Results for 'space‐time physics'

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  1. Understanding Space-Time: The Philosophical Development of Physics From Newton to Einstein.Robert DiSalle - 2006 - New York: Cambridge University Press.
    Presenting the history of space-time physics, from Newton to Einstein, as a philosophical development DiSalle reflects our increasing understanding of the connections between ideas of space and time and our physical knowledge. He suggests that philosophy's greatest impact on physics has come about, less by the influence of philosophical hypotheses, than by the philosophical analysis of concepts of space, time and motion, and the roles they play in our assumptions about physical objects and physical measurements. This way of (...)
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  2.  33
    Zeno of Elea: Where Space, Time, Physics, and Philosophy Converge An Everyman’s Introduction to an Unsung Hero of Philosophy.William Turner - unknown
    Zeno of Elea, despite being among the most important of the Pre-Socratic philosophers, is frequently overlooked by philosophers and scientists alike in modern times. Zeno of Elea’s arguments on have not only been an impetus for the most important scientific and mathematical theories in human history, his arguments still serve as a basis for modern problems and theoretical speculations. This is a study of his arguments on motion, the purpose they have served in the history of science, and modern applications (...)
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  3. Philosophy of Space‐Time Physics.Craig Callender & Carl Hoefer - 2002 - In Peter K. Machamer & Michael Silberstein, The Blackwell guide to the philosophy of science. Malden, Mass.: Blackwell. pp. 173–198.
    This chapter contains sections titled: Relationism, Substantivalism and Space‐time Conventionalism about Space‐time Black Holes and Singularities Horizons and Uniformity Conclusion.
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  4.  13
    (1 other version)Philosophy of space-time physics.Peter Machamer & Michael Silberstein - 2002 - In Peter K. Machamer & Michael Silberstein, The Blackwell guide to the philosophy of science. Malden, Mass.: Blackwell. pp. 173-198.
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  5.  7
    Space, Time, and Mechanics: Basic Structures of a Physical Theory.D. Mayr & G. Süssmann - 1982 - Springer.
    In connection with the "Philosophy of Science" research program conducted by the Deutsche Forschungsgemeinschaft a colloquium was held in Munich from 18th to 20th May 1919. This covered basic structures of physical theories, the main emphasis being on the interrelation of space, time and mechanics. The present volume contains contributions and the results of the discussions. The papers are given here in the same order of presentation as at the meeting. The development of these "basic structures of physical theories" involved (...)
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  6. Space-time physics and the philosophy of science. [REVIEW]Roberto Torretti - 1984 - British Journal for the Philosophy of Science 35 (3):280-292.
  7.  12
    Understanding Space, Time and Causality: Modern Physics and Ancient Indian Traditions.Badanaval V. Sreekantan & Sisir Roy - 2019 - New York, NY: Routledge India. Edited by Sisir Roy.
    This book examines issues related to the concepts of space, time and causality in the context of modern physics and ancient Indian traditions. It looks at the similarity and convergence of these concepts of modern physics with those discussed in ancient Indian wisdom. The volume brings the methodologies of empiricism and introspection together to highlight the synergy between these two strands. It discusses wide-ranging themes including the quantum vacuum as ultimate reality, quantum entanglement and metaphysics of relations, identity (...)
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  8. Vigier III.Spin Foam Spinors & Fundamental Space-Time Geometry - 2000 - Foundations of Physics 30 (1).
  9.  14
    Space, Time, and the Elements of Physics.Isaac Newton - 2009 - In Timothy McGrew, Marc Alspector-Kelly & Fritz Allhoff, The philosophy of science: an historical anthology. Malden, MA: Wiley-Blackwell. pp. 167.
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  10. (1 other version)Philosophy of space-time physics.Carl Hoefer & Claire Callender - 2002 - In [no title].
  11. Some relational theories on the structure of space-time: Physics, philosophy, theology.Miguel Lorente Paramo - 2008 - Pensamiento 64 (242):665-691.
     
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  12. Space, Time, Matter, and Form: Essays on Aristotle’s “Physics.David Bostock - 2006 - Tijdschrift Voor Filosofie 69 (4):762-763.
     
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  13. Space, Time, and (how they) Matter: a Discussion about some Metaphysical Insights Provided by our Best Fundamental Physical Theories.Valia Allori - 2016 - In G. C. Ghirardi & J. Statchel, Space, Time, and Frontiers of Human Understanding. Springer. pp. 95-107.
    This paper is a brief (and hopelessly incomplete) non-standard introduction to the philosophy of space and time. It is an introduction because I plan to give an overview of what I consider some of the main questions about space and time: Is space a substance over and above matter? How many dimensions does it have? Is space-time fundamental or emergent? Does time have a direction? Does time even exist? Nonetheless, this introduction is not standard because I conclude the discussion by (...)
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  14. From born reciprocity to reciprocal relativity: a paradigm for space-time physics.Peter Jarvis - 2016 - In Ignazio Licata, Beyond peaceful coexistence: the emergence of space, time and quantum. London: Imperial College Press.
     
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  15. On the space-time ontology of physical theories.Kenneth L. Manders - 1982 - Philosophy of Science 49 (4):575-590.
    In the correspondence with Clarke, Leibniz proposes to construe physical theory in terms of physical (spatio-temporal) relations between physical objects, thus avoiding incorporation of infinite totalities of abstract entities (such as Newtonian space) in physical ontology. It has generally been felt that this proposal cannot be carried out. I demonstrate an equivalence between formulations postulating space-time as an infinite totality and formulations allowing only possible spatio-temporal relations of physical (point-) objects. The resulting rigorous formulations of physical theory may be seen (...)
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  16. Space, time, matter, and form: Essays on Aristotle's physics - by David Bostock.Ursula Coope - 2008 - Philosophical Books 49 (3):250-251.
  17. Conformal space-times—The arenas of physics and cosmology.A. O. Barut, P. Budinich, J. Niederle & R. Raçzka - 1994 - Foundations of Physics 24 (11):1461-1494.
    The mathematical and physical aspects of the conformal symmetry of space-time and of physical laws are analyzed. In particular, the group classification of conformally flat space-times, the conformal compactifications of space-time, and the problem of imbedding of the flat space-time in global four-dimensional curved spaces with non-trivial topological and geometrical structure are discussed in detail. The wave equations on the compactified space-times are analyzed also, and the set of their elementary solutions constructed. Finally, the implications of global compactified space-times for (...)
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  18.  63
    Reconstructing an Open Order from Its Closure, with Applications to Space-Time Physics and to Logic.Francisco Zapata & Vladik Kreinovich - 2012 - Studia Logica 100 (1-2):419-435.
    In his logical papers, Leo Esakia studied corresponding ordered topological spaces and order-preserving mappings. Similar spaces and mappings appear in many other application areas such the analysis of causality in space-time. It is known that under reasonable conditions, both the topology and the original order relation {\preccurlyeq} can be uniquely reconstructed if we know the “interior” {\prec} of the order relation. It is also known that in some cases, we can uniquely reconstruct {\prec} (and hence, topology) from {\preccurlyeq}. In this (...)
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  19.  57
    Getting Out of a Hole: Identity Individuality and Structuralism in Space-time Physics.Steven French - 2001 - Philosophica 67 (1).
  20.  45
    Underconsideration in Space-time and Particle Physics.J. Brian Pitts - unknown
    The idea that a serious threat to scientific realism comes from unconceived alternatives has been proposed by van Fraassen, Sklar, Stanford and Wray among others. Peter Lipton's critique of this threat from underconsideration is examined briefly in terms of its logic and its applicability to the case of space-time and particle physics. The example of space-time and particle physics indicates a generic heuristic for quantitative sciences for constructing potentially serious cases of underdetermination, involving one-parameter family of rivals T_m (...)
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  21. Space-time relationism in Newtonian and relativistic physics.Dennis Dieks - 2000 - International Studies in the Philosophy of Science 15 (1):5 – 17.
    I argue that there is natural relationist interpretation of Newtonian and relativistic non-quantum physics. Although relationist, this interpretation does not fall prey to the traditional objections based on the existence of inertial effects.
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  22. David Bostock, Space, Time, Matter, and Form: Essays on Aristotle's Physics, Clarendon Press, Oxford, 2006.Charlotte Witt - 2006 - Rhizai. A Journal for Ancient Philosophy and Science 2:339-343.
    A review of David Bostock, Space, Time, Matter, and Form: Essays on Aristotle's Physics, Clarendon Press, Oxford, 2006.
     
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  23.  34
    Physical relativity: Space-time structure from a dynamical perspective by Brown, Harvey R.G. Nerlich - unknown
    Published online: 01 Dec 2006 See pg. 7-9 of pdf to view this book review.
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  24. Space-time and Separability: Problems of Identity and Individuation in Fundamental Physics.Don Howard - 1997 - In Robert Sonné Cohen, Michael Horne & John J. Stachel, Potentiality, Entanglement, and Passion-at-a-Distance: Quantum Mechanical Studies for Abner Shimony. Kluwer Academic Publishers. pp. 113--142.
     
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  25.  69
    From Einstein to Whorf: Space, time, matter, and reference frames in physical and linguistic relativity.Frank Heynick - 1983 - Semiotica 45 (1-2).
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  26. Space-time as a physical quantity.Paul Teller - 1987 - In P. Achinstein & R. Kagon, Kelvin’s Baltimore Lectures and Modern Theoretical Physics. MIT Press. pp. 425--448.
     
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  27.  55
    Physical Relativity: Space-Time Structure From a Dynamical Perspective.Harvey R. Brown - 2005 - Oxford, GB: Oxford University Press UK.
    Physical Relativity explores the nature of the distinction at the heart of Einstein's 1905 formulation of his special theory of relativity: that between kinematics and dynamics. Einstein himself became increasingly uncomfortable with this distinction, and with the limitations of what he called the 'principle theory' approach inspired by the logic of thermodynamics. A handful of physicists and philosophers have over the last century likewise expressed doubts about Einstein's treatment of the relativistic behaviour of rigid bodies and clocks in motion in (...)
  28.  97
    Branching space-time, modal logic, and the counterfactual conditional.Thomas Muller - 2002 - In Tomasz Placek & Jeremy Butterfield, Non-locality and Modality. Dordrecht and Boston: Kluwer Academic Publishers. pp. 273--291.
    The paper gives a physicist's view on the framework of branching space-time, 385--434). Branching models are constructed from physical state assignments. The models are then employed to give a formal semantics for the modal operators ``possibly'' and ``necessarily'' and for the counterfactual conditional. The resulting formal language can be used to analyze quantum correlation experiments. As an application sketch, Stapp's premises LOC1 and LOC2 from his purported proof of non-locality, 300--304) are analyzed.
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  29. The geometrization of space-time relations and the physical reality.J. Celeda - 1982 - Filosoficky Casopis 30 (3):424-435.
     
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  30. Space-Time and Isomorphism.Brent Mundy - 1992 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1992 (Volume One: Contributed Papers):515-527.
    Earman and Norton argue that manifold realism leads to inequivalence of Leibniz-shifted space-time models, with undesirable consequences such as indeterminism. I respond that intrinsic axiomatization of space-time geometry shows the variant models to be isomorphic with respect to the physically meaningful geometric predicates, and therefore certainly physically equivalent because no theory can characterize its models more closely than this. The contrary philosophical arguments involve confusions about identity and representation of space-time points, fostered by extrinsic coordinate formulations and irrelevant modal metaphysics. (...)
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  31.  60
    Formal ontology of space, time, and physical entities in classical mechanics.Thomas Bittner - 2018 - Applied ontology 13 (2):135-179.
    Classical (i.e., non-quantum) mechanics is the foundation of many models of dynamical physical phenomena. As such those models inherit the ontological commitments inherent in the underlying physics...
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  32.  51
    Space, time, & stuff.Frank Arntzenius - 2012 - New York: Oxford Univ. Press. Edited by Cian Seán Dorr.
    Space, Time, and Stuff is an attempt to show that physics is geometry: that the fundamental structure of the physical world is purely geometrical structure. Along the way, he examines some non-standard views about the structure of spacetime and its inhabitants, including the idea that space and time are pointless, the idea that quantum mechanics is a completely local theory, the idea that antiparticles are just particles travelling back in time, and the idea that time has no structure whatsoever. (...)
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  33.  82
    Space, Time, and Spacetime: Physical and Philosophical Implications of Minkowski's Unification of Space and Time.Vesselin Petkov (ed.) - 2010 - Springer.
    This volume is dedicated to the centennial anniversary of Minkowski's discovery of spacetime.
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  34.  53
    Bijective Epistemology and Space–Time.Davide Fiscaletti & Amrit Sorli - 2015 - Foundations of Science 20 (4):387-398.
    A level of adequacy of a given model with physical world represents an important element of physics. In an “ideal” model each element in the model would correspond exactly to one element in the physical world. In such a model each element would have a direct epistemological correlation with exactly one element of the physical world. Such a model would become a perfect picture of the physical world. The possibility of misinterpretation, in a sense that one searches for physical (...)
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  35.  45
    Foundations of Space-time Theories: Relativistic Physics and Philosophy of Science.Roberto Torretti - 1983
    This book, explores the conceptual foundations of Einstein's theory of relativity: the fascinating, yet tangled, web of philosophical, mathematical, and physical ideas that is the source of the theory's enduring philosophical interest. Originally published in 1986. The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These paperback editions preserve the original texts of these important books while presenting them in durable paperback editions. The goal of (...)
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  36.  34
    (1 other version)Space, Time and the Ethical Foundations.Robert Elliott Allinson - 2002 - Ashgate Publishing.
    Anthony C. Yu, Carl Buck Distinguished Professor in Humanities, Chairman, Division of East Asian Languages, University of Chicago, Divinity School, writes: "Robert Allinson's book represents tremendous thoughtfulness, originality, and erudition. Its wide-ranging and lucid discussions cover a huge terrain, from ancient metaphysics to quantum mechanics. The enlistment of certain classical Confucian concepts and themes at critical junctures to advance the book's argument also provides luminous comparison. His interpretation of the Confucian emphasis on life as social and self-preservation is both humane (...)
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  37.  37
    Space, Time, Relativity. The Foundations of Physics from the Viewpoint of Hegel’s Philosophy of Nature. [REVIEW]Wolfgang Scheffel - 1985 - Philosophy and History 18 (1):37-38.
  38.  13
    Life in Elastic Space‐Time.Tim Maudlin - 2002 - In Quantum non-locality and relativity: metaphysical intimations of modern physics. Malden, Mass.: Blackwell. pp. 205–220.
    This chapter contains sections titled: Non‐Euclidean Geometry The General Theory Superluminal Constraints and the GTR Lorentz Invariance and the GTR Quantum Theories in Non‐Minkowski Space‐times The GTR to the Rescue?
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  39. Physical relativity: Space–time structure from a dynamical perspective.Harvey Brown - 2005 - Philosophy 82 (321):498-503.
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  40.  57
    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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  41.  53
    Space, Time, and Motion: A Philosophical Introduction.Wesley C. Salmon - 1980 - University of Minnesota Press.
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  42. Theories of space-time in modern physics.Luciano Boi - 2004 - Synthese 139 (3):429 - 489.
    The physicist's conception of space-time underwent two major upheavals thanks to the general theory of relativity and quantum mechanics. Both theories play a fundamental role in describing the same natural world, although at different scales. However, the inconsistency between them emerged clearly as the limitation of twentieth-century physics, so a more complete description of nature must encompass general relativity and quantum mechanics as well. The problem is a theorists' problem par excellence. Experiment provide little guide, and the inconsistency mentioned (...)
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  43.  23
    Physical relativity: Space-time structure from a dynamical perspective.Graham Charles Nerlich - 2006 - Australasian Journal of Philosophy 84 (4):634-636.
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  44.  42
    Branching Space-Times: Theory and Applications.Nuel Belnap, Thomas Müller & Tomasz Placek - 2020 - New York: Oxford University Press. Edited by Thomas Müller & Tomasz Placek.
    "This book develops a rigorous theory of indeterminism as a local and modal concept. Its crucial insight is that our world contains events or processes with alternative, really possible outcomes. The theory aims at clarifying what this assumption involves, and it does it in two ways. First, it provides a mathematically rigorous framework for local and modal indeterminism. Second, we support that theory by spelling out the philosophically relevant consequences of this formulation and by showing its fruitful applications in metaphysics. (...)
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  45.  36
    (2 other versions)Space, Time and Motion: A Philosophical Introduction.Peter Smith & Wesley C. Salmon - 1976 - Philosophical Quarterly 26 (105):371.
  46.  20
    Concepts of Space-Time in Physical Theories.Takao Tati - 1977 - Annals of the Japan Association for Philosophy of Science 5 (2):63-71.
  47.  37
    Space-Time-Event-Motion : A New Metaphor for a New Concept Based on a Triadic Model and Process Philosophy.Joseph Naimo - 2003 - In David G. Murray, Proceedings Metaphysics 2003 Second World Conference. Foundazione Idente di Studi e di Ricerca,. pp. 372-379.
    The disciplinary enterprises engaged in the study of consciousness now extend beyond their original paradigms providing additional knowledge toward an overall understanding of the fundamental meaning and scope of consciousness. A new transdisciplinary domain has resulted from the syncretism of several approaches bringing about a new paradigm. The background for this overarching enterprise draws from a variety of traditions. In this paper however elaboration is restricted to the quantum-mechanical account in David Bohm’s theoretical work in relation to his ideas about (...)
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  48.  4
    Space, time, and relativity.Rolf Herman Nevanlinna - 1968 - Reading, Mass.,: Addison-Wesley.
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  49. Space, Time and Falsifiability Critical Exposition and Reply to "A Panel Discussion of Grünbaum's Philosophy of Science".Adolf Grünbaum - 1970 - Philosophy of Science 37 (4):469 - 588.
    Prompted by the "Panel Discussion of Grünbaum's Philosophy of Science" (Philosophy of Science 36, December, 1969) and other recent literature, this essay ranges over major issues in the philosophy of space, time and space-time as well as over problems in the logic of ascertaining the falsity of a scientific hypothesis. The author's philosophy of geometry has recently been challenged along three main distinct lines as follows: (i) The Panel article by G. J. Massey calls for a more precise and more (...)
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  50.  66
    Some Mathematical, Epistemological, and Historical Reflections on the Relationship Between Geometry and Reality, Space–Time Theory and the Geometrization of Theoretical Physics, from Riemann to Weyl and Beyond.Luciano Boi - 2019 - Foundations of Science 24 (1):1-38.
    The history and philosophy of science are destined to play a fundamental role in an epoch marked by a major scientific revolution. This ongoing revolution, principally affecting mathematics and physics, entails a profound upheaval of our conception of space, space–time, and, consequently, of natural laws themselves. Briefly, this revolution can be summarized by the following two trends: by the search for a unified theory of the four fundamental forces of nature, which are known, as of now, as gravity, electromagnetism, (...)
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