments analogous to those of Newton's Scholium are constructed to show that they require absolute spacetime structure--namely, an orientation--as Newtonian mechanics requires affine structure. Finally, it is considered (...)
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  38.  61
    Missing the point in noncommutative geometry.Nick Huggett, Tushar Menon & Fedele Lizzi - unknown - Synthese 199 (1-2):4695-4728.
    Noncommutative geometries generalize standard smooth geometries, parametrizing the noncommutativity of dimensions with a fundamental quantity with the dimensions of area. The question arises then of whether the concept of a region smaller than the scale—and ultimately the concept of a point—makes sense in such a theory. We argue that it does not, in two interrelated ways. In the context of Connes’ spectral triple approach, we show that arbitrarily small regions are not definable in the formal sense. While in the scalar (...)
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  39. Why manifold substantivalism is probably not a consequence of classical mechanics.Nick Huggett - 1999 - International Studies in the Philosophy of Science 13 (1):17 – 34.
    This paper develops and defends three related forms of relationism about spacetime against attacks by contemporary substantivalists. It clarifies Newton's globes argument to show that it does not bear on relations that fail to determine geodesic motions, since the inertial effects on which Newton relies are not simply correlated with affine structure, but must be understood in dynamical terms. It develops remarks by Sklar and van Fraassen into relational versions of Newtonian mechanics, and argues that Earman does not show them (...)
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  40. Zeno's Paradoxes.Nicholas Huggett - 2002
    Almost everything that we know about Zeno of Elea is to be found in the opening pages of Plato's Parmenides. There we learn that Zeno was nearly 40 years old when Socrates was a young man, say 20. Since Socrates was born in 469 BC we can estimate a birth date for Zeno around 490 BC. Beyond this, really all we know is that he was close to Parmenides (Plato reports the gossip that they were lovers when Zeno was young), (...)
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  41. Finding Time for Wheeler-DeWitt Cosmology.Nick Huggett & Karim Thebault - manuscript
    We conduct a case study analysis of a proposal for the emergence of time based upon the approximate derivation of three grades of temporal structure within an explicit quantum cosmological model which obeys a Wheeler-DeWitt type equation without an extrinsic time parameter. Our main focus will be issues regarding the consistency of the approximations and derivations in question. Our conclusion is that the model provides a self-consistent account of the emergence of chronordinal, chronometric and chronodirected structure. Residual concerns relate to (...)
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  42.  97
    Skeptical notes on a physics of passage.Nick Huggett - 2014 - Annals of the New York Academy of Sciences 1326 (1):9-17.
    This paper investigates the mathematical representation of time in physics. In existing theories time is represented by the real numbers, hence their formal proper- ties represent properties of time: these are surveyed. The central question of the paper is whether the existing representation of time is adequate, or whether it can or should be supplemented: especially, do we need a physics incorporating some kind of ‘dynamical passage’ of time? The paper argues that the existing mathematical framework is resistant to such (...)
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  43. Space from Zeno to Einstein. Classic Readings with a Contemporary Commentary.Nick Huggett - 2000 - Tijdschrift Voor Filosofie 62 (4):781-782.
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  44. Quantum Gravity in a Laboratory?Nick Huggett, Niels S. Linnemann & Mike D. Schneider - manuscript
    It has long been thought that observing distinctive traces of quantum gravity in a laboratory setting is effectively impossible, since gravity is so much weaker than all the other familiar forces in particle physics. But the quantum gravity phenomenology community today seeks to do the (effectively) impossible, using a challenging novel class of `tabletop' Gravitationally Induced Entanglement (GIE) experiments, surveyed here. The hypothesized outcomes of the GIE experiments are claimed by some (but disputed by others) to provide a `witness' of (...)
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  45.  2
    Pʻurŏ omgin Chosŏn yuhaksa.Sang-yun Hyŏn - 2003 - Sŏul-si: Hyŏnŭmsa. Edited by Sang-yun Hyŏn.
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  46.  11
    Time in Quantum Gravity.Nick Huggett, Tiziana Vistarini & Christian Wüthrich - 2013 - In Heather Dyke & Adrian Bardon (eds.), A Companion to the Philosophy of Time. Chichester, UK: Wiley. pp. 242–261.
    Physical time plays a different role in general relativity than in quantum mechanics and the particle physics based on it. The first section of this chapter provides a brief survey of the main approaches to quantum gravity and then proceeds to consider the lessons that can be drawn from two distinct strategies for discovering a theory of quantum gravity. In the next section, the chapter first explicates the fate of time in approaches to quantum gravity that start with general relativity (...)
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  47.  10
    Organización del poder político y jerarquía de la autoridad.Armando Rendón Corona - 1977 - [Mexico City?]: Universidad Autónoma Metropolitana, División de Ciencias Sociales y Humanidades.
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  48.  59
    Quarticles and the Identity of Indiscernibles.Nick Huggett - 2003 - .
    A number of commentators (especially French and Redhead, 1988, and Butterfield, 1993) have investigated the status of the principle of the identity of indiscernibles (PII) for bosons and fermions. In this paper I extend that investigation to the full range of quantum particles of any allowed kind of statistics -- `quarticles', that is. I show that for any kind (except bosons and fermions) there are states in which PII is violated by every pair of particles, some pairs and not others, (...)
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  49.  8
    Teología de Cicerón.José Guillén Cabañero - 1999 - Salamanca: Publicaciones Universidad Pontificia.
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  50. On the significance of permutation symmetry.Nick Huggett - 1999 - British Journal for the Philosophy of Science 50 (3):325-347.
    There has been considerable recent philosophical debate over the implications of many particle quantum mechanics for the metaphysics of individuality (cf. Huggett [1997]). In this paper I look at things from a rather different perspective: by investigating the significance of permutation symmetry. I consider how various philosophical positions link up to the physical postulate of the indistinguishability of permuted states-permutation invariance-and how this postulate is used to explain quantum statistics. I offer an explanation of the statistics that relies on (...)
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