Results for 'J. Piret'

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  1.  35
    The correspondence between cut-elimination and normalization.J. Zucker - 1974 - Annals of Mathematical Logic 7 (1):1-112.
  2. The Child's Conception of the World.J. Piaget - 1929 - Mind 38 (152):506-513.
     
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  3. Modal logic, the Lewis-modal systems.J. Jay Zeman - 1973 - Revue Philosophique de la France Et de l'Etranger 163:479-479.
     
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  4.  23
    Cut-elimination and normalization.J. Zucker - 1974 - Annals of Mathematical Logic 7 (1):1.
  5. The Child's Conception of Number.J. Piaget - 1953 - British Journal of Educational Studies 1 (2):183-184.
  6.  28
    The correspondence between cut-elimination and normalization II.J. Zucker - 1974 - Annals of Mathematical Logic 7 (2):113.
  7.  10
    On the annealing of quenched-in vacancies in gold.J. A. Ytterhus & R. W. Balluffi - 1965 - Philosophical Magazine 11 (112):707-727.
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  8.  87
    J. Glover, ed., Utilitarianism and Its Critics, London, Collier Macmillan, 1990, pp. ix + 255.P. J. Kelly - 1992 - Utilitas 4 (1):186.
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  9. The J. S. Mill Bibliography: Recent Additions.P. J. Kelly - 1992 - Utilitas 4 (1):196.
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  10.  64
    J. R. Dinwiddy, Radicalism and Reform in Britain, 1780 to 1850, London, The Hambledon Press, 1992. pp. xxi + 452.P. J. Marshall - 1993 - Utilitas 5 (2):333.
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  11.  87
    General Relativity, Mental Causation, and Energy Conservation.J. Brian Pitts - 2022 - Erkenntnis 87 (4):1931-1973.
    The conservation of energy and momentum have been viewed as undermining Cartesian mental causation since the 1690s. Modern discussions of the topic tend to use mid-nineteenth century physics, neglecting both locality and Noether’s theorem and its converse. The relevance of General Relativity has rarely been considered. But a few authors have proposed that the non-localizability of gravitational energy and consequent lack of physically meaningful local conservation laws answers the conservation objection to mental causation: conservation already fails in GR, so there (...)
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  12. Conservation Laws and the Philosophy of Mind: Opening the Black Box, Finding a Mirror.J. Brian Pitts - 2019 - Philosophia 48 (2):673-707.
    Since Leibniz's time, Cartesian mental causation has been criticized for violating the conservation of energy and momentum. Many dualist responses clearly fail. But conservation laws have important neglected features generally undermining the objection. Conservation is _local_, holding first not for the universe, but for everywhere separately. The energy in any volume changes only due to what flows through the boundaries. Constant total energy holds if the global summing-up of local conservation laws converges; it probably doesn't in reality. Energy conservation holds (...)
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  13.  86
    Change in Hamiltonian general relativity from the lack of a time-like Killing vector field.J. Brian Pitts - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 47:68-89.
    In General Relativity in Hamiltonian form, change has seemed to be missing, defined only asymptotically, or otherwise obscured at best, because the Hamiltonian is a sum of first-class constraints and a boundary term and thus supposedly generates gauge transformations. Attention to the gauge generator G of Rosenfeld, Anderson, Bergmann, Castellani et al., a specially _tuned sum_ of first-class constraints, facilitates seeing that a solitary first-class constraint in fact generates not a gauge transformation, but a bad physical change in electromagnetism or (...)
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  14.  22
    The Adequacy Problem for Classical Logic.J. I. Zucker, R. S. Tragesser, Dag Prawitz, Jaakko Hintikka & Ilkka Niiniluoto - 1982 - Journal of Symbolic Logic 47 (3):689-694.
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  15. Space–time philosophy reconstructed via massive Nordström scalar gravities? Laws vs. geometry, conventionality, and underdetermination.J. Brian Pitts - 2016 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 53:73-92.
    What if gravity satisfied the Klein-Gordon equation? Both particle physics from the 1920s-30s and the 1890s Neumann-Seeliger modification of Newtonian gravity with exponential decay suggest considering a "graviton mass term" for gravity, which is _algebraic_ in the potential. Unlike Nordström's "massless" theory, massive scalar gravity is strictly special relativistic in the sense of being invariant under the Poincaré group but not the 15-parameter Bateman-Cunningham conformal group. It therefore exhibits the whole of Minkowski space-time structure, albeit only indirectly concerning volumes. Massive (...)
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  16. Gauge-invariant localization of infinitely many gravitational energies from all possible auxiliary structures.J. Brian Pitts - unknown
    The problem of finding a covariant expression for the distribution and conservation of gravitational energy-momentum dates to the 1910s. A suitably covariant infinite-component localization is displayed, reflecting Bergmann's realization that there are infinitely many gravitational energy-momenta. Initially use is made of a flat background metric (or rather, all of them) or connection, because the desired gauge invariance properties are obvious. Partial gauge-fixing then yields an appropriate covariant quantity without any background metric or connection; one version is the collection of pseudotensors (...)
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  17.  75
    Conservation of Energy: Missing Features in Its Nature and Justification and Why They Matter.J. Brian Pitts - 2021 - Foundations of Science 26 (3):559-584.
    Misconceptions about energy conservation abound due to the gap between physics and secondary school chemistry. This paper surveys this difference and its relevance to the 1690s–2010s Leibnizian argument that mind-body interaction is impossible due to conservation laws. Justifications for energy conservation are partly empirical, such as Joule’s paddle wheel experiment, and partly theoretical, such as Lagrange’s statement in 1811 that energy is conserved if the potential energy does not depend on time. In 1918 Noether generalized results like Lagrange’s and proved (...)
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  18.  76
    Kant, Schlick and Friedman on Space, Time and Gravity in Light of Three Lessons from Particle Physics.J. Brian Pitts - 2018 - Erkenntnis 83 (2):135-161.
    Kantian philosophy of space, time and gravity is significantly affected in three ways by particle physics. First, particle physics deflects Schlick’s General Relativity-based critique of synthetic a priori knowledge. Schlick argued that since geometry was not synthetic a priori, nothing was—a key step toward logical empiricism. Particle physics suggests a Kant-friendlier theory of space-time and gravity presumably approximating General Relativity arbitrarily well, massive spin-2 gravity, while retaining a flat space-time geometry that is indirectly observable at large distances. The theory’s roots (...)
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  19.  72
    Absolute objects and counterexamples: Jones--Geroch dust, Torretti constant curvature, tetrad-spinor, and scalar density.J. Brian Pitts - 2006 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 37:347-71.
    James L. Anderson analyzed the novelty of Einstein's theory of gravity as its lack of "absolute objects." Michael Friedman's related work has been criticized by Roger Jones and Robert Geroch for implausibly admitting as absolute the timelike 4-velocity field of dust in cosmological models in Einstein's theory. Using the Rosen-Sorkin Lagrange multiplier trick, I complete Anna Maidens's argument that the problem is not solved by prohibiting variation of absolute objects in an action principle. Recalling Anderson's proscription of "irrelevant" variables, I (...)
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  20. Permanent Underdetermination from Approximate Empirical Equivalence in Field Theory: Massless and Massive Scalar Gravity, Neutrino, Electromagnetic, Yang–Mills and Gravitational Theories.J. Brian Pitts - 2010 - British Journal for the Philosophy of Science 62 (2):259-299.
    Classical and quantum field theory provide not only realistic examples of extant notions of empirical equivalence, but also new notions of empirical equivalence, both modal and occurrent. A simple but modern gravitational case goes back to the 1890s, but there has been apparently total neglect of the simplest relativistic analog, with the result that an erroneous claim has taken root that Special Relativity could not have accommodated gravity even if there were no bending of light. The fairly recent acceptance of (...)
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  21.  48
    A First Class Constraint Generates Not a Gauge Transformation, But a Bad Physical Change: The Case of Electromagnetism.J. Brian Pitts - unknown
    In Dirac-Bergmann constrained dynamics, a first-class constraint typically does not _alone_ generate a gauge transformation. By direct calculation it is found that each first-class constraint in Maxwell's theory generates a change in the electric field E by an arbitrary gradient, spoiling Gauss's law. The secondary first-class constraint p^i,_i=0 still holds, but being a function of derivatives of momenta, it is not directly about E. Only a special combination of the two first-class constraints, the Anderson-Bergmann -Castellani gauge generator G, leaves E (...)
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  22.  87
    Einstein׳s physical strategy, energy conservation, symmetries, and stability: “But Grossmann & I believed that the conservation laws were not satisfied”.J. Brian Pitts - 2016 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 54 (C):52-72.
    Recent work on the history of General Relativity by Renn, Sauer, Janssen et al. shows that Einstein found his field equations partly by a physical strategy including the Newtonian limit, the electromagnetic analogy, and energy conservation. Such themes are similar to those later used by particle physicists. How do Einstein's physical strategy and the particle physics derivations compare? What energy-momentum complex did he use and why? Did Einstein tie conservation to symmetries, and if so, to which? How did his work (...)
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  23.  41
    Einstein׳s Equations for Spin 2 Mass 0 from Noether׳s Converse Hilbertian Assertion.J. Brian Pitts - 2016 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 56:60-69.
    An overlap between the general relativist and particle physicist views of Einstein gravity is uncovered. Noether's 1918 paper developed Hilbert's and Klein's reflections on the conservation laws. Energy-momentum is just a term proportional to the field equations and a "curl" term with identically zero divergence. Noether proved a \emph{converse} "Hilbertian assertion": such "improper" conservation laws imply a generally covariant action. Later and independently, particle physicists derived the nonlinear Einstein equations assuming the absence of negative-energy degrees of freedom for stability, along (...)
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  24.  9
    Comments on recent work on the annealing of vacancy defects in gold quenched in different atmospheres.J. A. Ytterhus, R. W. Balluffi, J. S. Koehler & R. W. Siegel - 1964 - Philosophical Magazine 10 (103):169-172.
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  25.  5
    The deduction theorem in S4, S4.2, and S5.J. Jay Zeman - 1967 - Notre Dame Journal of Formal Logic 8:56.
  26.  11
    Sonnet de J.G. Fichte (1802).Alexis Philonenko & J. G. Fichte - 1975 - Revue de Métaphysique et de Morale 80 (3):316 - 322.
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  27.  42
    The nontriviality of trivial general covariance: How electrons restrict ‘time’ coordinates, spinors fit into tensor calculus, and of a tetrad is surplus structure.J. Brian Pitts - 2012 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 43 (1):1-24.
    It is a commonplace in the philosophy of physics that any local physical theory can be represented using arbitrary coordinates, simply by using tensor calculus. On the other hand, the physics literature often claims that spinors \emph{as such} cannot be represented in coordinates in a curved space-time. These commonplaces are inconsistent. What general covariance means for theories with fermions, such as electrons, is thus unclear. In fact both commonplaces are wrong. Though it is not widely known, Ogievetsky and Polubarinov constructed (...)
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  28.  45
    Space-time constructivism vs. modal provincialism: Or, how special relativistic theories needn't show Minkowski chronogeometry.J. Brian Pitts - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 67:191-198.
    Already in 1835 Lobachevski entertained the possibility of multiple geometries of the same type playing a role. This idea of rival geometries has reappeared from time to time but had yet to become a key idea in space-time philosophy prior to Brown's _Physical Relativity_. Such ideas are emphasized towards the end of Brown's book, which I suggest as the interpretive key. A crucial difference between Brown's constructivist approach to space-time theory and orthodox "space-time realism" pertains to modal scope. Constructivism takes (...)
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  29.  17
    Multi-cluster model of Al–Co–Ni Co-rich quasicrystal.J. Yuhara, M. Sato, T. Matsui & A. P. Tsai - 2011 - Philosophical Magazine 91 (19-21):2846-2853.
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  30.  7
    Biased pain reports through vicarious information: A computational approach to investigate the role of uncertainty.J. Zaman, W. Vanpaemel, C. Aelbrecht, F. Tuerlinckx & J. W. S. Vlaeyen - 2017 - Cognition 169:54-60.
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  31. Piaget, Jean: Introduction À L'epostemologie Genetique.J. Zaragüeta & Staff - 1952 - Revista de Filosofía (Madrid) 11 (41):358.
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  32.  13
    In Search of Columbo.J. Zaslove - 1986 - Telos: Critical Theory of the Contemporary 1986 (70):161-166.
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  33.  16
    A Foundherentist Conception of the Justification of Religious Belief.J. Zeis - 2005 - International Journal for Philosophy of Religion 58 (3):133-160.
  34. Über den Begriff Information in der modernen Wissenschaft.J. Zeman - 1963 - Deutsche Zeitschrift für Philosophie 11 (4):478.
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  35. Le canal gnoséologique.J. Zeman - 1967 - Scientia 61 (2):52.
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  36.  11
    Semantics for S4.3.2.J. Jay Zeman - 1972 - Notre Dame Journal of Formal Logic 13:454.
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  37.  6
    S4.6 is S4.9.J. Jay Zeman - 1972 - Notre Dame Journal of Formal Logic 13:118.
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  38. The Gnoseological Channel.J. Zeman - 1967 - Scientia 61 (2):141.
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  39.  6
    Taylorism and Unionism: The Origins of a Partnership.J. Zerzan - 1984 - Telos: Critical Theory of the Contemporary 1984 (60):140-145.
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  40.  15
    A Goodly Gallerye: William Fulke's Book of Meteors. Theodore Hornberger.J. Peter Zetterberg - 1980 - Isis 71 (3):511-512.
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  41.  10
    Hermetic Geocentricity: John Dee's Celestial Egg.J. Zetterberg - 1979 - Isis 70:385-393.
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  42.  15
    Hermetic Geocentricity: John Dee's Celestial Egg.J. Peter Zetterberg - 1979 - Isis 70 (3):385-393.
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  43.  22
    John Dee on Astronomy: Propaedeumata aphoristica , Latin and English. Wayne Shumaker.J. Peter Zetterberg - 1980 - Isis 71 (1):175-175.
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  44.  10
    Letting the Past Be Brought About.J. Peter Zetterberg - 1979 - Southern Journal of Philosophy 17 (3):413-421.
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  45.  9
    The vacancy formation energy in platinum.J. S. Zetts & J. Bass - 1975 - Philosophical Magazine 31 (2):419-440.
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  46.  43
    Hyperosmolar nonketotic hyperglycemic coma induced by methylprednisolone pulse therapy for acute rejection after liver transplantation: a case report and review of the literature.J. Zhou, W. Ju, X. Yuan, X. Zhu, D. Wang & X. He - 2014 - Transplant Research and Risk Management 2015.
    Jian Zhou,* Weiqiang Ju,* Xiaopeng Yuan, Xiaofeng Zhu, Dongping Wang, Xiaoshun HeOrgan Transplant Center, First Affiliated Hospital, Sun Yat-sen University, Guangzhou, People's Republic of China *These authors contributed equally to this work: Hyperosmolar nonketotic hyperglycemic coma is a serious, rare complication induced by methylprednisolone pulse therapy for acute rejection after orthotopic liver transplantation. Herein, we report an unusual case of a 58-year-old woman who experienced acute rejection at 30 months after OLT, only one case in which HNKHC resulted in MP (...)
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  47. Human Development.J. P. ZUBECK - 1954
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  48.  12
    Kritische studie: Over waardevrije sociologie, normatieve sociologie en hulpbehoevende rechtsfilosofie.J. Zwart - 1987 - Philosophia Reformata 52 (1):66-79.
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  49. Electronic economy: Governance issues.J. Zysman & S. Weber - 2001 - In Neil J. Smelser & Paul B. Baltes (eds.), International Encyclopedia of the Social and Behavioral Sciences. Elsevier. pp. 7--4399.
     
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  50.  26
    What represents space-time? And what follows for substantivalism vs. relationalism and gravitational energy?J. Brian Pitts - 2022 - In Antonio Vassallo (ed.), The Foundations of Spacetime Physics: Philosophical Perspectives. New York, NY: Routledge.
    The questions of what represents space-time in GR, the status of gravitational energy, the substantivalist-relationalist issue, and the exceptional status of gravity are interrelated. If space-time has energy-momentum, then space-time is substantival. Two extant ways to avoid the substantivalist conclusion deny that the energy-bearing metric is part of space-time or deny that gravitational energy exists. Feynman linked doubts about gravitational energy to GR-exceptionalism, as do Curiel and Duerr; particle physics egalitarianism encourages realism about gravitational energy. In that spirit, this essay (...)
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