Results for 'Einstein, Lorentz, Poincare, Lewis, Mach, Duhem, Planck, Kant'

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  1. The Second Scientific Revolution: Genesis and Advancement of Non-Classical Science.Rinat M. Nugayev - 2023 - Moscow: Triumph Publishers.
    What were the true reasons of the second scientific revolution? – To answer the question, the epistemic model is applied, according to which radical breakthroughs in science were not due to the fanciful excogitation of new ideas ‘ex nihilo’, but rather to the tedious, long-term and troublesome processes of the mutual lapping, reconciliation, interpenetration and intertwinement of ‘old’ research traditions preceding such breaks. It is contended that Einstein's 'annus mirabilis' constituted an acme of the second scientific revolution. To fathom in (...)
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  2. Understanding Scientific Progress: Aim-Oriented Empiricism.Nicholas Maxwell - 2017 - St. Paul, USA: Paragon House.
    "Understanding Scientific Progress constitutes a potentially enormous and revolutionary advancement in philosophy of science. It deserves to be read and studied by everyone with any interest in or connection with physics or the theory of science. Maxwell cites the work of Hume, Kant, J.S. Mill, Ludwig Bolzmann, Pierre Duhem, Einstein, Henri Poincaré, C.S. Peirce, Whitehead, Russell, Carnap, A.J. Ayer, Karl Popper, Thomas Kuhn, Imre Lakatos, Paul Feyerabend, Nelson Goodman, Bas van Fraassen, and numerous others. He lauds Popper for advancing (...)
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  3. Reconstruction of the Process of Fundamental Theory Change.Rinat M. Nugayev - 1989 - Kazan University Press.
    What are the reasons for theory change in science? –To give a sober answer a comprehensible model is proposed based on the works of V.P. Bransky, P. Feyerabend , T.S. Kuhn, I. Lakatos, K.R.Popper, V.S. Scwvyrev, Ya. Smorodinsky, V.S. Stepin, and others. According to model the origins of scientific revolutions lie not in a clash of fundamental theories with facts, but of “old” basic research traditions with each other, leading to contradictions that can only be eliminated in a more general (...)
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  4. Special Relativity as a Stage in the Development of Quantum Theory: A New Outlook of Scientific Revolution.Rinat M. Nugayev - 1988 - Historia Scientiarum (34):57-79.
    To comprehend the special relativity genesis, one should unfold Einstein’s activities in quantum theory first . His victory upon Lorentz’s approach can only be understood in the wider context of a general programme of unification of classical mechanics and classical electrodynamics, with relativity and quantum theory being merely its subprogrammes. Because of the lack of quantum facets in Lorentz’s theory, Einstein’s programme, which seems to surpass the Lorentz’s one, was widely accepted as soon as quantum theory became a recognized part (...)
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  5. Einstein's Revolution: A Study in Theory Unification.Rinat M. Nugayev - 2018 - Sharjah, UAE: Bentham science publishers.
    Press release. -/- The ebook entitled, Einstein’s Revolution: A Study of Theory-Unification, gives students of physics and philosophy, and general readers, an epistemological insight into the genesis of Einstein’s special relativity and its further unification with other theories, that ended well by the construction of general relativity. The book was developed by Rinat Nugayev who graduated from Kazan State University relativity department and got his M.Sci at Moscow State University department of philosophy of science and Ph.D at Moscow Institute of (...)
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  6. Einstein's Bergson Problem.Jimena Canales - 2016 - In Yuval Dolev & Michael Roubach (eds.), Boston Studies in the Philosophy and History of Science. Springer. pp. 53-72.
    Does a privileged frame of reference exist? Part of Einstein’s success consisted in eliminating Bergson’s objections to relativity theory, which were consonant with those of the most important scientists who had worked on the topic: Henri Poincaré, Hendrik Lorentz and Albert A. Michelson. In the early decades of the century, Bergson’s fame, prestige and influence surpassed that of the physicist. Once considered as one of the most renowned intellectuals of his era and an authority on the nature of time, The (...)
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  7. Einstein's Scientific Revolution (1898-1915): interdisciplinary Context.Rinat M. Nugayev (ed.) - 2010 - Logos: Innovative Technologies Center.
    What are the reasons of the second scientific revolution that happened at the beginning of the XX century? Why did the new physics supersede the old one? The author tries to answer the subtle questions with a help of the epistemological model of scientific revolutions that takes into account some recent advances in philosophy, sociology and history of science. According to the model, Einstein’s Revolution took place due to resolution of deep contradictions between the basic classical research traditions: Newtonian mechanics, (...)
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  8. What Does it Mean to Orient Oneself in Science? On Ernst Mach’s Pragmatic Epistemology.Pietro Gori - 2019 - In Friedrich Stadler (ed.), Ernst Mach – Life, Work, Influence. Springer Verlag. pp. 525-536.
    The paper aims to investigate some aspects of Ernst Mach’s epistemology in the light of the problem of human orientation in relation to the world (Weltorientierung), which is a main topic of Western philosophy since Kant. As will be argued, Mach has been concerned with that problem, insofar as he developed an original pragmatist epistemology. In order to support my argument, I firstly investigate whether Mach defended a nominalist or a realist account of knowledge and compare his view to (...)
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  9. Reconstruction of Mature Theory Change: A Theory-Change Model.Rinat M. Nugayev - 1999 - Peter Lang.
    A comprehensible model is proposed aimed at an analysis of the reasons for theory change in science. According to the model the origins of scientific revolutions lie not in a clash of fundamental theories with facts, but of “old” fundamental theories with each other, leading to contradictions that can only be eliminated in a more general theory. The model is illustrated with reference to physics in the early 20th century, the three “old” theories in this case being Maxwellian electrodynamics, statistical (...)
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  10. Special Relativity As A Step Of Synthesis Of Mechanics And Electrodynamics.Rinat M. Nugayev - 1986 - Scientia 80 (121):87.
    An attempt to revise the special relativity genesis at the expense of comprehending all Einstein’s 1905 papers as a whole is provided. It is argued that light quanta hypothesis and special relativity turn out to be mere stages of implementation of the programme of maxwellian electrodynamics, statistical mechanics and thermodynamics reconciliation. The conception of luminiferous ether was an insurmountable stumbling block for Einstein’s statistical thermodynamics programme in which the leading role was played by the light quanta paper . Einstein’s 1905 (...)
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  11. Kant on Propositional Content and Knowledge.Lewis Wang - 2023 - Kant Yearbook 15 (1):175-196.
    This paper explores Kant’s account of propositional content and its implications for the relationship between his notions of knowledge (Wissen) and cognition (Erkenntnis). While previous commentators commonly read Kant as holding a Fregean theory of propositional content, in this paper I argue that Kant’s theory of propositional content aligns more closely with Peter Hanks’ recent account. According to my reading, Kant holds that individual acts of judging are both ontologically and explanatorily prior to propositions or Kantian (...)
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  12. Figures of Light in the Early History of Relativity.Scott A. Walter - 2018 - In David E. Rowe, Tilman Sauer & Scott A. Walter (eds.), Beyond Einstein: Perspectives on Geometry, Gravitation, and Cosmology in the Twentieth Century. New York, USA: Springer New York. pp. 3-50.
    Albert Einstein’s bold assertion of the form invariance of the equation of a spherical light wave with respect to inertial frames of reference became, in the space of 6 years, the preferred foundation of his theory of relativity. Early on, however, Einstein’s universal light-sphere invariance was challenged on epistemological grounds by Henri Poincaré, who promoted an alternative demonstration of the foundations of relativity theory based on the notion of a light ellipsoid. A third figure of light, Hermann Minkowski’s lightcone also (...)
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  13. Figures of light in the early history of relativity (1905-1914).Scott A. Walter - 2018 - In David Rowe (ed.), Einstein Studies. Birkhäuser. pp. 3-50.
    Albert Einstein's bold assertion of the form-invariance of the equation of a spherical light wave with respect to inertial frames of reference became, in the space of six years, the preferred foundation of his theory of relativity. Early on, however, Einstein's universal light-sphere invariance was challenged on epistemological grounds by Henri Poincaré, who promoted an alternative demonstration of the foundations of relativity theory based on the notion of a light-ellipsoid. Drawing in part on archival sources, this paper shows how an (...)
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  14. Time as an Empirical Concept in Special Relativity.Matias Slavov - 2019 - Review of Metaphysics 73 (2):335-353.
    According to a widespread view, Einstein’s definition of time in his special relativity is founded on the positivist verification principle. The present paper challenges this received outlook. It shall be argued that Einstein’s position on the concept of time, to wit, simultaneity, is best understood as a mitigated version of concept empiricism. He contrasts his position to Newton’s absolutist and Kant’s transcendental arguments, and in part sides with Hume’s and Mach’s empiricist arguments. Nevertheless, Einstein worked out a concept empiricism (...)
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  15. In General Relativity, gravity is effect of coordinates with change of geometry of spacetime.Alfonso Leon Guillen Gomez - manuscript
    Einstein structured the theoretical frame of his work on gravity under the Special Relativity and Minkowski´s spacetime using three guide principles: The strong principle of equivalence establishes that acceleration and gravity are equivalents. Mach´s principle explains the inertia of the bodies and particles as completely determined by the total mass existent in the universe. And, general covariance searches to extend the principle of relativity from inertial motion to accelerated motion. Mach´s principle was abandoned quickly, general covariance resulted mathematical property of (...)
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  16. The Early Development of Kant’s Practical Notion of Belief.Kuizhi Lewis Wang - forthcoming - Inquiry: An Interdisciplinary Journal of Philosophy.
    In the first Critique, Kant famously holds a novel practical notion of Belief (Glauben) as assent justified not by evidence but by practical considerations. This paper examines the early development of Kant’s practical notion of Belief prior to the first Critique. It aims to make clear what prompted Kant to develop this notion in the first place, and how this notion came to assume its crucial role in Kant’s critical system. This development, I argue, has two (...)
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  17. Race in Early Modern Philosophy. [REVIEW]Dwight Lewis - 2016 - Societate Şi Politică 10 (1):67-69.
    The ethos of Justin Smith’s Nature, Human Nature, & Human Difference is expressed in the narrative of Anton Wilhelm Amo (~1703-53), an African-born​ slave who earned his doctoral degree in Philosophy at a European university and went on to teach at the Universities of Jena and Halle. Smith identifies Amo as a time-marker for diverging interpretations of race: race as inherently tethered to physical difference and race as inherited essential difference. Further, these interpretations of race are fastened to the discourse (...)
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  18. Origin and Resolution of Theory-Choice Situations in Modern Theory of gravity.Rinat M. Nugayev - 1987 - Methodology and Science 20 (4):177-197.
    A methodological model of origin and settlement of theory-choice situations (previously tried on the theories of Einstein and Lorentz in electrodynamics) is applied to modern Theory of Gravity. The process of origin and growth of empirically-equivalent relativistic theories of gravitation is theoretically reproduced. It is argued that all of them are proposed within the two rival research programmes – (1) metric (A. Einstein et al.) and (2) nonmetric (H. Poincare et al.). Each programme aims at elimination of the cross-contradiction between (...)
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  19. [Early First Draft] Must Minkowski Spacetime be Categorized as Pseudoscience? (Revisiting the legitimacy of Mansouri-Sexl test theory).Shiva Meucci - manuscript
    Here we discuss and hope to solve a problem rooted in the necessity of the study of historical science, the slow deviation of physics education over the past century, and how the loss of crucial contextual tool has debilitated discussion of a very important yet specialized physics sub-topic: the isotropy of the one-way speed of light. Most notably, the information that appears to be most commonly missing is not simply the knowledge of the historical fact that Poincare and Lorentz presented (...)
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  20. Levinas and 'Finite Freedom'.James H. P. Lewis & Simon Thornton - 2023 - In Joe Saunders (ed.), Freedom After Kant: From German Idealism to Ethics and the Self. Blackwell's.
    The ethical philosophy of Emmanuel Levinas is typically associated with a punishing conception of responsibility rather than freedom. In this chapter, our aim is to explore Levinas’s often overlooked theory of freedom. Specifically, we compare Levinas’s account of freedom to the Kantian (and Fichtean) idea of freedom as autonomy and the Hegelian idea of freedom as relational. Based on these comparisons, we suggest that Levinas offers a distinctive conception of freedom—“finite freedom.” In contrast to Kantian autonomy, finite freedom constitutively involves (...)
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  21. Konwencjonalizm a realizm: Poincaré i Duhem wobec statusu poznawczego nauk przyrodniczych.Mateusz Kotowski - 2016 - Przeglad Filozoficzny - Nowa Seria 99 (3):103-118.
    W pierwszej połowie XX wieku przyjęło się upatrywać w poglądach H. Poincarégo i P. Duhema przykładów antyrealistycznego stanowiska odnośnie do nauki i jej teorii. Etykietka ta przylgnęła do tych autorów tak mocno, że coraz częstszym dzisiaj głosom tych, którzy sprzeciwiają się takiemu szufladkowaniu ich filozofii, trudno jest przebić się do głównego nurtu dyskusji filozoficznych. W artykule wskazuję, że odczytywanie poglądów obu francuskich autorów jako antyrealistycznych nie znajduje potwierdzenia w ich własnych wypowiedziach. Przeciwnie, ich prace dostarczają mocnych świadectw na rzecz upatrywania (...)
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  22. (2023) Hypermetaphysics.Gabriel Vacariu - manuscript
    Content Introduction I. EDWs, the Hypernothing (EW0) and Physics Chapter 1 The principles of “epistemologically different worlds” perspective 1.1 The principles concerning existence and interactions of objects 1.2 Epistemologically Different Worlds (EDWs) 1.3 The chains of EDWs Chapter 2 The “Big Bang” (from actual Physics) versus Hypermetaphysics: the EDWs perspective regarding the accidental appearances of the first EDWs (the EW1a-n) in hypercorrespondences to Hypernothing (the EW0) 2.1 The history of “Universe” in Cosmology today 2.2 Classification of (hyper)correspondences 2.3 The rejection (...)
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  23. A Study on Invariance of Temporal Coincidence.Andrew Wutke - manuscript
    This paper presents an attempt to define temporal coincidence starting from the first principles. The temporal coincidence defined here differs from Einstein’s simultaneity for it is invariant across inertial frames - not relative. The meaning and significance of temporal coincidence is derived from axioms of existence and it somehow relates to Kant’s notion of simultaneity. Consistentl y applied to the Special Theory of Relativity framework, temporal coincidence does not in any way create mathematical contradictions; however it allows looking at (...)
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  24. From the History of Physics to the Discovery of the Foundations of Physics,.Antonino Drago - manuscript
    FROM THE HISTORY OF PHYSICS TO THE DISCOVERY OF THE FOUNDATIONS OF PHYSICS By Antonino Drago, formerly at Naples University “Federico II”, Italy – drago@unina,.it (Size : 391.800 bytes 75,400 words) The book summarizes a half a century author’s work on the foundations of physics. For the forst time is established a level of discourse on theoretical physics which at the same time is philosophical in nature (kinds of infinity, kinds of organization) and formal (kinds of mathematics, kinds of logic). (...)
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  25. The history of quantum mechanics as a decisive argument favoring Einstein over lorentz.R. M. Nugayev - 1985 - Philosophy of Science 52 (1):44-63.
    PHILOSOPHY OF SCIENCE, vol. 52, number 1, pp.44-63. R.M. Nugayev, Kazan State |University, USSR. -/- THE HISTORY OF QUANTUM THEORY AS A DECISIVE ARGUMENT FAVORING EINSTEIN OVER LJRENTZ. -/- Abstract. Einstein’s papers on relativity, quantum theory and statistical mechanics were all part of a single research programme ; the aim was to unify mechanics and electrodynamics. It was this broader program – which eventually split into relativistic physics and quantummmechanics – that superseded Lorentz’s theory. The argument of this paper is (...)
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  26. The Kantian Grounding of Einstein’s Worldview.Stephen Palmquist - 2010 - Polish Journal of Philosophy 4 (1):45-64.
    Recent perspectival interpretations of Kant suggest a way of relating his epistemology to empirical science that makes it plausible to regard Einstein’stheory of relativity as having a Kantian grounding. This first of two articles exploring this topic focuses on how the foregoing hypothesis accounts for variousresonances between Kant’s philosophy and Einstein’s science. The great attention young Einstein paid to Kant in his early intellectual development demonstrates the plausibility of this hypothesis, while certain features of Einstein’s cultural-political context (...)
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  27. Poincaré on the Foundation of Geometry in the Understanding.Jeremy Shipley - 2017 - In Maria Zack & Dirk Schlimm (eds.), Research in History and Philosophy of Mathematics: The CSHPM 2016 Annual Meeting in Calgary, Alberta. New York: Birkhäuser. pp. 19-37.
    This paper is about Poincaré’s view of the foundations of geometry. According to the established view, which has been inherited from the logical positivists, Poincaré, like Hilbert, held that axioms in geometry are schemata that provide implicit definitions of geometric terms, a view he expresses by stating that the axioms of geometry are “definitions in disguise.” I argue that this view does not accord well with Poincaré’s core commitment in the philosophy of geometry: the view that geometry is the study (...)
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  28. Ernst Mach and the Theory of Relativity.Gereon Wolters - 1984 - Philosophia Naturalis 21 (2/4):630-341.
    This article shows that those texts, attributed to Ernst Mach, that reject relativity theory are posthumous forgeries.
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  29. Metaphysics for Positivists: Mach Versus the Vienna Circle.Erik C. Banks - 2013 - Discipline Filosophiche 23 (1):57-77.
    This article distinguishes between Machian empiricism and the logical positivism of the Vienna Circle and associated philosophers. Mach's natural philosophy was a first order attempt to reform and reorganize physics, not a second order reconstruction of the "language" of physics. Mach's elements were not sense data but realistic events in the natural world and in minds, and Mach admitted unobserved elements as part of his world view. Mach's critique of metaphysics was far more subtle and concerned the elimination of sensory (...)
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  30. Hiromatsu on Mach’s Philosophy and Relativity Theory.Makoto Katsumori - 2016 - European Journal of Japanese Philosophy 1:149-188.
    In his project of going beyond the “modern worldview,” Hiromatsu Wataru attached great importance to Ernst Mach’s philosophical thought and Einstein’s theory of relativity as challenging the premises of modern philosophy, which he characterized as substantialist and bound by the subject / object schema. This paper surveys Hiromatsu’s analysis of Mach’s phenomenalist element-monism, specifically his critique of Mach’s insufficient break with modern philosophy; his inquiry into Einstein’s relativity theory with a focus on its intersubjective cognitive structure; and the way he (...)
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  31. Einstein’s 1905 ‘Annus Mirabilis’: Reconciliation of the Basic Research Traditions of Classical Physics.Rinat M. Nugayev - 2019 - Axiomathes 29 (3):207-235.
    To make out in what way Einstein’s manifold 1905 ‘annus mirabilis’ writings hang together one has to take into consideration Einstein’s strive for unity evinced in his persistent attempts to reconcile the basic research traditions of classical physics. Light quanta hypothesis and special theory of relativity turn out to be the contours of a more profound design, mere milestones of implementation of maxwellian electrodynamics, statistical mechanics and thermodynamics reconciliation programme. The conception of luminiferous ether was an insurmountable obstacle for Einstein’s (...)
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  32. Einstein's Revolution: Reconciliation of Mechanics, Electrodynamics and Thermodynamics.Rinat M. Nugayev - 2000 - Physis.Rivista Internazionale Di Storia Della Scienza (1):181-207.
    The aim of this paper is to make a step towards a complete description of Special Relativity genesis and acceptance, bringing some light on the intertheoretic relations between Special Relativity and other physical theories of the day. I’ll try to demonstrate that Special Relativity and the Early Quantum Theory were created within the same programme of statistical mechanics, thermodynamics and Maxwellian electrodynamics reconciliation, i.e. elimination of the contradictions between the consequences of this theories. The approach proposed enables to explain why (...)
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  33. Ernst Mach tra scienza e filosofia.Pietro Gori (ed.) - 2018 - Pisa: ETS.
    Ernst Mach (1838-1916) è stato una figura di riferimento per la cultura scientifica e filosofica tardo-ottocentesca e dei primi decenni del Novecento. Le sue ricerche in fisica e psicologia, così come il lavoro epistemologico che emerge dalle pagine di opere quali La meccanica nel suo sviluppo storico-critico e Conoscenza ed errore, hanno influito notevolmente su molti autori a lui contemporanei. In questi testi, Mach delinea una concezione antimetafisica del pensiero scientifico e una concezione biologico-evolutiva della conoscenza umana che si ritrovano (...)
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  34. Pierre Duhem’s philosophy and history of science.Jean-François Stoffel & Fábio Rodrigo Leite - 2017 - Transversal : International Journal for the Historiography of Science 2:3-165.
    LEITE (Fábio Rodrigo) – STOFFEL (Jean-François), Introduction (pp. 3-6). BARRA (Eduardo Salles de O.) – SANTOS (Ricardo Batista dos), Duhem’s analysis of Newtonian method and the logical priority of physics over metaphysics (pp. 7-19). BORDONI (Stefano), The French roots of Duhem’s early historiography and epistemology (pp. 20-35). CHIAPPIN (José R. N.) – LARANJEIRAS (Cássio Costa), Duhem’s critical analysis of mecha­ni­cism and his defense of a formal conception of theoretical phy­sics (pp. 36-53). GUEGUEN (Marie) – PSILLOS (Stathis), Anti-­scepticism and epistemic humility (...)
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  35. Einstein y las ondas gravitacionales.Alfonso Leon Guillen Gomez - manuscript
    El autor presenta la historia de las ondas gravitacionales según Einstein, uniéndola a su biografía y a su época con el fin de comprenderla en su conexión con la historia de los semitas, la personalidad de Einstein en el manejo de sus circunstancias generadoras de conflicto en sus relaciones de competencia con sus colegas y en la formulación de la llamada teoría general de la relatividad. Recaeremos en las vicisitudes que vivió Einstein en el tránsito de que su trabajo científico (...)
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  36. Einstein and gravitational waves.Alfonso Leon Guillen Gomez - manuscript
    The author presents the history of gravitational waves according to Einstein, linking it to his biography and his time in order to understand it in his connection with the history of the Semites, the personality of Einstein in the handling of his conflict-generating circumstances in his relationships competition with his colleagues and in the formulation of the so-called general theory of relativity. We will fall back on the vicissitudes that Einstein experienced in the transition from his scientific work to normal (...)
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  37. Einstein's gravitation is Einstein-Grossmann's equations.Alfonso Leon Guillen Gomez - 2015 - Journal of Advances in Physics 11 (3):3099-3110.
    While the philosophers of science discuss the General Relativity, the mathematical physicists do not question it. Therefore, there is a conflict. From the theoretical point view “the question of precisely what Einstein discovered remains unanswered, for we have no consensus over the exact nature of the theory 's foundations. Is this the theory that extends the relativity of motion from inertial motion to accelerated motion, as Einstein contended? Or is it just a theory that treats gravitation geometrically in the spacetime (...)
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  38. A função e natureza das convenções e hipóteses segundo o convencionalismo francês da virada do século XIX para o XX: relações entre ciência e metafísica nas obras de Henri Poincaré, Pierre Durem e Édouard Le Roy.Andre Philot - 2015 - Dissertation, Rio de Janeiro State University
    In this work we present the function and we determine the nature of conventions and hypotheses for the scientific foundations according with the conventionalist doctrine that arose in France during the turning of the XIX century to the XX. The doctrine was composed by Henri Poincaré, Pierre Duhem and Édouard Le Roy. Moreover, we analyze the relation that conventions and hypotheses can establish with metaphysical thesis through criteria used by scientists in order to determine the preference for certain theories. Thereunto, (...)
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  39. A. Brenner (édit.), «Les textes fondateurs de l’épistémologie française: Duhem, Poincaré, Brunschvicg et autres philosophes». [REVIEW]Jean-François Stoffel - 2017 - Revue des Questions Scientifiques 188:209-210.
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  40. The Analytic Pragmatist Conception of the A Priori: C. I. Lewis and Wilfrid Sellars.James O'Shea - 2017 - In Sarin Marchetti & Maria Baghramian (eds.), Pragmatism and the European Traditions: Encounters with Analytic Philosophy and Phenomenology Before the Great Divide. London and New York: Routledge. pp. 203–227.
    ABSTRACT: It is a familiar story that Kant’s defence of our synthetic a priori cognition in the Critique of Pure Reason suffered sharp criticism throughout the extended philosophical revolutions that established analytic philosophy, the pragmatist tradition, and the phenomenological tradition as dominant philosophical movements in the first half of the twentieth century. One of the most important positive adaptations of Kant’s outlook, however, was the combined analytic and pragmatist conceptions of the a priori that were developed by the (...)
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  41. Revisiting the Maxim-Law Dynamic in the Light of Kant’s Theory of Action.V. K. Radhakrishnan - 2019 - Kantian Journal 38 (2):45-72.
    A stable classification of practical principles into mutually exclusive types is foundational to Kant’s moral theory. Yet, other than a few brief hints on the distinction between maxims and laws, he does not provide any elaborate discussion on the classification and the types of practical principles in his works. This has led Onora O’Neill and Lewis Beck to reinterpret Kant’s classification of practical principles in a way that would clarify the conceptual connection between maxims and laws. In this (...)
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  42. Kant on de se.Luca Forgione - 2018 - In Violetta L. Waibel, Margit Ruffing & David Wagner (eds.), Natur und Freiheit. Akten des XII. Internationalen Kant-Kongresses. De Gruyter. pp. 3779-3786.
    Since the classic works by Castañeda, Perry and Lewis, de se thoughts have been described as thoughts about oneself ‘as oneself’. In recent years, various theoretical perspectives have gained ground, and even if the transcendental system does not seem to contemplate an explicit articulation of de se thoughts, apparently a few features of transcendental apperception and I think do anticipate a few points in Perry and Recanati’s claims on the so-called implicit de se thoughts in the specific terms of Transcendentalism.
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  43. Kant’s Theoretical Philosophy: The ‘Analytic’ Tradition.James O'Shea - 2022 - In Mark Timmons & Sorin Baiasu (eds.), The Kantian Mind. London and New York: Routledge.
    ABSTRACT: In a previous article (O’Shea 2006) I provided a concise overview of the reception of Kant’s philosophy among analytic philosophers during the periods from the ‘early analytic’ reactions to Kant in Frege, Russell, Carnap and others, to the systematic Kant-inspired works in epistemology and metaphysics of C. I. Lewis and P. F. Strawson, in particular. In this chapter I use the recently reinvigorated work of Wilfrid Sellars (1912–1989) in the second half of the twentieth century as (...)
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  44. The Simplicity of Disproving the Theory of Special Relativity.Denis Thomas - 2022 - Science and Philosophy 10 (1):111-120.
    Einstein’s theory of Special relativity is founded on an error made by Hendrick Lorentz. It is not necessary to expose the mathematical inconsistencies of special relativity, since the theory collapses by simply exposing the error made by Lorentz. In doing so, it not only causes special relativity to collapse, but also general relativity, and the many theories built upon these two deceptive theories. There are many claims of tests made which supposedly prove SR or GR, such as the eclipse of (...)
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  45. Special Relativity in Superposition.Ted Dace - 2022 - Axiomathes 32 (2):199-213.
    By deriving the Lorentz transformation from the absolute speed of light, Einstein demonstrated the relativistic variability of space and time, enabling him to explain length contraction and time dilation without recourse to a "luminiferous ether" or preferred frame of reference. He also showed that clocks synchronized at a distance via light signals are not synchronized in a frame of reference differing from that of the clocks. However, by mislabeling the relativity of synchrony the "relativity of simultaneity," Einstein implied that this (...)
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  46. Phenomenology and Physics: Approximation of Husserl's Ideas to Einstein's Theory of General Relativity.Ruth Castillo - 2018 - In Fabio Minazzi (ed.), Centro Filosofico Internzionale Carlo Cattaneo e Giulio Pretti.
    En las actividades ordinarias de nuestra vida cotidiana encontramos nuestros actos de percepción confrontados por las cosas materiales. A ellos ─actos de percepción─ les atribuimos una existencia "real" asumiéndolos de tal manera que los sumergimos y transfundimos, de forma múltiple e indefinida, dentro del entorno de realidades análogas que se unen para formar un único mundo al que yo, con mi propio cuerpo, pertenezco. Ahora bien sí frente a la cotidianidad descrita anteriormente asumimos una actitud escéptica acerca de lo que (...)
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  47. From Einstein's Physics to Neurophilosophy: On the notions of space, time and field as cognoscitive conditions under Kantian-Husserlian approach in the General Relativity Theory.Ruth Castillo - forthcoming - Bitácora-E.
    The current technoscientific progress has led to a sectorization in the philosophy of science. Today the philosophy of science isn't is informal interested in studying old problems about the general characteristics of scientific practice. The interest of the philosopher of science is the study of concepts, problems and riddles of particular disciplines. Then, within this progress of philosophy of science, neuroscientific research stands out, because it invades issues traditionally addressed by the humanities, such as the nature of consciousness, action, knowledge, (...)
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  48. Gravity as Archimedes? Thrust and a Bifurcation in that Theory.Mayeul Arminjon - 2004 - Foundations of Physics 34 (11):1703-1724.
    Euler’s interpretation of Newton’s gravity (NG) as Archimedes’ thrust in a fluid ether is presented in some detail. Then a semi-heuristic mechanism for gravity, close to Euler’s, is recalled and compared with the latter. None of these two ‘‘gravitational ethers’’ can obey classical mechanics. This is logical since the ether defines the very reference frame, in which mechanics is defined. This concept is used to build a scalar theory of gravity: NG corresponds to an incompressible ether, a compressible ether leads (...)
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  49. Einstein's Train in Fragmentalist Presentism.Paul Merriam - manuscript
    It is often thought the relativity of simultaneity is inconsistent with presentism. This would be troubling as it conflicts with common sense and—arguably—the empirical data. This note gives a novel fragmentalist-presentist theory that allows for the (non-trivial) relativity of simultaneity. A detailed account of the canonical moving train argument is considered. Alice, standing at the train station, forms her own ontological fragment, in which Bob’s frame of reference, given by the moving train, is modified by the Lorentz transformations. On the (...)
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  50. 2. Programming relativity as the mathematics of perspective in a Planck unit Simulation Hypothesis.Malcolm Macleod - manuscript
    The Simulation Hypothesis proposes that all of reality is in fact an artificial simulation, analogous to a computer simulation. Outlined here is a method for programming relativistic mass, space and time at the Planck level as applicable for use in Planck Universe-as-a-Simulation Hypothesis. For the virtual universe the model uses a 4-axis hyper-sphere that expands in incremental steps (the simulation clock-rate). Virtual particles that oscillate between an electric wave-state and a mass point-state are mapped within this hyper-sphere, the oscillation driven (...)
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