Results for 'Physical constants Philosophy'

951 found
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  1.  47
    Physical constants and reference dynamics.Bernhard Lauth - 1993 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 24 (1):63 - 86.
    The following investigation illustrates, by concrete historical examples, some of the basic results, outlined in earlier papers on theory evolution and reference dynamics in science (cf. Balzer, W. et al.: 1989, 'A Static Theory of Reference in Science', Synthese 79, 319-360; Lauth, B.: 1989, 'Reference Problems in Stoichiometry', Erkenntnis 30, 339-362; Lauth, B.: 1990, 'Theory Evolution and Reference Kinematics', Synthese 88, 279-307). All theories considered in this paper are represented within a metatheoretical frame that has become known as the structuralist (...)
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  2.  49
    Assessing accuracy in measurement: The dilemma of safety versus precision in the adjustment of the fundamental physical constants.Fabien Grégis - 2019 - Studies in History and Philosophy of Science Part A 74:42-55.
    This article develops a historico-critical analysis of uncertainty and accuracy in measurement through a case-study of the adjustment of the fundamental physical constants, in order to investigate the sceptical “problem of unknowability” undermining realist accounts of measurement. Every scientific result must include a “measurement uncertainty”, but uncertainty cannot be be eval- uated against the unknown, and therefore cannot be taken as an assessment of “accuracy”, defined in the metrological vocabulary as the closeness to the truth. The way scientists (...)
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  3.  55
    Accelerating Expansion: Philosophy and Physics with a Positive Cosmological Constant.Gordon Belot - 2023 - New York: Oxford University Press.
    Accelerating Expansion explores some of the philosophical implications of modern cosmology, focused on the significance that the discovery of the accelerating expansion of the Universe has for our understanding of time, geometry, and physics. The appearance of the cosmological constant in the equations of general relativity allows one to model universes in which space has an inherent tendency towards expansion. This constant, introduced by Einstein but subsequently abandoned by him, returned to centre stage with the discovery of the accelerating expansion. (...)
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  4.  91
    Review of Accelerating Expansion: Philosophy and Physics with a Positive Cosmological Constant, by Gordon Belot. [REVIEW]Franciszek Cudek & James Read - forthcoming - Foundations of Physics.
    We review Gordon Belot’s ‘Accelerating Expansion: Philosophy and Physics with a Positive Cosmological Constant’ (OUP, 2023).
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  5. Sources of Richness and Ineffability for Phenomenally Conscious States.Xu Ji, Eric Elmoznino, George Deane, Axel Constant, Guillaume Dumas, Guillaume Lajoie, Jonathan A. Simon & Yoshua Bengio - 2024 - Neuroscience of Consciousness 2024 (1).
    Conscious states—state that there is something it is like to be in—seem both rich or full of detail and ineffable or hard to fully describe or recall. The problem of ineffability, in particular, is a longstanding issue in philosophy that partly motivates the explanatory gap: the belief that consciousness cannot be reduced to underlying physical processes. Here, we provide an information theoretic dynamical systems perspective on the richness and ineffability of consciousness. In our framework, the richness of conscious (...)
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  6. Constant ‘physicality – agonistic’ base of human existence and its cultural derivations and inversions.Kaye Academic College of Education Felix Lebed The School of Advanced Studies & Israel Beer-Sheba - forthcoming - Sport, Ethics and Philosophy:1-17.
    In this article, I examine the inversion of essential cultural values, such as physical perfection and the sports spirit, in 20th-century Europe. Periods emerged when physical perfection, once celebrated, morphed into tools for eugenics, racial theories, and ideological segregation. Similarly, the sports spirit became entangled in political and ideological conflicts. I approach this through the Marxist lens of ‘base—superstructure’ relations, focusing on the biological ‘base’, often misinterpreted through social Darwinism. This base is not subject to dialectical changes, does (...)
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  7.  1
    Constant ‘physicality – agonistic’ base of human existence and its cultural derivations and inversions.Felix Lebed - forthcoming - Sport, Ethics and Philosophy:1-17.
    In this article, I examine the inversion of essential cultural values, such as physical perfection and the sports spirit, in 20th-century Europe. Periods emerged when physical perfection, once celebrated, morphed into tools for eugenics, racial theories, and ideological segregation. Similarly, the sports spirit became entangled in political and ideological conflicts. I approach this through the Marxist lens of ‘base—superstructure’ relations, focusing on the biological ‘base’, often misinterpreted through social Darwinism. This base is not subject to dialectical changes, does (...)
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  8.  87
    On the Meaning of the Constant “c” in Modern Physics.Peter Mittelstaedt - 2010 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 41 (1):45-53.
    In modern physics, the constant “c” plays a twofold role. On the one hand, “c” is the well known velocity of light in an empty Minkowskian space–time, on the other hand “c” is a characteristic number of Special Relativity that governs the Lorentz transformation and its consequences for the measurements of space–time intervals. We ask for the interrelations between these two, at first sight different meanings of “c”. The conjecture that the value of “c” has any influence on the structure (...)
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  9.  94
    The Physics of Theism: God, Physics, and the Philosophy of Science.Jeffrey Koperski - 2015 - Hoboken, New Jersey: Wiley-Blackwell.
    Theologians and philosophers of religion are increasingly interested in physics. From the fine-tuning of universal constants to quantum mechanics, relativity, and cosmology, physics is a surprisingly common subject where religion is involved. Bridging the gap between issues in religion and those in physics can be quite difficult, however. Fortunately, the philosophy of science provides a middle ground between the two disciplines. In this book, a philosopher of science provides a critical analysis of the ways in which physics is (...)
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  10. Some problems concerning fundamental constants in physics.W. Yourgrau - 1961 - In Herbert Feigl & Grover Maxwell (eds.), Current Issues in the Philosophy of Science. New York. pp. 319--342.
  11.  13
    Bridging the Gap: Philosophy, Mathematics, and Physics: Lectures on the Foundations of Science: International School of Philosophy of Science: Papers.Giovanna Corsi, María Luisa Dalla Chiara & Gian Carlo Ghirardi (eds.) - 1992 - Dordrecht and Boston: Kluwer Academic Publishers.
    Foundational questions in logic, mathematics, computer science and physics are constant sources of epistemological debate in contemporary philosophy. To what extent is the transfinite part of mathematics completely trustworthy? Why is there a general 'malaise' concerning the logical approach to the foundations of mathematics? What is the role of symmetry in physics? Is it possible to build a coherent worldview compatible with a macroobjectivistic position and based on the quantum picture of the world? What account can be given of (...)
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  12. MODIFIED STRUCTURE-NOMINATIVE RECONSTRUCTION OF PRACTICAL PHYSICAL THEORIES AS A FRAME FOR THE PHILOSOPHY OF PHYSICS.Vladimir Kuznetsov - forthcoming2021 - Epistemological studies in Philosophy, Social and Political Sciences 4 (1):20-28.
    Physical theories are complex and necessary tools for gaining new knowledge about their areas of application. A distinction is made between abstract and practical theories. The last are constantly being improved in the cognitive activity of professional physicists and studied by future physicists. A variant of the philosophy of physics based on a modified structural-nominative reconstruction of practical theories is proposed. Readers should decide whether this option is useful for their understanding of the philosophy of physics, as (...)
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  13. The cosmological constant, the fate of the universe, unimodular gravity, and all that.John Earman - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (4):559-577.
    The cosmological constant is back. Several lines of evidence point to the conclusion that either there is a positive cosmological constant or else the universe is filled with a strange form of matter (“quintessence”) that mimics some of the effects of a positive lambda. This paper investigates the implications of the former possibility. Two senses in which the cosmological constant can be a constant are distinguished: the capital Λ sense in which lambda is a universal constant on a par with (...)
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  14.  21
    The Constant and the Contingent in Human Thought and Life.A. E. Garvie - 1931 - Philosophy 6 (24):485 - 490.
    The business of philosophy is “to think things together,” so far as the reality of things and the capacity of thought allow. That reality presents many contrasts, physical, ethical, metaphysical, light and darkness, life and death, good and evil, right and wrong, the One and the many, the Infinite and the finite, the Eternal and the temporal, and what we mention as last, but not least, for our immediate purpose, Being and Becoming, the Constant and the Contingent. The (...)
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  15.  52
    Physical entropy and the senses.Kenneth H. Norwich - 2005 - Acta Biotheoretica 53 (3):167-180.
    With reference to two specific modalities of sensation, the taste of saltiness of chloride salts, and the loudness of steady tones, it is shown that the laws of sensation (logarithmic and power laws) are expressions of the entropy per mole of the stimulus. That is, the laws of sensation are linear functions of molar entropy. In partial verification of this hypothesis, we are able to derive an approximate value for the gas constant, a fundamental physical constant, directly from psychophysical (...)
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  16. The Nature of a Constant of Nature: the Case of G.Caspar Jacobs - 2022 - Philosophy of Science 90 (4):797-81.
    Physics presents us with a symphony of natural constants: G, h, c, etc. Up to this point, constants have received comparatively little philosophical attention. In this paper I provide an account of dimensionful constants, in particular the gravitational constant. I propose that they represent inter-quantity structure in the form of relations between quantities with different dimensions. I use this account of G to settle a debate over whether mass scalings are symmetries of Newtonian Gravitation. I argue that (...)
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  17.  25
    “Fundamental” “Constants” and Precision Tests of the Standard Model.Adam Koberinski - 2022 - Philosophy of Science 89 (5):1255-1264.
    I provide an account of precision testing in particle physics that makes a virtue of theory-ladenness in experiments. Combining recent work on the philosophy of experimentation with a broader view of the scientific process allows one to understand that the most precise and secure knowledge produced in a mature science cannot be achieved in a theory-independent fashion. I discuss precision tests of the muon’s magnetic moment and effective field theory as a means to repurpose precision tests for exploratory purposes.
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  18.  24
    Physical theories in the context of multiverse.Ivan A. Karpenko - 2018 - Epistemology and Philosophy of Science 55 (2):139-152.
    The article analyzes the problem of physical theory nature and its criteria in the context of several concepts of modern physics. Such physical concepts allow multiple possible universes (the last usually happens to be a random consequence of the theory). Since the study requires several universe models, which basic principles (physical laws) can vary, the two theories have become the objects of analysis: the first, which includes the concept of eternal inflation, the second – the string cosmology (...)
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  19.  11
    Philosophy as Inquiry of Inquiry.Peeter Müürsepp - 2018 - Proceedings of the XXIII World Congress of Philosophy 62:113-117.
    Philosophy has sometimes been considered to be the science of science. Analogously, it can perhaps be called inquiry of inquiry. Traditional modern science has been aimed at acquiring knowledge of truth. Thus, it can be called knowledge-inquiry. It can be debated, however, whether knowledge of truth is the ultimate goal we have to achieve in science. Perhaps solving the problems of living should be brought to the foreground rather than the problems of knowledge. In order to fulfil this task, (...)
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  20.  89
    Two Constants in Carnap’s View on Scientific Theories.Sebastian Lutz - 2021 - In Sebastian Lutz & Adam Tamas Tuboly (eds.), Logical Empiricism and the Physical Sciences: From Philosophy of Nature to Philosophy of Physics. New York: Routledge. pp. 354-378.
    The received view on the development of the correspondence rules in Carnap’s philosophy of science is that at first, Carnap assumed the explicit definability of all theoretical terms in observational terms and later weakened this assumption. In the end, he conjectured that all observational terms can be explicitly defined in in theoretical terms, but not vice versa. I argue that from the very beginning, Carnap implicitly held this last view, albeit at times in contradiction to his professed position. To (...)
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  21.  56
    Measuring constants of nature: confirmation and determination in piezoelectricity.Shaul Katzir - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (4):579-606.
    Exact measurements are a central practice of modern physics. In certain cases, they are essential for determining values of coefficients, for confirming theories, and for detecting the existence of effects. The history of piezoelectricity at the end of the nineteenth century reveals two different methods of exact measurement: a mathematical versus an “artisanal” approach. In the former, a scientist first carried out the experiment and later employed mathematical methods to reduce error. In the latter, a scientist physically manipulated the experimental (...)
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  22.  27
    The Physical Basis of Predication. [REVIEW]Vere Chappell - 1995 - Review of Metaphysics 48 (3):673-674.
    The subject of this rich and wide-ranging book is old-fashioned metaphysics: its aim is to give an account of "the real constituents of the world". But its idiom and methodology are those of late twentieth-century analytic philosophy. Newman works out his own positions in constant dialogue with such philosophers as Frege and Wittgenstein, Geach and D. M. Armstrong, Keith Campbell and David Lewis; and he has an impressive mastery of modern formal logic and contemporary philosophy of language. He (...)
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  23. Probability in the Philosophy of Religion.Jake Chandler & Victoria S. Harrison (eds.) - 2012 - Oxford, GB: Oxford University Press.
    Probability theory promises to deliver an exact and unified foundation for inquiry in epistemology and philosophy of science. But philosophy of religion is also fertile ground for the application of probabilistic thinking. This volume presents original contributions from twelve contemporary researchers, both established and emerging, to offer a representative sample of the work currently being carried out in this potentially rich field of inquiry. Grouped into five parts, the chapters span a broad range of traditional issues in religious (...)
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  24.  11
    The Rise and Fall of the Fifth Force: Discovery, Pursuit, and Justification in Modern Physics.Allan Franklin - 2016 - Cham: Springer. Edited by Ephraim Fischbach.
    This book provides the reader with a detailed and captivating account of the story where, for the first time, physicists ventured into proposing a new force of nature beyond the four known ones - the electromagnetic, weak and strong forces, and gravitation - based entirely on the reanalysis of existing experimental data. Back in 1986, Ephraim Fischbach, Sam Aronson, Carrick Talmadge and their collaborators proposed a modification of Newton’s Law of universal gravitation. Underlying this proposal were three tantalizing pieces of (...)
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  25.  1
    Vaiśeṣikaśāstra: a treatise on physical and cognitive sciences.Narayan Gopal Dongre - 2010 - Pune: Triangle Concepts. Edited by Kaṇāda & S. G. Nene.
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  26.  18
    About the Measure of the Bare Cosmological Constant.Massimo Cerdonio - 2019 - Foundations of Physics 49 (8):830-836.
    I try to revive, and possibly reconcile, a debate started a few years ago, about the relative roles of a bare cosmological constant and of a vacuum energy, by taking the attitude to try to get the most from the physics now available as established. I notice that the bare cosmological constant of the Einstein equations, which is there ever since GR emerged, is actually constrained (if not measured) indirectly combining the effective cosmological constant observed now, as given by ΛCDM (...)
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  27.  30
    The Hierarchy Problem and the Cosmological Constant Problem Revisited.Fred Jegerlehner - 2019 - Foundations of Physics 49 (9):915-971.
    We argue that the Standard Model (SM) in the Higgs phase does not suffer from a “hierarchy problem” and that similarly the “cosmological constant problem” resolves itself if we understand the SM as a low energy effective theory emerging from a cutoff-medium at the Planck scale. We actually take serious Veltman’s “The Infrared–Ultraviolet Connection” addressing the issue of quadratic divergences and the related huge radiative correction predicted by the SM in the relationship between the bare and the renormalized theory, usually (...)
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  28.  37
    Logic and probability in physics.C. G. Darwin - 1939 - Philosophy of Science 6 (1):48-64.
    General philosophy claims to be the critical subject which lays down for all of us what we may be allowed to think, and yet it has played no part whatever in the great revolutions of human thought of the present century—those connected with relativity and the quantum theory. It might have been expected that the scientists would have been constantly consulting the philosophers as to the legitimacy of their various speculations, but nothing of the kind has happened. Since no (...)
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  29.  29
    Quantum postulate vs. quantum nonlocality: on the role of the Planck constant in Bell’s argument.Andrei Khrennikov - 2021 - Foundations of Physics 51 (1):1-12.
    We present a quantum mechanical analysis of Bell’s approach to quantum foundations based on his hidden-variable model. We claim and try to justify that the Bell model contradicts to the Heinsenberg’s uncertainty and Bohr’s complementarity principles. The aim of this note is to point to the physical seed of the aforementioned principles. This is the Bohr’s quantum postulate: the existence of indivisible quantum of action given by the Planck constant h. By contradicting these basic principles of QM, Bell’s model (...)
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  30.  74
    What’s the Problem with the Cosmological Constant?Mike D. Schneider - 2020 - Philosophy of Science 87 (1):1-20.
    The “Cosmological Constant Problem” is widely considered a crisis in contemporary theoretical physics. Unfortunately, the search for its resolution is hampered by open disagreement about what is, strictly, the problem. This disagreement stems from the observation that the CCP is not a problem within any of our current theories, and nearly all of the details of those future theories for which the CCP could be made a problem are up for grabs. Given this state of affairs, I discuss how one (...)
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  31.  11
    Pre-Modern Philosophy Defended.William H. Marshner (ed.) - 2014 - South Bend, IN: St. Augustine's Press.
    "Pre-modern philosophy" means the line of reflection that started with Plato andvAristotle, passed through Augustine and Boethius, and reached its acme in Aquinas, Scotus, and Suarez. The whole line was harshly judged by Descartes, then mocked by the empiricsts of the 18th Century. Why, then, did Pope Leo XII make a determined effort to revive it? And, more importantly, why was the revival a stunning success by the middle of the 20th Century? The answers to both questions are found (...)
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  32.  54
    The Metaphysics of Quantities.J. E. Wolff - 2020 - Oxford: Oxford University Press.
    What are physical quantities, and in particular, what makes them quantitative? This book presents an original answer to this question through the novel position of substantival structuralism, arguing that quantitativeness is an irreducible feature of attributes, and quantitative attributes are best understood as substantival structured spaces.
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  33.  19
    Deciphering the physical meaning of Gibbs’s maximum work equation.Robert T. Hanlon - 2024 - Foundations of Chemistry 26 (1):179-189.
    J. Willard Gibbs derived the following equation to quantify the maximum work possible for a chemical reaction$${\text{Maximum work }} = \, - \Delta {\text{G}}_{{{\text{rxn}}}} = \, - \left( {\Delta {\text{H}}_{{{\text{rxn}}}} {-}{\text{ T}}\Delta {\text{S}}_{{{\text{rxn}}}} } \right) {\text{ constant T}},{\text{P}}$$ Maximum work = - Δ G rxn = - Δ H rxn - T Δ S rxn constant T, P ∆Hrxn is the enthalpy change of reaction as measured in a reaction calorimeter and ∆Grxn the change in Gibbs energy as measured, if (...)
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  34. The reconciliation of physics with cosmology.M. A. Oliver - 1991 - Foundations of Physics 21 (6):665-689.
    Astronomical observations of redshifts and the cosmic background radiation show that there is a local frame of reference relative to which the solar system has a well-defined velocity. Also, in cosmology the cosmological principle implies the existence of cosmic time and unique local reference frames at all spacetime points. On the other hand, in a fundamental postulate, the theory of special relativity excludes the possibility of the velocity of the Earth from entering into theories of local physics.The theory put forward (...)
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  35.  17
    On the early thermodynamic and kinetic deductions of the equilibrium constant equation.Juan Quílez - 2020 - Foundations of Chemistry 23 (1):85-103.
    After briefly presenting the first formulation of the equilibrium constant stated by Guldberg and Waage, this study examines the early thermodynamic and kinetic deductions of the equilibrium law. Firstly, it is discussed how Horstmann applied the concept of entropy to chemical equilibrium reactions, which meant the first thermodynamic explanation of the Guldberg-Waage law of mass action proposed in 1864. A different theoretical derivation of the equilibrium constant came from the works of van’t Hoff. This study analyses the first accurate kinetic (...)
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  36. Kuhn’s ‘5th Law of Thermodynamics’: Measurement, Data, and Anomalies.Alisa Bokulich & Federica Bocchi - 2024 - In K. Brad Wray (ed.), Kuhn's The Structure of Scientific Revolutions at 60. Cambridge University Press.
    We reconstruct Kuhn’s philosophy of measurement and data paying special attention to what he calls the “fifth law of thermodynamics”. According to this "law," there will always be discrepancies between experimental results and scientists’ prior expectations. The history of experiments to determine the values of the fundamental constants offers a striking illustration of Kuhn’s fifth law of thermodynamics, with no experiment giving quite the expected result. We highlight the synergy between Kuhn’s view and the systematic project of iteratively (...)
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  37. 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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  38. THE PHILOSOPHY OF GILLES DELEUZE - ALEXIS KARPOUZOS.Alexis Karpouzos - 2024 - Philosophy in Review 1:10.
    Difference and Repetition: Deleuze’s magnum opus, “Difference and Repetition” (1968), explores the interplay between difference and repetition. He argues that difference is fundamental to reality, and repetition is not mere duplication but a creative force. Deleuze challenges conventional notions of identity and sameness, emphasizing the productive potential of difference. Gilles Deleuze’s “Difference and Repetition” is a seminal work that challenges traditional Western metaphysics and offers a fresh perspective on concepts like identity, repetition, and creativity. Let’s explore some key ideas from (...)
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  39.  51
    The Unity of Chemistry and Physics: Absolute Reaction Rate Theory.Hinne Hettema - 2012 - Hyle 18 (2):145 - 173.
    Henry Eyring's absolute rate theory explains the size of chemical reaction rate constants in terms of thermodynamics, statistical mechanics, and quantum chemistry. In addition it uses a number of unique concepts such as the 'transition state'. A key feature of the theory is that the explanation it provides relies on the comparison of reaction rate constant expressions derived from these individual theories. In this paper, the example is used to develop a naturalized notion of reduction and the unity of (...)
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  40. The quantum vacuum and the cosmological constant problem.E. S. & H. Zinkernagel - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (4):663-705.
    The cosmological constant problem arises at the intersection between general relativity and quantum field theory, and is regarded as a fundamental problem in modern physics. In this paper, we describe the historical and conceptual origin of the cosmological constant problem which is intimately connected to the vacuum concept in quantum field theory. We critically discuss how the problem rests on the notion of physically real vacuum energy, and which relations between general relativity and quantum field theory are assumed in order (...)
     
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  41.  17
    Indigenous Philosophy and the Quest for Indigenous Self-Determination.Noel G. Ramiscal - 2013 - Philosophia: International Journal of Philosophy (Philippine e-journal) 14 (2):216-232.
    The signing of the 2007 UN Declaration of the Rights of Indigenous Peoples by over a hundred states is a realization of the importance of the quest of indigenous peoples to direct their present and future existence, together with the knowledge and heritage they have acquired from their ancestors which they constantly mould to survive and thrive in a contemporary world made up of competing interests that are often at odds with their physical, cultural, and spiritual survival. The paper (...)
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  42.  63
    (1 other version)Monadology, Information, and Physics, Part 2: Space and Time.Soshichi Uchii - unknown
    In Part 2, drawing on the results of Part 1, I will present my own interpretation of Leibniz’s philosophy of space and time. As regards Leibniz’s theory of geometry and space, De Risi’s excellent work appeared in 2007, so I will depend on this work. However, he does not deal with Leibniz’s view on time, and moreover, he seems to misunderstand the essential part of Leibniz’s view on time. Therefore I will begin with Richard Arthur’s paper, and J. A. (...)
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  43. Can planck's constant be measured with classical mechanics?Hasok Chang - 1997 - International Studies in the Philosophy of Science 11 (3):223 – 243.
    An interesting case of the complex interaction between theory and experiment can be found in many experiments in quantum physics employing classical reasoning. It is expected that this practice would lead to quantitative inaccuracy, unless the measurements' results were averaged. Whether or not this inaccuracy is significant depends critically on the details of the particular experimental situation. The example of Millikan's photoelectric experiment, in which he obtained a precise value of Planck's constant, provides a good case for illustrating the process (...)
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  44.  59
    Betting on Future Physics.Mike D. Schneider - 2022 - British Journal for the Philosophy of Science 73 (1):161-183.
    The ‘cosmological constant problem’ has historically been understood as describing a conflict between cosmological observations in the framework of general relativity and theoretical predictions from quantum field theory, which a future theory of quantum gravity ought to resolve. I argue that this view of the CCP is best understood in terms of a bet about future physics made on the basis of particular interpretational choices in GR and QFT, respectively. Crucially, each of these choices must be taken as itself grounded (...)
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  45. First Philosophy and Natural Philosophy in Descartes.Gary Hatfield - 1985 - In Alan Holland (ed.), Philosophy, Its History and Historiography. Reidel. pp. 149-164.
    Descartes was both metaphysician and natural philosopher. He used his metaphysics to ground portions of his physics. However, as should be a commonplace but is not, he did not think he could spin all of his physics out of his metaphysics a priori, and in fact he both emphasized the need for appeals to experience in his methodological remarks on philosophizing about nature and constantly appealed to experience in describing his own philosophy of nature. During the 1630s, he offered (...)
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  46.  50
    Philosophy of Change Management.S. K. Singh - 2008 - Proceedings of the Xxii World Congress of Philosophy 29:157-163.
    The persons who adapt to changes as may be necessary in the course of their existence not only survive in the struggle for existence but also thrive and enjoy their lives in the best possible way under the given circumstances. For, life consists in various relationships, which are in constant movement and change.Therefore dealing with change or change-management has got pivotal importance in all walks of humans’ lives. In order to facilitate smooth change all big and small inheritances have to (...)
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  47. Hilbert Mathematics versus Gödel Mathematics. III. Hilbert Mathematics by Itself, and Gödel Mathematics versus the Physical World within It: both as Its Particular Cases.Vasil Penchev - 2023 - Philosophy of Science eJournal (Elsevier: SSRN) 16 (47):1-46.
    The paper discusses Hilbert mathematics, a kind of Pythagorean mathematics, to which the physical world is a particular case. The parameter of the “distance between finiteness and infinity” is crucial. Any nonzero finite value of it features the particular case in the frameworks of Hilbert mathematics where the physical world appears “ex nihilo” by virtue of an only mathematical necessity or quantum information conservation physically. One does not need the mythical Big Bang which serves to concentrate all the (...)
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  48. Towards a Coherent Theory of Physics and Mathematics: The Theory–Experiment Connection.Paul Benioff - 2005 - Foundations of Physics 35 (11):1825-1856.
    The problem of how mathematics and physics are related at a foundational level is of interest. The approach taken here is to work towards a coherent theory of physics and mathematics together by examining the theory experiment connection. The role of an implied theory hierarchy and use of computers in comparing theory and experiment is described. The main idea of the paper is to tighten the theory experiment connection by bringing physical theories, as mathematical structures over C, the complex (...)
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  49. Physics and Astronomy in 18th Century Painting in the Context of Religious and Mythological Thinking of the Epoch.Агратина Е.Е - 2025 - Philosophy and Culture (Russian Journal) 1:40-51.
    The Age of Enlightenment was characterized by passionate scientific discussions, which involved not only scientists, but also representatives of various social circles. Sciences such as physics and astronomy are becoming a hobby and entertainment, scientific experiments are being conducted at home, friends and acquaintances are invited to conduct them, and amateur scientific courses are being organized. The article highlights how these processes were reflected in the painting of the XVIII century. Science is considered not only as a widespread subject in (...)
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    Pre-Modern Philosophy Defended.Josef Kleutgen - 2014 - South Bend, IN: St. Augustine's Press.
    "Pre-modern philosophy" means the line of reflection that started with Plato andvAristotle, passed through Augustine and Boethius, and reached its acme in Aquinas, Scotus, and Suarez. The whole line was harshly judged by Descartes, then mocked by the empiricsts of the 18th Century. Why, then, did Pope Leo XII make a determined effort to revive it? And, more importantly, why was the revival a stunning success by the middle of the 20th Century? The answers to both questions are found (...)
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