Results for 'Einstein Albert'

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  1. ALBERT EINSTEIN, ALFRED NORTH WHITEHEAD. EINE KURZE GESCHICHTE DER PHYSIK. [Neufassung vom 29. Juni 2022].Christian Thomas Kohl - 2022 - Freie Universität Berlin, Refubium.
    Abstract Die moderne Physik besteht nicht nur aus neuen Entdeckungen und Erfindungen durch die Relativitätstheorie und durch die Quantenphysik. Sie besteht auch aus völlig neuen Sichtweisen und flexiblen Denkweisen von Zusammenhängen und Verschränkungen zwischen den Dingen. Die moderne Physik hat sich von dem Klischee des Schwarz-Weiß-Denkens verabschiedet, für das es nur getrennte Dinge, ohne fließende Übergänge gibt. Solche unbeweglichen, dogmatischen schwarzweißen Denkweisen können wir zurückverfolgen bis zu dem griechischen Philosophen Aristoteles. In der Zeit der Klassischen Mechanik hatten sie einen überwältigenden (...)
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  2. Comentarios a propósito del cerebro de Albert Einstein.Jorge A. Colombo - 2000 - Medicina 60 (4):530-532.
    De la observación de la morfología externa y la estructura del cerebro de A. Einstein no es posible derivar, razonablemente, sus especiales características funcionales. Como así tampoco asumir que las características observadas son correlatos necesarios de su talento.
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  3. (8 other versions)ALBERT EINSTEIN & ALFRED NORTH WHITEHEAD.Christian Thomas Kohl - unknown
    Die moderne Physik besteht nicht nur aus neuen Entdeckungen und Erfindungen, sondern auch aus ganz neuen Denkweisen und Sichtweisen, bei denen nicht mehr die Objekte im Mittelpunkt stehen, sondern das, was zwischen den Dingen passiert: Verbindungen zwischen den Dingen, Verschränkungen, Zusammenhänge, energetische Felder, Übergänge,.
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  4. Einstein's Role in the Creation of Relativistic Cosmology.Chris Smeenk - 2014 - In Michel Janssen & Christoph Lehner (eds.), The Cambridge Companion to Einstein. 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 (...)
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  5. Einstein und Philosophie?Tilman Sauer, Anja Leser & Angela Krenger - 2013 - Swiss Philosophical Preprints.
    Albert Einstein ist für seine Arbeiten in der Physik weltberühmt. Nur wenige wissen jedoch, dass Einstein selbst auch philosophische Arbeiten publiziert hat und seine Erkenntnisse weitreichende Folgen für die Philosophie haben. Oder haben „Raum“ und „Zeit“ nichts mit Wissen zu tun?
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  6. Gott würfelt nicht. Einsteins immer noch aktuelle Kritik der Quantenmechanik.Gregor Schiemann - 2005 - In J. Renn (ed.), Albert Einstein. Ingenieur des Universums. 100 Autoren für Einstein.
    Kaum eine Äußerung Einsteins ist so bekannt wie sein Wort, dass Gott nicht würfelt. In ähnlicher Weise, wie Einstein dies unerläutert gelassen hat, ist seine gesamte Position zur Quantenmechanik, auf die es sich bezieht, von Uneindeutigkeiten nicht frei geblieben. Für seine Würfelmetapher ergibt sich ein Spielraum von gegensätzlichen Sichtweisen. Sie lässt sich zum einen mit jüngeren Forschungsresultaten verbinden und weist zum anderen auf rückschrittliche Elemente in Einsteins Denken hin. Ich wende mich zuerst diesen Elementen zu und betrachte dann eine (...)
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  7. Einstein’s Local Realism vs. Bohr’s Instrumental Anti-Realism: The Debate Between Two Titans in the Quantum Theory Arena.Eduardo Simões - 2021 - Griot : Revista de Filosofia 21 (2):332-348.
    The objective of this article is to demonstrate how the historical debate between materialism and idealism, in the field of Philosophy, extends, in new clothes, to the field of Quantum Physics characterized by realism and anti-realism. For this, we opted for a debate, also historical, between the realism of Albert Einstein, for whom reality exists regardless of the existence of the knowing subject, and Niels Bohr, for whom we do not have access to the ultimate reality of the (...)
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  8. 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 (...)
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  9. 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 (...)
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  10. Warum Gott nicht würfelt: Einstein und die Quantenmechanik im Licht neuerer Forschungen.Gregor Schiemann - 2010 - In R. Breuniger (ed.), Bausteine zur Philosophie. Bd. 27: Einstein.
    Zuerst werden die Argumente rekonstruiert, die dafür sprechen, Einsteins Wort, dass Gott nicht würfelt, als Ausdruck eines überholten deterministischen Weltbildes anzusehen. Anschließend werden Forschungsergebnisse der letzten Jahrzehnte benannt, die für eine Neubewertung seiner Position zur dominanten Interpretation der Quantenmechanik sprechen. Den Abschluß bildet die Diskussion der Möglichkeiten einer Reinterpretation seines Satzes vom nicht würfelnden Gott.
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  11. 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 (...)
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  12. 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 (...)
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  13. Bruce J. Hunt, Pursuing Power and Light: Technology and Physics from James Watt to Albert Einstein[REVIEW]Sean F. Johnston - 2011 - Technology and Culture 52:403-404.
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  14. Covariance/invariance: A Cognitive Heuristic in Einstein's Relativity Theory Formation.Andrea Cerroni - 2000 - Foundations of Science 5 (2):209-224.
    Relativity Theory by Albert Einstein has been so far littleconsidered by cognitive scientists, notwithstanding its undisputedscientific and philosophical moment. Unfortunately, we don't have adiary or notebook as cognitively useful as Faraday's. But physicshistorians and philosophers have done a great job that is relevant bothfor the study of the scientist's reasoning and the philosophy ofscience. I will try here to highlight the fertility of a `triangulation'using cognitive psychology, history of science and philosophy of sciencein starting answering a clearly very (...)
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  15. The Fourth Dimension of the World of Nature in Mulla Sadra’s Philosophy and Relativity Theory of Einstein.Religious Thought, Sepideh Razi, Jaafar Shanazari & Afshin Shafiee - 2020 - JOURNAL OF RELIGIOUS THOUGHT 20 (77):99-126.
    One of the challenges faced by philosophers throughout history of philosophical thoughts, has always been and is to find an adequate answer to the question of quiddity and existence of time and space. Thus, the present study aims to elaborate on the question of space and time in Mulla Sadra’s philosophy and its relationship with outcomes of modern physics. The study also intends to conduct an analytical comparison between these two views and clarify newer aspects of this complicated and vague (...)
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  16. The Self and Its World: Husserlian Contributions to a Metaphysics of Einstein’s Theory of Relativity and Heisenberg’s Indeterminacy Principle in Quantum Physics.Maria Eliza Cruz - manuscript
    This paper centers on the implicit metaphysics beyond the Theory of Relativity and the Principle of Indeterminacy – two revolutionary theories that have changed 20th Century Physics – using the perspective of Husserlian Transcedental Phenomenology. Albert Einstein (1879-1955) and Werner Heisenberg (1901-1976) abolished the theoretical framework of Classical (Galilean- Newtonian) physics that has been complemented, strengthened by Cartesian metaphysics. Rene Descartes (1596- 1850) introduced a separation between subject and object (as two different and self- enclosed substances) while Galileo (...)
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  17. Death, Faster Than Light Travel, and Einstein.Mark Walker - 2015 - In Charles Tandy (ed.), Death And Anti-Death, Volume 13: Sixty Years After Albert Einstein (1879-1955). Ria University Press. pp. 1-24.
    This paper describes a thought experiment that shows that people can travel faster than the speed of light: we are not bound by Einstein’s speed limit. Of course, any two-bit sci-fi story can describe faster-than-light travel. The difference is that the thought experiment proposed here is consistent with Einstein’s theory. The way to extricate ourselves from this seeming contradiction is to acknowledge that persons are not entirely physical. In other words, the explanation for why faster-than-light travel is possible (...)
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  18. Ghé cửa “đền” ETH Zürich ngày xuân Giáp Thìn.Nguyễn Minh Hoàng - 2024 - Sm3D.
    Ngày xuân, đi du xuân trên Internet. Có thời gian lang thang tìm đọc, cũng là niềm vui với người làm nghề nghĩ-viết. Thế rồi, tình cờ ghé thăm cửa “đền” ETH Zürich, bỗng lại có một niềm vui khác: gặp lại “người quen”. Ấy chính là cuốn sách A New Theory of Serendipity, trong đó, tôi tham gia một số chương [1]. Nay đã có sự hiện diện trong ETH Library. -/- Gọi ETH Zürich là một ngôi đền khoa (...)
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  19. The Role of Physics in Science Integration.Alexander Egoyan - 2005 - Albert Einstein Century International Conference.
    Special and General theories of relativity may be considered as the most significant examples of integrative thinking. From these works we see that Albert Einstein attached great importance to how we understand geometry and dimensions. It is shown that physics powered by the new multidimensional elastic geometry is a reliable basis for science integration. Instead of searching for braneworlds (elastic membranes - EM) in higher dimensions we will start by searching them in our 3+1 dimensional world. The cornerstone (...)
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  20. PARTS OF THE BHAGAVAD GITA COMPRESSED INTO A FEW THOUSAND WORDS FAMILIAR TO 21ST CENTURY SCIENTISTS.Rodney Bartlett - 2015 - Http://Vixra.Org/Author/Rodney_bartlett.
    This is an essay I entered in a competition about the Bhagavad Gita. Probably written about 2,000 years ago; this writing is perhaps the greatest philosophical expression of Hinduism. I was attracted to the contest because the website included a very favourable comment about the Bhagavad Gita by Albert Einstein (see below). For a while, I actually considered it possible that I’d win the contest. But that time has passed. The winner has been announced and I can now (...)
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  21. Alfred North Whitehead.Christian Thomas Kohl - unknown - Albert Einstein, Alfred North Whitehead. Https://Refubium.Fu-Berlin.De/Handle/Fub188/36689.
    Alfred North Whitehead war ein bedeutender Philosoph im 20. Jahrhundert. Sein Vorstellungshintergrund war die Geschichte der mathematischen Physik seit Michael Faraday, der in der Mitte des 19. Jahrhunderts durch seine Entdeckungen der elektrischen und der magnetischen Felder der erste europäische Wissenschaftler war, der das zwischen den Dingen Liegende entdeckte. Von da an waren es nicht mehr unabhängige Objekte, sondern zunächst noch unbekannte Felder, die zu den Fundamenten der modernen physikalischen Wissenschaften wurden. Was wir uns unter den Feldern vorstellen können, ist (...)
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  22. 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 (...)
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  23. 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 (...)
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  24. Conflicts Between Science and Religion: Epistemology to the Rescue.Moorad Alexanian - manuscript
    Both Albert Einstein and Erwin Schrödinger have defined what science is. Einstein includes not only physics, but also all natural sciences dealing with both organic and inorganic processes in his definition of science. According to Schrödinger, the present scientific worldview is based on the two basic attitudes of comprehensibility and objectivation. On the other hand, the notion of religion is quite equivocal and unless clearly defined will easily lead to all sorts of misunderstandings. Does science, as defined, (...)
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  25. On curved spacetime.Sydney Ernest Grimm - manuscript
    Albert Einstein’s theory of General Relativity was once the leading theory in theoretical physics. Unfortunately the theory describes macroscopic reality without a clear link with the the microcosm in respect to the properties of spacetime. However the theory of General Relativity has proved to predict macroscopic phenomena in a very accurate way. Nowadays most theoretical physicists use the conceptual framework of quantum theory. So it is not surprisingly that the question about the “true nature” of spacetime becomes very (...)
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  26. Alfred North Whitehead.Christian Thomas Kohl - unknown - In Christian Thomas Kohl (ed.), Albert Einstein, Alfred North Whitehead. Taylor & Francis. pp. 150.
    Der Artikel beschäftigt sich mit dem englischen Philosophen Alfred North Whitehead und mit dem Vorstellungshintergrund, der seiner Philosophie zugrundeliegt. Der direkte Hintergrund seiner Philosophie ist die moderne Physik seit Michael Faraday und Maxwell, die als erste auf die elektromagnetischen Wellen und Schwingungen und Beziehungsgeflechte hingewiesen haben, die zwischen den Dingen liegen und die von Albert Einstein "Felder" genannt wurden. Wie sie aussehen, wissen wir bis heute nicht so genau, weil es Modellvorstellungen sind, deren Realität eigentlich nur durch Messungen (...)
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  27. Tests classiques et modernes de la relativité générale.Nicolae Sfetcu - manuscript
    Albert Einstein a proposé trois tests de relativité générale, appelés plus tard les tests classiques de relativité générale, en 1916 : la précession de l'orbite de Mercure, la déviation de la lumière du soleil, et le décalage vers le rouge gravitationnel de la lumière. Dicke et Schiff ont établi un cadre pour tester la relativité générale , y compris par le biais d'expériences nulles et en utilisant la physique de l'exploration spatiale, de l'électronique et de la matière condensée, (...)
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  28. Classic gravitational tests of post-Einsteinian theories.Nicolae Sfetcu - manuscript
    Albert Einstein proposed three tests of general relativity, later named the classic tests of general relativity, in 1916: the precession of the perihelion of Mercury's orbit, sun light deflection, and the gravitational redshift of the light. For gravitational testing, the indirect effects of gravity are always used, usually particles that are influenced by gravity. In the presence of gravity, the particles move along curved geodesic lines. The sources of gravity that cause the curvature of spacetime are material bodies, (...)
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  29. Review of Space, Time, and Number in the Brain. [REVIEW]Carlos Montemayor & Rasmus Grønfeldt Winther - 2015 - Mathematical Intelligencer 37 (2):93-98.
    Albert Einstein once made the following remark about "the world of our sense experiences": "the fact that it is comprehensible is a miracle." (1936, p. 351) A few decades later, another physicist, Eugene Wigner, wondered about the unreasonable effectiveness of mathematics in the natural sciences, concluding his classic article thus: "the miracle of the appropriateness of the language of mathematics for the formulation of the laws of physics is a wonderful gift which we neither understand nor deserve" (1960, (...)
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  30. The singularities as ontological limits of the general relativity.Nicolae Sfetcu - 2018 - Bucharest, Romania: MultiMedia Publishing.
    The singularities from the general relativity resulting by solving Einstein's equations were and still are the subject of many scientific debates: Are there singularities in spacetime, or not? Big Bang was an initial singularity? If singularities exist, what is their ontology? Is the general theory of relativity a theory that has shown its limits in this case? In this essay I argue that there are singularities, and the general theory of relativity, as any other scientific theory at present, is (...)
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  31. Thoughts on Artificial Intelligence and the Origin of Life Resulting from General Relativity, with Neo-Darwinist Reference to Human Evolution and Mathematical Reference to Cosmology.Rodney Bartlett - manuscript
    When this article was first planned, writing was going to be exclusively about two things - the origin of life and human evolution. But it turned out to be out of the question for the author to restrict himself to these biological and anthropological topics. A proper understanding of them required answering questions like “What is the nature of the universe – the home of life – and how did it originate?”, “How can time travel be removed from fantasy and (...)
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  32. Essays concerning Hume's Natural Philosophy.Matias Slavov - 2016 - Dissertation, University of Jyväskylä
    The subject of this essay-based dissertation is Hume’s natural philosophy. The dissertation consists of four separate essays and an introduction. These essays do not only treat Hume’s views on the topic of natural philosophy, but his views are placed into a broader context of history of philosophy and science, physics in particular. The introductory section outlines the historical context, shows how the individual essays are connected, expounds what kind of research methodology has been used, and encapsulates the research contributions of (...)
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  33. Singularitățile ca limite ontologice ale relativității generale.Nicolae Sfetcu - manuscript
    Singularitățile la care se ajunge în relativitatea generală prin rezolvarea ecuațiilor lui Einstein au fost și încă mai sunt subiectul a numeroase dezbateri științifice: Există sau nu, singularități? Big Bang a fost o singularitate inițială? Dacă singularitățile există, care este ontologia acestora? Este teoria generală a relativității o teorie care și-a arătat limitele în acest caz? În acest eseu argumentez faptul că există singularități, iar teoria generală a relativității, ca de altfel oricare altă teorie științifică din prezent, nu este (...)
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  34. Observation, meaning and theory: Review of For and Against Method by Imre Lakatos and Paul Feyerabend. [REVIEW]Nicholas Maxwell - 2000 - Times Higher Education Supplement 1:30-30.
    Imre Lakatos and Paul Feyerabend initially both accepted Popper's philosophy of science, but then reacted against it, and developed it in different directions. Lakatos sought to reconcile Kuhn and Popper by characterizing science as a process of competing research programmes, competing fragments of Kuhn's normal science. Feyerabend emphasized the need to develop rival theories to facilitate severe empirical testing of accepted theories, but then, as a result of a disastrous mistake, came to hold that theories that are incompatible with one (...)
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  35. La teoría relativista de la gravitación superior que la relatividad general.Alfonso Leon Guillen Gomez - manuscript
    Presentamos lo básico de la teoría relativista de la gravitación, con la inclusión de textos originales, de varios papeles, publicados entre 1987 y 2009, por sus autores: S. S Gershtein, A. A Logunov, Yu. M Loskutov y M. A Mestvirishvili junto con las introducciones, resúmenes y conclusiones elaborados por el autor de este papel. Esta es una teoría gauge, compatible con las teorías de la física cuántica de las fuerzas electromagnética, débil y fuerte, que define la gravedad como la cuarta (...)
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  36. Anyon, Mobius Strip, Imaginary Computer.Rodney Bartlett - manuscript
    In 1982, MIT physicist Frank Wilczek predicted and named ANYONS, quasiparticles (particle-like formations) that are confined to 2 dimensions. The name might come from Prof. Wilczek's lighthearted comment "anything goes". This article's main goal is to show that anyons could be another name for 1) virtual particles, 2) Mobius strips, and 3) figure-8 Klein bottles. Along the way, we'll see the picture painted by the article confirm that Einstein's dream of gravitational-electromagnetic unity fits in with anyons being Mobius strips. (...)
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  37. Religious Experience in Science (Enlarged Version).Devinder Pal Singh - 2003 - The Sikh Review 51 (10):8-12.
    Science and Religion represent two great systems of human thought. For most people on our planet, religion is the predominant influence over the conduct of their affairs. When science impinges on their lives, it does so not at the intellectual level but practically, through technology. The British astronomer, Sir A. S. Eddington, insists that religion has become possible for a man of science because the philosophic trend of scientific thought has been startlingly redirected by the discoveries of men like (...), Heisenberg and Bohr in the fields of relativity and quantum physics. Some of the greatest scientists have succeeded in synthesizing the two disciplines inwardly, on a personal level. Religious experience is then seen as an extension of scientific activity. (shrink)
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  38. Nature, Science, Bayes 'Theorem, and the Whole of Reality‖.Moorad Alexanian - manuscript
    A fundamental problem in science is how to make logical inferences from scientific data. Mere data does not suffice since additional information is necessary to select a domain of models or hypotheses and thus determine the likelihood of each model or hypothesis. Thomas Bayes’ Theorem relates the data and prior information to posterior probabilities associated with differing models or hypotheses and thus is useful in identifying the roles played by the known data and the assumed prior information when making inferences. (...)
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  39. Hume, the Philosophy of Science and the Scientific Tradition.Matias Slavov - 2018 - In Angela Michelle Coventry & Alex Sager (eds.), _The Humean Mind_. New York: Routledge. pp. 388-402.
    Although the main focus of Hume’s career was in the humanities, his work also has an observable role in the historical development of natural sciences after his time. To show this, I shall center on the relation between Hume and two major figures in the history of the natural sciences: Charles Darwin (1809–1882) and Albert Einstein (1879–1955). Both of these scientists read Hume. They also found parts of Hume’s work useful to their sciences. Inquiring into the relations between (...)
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  40.  53
    The New Philosophy of Superdeterminism On the Nature of Miracles.John Bannan - manuscript
    The philosophy of superdeterminism is based on a single scientific fact about the universe, namely that cause and effect in physics are not real. In 2020, accomplished Swedish theoretical physicist, Dr. Johan Hansson published a physics proof using Albert Einstein’s Theory of Special Relativity that our universe is superdeterministic meaning a predetermined static block universe without cause and effect in physics. Because of this new scientific understanding of our universe, the nature of miracles must be predetermined events that (...)
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  41. Buddhismus und Quantenphysik: die Wirklichkeitsbegriffe Nāgārjunas und der Quantenphsyik [i.e. Quantenphysik].Christian Thomas Kohl - 2005 - Aitrang: Windpferd.
    1.Summary The key terms. 1. Key term: ‘Sunyata’. Nagarjuna is known in the history of Buddhism mainly by his keyword ‘sunyata’. This word is translated into English by the word ‘emptiness’. The translation and the traditional interpretations create the impression that Nagarjuna declares the objects as empty or illusionary or not real or not existing. What is the assertion and concrete statement made by this interpretation? That nothing can be found, that there is nothing, that nothing exists? Was Nagarjuna denying (...)
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  42. Weird Fiction: A Catalyst for Wonder.Jan B. W. Pedersen - 2020 - Wonder, Education and Human Flourishing: Theoretical, Emperical and Practical Perspectives.
    One of the vexed questions in the philosophy of wonder and indeed education is how to ensure that the next generation harbours a sense of wonder. Wonder is important, we think, because it encour- ages inquiry and keeps us as Albert Einstein would argue from ‘being as good as dead’ or ‘snuffed-out candles’ (Einstein 1949, 5). But how is an educator to install, bring to life, or otherwise encourage a sense of wonder in his or her stu- (...)
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  43. Two Strategies to Infinity: Completeness and Incompleteness. The Completeness of Quantum Mechanics.Vasil Penchev - 2020 - High Performance Computing eJournal 12 (11):1-8.
    Two strategies to infinity are equally relevant for it is as universal and thus complete as open and thus incomplete. Quantum mechanics is forced to introduce infinity implicitly by Hilbert space, on which is founded its formalism. One can demonstrate that essential properties of quantum information, entanglement, and quantum computer originate directly from infinity once it is involved in quantum mechanics. Thus, thеse phenomena can be elucidated as both complete and incomplete, after which choice is the border between them. A (...)
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  44. Ether and Electrons in Relativity Theory.Scott A. Walter - 2018 - In Jaume Navarro (ed.), Ether and Modernity. pp. 67-87.
    This chapter discusses the roles of ether and electrons in relativity theory. One of the most radical moves made by Albert Einstein was to dismiss the ether from electrodynamics. His fellow physicists felt challenged by Einstein’s view, and they came up with a variety of responses, ranging from enthusiastic approval, to dismissive rejection. Among the naysayers were the electron theorists, who were unanimous in their affirmation of the ether, even if they agreed with other aspects of (...)’s theory of relativity. The eventual success of the latter theory (circa 1911) owed much to Hermann Minkowski’s idea of four-dimensional spacetime, which was portrayed as a conceptual substitute of sorts for the ether. (shrink)
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  45. Objective description in physics.Hans Halvorson - 2022 - In Tomas Marvan, Hanne Andersen, Hasok Chang, Benedikt Löwe & Ivo Pezlar (eds.), Proceedings of the 16th International Congress of Logic, Methodology and Philosophy of Science and Technology. London: College Publications.
    I argue against the claim -- advocated by Albert Einstein, Bernard Williams, and Ted Sider, among others -- that a description is objective only if it says how the world is in itself. Instead, I argue for the claim -- inspired by comments of Niels Bohr -- that a family of descriptions is objective only if they co-vary with their respective descriptive contexts. Moreover, I claim that "there is a shared objective reality" simply means that it is possible (...)
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  46. The Completeness: From Henkin's Proposition to Quantum Computer.Vasil Penchev - 2018 - Логико-Философские Штудии 16 (1-2):134-135.
    The paper addresses Leon Hen.kin's proposition as a " lighthouse", which can elucidate a vast territory of knowledge uniformly: logic, set theory, information theory, and quantum mechanics: Two strategies to infinity are equally relevant for it is as universal and t hus complete as open and thus incomplete. Henkin's, Godel's, Robert Jeroslow's, and Hartley Rogers' proposition are reformulated so that both completeness and incompleteness to be unified and thus reduced as a joint property of infinity and of all infinite sets. (...)
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  47. Examples of Aporia Questions Using Picture Books.Maria daVenza Tillmanns - 2019 - Blog of the APA.
    The intuitive mind is a sacred gift and the rational mind is a faithful servant. We have created a society that honors the servant and has forgotten the gift. – Albert Einstein -/- In my philosophical discussions with elementary school children, I use questions not just to uncover hidden assumptions the children may have, but to lead them to a place of aporia – puzzlement, a place of “not-knowing.” If some children assume that to be brave is to (...)
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  48. Qu'est-ce que la mécanique quantique ?Thomas Boyer-Kassem - 2015 - Vrin.
    La mécanique quantique est une théorie physique contemporaine réputée pour ses défis au sens commun et ses paradoxes. Depuis bientôt un siècle, plusieurs interprétations de la théorie ont été proposées par les physiciens et les philosophes, offrant des images quantiques du monde, ou des ontologies, radicalement différentes. L'existence d'un hasard fondamental, ou d'une multitude de mondes en-dehors du nôtre, dépend ainsi de l'interprétation adoptée. Après avoir discuté de la définition de l'interprétation d'une théorie physique, ce livre présente trois principales interprétations (...)
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  49. The Knowledge of Good: Critique of Axiological Reason.Robert S. Hartman, Arthur R. Ellis & Rem B. Edwards (eds.) - 2002 - BRILL.
    This book presents Robert S. Hartman’s formal theory of value and critically examines many other twentieth century value theorists in its light, including A.J. Ayer, Kurt Baier, Brand Blanshard, Paul Edwards, Albert Einstein, William K. Frankena, R.M. Hare, Nicolai Hartmann, Martin Heidegger, G.E. Moore, P.H. Nowell-Smith, Jose Ortega y Gasset, Charles Stevenson, Paul W. Taylor, Stephen E. Toulmin, and J.O. Urmson.
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  50. Universal Energetic Field Theory.Thibault Martin B. J. - manuscript
    Universal Energetic Field Theory -/- Additional Argumentation No1: Newton's Third Law relation with the Universal Energetic Field -/- The atom nucleus Quarks energy, and their three generations energy or energy gain, are too submit to the (Albert Einstein) “Law Of The Conservation Of Energy”. Thus, throughout the Quarks 3 generations energetic states and generations transformations, the Newton's Third Law impose the addition of the Universal Energetic Field theory. Martin B.J. Thibault December 2020 .
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