Results for 'Relativity (Physics)'

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  1. physical realism, but in fact comports well with it. Our paper has two main parts. In part I we dwell on the phenomenon itself. We explain why conceptual relativity is so puzzling—indeed, why it initially appears impossible. We iden-tify three interrelated assumptions lying behind this apparent impossibility—. [REVIEW]Why Conceptual Relativity Seems Impossible - 2002 - In Ernest Sosa & Enrique Villanueva, Realism and Relativism. Blackwell.
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  2.  12
    Relativity physics.William Hunter McCrea - 1935 - London,: Methuen & co..
  3.  55
    Relativity Physics and the God of Process Philosophy.Paul Fitzgerald - 1972 - Process Studies 2 (4):251-276.
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  4.  22
    (1 other version)Einstein and pre-relativity physics.E. V. Miller - 1928 - Australasian Journal of Philosophy 6 (3):184 – 194.
  5.  7
    Jaina relativism and relativity physics.Jayant Burde - 2014 - Delhi: Motilal Banarsidass Publishers Private.
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  6. Presentism, eternalism and relativity physics.Thomas M. Crisp - 2004 - In William Lane Craig & Quentin Smith, Einstein, Relativity and Absolute Simultaneity. Routledge. pp. 262-278.
  7.  43
    Hartshorne, God, and Relativity Physics.David Ray Griffin - 1992 - Process Studies 21 (2):85-112.
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  8.  56
    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 (...)
  9.  41
    Comparison of the field concept of matter in relativity physics and the buddhist idea of nonself.Mendel Sachs - 1983 - Philosophy East and West 33 (4):395-399.
  10.  10
    Relativity and high energy physics.W. G. V. Rosser - 1969 - London,: Wykeham Publications. Edited by R. K. McCulloch.
  11.  8
    Relativity for physics students.George Barker Jeffery - 1924 - London: Methuen.
    This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work was reproduced from the original artifact, and remains as true to the original work as possible. Therefore, you will see the original copyright references, library stamps (as most of these works have been housed in our most important libraries around the world), and other notations in the work.This work is in the public domain in (...)
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  12. The Reign of Relativity: Philosophy in Physics 1915–1925.Thomas Ryckman - 2005 - New York: Oxford University Press.
    Universally recognized as bringing about a revolutionary transformation of the notions of space, time, and motion in physics, Einstein's theory of gravitation, known as "general relativity," was also a defining event for 20th century philosophy of science. During the decisive first ten years of the theory's existence, two main tendencies dominated its philosophical reception. This book is an extended argument that the path actually taken, which became logical empiricist philosophy of science, greatly contributed to the current impasse over (...)
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  13.  49
    Superposition in quantum and relativity physics—An interaction interpretation of special relativity theory: Part III. [REVIEW]Richard Schlegel - 1975 - Foundations of Physics 5 (2):197-215.
    With the interaction interpretation, the Lorentz transformation of a system arises with selection from a superposition of its states in an observation-interaction. Integration of momentum states of a mass over all possible velocities gives the rest-mass energy. Static electrical and magnetic fields are not found to form such a superposition and are to be taken as irreducible elements. The external superposition consists of those states that are reached only by change of state of motion, whereas the internal superposition contains all (...)
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  14. Relativity and modern physics.George David Birkhoff - 1923 - Cambridge: Harvard University Press. Edited by Rudolph Ernest Langer.
     
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  15.  31
    This intertwining of projective, affine, conformal and pseudo-metrical 255.John Stachel & Special Relativity From Measuring Rods - 1983 - In Robert S. Cohen & Larry Laudan, Physics, Philosophy and Psychoanalysis: Essays in Honor of Adolf Grünbaum. D. Reidel. pp. 255.
  16.  90
    Relative information at the foundation of physics.Carlo Rovelli - 2013
    Shannon's notion of relative information between two physical systems can function as foundation for statistical mechanics and quantum mechanics, without referring to subjectivism or idealism. It can also represent a key missing element in the foundation of the naturalistic picture of the world, providing the conceptual tool for dealing with its apparent limitations. I comment on the relation between these ideas and Democritus.
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  17.  16
    The principle of relativity with applications to physical science.Alfred North Whitehead - 1922 - Cambridge [Eng.]: The University press.
    Alfred North Whitehead (1861-1947) was a prominent English mathematician and philosopher who co-authored the highly influential Principia Mathematica with Bertrand Russell. Originally published in 1922, this book forms the follow-up volume to "The Principles of Natural Knowledge" (1919) and "The Concept of Nature" (1920). In it, Whitehead puts forward an alternative theory of relativity, one which goes against the heterogeneity of Einstein's later theories in deducing that 'our experience requires and exhibits a basis in uniformity'. The text is divided (...)
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  18.  72
    Scale Relativity: an Extended Paradigm for Physics and Biology? [REVIEW]Charles Auffray & Denis Noble - 2011 - Foundations of Science 16 (4):303-305.
    With scale relativity theory, Laurent Nottale has provided a powerful conceptual and mathematical framework with numerous validated predictions that has fundamental implications and applications for all sciences. We discuss how this extended framework reviewed in Nottale (Found Sci 152 (3):101–152, 2010a ) may help facilitating integration across multiple size and time frames in systems biology, and the development of a scale relative biology with increased explanatory power.
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  19.  6
    (2 other versions)Quantum non-locality and relativity: metaphysical intimations of modern physics.Tim Maudlin - 1994 - Cambridge: Blackwell.
    Modern physics was born from two great revolutions: relativity and quantum theory. Relativity imposed a locality constraint on physical theories: since nothing can go faster than light, very distant events cannot influence one another. Only in the last few decades has it become clear that quantum theory violates this constraint. The work of J. S. Bell has demonstrated that no local theory can return the predictions of quantum theory. Thus it would seem that the central pillars of (...)
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  20.  29
    The physical foundations of general relativity.Dennis William Sciama - 1969 - Garden City, N.Y.,: Doubleday.
  21.  9
    The Physical Principles of Natural Philosophy —The Third Discussion on Contradictions between Quantum Mechanics and Relativity Using the Cosmic Origin Principle.Samo Liu - 2024 - Open Journal of Philosophy 14 (4):967-994.
    The philosophical Framework of modern physics puts forward a philosophical solution to the contradiction between relativity theory and quantum mechanics theory, aiming to break through the restriction of material philosophy on human thought and solve the artificial contradiction generated by material philosophy. This scheme is the physical principle of natural philosophy. Newton discovered the mathematical principles of natural philosophy, he expressed the principles of the universe’s natural philosophy through mathematics, discovering universal gravitation, the mutual perception and motion of (...)
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  22.  22
    Relativity Theory and Historicity of Physical Systems.Hans-Jürgen Treder - 1970 - In Hermann Bondi, Wolfgang Yourgrau & Allen duPont Breck, Physics, logic, and history. New York,: Plenum Press. pp. 253--264.
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  23.  8
    Modern Physical Philosophy Framework —The Second Use of Cosmic Ontology to Resolve the Contradictions of Quantum Mechanics and Relativity.Samo Liu - 2024 - Open Journal of Philosophy 14 (3):709-729.
    The previous article “Scientific Cosmological Ontology” discussed that the “theoretical contradictions” between quantum mechanics and relativity may become a joke in the history of human existence. It is believed that human philosophical thinking, from Socrates, Plato, to Aristotle, was a turning point. For more than 2000 years, we have been developing in the direction of material philosophy and material science according to Aristotle, and we have reached the peak of human thinking. Modern physics is a great achievement at (...)
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  24. Physical relativity from a functionalist perspective.Eleanor Knox - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 67:118-124.
    This paper looks at the relationship between spacetime functionalism and Harvey Brown’s dynamical relativity. One popular way of reading and extending Brown’s programme in the literature rests on viewing his position as a version of relationism. But a kind of spacetime functionalism extends the project in a different way, by focussing on the account Brown gives of the role of spacetime in relativistic theories. It is then possible to see this as giving a functional account of the concept of (...)
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  25.  40
    The philosophy and physics of relativity.Roy Wood Sellars - 1946 - Philosophy of Science 13 (3):177-195.
    There will be more philosophy than physics in this paper for I make no pretentions to an expert knowledge of physics. Categories are, however, in my line; and here I may have some insight.In the theory of relativity much depends upon the conception of the velocity of light in empty space. Such is the expression Einstein employs. If this velocity is to be a quantity independent of the choice of the inertial system to which it is referred, (...)
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  26.  38
    Physical Laws and the Theory of Special Relativity.G. Galeczki - 1994 - Apeiron (Misc) 20:27.
  27.  20
    Physics and Relativity.Timothy E. Eastman & Ronny Desmet - 2008 - In Michel Weber and Will Desmond, Handbook of Whiteheadian Process Thought. De Gruyter. pp. 235-258.
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  28. Time, physics, and philosophy: It’s all relative.Sam Baron - 2017 - Philosophy Compass 13 (1):e12466.
    This article provides a non-technical overview of the conflict between the special theory of relativity and the dynamic theories of time. The chief argument against dynamic theories of time from relativistic mechanics is presented. The space of current responses to that argument is subsequently mapped.
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  29. Quantum physics and the relativity theory.E. L. Hill - 1961 - In Herbert Feigl & Grover Maxwell, Current Issues in the Philosophy of Science. New York. pp. 429--445.
     
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  30.  45
    General relativity; papers in honour of J. L. Synge.J. L. Synge & L. O'Raifeartaigh (eds.) - 1972 - Oxford,: Clarendon Press.
    Lanczos, C. Einstein's path from special to general relativity.--Balazs, N. L. The acceptability of physical theories: Poincaré versus Einstein.--Ellis, G. F. R. Global and non-global problems in cosmology, by G. F. R. Ellis and D. W. Sciama.--Ehlers, J. The geometry of free fall and light propagation, by J. Ehlers, F. A. E. Pirani and A. Schild.--Trautman, A. Invariance of Lagrangian systems.--Penrose, R. The geometry of impulsive gravitational waves.--Exact solutions of the Einstein-Maxwell equations for an accelerated charge.--Taub, A. H. Plane-symmetric (...)
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  31.  12
    Special Relativity from the Viewpoint of R. W. Sellars’ The Philosophy of Physical Realism.Matthias Neuber - 2023 - In Chiara Russo Krauss & Luigi Laino, Philosophers and Einstein's Relativity: The Early Philosophical Reception of the Relativistic Revolution. Springer Verlag. pp. 183-200.
    Roy Wood Sellars (1880–1973) is often reduced to his role as father of Wilfrid Sellars. This is unfair because during the 1920s, ‘30s, and ‘40s, Roy Wood was one of the leading figures of the then prevailing American realist movement. In the present paper, I will focus on one particular facet of R. W. Sellars’ philosophical approach: his continual examination of Albert Einstein’s special theory of relativity. I shall primarily reconstruct his discussion of Einstein’s theory, as it can be (...)
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  32.  95
    Literal versus Careful Interpretations of Scientific Theories: The Vacuum Approach to the Problem of Motion in General Relativity.Dennis Lehmkuhl - 2017 - Philosophy of Science 84 (5):1202-1214.
    The problem of motion in general relativity is about how exactly the gravitational field equations, the Einstein equations, are related to the equations of motion of material bodies subject to gravitational fields. This article compares two approaches to derive the geodesic motion of matter from the field equations: the ‘T approach’ and the ‘vacuum approach’. The latter approach has been dismissed by philosophers of physics because it apparently represents material bodies by singularities. I argue that a careful interpretation (...)
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  33.  51
    (1 other version)Relativity.Albert Einstein - 1920 - London,: Routledge. Edited by Robert W. Lawson.
    _Time_'s 'Man of the Century', Albert Einstein is the unquestioned founder of modern physics. His theory of relativity is the most important scientific idea of the modern era. In this short book Einstein explains, using the minimum of mathematical terms, the basic ideas and principles of the theory which has shaped the world we live in today. Unsurpassed by any subsequent books on relativity, this remains the most popular and useful exposition of Einstein's immense contribution to human (...)
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  34. Physical relativity: Space–time structure from a dynamical perspective.Harvey Brown - 2005 - Philosophy 82 (321):498-503.
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  35. Symmetries and invariances in classical physics.Katherine Brading & Elena Castellani - unknown - In Jeremy Butterfield & John Earman, [no title]. Elsevier.
    Symmetry, intended as invariance with respect to a transformation (more precisely, with respect to a transformation group), has acquired more and more importance in modern physics. This Chapter explores in 8 Sections the meaning, application and interpretation of symmetry in classical physics. This is done both in general, and with attention to specific topics. The general topics include illustration of the distinctions between symmetries of objects and of laws, and between symmetry principles and symmetry arguments (such as Curie's (...)
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  36.  5
    Relativity.Arthur W. Conway - 1915 - London: G. Bell & sons.
    Excerpt from Relativity The four chapters which follow are four lectures delivered before the Edinburgh Mathematical Colloquium on the subject of Relativity. As many of the audience had their chief interests in other branches of mathematical science, it was necessary to start ab initio. The best method appeared to be to treat the subject in the historical order; I have brought it down to the stage in which it was left by Minkowski. If I have stimulated any of (...)
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  37. Pan-Physics: Whitehead's Philosophy of Natural Science.Leemon McHenry - 1990 - In Victor Lowe & J. B. Schneewind, Alfred North Whitehead: The Man and His Work, Volume II: 1910-1947. The Johns Hopkins University Press. pp. 89-130.
    This chapter of Victor Lowe's Alfred North Whitehead: The Man and His Work, Volume II: 1910-1947 covers the development of Whitehead's philosophy of physics while he was Professor of Applied Mathematics at the Imperial College, London. Under the influence of Einstein's theory of relativity, Whitehead developed a theory of extension that explained the basis of the space-time manifold in terms of an ontology of events. Pan-physics was his term for the unification of the natural sciences as one (...)
     
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  38. The Structural Metaphysics of Quantum Theory and General Relativity.Vincent Lam & Michael Esfeld - 2012 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 43 (2):243-258.
    The paper compares ontic structural realism in quantum physics with ontic structural realism about space–time. We contend that both quantum theory and general relativity theory support a common, contentful metaphysics of ontic structural realism. After recalling the main claim of ontic structural realism and its physical support, we point out that both in the domain of quantum theory and in the domain of general relativity theory, there are objects whose essential ways of being are certain relations so (...)
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  39.  9
    Relativity, the electron theory, and gravitation.Ebenezer Cunningham - 1921 - New York: Longmans, Green and Co..
    Excerpt from Relativity: The Electron Theory and Gravitation The first edition of this book was published while the General Principle of Relativity was being worked out, before it seemed possible to arrive at any confirmation from observation. Shortly after, however, it was shown that the new theory explained the motion of the perihelion of Mercury, and now the result of the Solar Eclipse expedition has clinched matters. It seemed best to leave practically untouched the account of the special (...)
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  40.  40
    Physical Cosmology in Relative Units.Victor Pervushin - 2005 - Faith and Philosophy 22 (5):558-580.
    The latest astrophysical data on the Supernova luminosity-distance—redshift relations, primordial nucleosynthesis, value of Cosmic Microwave Background-temperature, and baryon asymmetry are considered as evidence for a relative measurement standard, field nature of time, and conformal symmetry of the physical world. We show how these principles of description of the universe help modern quantum field theory to explain the creation of the universe, time,and matter in the way compatible with the Biblical Scenario.
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  41. Modal interpretations and relativity.Wayne C. Myrvold - 2002 - Foundations of Physics 32 (11):1773-1784.
    A proof is given, at a greater level of generality than previous 'no-go' theorems, of the impossibility of formulating a modal interpretation that exhibits 'serious' Lorentz invariance at the fundamental level. Particular attention is given to modal interpretations of the type proposed by Bub.
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  42.  42
    Deducing Newton’s second law from relativity principles: A forgotten history.Olivier Darrigol - 2020 - Archive for History of Exact Sciences 74 (1):1-43.
    In French mechanical treatises of the nineteenth century, Newton’s second law of motion was frequently derived from a relativity principle. The origin of this trend is found in ingenious arguments by Huygens and Laplace, with intermediate contributions by Euler and d’Alembert. The derivations initially relied on Galilean relativity and impulsive forces. After Bélanger’s Cours de mécanique of 1847, they employed continuous forces and a stronger relativity with respect to any commonly impressed motion. The name “principle of relative (...)
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  43.  19
    Spacetime physics.Edwin F. Taylor - 1966 - San Francisco,: W. H. Freeman. Edited by John Archibald Wheeler.
    Collaboration on the First Edition of Spacetime Physics began in the mid-1960s when Edwin Taylor took a junior faculty sabbatical at Princeton University where John Wheeler was a professor. The resulting text emphasized the unity of spacetime and those quantities (such as proper time, proper distance, mass) that are invariant, the same for all observers, rather than those quantities (such as space and time separations) that are relative, different for different observers. The book has become a standard introduction to (...)
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  44.  53
    The Non-Fundamentality of Spacetime. General Relativity, Quantum Gravity, and Metaphysics.Kian Salimkhani - 2023 - New York/London: Routledge.
    This book argues that our current best theories of fundamental physics are best interpreted as positing spacetime as non-fundamental. It is written in accessible language and largely avoids mathematical technicalities by instead focusing on the key metaphysical and foundational lessons for the fundamentality of spacetime. -/- According to orthodoxy, spacetime and spatiotemporal properties are regarded as fundamental structures of our world. Spacetime fundamentalism, however, faces challenges from speculative theories of quantum gravity – roughly speaking, the project of applying the (...)
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  45. The Reality of the Future: Spacetime Physics and the Objectivity of Temporal Becoming.Mauro Dorato - 1993 - Dissertation, The Johns Hopkins University
    Temporal becoming is usually considered the essence of the concept of time. But in our century most physicists and philosophers have defended the view that becoming is dependent on the existence of conscious beings and that there is no ontological difference between past and future. I evaluate these related claims both in light of their conceptual implications and by bringing to bear our best spacetime theories. ;Since a mind-independent becoming should be grounded in an ontological, non-epistemic asymmetry between past and (...)
     
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  46.  69
    The Newtonian Equivalence Principle: How the Relativity of Acceleration Led Newton to the Equivalence of Inertial and Gravitational Mass.Craig W. Fox - 2016 - Philosophy of Science 83 (5):1027-1038.
    From late 1684 through mid-1685, Isaac Newton turned to developing and refining the conceptual foundations presupposed by his emerging physics. Analysis of his manuscripts from this period reveals that Newton’s understanding of the relativity of acceleration led him to seek a spatiotemporally invariant quantity of matter. He found two such quantities and then designed an experiment to discover their relationship. Interpreting the experiment, however, required distinguishing a new notion of force. Others have recognized the conceptual distinction between inertial (...)
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  47. How could relativity be anything other than physical?Wayne C. Myrvold - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 67:137-143.
    Harvey Brown’s Physical Relativity defends a view, the dynamical perspective, on the nature of spacetime that goes beyond the familiar dichotomy of substantivalist/relationist views. A full defense of this view requires attention to the way that our use of spacetime concepts connect with the physical world. Reflection on such matters, I argue, reveals that the dynamical perspective affords the only possible view about the ontological status of spacetime, in that putative rivals fail to express anything, either true or false. (...)
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  48. Fundamental and Emergent Geometry in Newtonian Physics.David Wallace - 2020 - British Journal for the Philosophy of Science 71 (1):1-32.
    Using as a starting point recent and apparently incompatible conclusions by Saunders and Knox, I revisit the question of the correct spacetime setting for Newtonian physics. I argue that understood correctly, these two versions of Newtonian physics make the same claims both about the background geometry required to define the theory, and about the inertial structure of the theory. In doing so I illustrate and explore in detail the view—espoused by Knox, and also by Brown —that inertial structure (...)
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  49.  43
    The Reality of Time Flow: Local Becoming in Modern Physics.Richard T. W. Arthur - 2019 - Springer Verlag.
    It is commonly held that there is no place for the 'now’ in physics, and also that the passing of time is something subjective, having to do with the way reality is experienced but not with the way reality is. Indeed, the majority of modern theoretical physicists and philosophers of physics contend that the passing of time is incompatible with modern physical theory, and excluded in a fundamental description of physical reality. This book provides a forceful rebuttal of (...)
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  50.  42
    Geometry and Motion in General Relativity.James Owen Weatherall - unknown
    A classic problem in general relativity, long studied by both physicists and philosophers of physics, concerns whether the geodesic principle may be derived from other principles of the theory, or must be posited independently. In a recent paper [Geroch & Weatherall, "The Motion of Small Bodies in Space-Time", Comm. Math. Phys. ], Bob Geroch and I have introduced a new approach to this problem, based on a notion we call "tracking". In the present paper, I situate the main (...)
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