Results for 'Einstein'

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  1. Geometrie und Erfahrung, Berlin 1921.Einstein - 1922 - Kwartalnik Filozoficzny 1 (1):149-150.
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  2. I NTRODUCCIÓN M ucha gente tiende a pensar que con la teoría de la relatividad de Einstein, el concepto de tiempo absoluto de Isaac Newton quedó totalmente refutado. 1 En este trabajo nos proponemos explorar la idea de que, al.Einstein Y. La Noción De Newton - 2001 - Signos Filosóficos 5:65-81.
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  3. Emperor Frederick II.Einstein David G. - 1949
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  4. Jeremy Butterfield.Outcome Dependence & Stochastic Einstein Nonlocaljty - 1994 - In Dag Prawitz & Dag Westerståhl (eds.), Logic and Philosophy of Science in Uppsala. Kluwer Academic Publishers. pp. 385.
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  5.  11
    Ang Pilosopiya ng Laman ni Maurice Merleau-Ponty.Christian Joseph C. Jocson & Marvin Einstein S. Mejaro - 2017 - Kritike 11 (2):70-79.
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  6. Tome XXII—cahier III—juillet-septembre 1959.I. Fetscher Hegel Et le Marxisme, A. Metz Bergson, Einstein Et Les Relativistes, Jcruynsu le & Doute Hyperbolique de - 1959 - Archives de Philosophie 22:321.
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  7.  61
    Einstein's unification.Jeroen van Dongen - 2010 - New York: Cambridge University Press.
    Why did Einstein tirelessly study unified field theory for more than 30 years? In this book, the author argues that Einstein believed he could find a unified theory of all of nature's forces by repeating the methods he used when he formulated general relativity. The book discusses Einstein's route to the general theory of relativity, focusing on the philosophical lessons that he learnt. It then addresses his quest for a unified theory for electromagnetism and gravity, discussing in (...)
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  8.  15
    Einstein Versus Bohr: The Continuing Controversies in Physics.Elie Zahar - 1988 - Open Court Publishing Company.
    Einstein Versus Bohr is unlike other books on science written by experts for non-experts, because it presents the history of science in terms of problems, conflicts, contradictions, and arguments. Science normally "keeps a tidy workshop." Professor Sachs breaks with convention by taking us into the theoretical workshop, giving us a problem-oriented account of modern physics, an account that concentrates on underlying concepts and debate. The book contains mathematical explanations, but it is so-designed that the whole argument can be followed (...)
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  9.  22
    Einstein's Jewish science: physics at the intersection of politics and religion.Steven Gimbel - 2012 - Baltimore: Johns Hopkins University Press.
    Introduction : Einstein's Jewish science -- Is Einstein a Jew? -- Is relativity pregnant with Jewish concepts? -- Why did a Jew formulate the theory of relativity? -- Is the theory of relativity political science or scientific politics? -- Einstein and the Jewish intelligentsia -- Einstein's liberal science? -- Conclusion : Einstein's cosmopolitan science.
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  10.  7
    Einsteins Vision.John Archibald Wheeler - 1968 - New York,: Springer Verlag.
    Am 4. November 1915 legte EINSTEIN seine beriihmte Arbeit "Zur allgemeinen Relativitatstheorie" der PreuBischen Akademie der Wissenschaften zu Berlin vor. 50 Jahre spater organisierte die Deutsche Akademie der Wissenschaften im Andenken daran eine dreitagige Konferenz, in deren Verlauf auch eine Gedenkfeier abgehalten wurde. Ich hatte die Ehre, eine Gedenkrede iiber EINSTEIN und sein Werk zu halten. In der Zwischenzeit wurde unser Wissen urn viele wichtige neue Zusatze erweitert. Wir sehen nun, daB die Dynamik der Einsteinschen Theorie in einem (...)
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  11. Einstein, Incompleteness, and the Epistemic View of Quantum States.Nicholas Harrigan & Robert W. Spekkens - 2010 - Foundations of Physics 40 (2):125-157.
    Does the quantum state represent reality or our knowledge of reality? In making this distinction precise, we are led to a novel classification of hidden variable models of quantum theory. We show that representatives of each class can be found among existing constructions for two-dimensional Hilbert spaces. Our approach also provides a fruitful new perspective on arguments for the nonlocality and incompleteness of quantum theory. Specifically, we show that for models wherein the quantum state has the status of something real, (...)
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  12. Einstein's Role in the Creation of Relativistic Cosmology.Chris Smeenk - 2014 - In Michel Janssen & Christoph Lehner (eds.), The Cambridge Companion to Einstein. Cambridge: Cambridge University Press. pp. 228-269.
    This volume is the first systematic presentation of the work of Albert Einstein, comprising fourteen essays by leading historians and philosophers of science that introduce readers to his work. Following an introduction that places Einstein's work in the context of his life and times, the book opens with essays on the papers of Einstein's 'miracle year', 1905, covering Brownian motion, light quanta, and special relativity, as well as his contributions to early quantum theory and the opposition to (...)
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  13.  4
    Einstein's dice and Schrödinger's cat: how two great minds battled quantum randomness to create a unified theory of physics.Paul Halpern - 2015 - New York: Basic Books, a member of the Perseus Group.
    When the fuzzy indeterminacy of quantum mechanics overthrew the orderly world of Isaac Newton, Albert Einstein and Erwin Schrödinger were at the forefront of the revolution. Neither man was ever satisfied with the standard interpretation of quantum mechanics, however, and both rebelled against what they considered the most preposterous aspect of quantum mechanics: its randomness. Einstein famously quipped that God does not play dice with the universe, and Schrödinger constructed his famous fable of a cat that was neither (...)
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  14. Why Einstein did not believe that general relativity geometrizes gravity.Dennis Lehmkuhl - unknown
    I argue that, contrary to folklore, Einstein never really cared for geometrizing the gravitational or the electromagnetic field; indeed, he thought that the very statement that General Relativity geometrizes gravity "is not saying anything at all". Instead, I shall show that Einstein saw the "unification" of inertia and gravity as one of the major achievements of General Relativity. Interestingly, Einstein did not locate this unification in the field equations but in his interpretation of the geodesic equation, the (...)
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  15.  99
    Einstein, the reality of space, and the action-reaction principle.Dennis Lehmkuhl, P. Ghose & Harvey Brown - unknown
    Einstein regarded as one of the triumphs of his 1915 theory of gravity - the general theory of relativity - that it vindicated the action-reaction principle, while Newtonian mechanics as well as his 1905 special theory of relativity supposedly violated it. In this paper we examine why Einstein came to emphasise this position several years after the development of general relativity. Several key considerations are relevant to the story: the connection Einstein originally saw between Mach's analysis of (...)
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  16. Einstein widerlegt.Gotthard Barth - 1968 - (Alt Prerau/Wildendürnbach: [Selbstverlag]).
     
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  17.  9
    Einstein's violin: the love affair between science, music, and history's most creative thinkers.Douglas Wadle - 2022 - Bloomington, IN: Archway Publishing.
    Douglas Wadle celebrates the juxtaposition of art and science while examining music's influence on humanity's understanding of our place in the universe. Tracing the millennia-old love affair between music and science, Wadle chronicles the surprising ubiquity of musical training among history's greatest thinkers. He shines a spotlight on the intertwining stories of pattern and form and how they complement one another in our search for creativity and insight. Einstein's Violin relies on extensive research to tell the story of how (...)
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  18.  29
    Separating Einstein's separability.Sebastián Murgueitio Ramírez - 2020 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 72:138-149.
    In this paper, I accomplish a conceptual task and a historical task. The conceptual task is to argue that (1) Einstein’s Principle of Separability (henceforth “separability”) is not a supervenience principle and that (2) separability and entanglement are compatible. I support (1) by showing that the conclusion of Einstein’s incompleteness argument would still follow even if one assumes that the state of a composite system does not supervene on the states of the subsystems, and by showing that what (...)
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  19. Einstein and the universe.Charles Nordmann - 1922 - New York,: H. Holt. Edited by Joseph McCabe.
    M. Nordmann has presented Einstein's principle in words which lift the average reader over many of the difficulties he must encounter in trying to take it in. Remembering Goethe's maxim that he who would accomplish anything must limit himself, he has not aimed at covering the full field to which Einstein's teaching is directed. But he succeeds in making many abstruse things intelligible to the layman. Perhaps the most brilliant of his efforts in this direction are Chapters V (...)
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  20.  28
    Albert Einstein: Philosopher-Scientist.Paul Arthur Schilpp (ed.) - 1959 - Mjg Books.
    Written by the man considered the "Person of the Century" by Time magazine, this is not a glimpse into Einstein's personal life, but an extension and elaboration into his thinking on science. Two of the great theories of the physical world were created in the early 20th century: the theory of relativity and quantum mechanics. Einstein created the theory of relativity and was also one of the founders of quantum theory. Here, Einstein describes the failure of classical (...)
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  21.  6
    Einstein.Thomas Ryckman - 2017 - Routledge.
    Albert Einstein was the most influential physicist of the twentieth century. Less well-known is that fundamental philosophical problems, such as concept formation, the role of epistemology in developing and explaining the character of physical theories, and the debate between positivism and realism, played a central role in his thought as a whole. Thomas Ryckman shows that already at the beginning of his career, at a time when the twin pillars of classical physics, Newtonian mechanics and Maxwell’s electromagnetism, were known (...)
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  22. Albert Einsteins umsturzversuch der physik und seine inneren möglichkeiten und ursachen.Bruno Thüring - 1941 - Berlin,: Dr. G. Lüttke.
     
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  23. Einstein, Anthropocentricity and Solipsism in Scientific Philosophy.Joseph LaLumia - 1981 - Diogenes 29 (116):94-106.
    This paper is about the reference or denotation of the concepts and descriptions of modern physics in contrast to Galilean-Newtonian physics and some reflections therein of some widely influential misunderstandings of Einstein's empiricism.
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  24.  91
    On Einstein Algebras and Relativistic Spacetimes.Sarita Rosenstock, Thomas William Barrett & James Owen Weatherall - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 52 (Part B):309-316.
    In this paper, we examine the relationship between general relativity and the theory of Einstein algebras. We show that according to a formal criterion for theoretical equivalence recently proposed by Halvorson and Weatherall, the two are equivalent theories.
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  25.  75
    Einstein's theory of relativity.Max Born - 1924 - New York,: Dover Publications. Edited by Henry Herman Leopold Adolf Brose.
    This excellent, semi-technical account includes a review of classical physics (origin of space and time measurements, Ptolemaic and Copernican astronomy, laws of motion, inertia, and more) and coverage of Einstein’s special and general theories of relativity, discussing the concept of simultaneity, kinematics, Einstein’s mechanics and dynamics, and more.
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  26. Einstein Vs. Bergson: An Enduring Quarrel on Time.Alessandra Campo & Simone Gozzano (eds.) - 2021 - Boston: De Gruyter.
    This book brings together papers from a conference that took place in the city of L'Aquila, 4–6 April 2019, to commemorate the 10th anniversary of the earthquake that struck on 6 April 2009. Philosophers and scientists from diverse fields of research debated the problem that, on 6 April 1922, divided Einstein and Bergson: the nature of time. For Einstein, scientific time is the only time that matters and the only time we can rely on. Bergson, however, believes that (...)
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  27.  69
    Defending Einstein: Hans Reichenbach's writings on space, time, and motion.Hans Reichenbach - 2006 - New York: Cambridge University Press. Edited by Steven Gimbel & Anke Walz.
    Hans Reichenbach, a philosopher of science who was one of five students in Einstein's first seminar on the general theory of relativity, became Einstein's bulldog, defending the theory against criticism from philosophers, physicists, and popular commentators. This book chronicles the development of Reichenbach's reconstruction of Einstein's theory in a way that clearly sets out all of its philosophical commitments and its physical predictions as well as the battles that Reichenbach fought on its behalf, in both the academic (...)
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  28. Einstein's Clocks, Poincaré's Maps: Empires of Time.Peter Galison - 2006 - Human Studies 29 (1):135-140.
     
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  29.  12
    Einstein's Washington Manuscript on Unified Field Theory.Tilman Sauer & Tobias Schütz - 2021 - Berichte Zur Wissenschaftsgeschichte 44 (1):94-105.
    In this note, we point attention to and briefly discuss a curious manuscript of Einstein, composed in 1938 and entitled “Unified Field Theory,” the only such writing, published or unpublished, carrying this title without any further specification. Apparently never intended for publication, the manuscript sheds light both on Einstein′s modus operandi as well as on the public role of Einstein′s later work on a unified field theory of gravitation and electromagnetism.
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  30. Einstein algebras and the hole argument.Jonathan Bain - 2003 - Philosophy of Science 70 (5):1073-1085.
    Einstein algebras have been suggested (Earman 1989) and rejected (Rynasiewicz 1992) as a way to avoid the hole argument against spacetime substantivalism. In this article, I debate their merits and faults. In particular, I suggest that a gauge‐invariant interpretation of Einstein algebras that avoids the hole argument can be associated with one approach to quantizing gravity, and, for this reason, is at least as well motivated as sophisticated substantivalist and relationalist interpretations of the standard tensor formalism.
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  31. Einstein's redshift derivations: its history from 1907 to 1921.Mario Bacelar Valente - 2018 - Circumscribere: International Journal for the History of Science 22:1-16.
    Einstein's gravitational redshift derivation in his famous 1916 paper on general relativity seems to be problematic, being mired in what looks like conceptual difficulties or at least contradictions or gaps in his exposition. Was this derivation a blunder? To answer this question, we will consider Einstein’s redshift derivations from his first one in 1907 to the 1921 derivation made in his Princeton lectures on relativity. This will enable to see the unfolding of an interdependent network of concepts and (...)
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  32.  3
    Albert Einstein als Wegbereiter nachklassischer Physik.Wolfgang Buchheim - 1981 - Berlin: Akademie Verlag.
  33. Einstein Studies.David Rowe (ed.) - 2018 - Birkhäuser.
     
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  34. Stochastic Einstein Locality Revisited.Jeremy Butterfield - 2007 - British Journal for the Philosophy of Science 58 (4):805-867.
    I discuss various formulations of stochastic Einstein locality (SEL), which is a version of the idea of relativistic causality, that is, the idea that influences propagate at most as fast as light. SEL is similar to Reichenbach's Principle of the Common Cause (PCC), and Bell's Local Causality. My main aim is to discuss formulations of SEL for a fixed background spacetime. I previously argued that SEL is violated by the outcome dependence shown by Bell correlations, both in quantum mechanics (...)
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  35. Einstein and the identity theory.Michael Lockwood - 1984 - Analysis 44 (January):22-25.
    Using the special theory of relativity to show that if mental events have a temporal location, then they must have a spatial location.
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  36.  24
    Einstein’s Theory of Theories and Mechanicism.Diego Maltrana, Manuel Herrera & Federico Benitez - 2022 - International Studies in the Philosophy of Science 35 (2):153-170.
    One of the most important contributions of Einstein to the philosophy of science is the distinction between two types of scientific theories: ‘principle’ and ‘constructive’ theories. More recently, Flores proposed a more general distinction, classifying scientific theories by their functional role into ‘framework’ and ‘interaction’ theories, attempting to solve some inadequacies in Einstein’s proposal. Here, based on an epistemic criterion, we present a generalised distinction which is an improvement over Flores approach. In this work (i) we evaluate the (...)
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  37.  19
    Einstein and the Laws of Physics.Friedel Weinert - 2007 - Physics and Philosophy.
    The purpose of this paper is to highlight the importance of constraints in the theory of relativity and, in particular, what philosophical work they do for Einstein's views on the laws of physics. Einstein presents a view of local ``structure laws'' which he characterizes as the most appropriate form of physical laws. Einstein was committed to a view of science, which presents a synthesis between rational and empirical elements as its hallmark. If scientific constructs are free inventions (...)
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  38.  59
    Did Einstein Really Believe that Principle Theories are Explanatorily Powerless?Marc Lange - 2014 - Perspectives on Science 22 (4):449-463.
    In a notable article entitled “What is the Theory of Relativity?” written at the request of The Times and published in its November 28, 1919 edition, Albert Einstein famously distinguished “theories of principle” from “constructive theories.” Einstein placed relativity theory among the principle theories. His distinction has recently received increased attention, especially as it relates to scientific explanation. In particular, there has been considerable discussion of how to explain why there obtain the Lorentz transformations as well as of (...)
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  39.  45
    Albert Einstein and Bernard Lonergan on Empirical Method.Donna Teevan - 2002 - Zygon 37 (4):873-890.
    In the science–and–theology dialogue, it becomes imperative that theologians develop sophistication in empirical method. Albert Einstein stated that to understand what physicists do we should not listen to what they say but watch what they do. Still, he wrote incisively about method in physics. Theologian and philosopher Bernard Lonergan developed a methodical approach to theology that was influenced by the natural sciences. I present Einstein's thought on epistemology and the relationship between sense experience and theory. I then turn (...)
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  40.  3
    If Einstein had been a surfer: a surfer, a scientist, and a philosopher discuss a "universal wave theory" or "theory of everything".Peter Kreeft - 2009 - South Bend, Ind.: St. Augustine's Press.
    Preface: What this strange book is about -- Conversation 1: where's the formula? -- Conversation 2: brain and mind -- Conversation 3: logic and intuition -- Conversation 4: how to open the 'third eye' -- Conversation 5: matter and spirit -- Conversation 6: the data -- Conversation 7: synchronicity -- Conversation 8: waves -- Conversation 9: holism -- Conversation 10: the music of the spheres -- Conversation 11: cultural consequences -- Conversation 12: water magic.
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  41. Albert Einstein and metaphysics a comparison to vedic beliefs and concepts of swaminarayan.Eugene E. Whitworth - 1981 - In Sahajānanda (ed.), New dimensions in Vedanta philosophy. Ahmedabad: Bochasanwasi Shri Aksharpurushottam Sanstha. pp. 2--204.
     
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  42. Einstein's Discourse Networks.Jimena Carnales - 2014 - Zeitschrift für Medien- Und Kulturforschung 2014 (1):11-39.
    This paper situates Einstein's theory of relativity within broader networks of communication. The speed of light, explained Einstein, was an unsurpassable velocity if , and only if , it was considered in terms of »arbitrary« and »voluntary« signals. Light signals in physics belong within a broader set of signs and symbols that include communication and military signals, understood by reference to Helmholtz, Saussure, media philosophies from WWII to '68 (Lavelle, Ong, McLuhan) and Derrida. Once light signals in physics (...)
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  43.  36
    Quantum: Einstein, Bohr, and the great debate about the nature of reality.Manjit Kumar - 2008 - Gurgaon: Hachette India.
    The reluctant revolutionary -- The patent slave -- The golden Dane -- The quantum atom -- When Einstein met Bohr -- The prince of duality -- Spin doctors -- The quantum magician -- A late erotic outburst -- Uncertainty in Copenhagen -- Solvay 1927 -- Einstein forgets relativity -- Quantum reality -- For whom Bell's theorem tolls -- The quantum demon.
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  44. Einsteins relativitetsteori.Olof Sjöstrand - 1971 - Göteborg,: Läromedelsförl. (Akademiförlaget) ....
     
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  45.  68
    Einstein, Meyerson and the role of mathematics in physical discovery.Elie Zahar - 1980 - British Journal for the Philosophy of Science 31 (1):1-43.
  46.  21
    Einstein as a Disciple of Galileo A Comparative Study of Concept Development in Physics.Jürgen Renn - 1993 - Science in Context 6 (1):311-341.
    The ArgumentIn this paper I present and argue for a model of conceptual development in science and apply it to the transition from classical to modern physics associated with Einstein. The model claims a continuous and rational transition between incompatible subsequent conceptual systems in mathematical science and explains its mechanism. The model was developed in a study of the transition from preclassical to classical mechanics. I argue for a strong structural analogy between the transition from preclassical to classical mechanics (...)
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  47.  3
    Substance and function, and Einstein's theory of relativity.Ernst Cassirer - 1910 - London,: The Open court publishing company. Edited by William Curtis Swabey & Marie Collins Swabey.
  48.  4
    The Einstein theory: relativity and gravitation with some of the more significant implications, for the general reader.Levi Franklin Gruber - 1923 - Burlington, Ia.,: The Lutheran literary board.
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  49. The Einstein theory explained and analyzed.Samuel H. Guggenheimer - 1925 - New York,: The Macmillan company.
     
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  50.  3
    Albert Einstein.Peter Napier Hamilton - 1973 - Valley Forge, Pa.,: Judson Press.
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