Results for 'General Relativity, Universal Relativity, Relative Reality'

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  1.  4
    Evaluation of Theories and Methodologies: Relativistic Physics vs. the Dynamic Universe — With Remarks from Physics and Reality 2024 and Cosmology on Small Scales 2024 Conferences.Avril Styrman - 2025 - In Avril Styrman, Paavo Pylkkänen & Saara Wuokko, Physics and Reality: International Conference on Philosophy of Physics 4.-6.6.2024 Helsinki, Finland. Bristol, UK: IOP Publishing. pp. 1-34.
    In the classical ideal, a physical theory provides understandable dynamic explanations and yields novel predictions of phenomena. Relativistic Physics (RP), namely the special and general theories of relativity and relativistic cosmology, does not meet the classical ideal. This discrepancy has been addressed by transforming the classical ideal into a ‘relativistic methodology’, where it is accepted that nature is not fully understandable, predictions are prioritized over dynamic explanations, new phenomena may be accommodated in an orderly fashion with the aid of (...)
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  2. Neo-Lorentzian Relativity and the Beginning of the Universe.Daniel Linford - 2021 - European Journal for Philosophy of Science 11 (4):1-38.
    Many physicists have thought that absolute time became otiose with the introduction of Special Relativity. William Lane Craig disagrees. Craig argues that although relativity is empirically adequate within a domain of application, relativity is literally false and should be supplanted by a Neo-Lorentzian alternative that allows for absolute time. Meanwhile, Craig and co-author James Sinclair have argued that physical cosmology supports the conclusion that physical reality began to exist at a finite time in the past. However, on their view, (...)
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  3.  73
    Roland omnès. Converging realities: Towards a common philosophy of physics and mathematics. Princeton and oxford: Princeton university press, 2005. Pp. XVII + 264. Isbn 0-691-11530-. [REVIEW]Michael Liston - 2007 - Philosophia Mathematica 15 (2):257-267.
    In this book physicist Roland Omnès addresses some big questions in philosophy of mathematics. Anyone who reflects on the history and practice of mathematics and the sciences, especially physics, will naturally be struck by some remarkable coincidences. First, often newly developed mathematics was not well understood. But its successful applications and its agreement with intuitive representations of reality promoted confidence in its correctness even absent clear foundations . Later, this confidence is vindicated when a proper setting for the concepts (...)
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  4. 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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  5. Evaluation of theories and methodologies: Relativistic Physics vs. the Dynamic Universe.Avril Styrman - 2024 - In Michal Křížek & Yurii V. Dumin, Proceedings of the International Conference Cosmology on Small Scales 2024: Local Hubble Expansion and Other Cosmological Puzzles. Prague, September 19–21, 2024. Prague: Institute of Mathematics. Czech Academy of Sciences. pp. 75-108.
    In the classical ideal, a physical theory provides understandable dynamic explanations and yields novel predictions of phenomena. Relativistic Physics (RP), namely the special and general theories of relativity and relativistic cosmology, does not meet this ideal. This discrepancy has been addressed by transforming the classical ideal into a ‘relativistic methodology’, where it is accepted that nature is not fully understandable, predictions are prioritized over dynamic explanations, new phenomena may be accommodated in an orderly fashion with the aid of additional (...)
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  6.  15
    Physics and Reality: International Conference on Philosophy of Physics 4.-6.6.2024 Helsinki, Finland.Avril Styrman, Paavo Pylkkänen & Saara Wuokko (eds.) - 2025 - Bristol, UK: IOP Publishing.
    These are the proceedings of Physics and Reality 2024, International Conference on Philosophy of Physics, held at University of Helsinki, Finland, 4-6 June 2024. -/- The conference was organised by the research project Appearance and Reality in Physics and Beyond that started in June 2023. The project is located in the Department of Philosophy, History and Art Studies, University of Helsinki. -/- The conference explored central themes in philosophy of physics, including interpretations of quantum theory, geometric vs. dynamic (...)
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  7.  50
    The Critical Philosophy of Relativity.Pierre Kerszberg - 1987 - Review of Metaphysics 41 (1):23 - 52.
    KANT'S CRITIQUE OF PURE REASON has been studied and analyzed over and over again in relation to its profound affinity with Newtonian science. But for the very reason that the putative validity of the transcendental arguments seems to depend upon this particular form of science as its ultimate model, the claim has been made repeatedly that Kant's philosophical stance can have no literal relevance to the actual problems thought germane to twentieth century physical science. Thus, the advent of the theory (...)
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  8. A quantum mechanical analysis of time and motion in relativity theory.Diederik Aerts & Massimiliano Sassoli de Bianchi - 2024 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 39 (2):165-191.
    An operational approach to quantum mechanics has been developed in the past decades in our group in Brussels. A similar approach is taken in this work, making use of the extra operational depth offered by this approach, to show that the construction of spacetime is specific to each observer. What is usually referred to as the block universe then emerges by noting that parts of the past and future are also contained in the present, but without the limitations that a (...)
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  9.  20
    An Investigation into True Reality: Observer, 5D Space, and Cognizance.Jami Hossain - 2023 - Open Journal of Philosophy 13 (4):702-735.
    A process of idea filtration in two distinct streams of physics i.e., 1) The dimensionality perspective of spacetime, and 2) The quantum perspective leads us to an understanding of what might be a true reality of all that we perceive. The conclusions arrived at in this paper are a bit perplexing in the sense that our perceived reality could be a manifestation of a combination of 4D + n (n > 0) flat space-time, universal wave function, and (...)
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  10. The Creative Universe: The Failure of Mathematical Reductionism in Physics (An Essay).Michael Epperson - 2021 - Institute of Art and Ideas News.
    In their seeking of simplicity, scientists fall into the error of Whitehead's "fallacy of misplaced concreteness." They mistake their abstract concepts describing reality for reality itself--the map for the territory. This leads to dogmatic overstatements, paradoxes, and mysteries such as the deep incompatibility of our two most fundamental physical theories--quantum mechanics and general relativity. To avoid such errors, we should evoke Whitehead's conception of the universe as a universe-in-process, where physical relations perpetually beget new physical relations. Today, (...)
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  11.  13
    The whole truth: a cosmologist's reflections on the search for objective reality.P. J. E. Peebles - 2022 - Oxford ;: Princeton University Press.
    What lies at the heart of physical inquiry? What are the foundational ideas and working assumptions that inform the enterprise of natural science? What principles guide research? How do scientists decide whether they are building theories in the right direction? Is there a right direction? Do physical theories actually approximate an objective reality, or are they simply useful summaries, mnemonics for experimental results? This book is Nobel Prize winner Jim Peebles's contribution to such big, classic debates in the philosophy (...)
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  12. Complexity Reality and Scientific Realism.Avijit Lahiri - manuscript
    We introduce the notion of complexity, first at an intuitive level and then in relatively more concrete terms, explaining the various characteristic features of complex systems with examples. There exists a vast literature on complexity, and our exposition is intended to be an elementary introduction, meant for a broad audience. -/- Briefly, a complex system is one whose description involves a hierarchy of levels, where each level is made of a large number of components interacting among themselves. The time evolution (...)
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  13.  28
    Emergence of the Fused Spacetime from a Continuum Computing Construct of Reality.Heather A. Muir - 2022 - Foundations of Physics 52 (2):1-28.
    Since the emergence of computing as a mode of investigation in the sciences, computational approaches have revolutionised many fields of inquiry. Recently in philosophy, the question has begun rendering bit by bit—could computation be considered a deeper fundamental building block to all of reality? This paper proposes a continuum computing construct, predicated on a set of core computational principles: computability, discretisation, stability and optimisation. The construct is applied to the set of most fundamental physical laws, in the form of (...)
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  14.  34
    Gravitation and universal Fermi coupling in general relativity.Hans-Jürgen Treder - 1976 - Foundations of Physics 6 (5):527-538.
    The generally covariant Lagrangian densityG = ℛ + 2K ℒmatter of the Hamiltonian principle in general relativity, formulated by Einstein and Hilbert, can be interpreted as a functional of the potentialsg ikand φ of the gravitational and matter fields. In this general relativistic interpretation, the Riemann-Christoffel form Γ kl i = kl i for the coefficients г kl i of the affine connections is postulated a priori. Alternatively, we can interpret the LagrangianG as a functional of φ, gik, (...)
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  15.  41
    One hundred years of general relativity: Albert Einstein: Relativity: The special and the general theory, 100th anniversary edition. Princeton, NJ: Princeton University Press, 2015, 320 pp, £19.95 HB Andrew Robinson, Einstein. A Hundred Years of Relativity. Princeton, NJ: Princeton University Press, 2015, 256 pp, £18.95 PB.Katherine Brading, Sebastián Murgueitio Ramírez & Laura Wells - 2017 - Metascience 26 (1):49-57.
  16.  29
    The General Theory of Relativity and the Space-Time Structure of the Universe.E. M. Chudinov - 1967 - Russian Studies in Philosophy 6 (2):51-60.
    The application of the general theory of relativity to the cosmological plane has led to a significant change in traditional notions on the space-time structure of the universe. This has been expressed in a new formulation and solution of cosmological problems such as that of a single world space and time, the problem of selection of a cosmological model for description of the universe, and the problem of the infinity of the universe.
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  17. The relativity of inertia and reality of nothing.Alexander Afriat & Ermenegildo Caccese - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (1):9-26.
    The determination of inertia by matter is looked at in general relativity, where inertia can be represented by affine or projective structure. The matter tensor T seems to underdetermine affine structure by ten degrees of freedom, eight of which can be eliminated by gauge choices, leaving two. Their physical meaning---which is bound up with that of gravitational waves and the pseudotensor t, and with the conservation of energy-momentum---is considered, along with the dependence of reality on invariance and of (...)
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  18. Complex-Dynamic Origin of Quantised Relativity and Its Manifestations at Higher Complexity Levels.Andrei P. Kirilyuk - 2017 - In Theory of Everything, Ultimate Reality and the End of Humanity: Extended Sustainability by the Universal Science of Complexity. Beau Bassin: LAP LAMBERT Academic Publishing. pp. 186-194.
    Unified and causal complex-dynamic origin of standard (special and general) relativistic and quantum effects revealed previously at the lowest levels of world interaction dynamics is explicitly generalised to all higher levels of unreduced interaction processes, thus additionally confirming the causally complete character of complex-dynamical, naturally quantised relativity, which does not contain any artificially added, abstract postulates. We demonstrate some elementary applications of this generalised quantum relativity at higher levels of complex brain and social interaction dynamics.
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  19. The Role of Physics in Science Integration.Alexander Egoyan - 2005 - Albert Einstein Century International Conference.
    Special and General theories of relativity may be considered as the most significant examples of integrative thinking. From these works we see that Albert Einstein attached great importance to how we understand geometry and dimensions. It is shown that physics powered by the new multidimensional elastic geometry is a reliable basis for science integration. Instead of searching for braneworlds (elastic membranes - EM) in higher dimensions we will start by searching them in our 3+1 dimensional world. The cornerstone of (...)
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  20.  53
    Geometry, relativity, and philosophy: David Malament: Topics in the foundations of general relativity and Newtonian gravitation theory. Chicago: The University of Chicago Press, 2012, xii+368pp, $55.00 HB.Theophanes Grammenos - 2014 - Metascience 24 (1):141-145.
    David Malament, now emeritus at the University of California, Irvine, where since 1999 he served as a Distinguished Professor of Logic and Philosophy of Science after having spent twenty-three years as a faculty member at the University of Chicago , is well known as the author of numerous articles on the mathematical and philosophical foundations of modern physics with an emphasis on problems of space-time structure and the foundations of relativity theory. Malament’s Topics in the foundations of general relativity (...)
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  21.  50
    John Paul II’s Idea of Universalism.Eugeniusz Górski - 2006 - Dialogue and Universalism 16 (11-12):7-34.
    In the history of human thought, various writers have called their philosophies universal, universalistic or simply “universalism”. Almost every philosophical or scientific theory claims to be of universal importance, to be a generalization and universality, but relatively few have believed that the term “universalism” to be the only adequate, and therefore only viable, description of their own thought system or newly constructed theory. Efforts to construct, develop or reconstruct a theory, viewpoint, vision or universalistic attitude—or merely to reinforce (...)
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  22.  43
    Geodesic Universality in General Relativity.Michael Tamir - 2013 - Philosophy of Science 80 (5):1076-1088.
    According to recent arguments, the geodesic principle strictly interpreted is compatible with Einstein’s field equations only in pathologically unstable circumstances and, hence, cannot play a fundamental role in the theory. It is shown here that geodesic dynamics can still be coherently reinterpreted within contemporary relativity theory as a universality thesis. By developing an analysis of universality in physics, I argue that the widespread geodesic clustering of diverse free-fall massive bodies observed in nature qualifies as a universality phenomenon. I then show (...)
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  23. The Kochen - Specker theorem in quantum mechanics: a philosophical comment (part 1).Vasil Penchev - 2013 - Philosophical Alternatives 22 (1):67-77.
    Non-commuting quantities and hidden parameters – Wave-corpuscular dualism and hidden parameters – Local or nonlocal hidden parameters – Phase space in quantum mechanics – Weyl, Wigner, and Moyal – Von Neumann’s theorem about the absence of hidden parameters in quantum mechanics and Hermann – Bell’s objection – Quantum-mechanical and mathematical incommeasurability – Kochen – Specker’s idea about their equivalence – The notion of partial algebra – Embeddability of a qubit into a bit – Quantum computer is not Turing machine – (...)
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  24.  22
    Adynamism in Physics: The Block Universe vs Barbour’s Relational Strategy.Emilia Margoni - forthcoming - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie:1-18.
    The block universe is generally considered as the metaphysical position that best accommodates the outcomes of relativistic physics. Its most consistent formulation postulates a static universe where change is not admitted. However, some of its advocates try to reconcile its basic adynamical commitments as to the nature of physical reality with certain aspects of dynamism that arise, for instance, within human experience. In this article, I first examine how some block viewers try to reconcile dynamism and adynamism. I then (...)
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  25.  84
    The Universe in the Light of General Relativity.John Archibald Wheeler - 1962 - The Monist 47 (1):40-76.
  26.  25
    The relativity of reality.A. Bachem - 1953 - Philosophy of Science 20 (1):75-78.
    In the interesting discussion between Margenau and Werkmeister a baffling dilemma arises:If verification of constructs makes up reality, and if verifications work retroactively, several different realities may exist at the same time.The writer, who—as a positivist—cannot accept a transcendental reality, as Werkmeister seemingly does, is not disturbed by a multitude of realities. He identifies reality with the most familiar and most generalized cognition. As such it varies with the mechanism of cognition and with the type and degree (...)
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  27.  33
    Decoding general relativity: Fulvio Melia: Cracking the Einstein Code: Relativity and the Birth of Black Hole Physics. University of Chicago Press, Chicago, 2009, xi + 150 pp, US $25.00 HB.Daniel Kennefick - 2011 - Metascience 20 (1):91-93.
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  28.  54
    Relativity and Reality.Oliver L. Reiser - 1931 - The Monist 41 (4):512-534.
  29.  34
    Can one have a universal time in general relativity?Nathan Rosen - 1991 - Foundations of Physics 21 (4):459-472.
    The rest-frame of the universe determines a universal, or absolute time, that given by a clock at rest in it. The question is raised whether one can have a satisfactory universal time in general relativity if a gravitational field is present, i.e., whether there are coordinates such that the coordinate time is the time given everywhere by a clock at rest and they provide the correct description of our everyday experience. Several attempts are made to find such (...)
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  30. The Value of Narrativity in the Representation of Reality.Hayden White - 1980 - Critical Inquiry 7 (1):5-27.
    To raise the question of the nature of narrative is to invite reflection on the very nature of culture and, possibly, even on the nature of humanity itself. So natural is the impulse to narrate, so inevitable is the form of narrative for any report of the way things really happened, that narrativity could appear problematical only in a culture in which it was absent—absent or, as in some domains of Western intellectual and artistic culture, programmatically refused. As a panglobal (...)
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  31. THE PHILOSOPHY OF KURT GODEL - ALEXIS KARPOUZOS.Alexis Karpouzos - 2024 - The Harvard Review of Philosophy 8 (14):12.
    Gödel's Philosophical Legacy Kurt Gödel's contributions to philosophy extend beyond his incompleteness theorems. He engaged deeply with the work of other philosophers, including Immanuel Kant and Edmund Husserl, and explored topics such as the nature of time, the structure of the universe, and the relationship between mathematics and reality. Gödel's philosophical writings, though less well-known than his mathematical work, offer rich insights into his views on the nature of existence, the limits of human knowledge, and the interplay between the (...)
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  32. The twins and the bucket: How Einstein made gravity rather than motion relative in general relativity.Michel Janssen - 2012 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 43 (3):159-175.
    In publications in 1914 and 1918, Einstein claimed that his new theory of gravity somehow relativizes the rotation of a body with respect to the distant stars and the acceleration of the traveler with respect to the stay-at-home in the twin paradox. What he showed was that phenomena seen as inertial effects in a space-time coordinate system in which the non-accelerating body is at rest can be seen as a combination of inertial and gravitational effects in a space-time coordinate system (...)
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  33. 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 (...)
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  34. Conscious events as orchestrated space-time selections.Stuart R. Hameroff & Roger Penrose - 1996 - Journal of Consciousness Studies 3 (1):36-53.
    What is consciousness? Some philosophers have contended that ‘qualia’, or an experiential medium from which consciousness is derived, exists as a fundamental component of reality. Whitehead, for example, described the universe as being comprised of ‘occasions of experience’. To examine this possibility scientifically, the very nature of physical reality must be re-examined. We must come to terms with the physics of space-time -- as is described by Einstein's general theory of relativity -- and its relation to the (...)
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  35.  8
    The reality frame: relativity and our place in the universe.Brian Clegg - 2017 - London: Icon Books.
    Weaving together the great ideas of science, Reality's Frame takes us on a thrilling journey from empty space all the way to the human mind. Acclaimed science writer Brian Clegg builds up reality piece by piece, from space, to time, to matter, movement, the fundamental forces, life, and the massive transformation that life itself has wrought on the natural world. He reveals that underlying it all is not, as we might believe, a system of immovable absolutes, but the (...)
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  36.  27
    Foundations of a Theory of Gravity with a Constraint and Its Canonical Quantization.Alexander P. Sobolev - 2021 - Foundations of Physics 52 (1):1-44.
    The gravitational equations were derived in general relativity using the assumption of their covariance relative to arbitrary transformations of coordinates. It has been repeatedly expressed an opinion over the past century that such equality of all coordinate systems may not correspond to reality. Nevertheless, no actual verification of the necessity of this assumption has been made to date. The paper proposes a theory of gravity with a constraint, the degenerate variants of which are general relativity and (...)
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  37. General Relativity and Quantum Gravity in Terms of Quantum Measure: A philosophical comment.Vasil Penchev - 2020 - Logic and Philosophy of Mathematics eJournal (Elsevier: SSRN) 12 (17):1-37.
    The paper discusses the philosophical conclusions, which the interrelation between quantum mechanics and general relativity implies by quantum measure. Quantum measure is three-dimensional, both universal as the Borel measure and complete as the Lebesgue one. Its unit is a quantum bit (qubit) and can be considered as a generalization of the unit of classical information, a bit. It allows quantum mechanics to be interpreted in terms of quantum information, and all physical processes to be seen as informational in (...)
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  38. General relativity needs no interpretation.Erik Curiel - 2009 - Philosophy of Science 76 (1):44-72.
    I argue that, contrary to the recent claims of physicists and philosophers of physics, general relativity requires no interpretation in any substantive sense of the term. I canvass the common reasons given in favor of the alleged need for an interpretation, including the difficulty in coming to grips with the physical significance of diffeomorphism invariance and of singular structure, and the problems faced in the search for a theory of quantum gravity. I find that none of them shows any (...)
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  39.  36
    General relativity with a background metric.Nathan Rosen - 1980 - Foundations of Physics 10 (9-10):673-704.
    An attempt is made to remove singularities arising in general relativity by modifying it so as to take into account the existence of a fundamental rest frame in the universe. This is done by introducing a background metric γμν (in addition to gμν) describing a spacetime of constant curvature with positive spatial curvature. The additional terms in the field equations are negligible for the solar system but important for intense fields. Cosmological models are obtained without singular states but simulating (...)
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  40.  99
    Review: Brian G. Henning. The ethics of creativity: Beauty, morality and nature in a processive cosmos. University of pittsburgh press, 2005. [REVIEW]John W. Lango - 2006 - Transactions of the Charles S. Peirce Society 42 (3):450-454.
    In lieu of an abstract, here is a brief excerpt of the content:Reviewed by:The Ethics of Creativity: Beauty, Morality and Nature in a Processive CosmosJohn W. LangoBrian G. Henning The Ethics of Creativity: Beauty, Morality and Nature in a Processive Cosmos University of Pittsburgh Press, 2005. 250 + xii pp.The aim of this interesting but flawed book by Brian Henning may be related through some remarks about the terms in its title.1 The term "creativity" stems from the most basic category (...)
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  41.  48
    Vectors on Curved Space.Peter Forrest - 2009 - Dialectica 63 (4):491-501.
    In this paper I provide an ontology for the co‐variant vectors, contra‐variant vectors and tensors that are familiar from General Relativity. This ontology is developed in response to a problem that Timothy Maudlin uses to argue against universals in the interpretation of physics. The problem is that if vector quantities are universals then there should be a way of identifying the same vector quantity at two different places, but there is no absolute identification of vector quantities, merely a path‐ (...) one.My solution to the problem is to use the mathematical characterization of vectors as differential operators on scalar fields. On the proposed hypothesis a scalar field is a conjunctive state of affairs, and vector and tensor fields are relations instantiated by scalar fields. (shrink)
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  42. Consciousness, the brain, and space-time geometry.Stuart R. Hameroff - 2001 - Annals of the New York Academy of Sciences 929:74-104.
    What is consciousness? Conventional approaches see it as an emergent property of complex interactions among individual neurons; however these approaches fail to address enigmatic features of consciousness. Accordingly, some philosophers have contended that "qualia," or an experiential medium from which consciousness is derived, exists as a fundamental component of reality. Whitehead, for example, described the universe as being composed of "occasions of experience." To examine this possibility scientifically, the very nature of physical reality must be re-examined. We must (...)
     
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  43.  56
    Can There be a Process Without Time? Processualism Within Timeless Physics.Emilia Margoni - 2022 - Foundations of Physics 52 (2):1-19.
    Process ontology is making deep inroads into the hard sciences. For it offers a workable understanding of dynamic phenomena which sits well with inquiries that problematize the traditional conception of self-standing, definite, independent objects as the basic stuff of the universe. Process-based approaches are claimed by their advocates to yield better ontological descriptions of various domains of physical reality in which dynamical, indefinite activities are prior to definite “things” or “states of things”. However, if applied to physics, a main (...)
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  44. A brief summary.Matthew Donald - unknown
    Quantum theory is highly successful in explaining properties of classes of systems: e.g. chemistry --- molecular binding energies optics --- frequency-dependent susceptibilities superconductivity --- energy gaps nuclear magnetic resonance --- chemical shifts particle physics --- scattering cross-sections cosmology --- helium abundance but many questions arise: What does quantum theory tell us about the nature of reality? Is quantum theory universally valid? Can quantum theory describe individual events? Can quantum theory be applied consistently at the macroscopic level? Is an algorithmic (...)
     
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  45. Time, consciousness, and quantum events in fundamental space-time geometry.Stuart R. Hameroff - 2003 - In R. Buccheri (ed.), The Nature of Time: Geometry, Physics and Perception. pp. 77-89.
    1. Introduction: The problems of time and consciousness What is time? St. Augustine remarked that when no one asked him, he knew what time was; however when someone asked him, he did not. Is time a process which flows? Is time a dimension in which processes occur? Does time actually exist? The notion that time is a process which "flows" directionally may be illusory (the "myth of passage") for if time did flow it would do so in some medium or (...)
     
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  46.  48
    Apologii︠a︡ Sofistov: Reli︠a︡tivizm Kak Ontologicheskai︠a︡ Sistema.Igorʹ Nikolaevich Rassokha - 2009 - Kharʹkov: Kharkivsʹka Nat͡sionalʹna Akademii͡a Misʹkoho Hospodarstva.
    Sophists’ apologia. -/- Sophists were the first paid teachers ever. These ancient Greek enlighteners taught wisdom. Protagoras, Antiphon, Prodicus, Hippias, Lykophron are most famous ones. Sophists views and concerns made a unified encyclopedic system aimed at teaching common wisdom, virtue, management and public speaking. Of the contemporary “enlighters”, Deil Carnegy’s educational work seems to be the most similar to sophism. Sophists were the first intellectuals – their trade was to sell knowledge. They introduced a new type of teacher-student relationship – (...)
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  47. Discussion Following the Lecture by Zbigniew Jacyna-Onyszkiewicz.Zbigniew Jacyna-Onyszkiewicz - 2008 - Dialogue and Universalism 18 (9-10):142-147.
    Certain aspects of time physics were considered within the framework of quantum cosmology of the closed universe. Based on the general relativity we know that total energy of the closed universe is precisely equal to zero. This fact allows interpreting the creation of the closed universe as a spontaneous, causeless occurrence of respective quantum fluctuation, without any energy input. However, in such a universe the unitary evolution is “frozen”—no changes may occur, i.e. the universal cosmic time, which numbers (...)
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  48.  23
    Teologija: teološka analiza Einsteinova pojma Boga s implikacijama za njegovu sliku svijeta.Tonči Matulić - 2006 - Filozofska Istrazivanja 26 (3):531-557.
    istovremeno otkriva Božje tragove. Štoviše, po njemu je upravo pomoću prirodnih znanosti moguće uhvatiti i shvatiti Božju za-misao. Ovakvo gledanje na prirodu u XVIII. stoljeću je sačinjavalo sukus »prirodne teologije«. No, Einsteinov život i djelo se smještaju cijela dva stoljeća kasnije. Stoga je sasvim na mjestu istraživanje nekih teoloških implikacija Einsteinove fizikalne slike svijeta. Jer upravo je Einstein svojim najvažnijim prirodoznanstvenim otkrićima, točnije specijalnom teorijom relativnosti i općom teorijom relativnosti istovremeno »pokopao« dva i pol stoljeća dugu vladavinu newtonovske slike svemira, (...)
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    Intrinsic Property, Quantum Vacuum, and Śūnyatā.Sisir Roy - 2019 - In Siddheshwar Rameshwar Bhatt, Quantum Reality and Theory of Śūnya. Springer. pp. 173-184.
    In modern physics, the properties like charge, spin, etc. of elementary entities like electron, proton, photon, etc. are considered to be “intrinsic properties” of the entity. Intrinsic properties are those properties that a thing possesses, irrespective of whether or not there are other contingent things. In Buddhist philosophy especially in Mādhyamik philosophy, no such concept of “intrinsic property” or svabhāva exists. The problem of origin of the universe baffled the scientists and philosophers for many centuries. Within the framework of (...) theory of relativity as discovered by Einstein, the origin and structure of the universe were discussed in a comprehensive manner. According to the recent formulation of cosmology, the universe originates from the fluctuations of the quantum vacuum. Vacuum in modern physics is not exactly nothing but rather a “something called nothing,” meaning that it is replete with activity governed by the principle of quantum theory. From philosophical perspective, what is significant is the division of creative conceptions into those which assume that the universe arose from “nothingness” in the strong ontological meaning of the word vs. those which lead to the conclusion that it was originated from a certain “poorer” physical reality, usually called “quantum vacuum” or space-time endowed with fluctuation. This vacuum or ontologically speaking a substratum exists which is devoid of any matter but full of activities or full of potentialities. Special theory of relativity is based on two axioms, one of which is the speed of light taken as constant and maximum. (shrink)
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  50.  54
    Quantum theoretic machines: what is thought from the point of view of physics.August Stern - 2000 - New York: Elsevier.
    Making Sense of Inner Sense 'Terra cognita' is terra incognita. It is difficult to find someone not taken abackand fascinated by the incomprehensible but indisputable fact: there are material systems which are aware of themselves. Consciousness is self-cognizing code. During homo sapiens's relentness and often frustrated search for self-understanding various theories of consciousness have been and continue to be proposed. However, it remains unclear whether and at what level the problems of consciousness and intelligent thought can be resolved. Science's greatest (...)
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