Results for 'Heisenberg'

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Thimo Heisenberg
Bryn Mawr College
  1. Werner Heisenberg.Gregor Schiemann - 2008 - C.H. Beck.
    Gregor Schiemann führt allgemeinverständlich in das Denken dieses Physikers ein. Thema sind die Erfahrungen und Überlegungen, die Heisenberg zu seinen theoretischen Erkenntnissen geführt haben, die wesentlichen Inhalte dieser Erkenntnisse sowie die Konsequenzen, die er daraus für die Geschichte der Physik und das wissenschaftliche Weltbild gezogen hat. Heisenbergs Vorstellungswelt durchzieht durch ein Spannungsverhältnis, das heute noch das Denken vieler Wissenschaftlerinnen und Wissenschaftler bewegt. Er ist um ein umfassendes Verständnis der Naturprozesse bemüht, zugleich aber von der Berechenbarkeit und Beherrschbarkeit von Phänomenen (...)
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  2. Werner Heisenbergs Position Zu Einer Hypothetischen Wissenschaftsauffassung in Seinen Populären Reden Und Aufsätzen.Gregor Schiemann - 2007 - In M. Gerhard (ed.), Oldenburger Jahrbuch für Philosophie.
    Werner Heisenberg hat einen wichtigen, noch nicht hinreichend untersuchten Beitrag zum Wandel des neuzeitlichen Wissenschaftsverständnisses geleistet. Der Wandel führte von der Charakterisierung des wissenschaftlichen Wissens als sichere Erkenntnis zu seiner - heute weithin anerkannten - Charakterisierung als bloß hypothetische Erkenntnis. Anfänge dieses Wandlungsprozesses lassen sich im 19. Jahrhundert nachweisen (z.B. bei John Hersehel, William Whewell oder Hermann von Helmholtz). Ich möchte am Beispiel von Heisenberg der Frage nachgehen, welchen Einfluss die Begründung der Quantenmechanik, die seine Wissenschaftsauffassung prägte, auf (...)
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  3. Werner Heisenberg’s Position on a Hypothetical Conception of Science.Gregor Schiemann - 2009 - In M. Heidelberger & G. Schiemann (eds.), The Significance of the Hypothetical in the Natural Sciences. de Gruyter.
    Werner Heisenberg made an important – and as yet insufficiently researched – contribution to the transformation of the modern conception of science. This transformation involved a reassessment of the status of scientific knowledge from certain to merely hypothetical – an assessment that is widely recognized today. I examine Heisenberg’s contribution in particular by taking his conception of “closed theories” as an example according to which the established physical theories have no universal and exclusive, but only a restricted validity. (...)
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  4.  90
    Werner Heisenberg, Niels Bohr a Příběh Kodaňské Interpretace.Filip Grygar - 2017 - Teorie Vědy / Theory of Science 39 (2):207-238.
    Příspěvek se zaměřuje na zavádějící příběh o tzv. kodaňské interpretaci kvantové mechaniky, již jako údajně nerozpornou či jednotnou vytvořili a sdíleli na základě tzv. kodaňského ducha kvantové teorie její tvůrci v roce 1927. Článek bude vycházet z role, kterou v tomto příběhu sehráli především N. Bohr a W. Heisenberg. První část příspěvku seznamuje s variacemi toho, co se v literatuře považuje za kodaňskou interpretaci. Druhá část odhaluje, že zatímco kvantová mechanika vznikla ve dvacátých letech 20. století, kodaňská interpretace je (...)
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  5.  78
    Heisenberg's Uncertainty Principle in Buddhist Philosophical Perspective.Pattamawadee Sankheangaew - manuscript
    The research has three objectives: 1) to study the concept of Heisenberg’s uncertainty principle, 2) to study the concept of reality and knowledge in Buddhist philosophy, and 3) to analyze the concept of Heisenberg’s uncertainty principle in Buddhist philosophical perspective. This is documentary research. In this research, it was found that Heisenberg's uncertainty principle refers to the experiment of thought while studying physical reality on smaller particles than atoms where at the present no theory of Physics can (...)
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  6.  7
    Heisenberg's Uncertainty Principle in Buddhist Philosophical Perspective.DrPattamawadee Sankheangaew - forthcoming - Epistemology,Metaphysics.
    The research has three objectives: 1) to study the concept of Heisenberg’s uncertainty principle, 2) to study the concept of reality and knowledge in Buddhist philosophy, and 3) to analyze the concept of Heisenberg’s uncertainty principle in Buddhist philosophical perspective. This is documentary research. In this research, it was found that Heisenberg's uncertainty principle refers to the experiment of thought while studying physical reality on smaller particles than atoms where at the present no theory of Physics can (...)
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  7. On Heisenberg's Notion of a Closed Theory (2013).Francois-Igor Pris - manuscript
    I claim that Heisenberg’s notion of a closed theory and its analysis by Erhard Scheibe fit well with the philosophy of later Wittgenstein or its generalization. The notion of a closed theory corresponds to the notions of a form of life and rule/concept. I suggest the possibility of reconciling the views of Heisenberg, Dirac, and Bohr about inter-theoretical relations within a rational naturalistic pragmatism à la Wittgenstein and Robert Brandom’s analytic interpretation of Kantian synthetic unity of apperception. In (...)
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  8. The Roles of One Thought Experiment in Interpreting Quantum Mechanics. Werner Heisenberg Meets Thomas Kuhn.Maarten Van Dyck - 2003 - Philosophica 72 (3):79-103.
    Recent years saw the rise of an interest in the roles and significance of thought experiments in different areas of human thinking. Heisenberg's gamma ray microscope is no doubt one of the most famous examples of a thought experiment in physics. Nevertheless, this particular thought experiment has not received much detailed attention in the philosophical literature on thought experiments up to date, maybe because of its often claimed inadequacies. In this paper, I try to do two things: to provide (...)
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  9. Física e Filosofia Antiga em Werner Heisenberg: apropriações do legado clássico por um físico do século XX.Anderson Cleiton Fernandes Leite & Samuel Simon - 2013 - Archai: Revista de Estudos Sobre as Origens Do Pensamento Ocidental 11:21-31.
    O objetivo deste artigo é analisar os usos que Werner Heisenberg fez da filosofia grega em sua obra. Pretende-se relacionar tais usos não apenas com a argumentação interna presente nos textos do físico alemão, mas também com o contexto histórico, conflitos e debates entre as diversas interpretações da teoria dos quanta durante a primeira metade do século XX. Faremos, inicialmente, uma apresentação geral da teoria quântica e da presença da filosofia na obra de Heisenberg e, em seguida, um (...)
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  10. Heisenberg Quantum Mechanics, Numeral Set-Theory And.Han Geurdes - manuscript
    In the paper we will employ set theory to study the formal aspects of quantum mechanics without explicitly making use of space-time. It is demonstrated that von Neuman and Zermelo numeral sets, previously efectively used in the explanation of Hardy’s paradox, follow a Heisenberg quantum form. Here monadic union plays the role of time derivative. The logical counterpart of monadic union plays the part of the Hamiltonian in the commutator. The use of numerals and monadic union in the classical (...)
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  11. Overcoming the Heisenberg Principle: Art Theory Arising Out of Wolfgang Pauli’s Collapsed Wave.Lisa Paul Streitfeld - unknown
    “Applying the Heisenberg Uncertainty Principle to 21st Century Art” was delivered to the 2009 Congress of the International Association of Art Critics (AICA) in Dublin as a guide to critical thinking through a paradigm shift. This new paper uncovers a new critical theory in the form of a formula that has been successfully applied to a universal appraisal of arts across all boundaries, whether they be gender, discipline or culture. The configuration predicted by Pauli as arising from under the (...)
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  12. Welt Im Wandel: Werner Heisenbergs Ansätze Zu Einer Pluralistischen Philosophie.Gregor Schiemann - 2009 - In A. Schwarz & A. Nordmann (eds.), Philosophierende Forscher. Alber.
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  13. The Hermeneutics of the Technological World: The Heidegger‐Heisenberg Dispute.Otto Pöggeler - 1993 - International Journal of Philosophical Studies 1 (1):21 – 48.
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  14. On the Philosophical Views of Werner Heisenberg and His Notion of a Closed Theory From the Later Wittgenstein's Perspective.Francois-Igor Pris - 2014 - AL-Mukhatabat 9.
    I interpret the philosophical views of Werner Heisenberg as a pragmatism and non-metaphysical realism of a Wittgensteinian kind. The “closed theory” is a Wittgensteinian rule/concept.
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  15. On the Philosophical Views of Werner Heisenberg.Francois-Igor Pris - 2014 - NB Philosophical Investigations (Russian E-Journal) (8):25-71.
    Я интерпретирую философские взгляды Вернера Гайзенберга как прагматизм и неметафизический реализм виттгенштайновского типа. «Замкнутая теория» – виттгенштайновское правило/концепт. В отличие от Бокулич, предпочитающей позицию Дирака относительно природы связей между различными физическими теориями, я отдаю предпочтение позиции Гайзенберга. Моя позиция, интерпретирующая Гайзенберга, также прямо противоположна позиции Поппера: критерием устоявшейся научной (замкнутой) теории является её нефальсифицируемость. -/- I interpret philosophical views of Werner Heisenberg as a pragmatism and non-metaphysical realism of a Wittgensteinian kind. The “closed theory” is a Wittgensteinian rule/concept. Unlike (...)
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  16.  59
    Levels of the World. Limits and Extensions of Nicolai Hartmann’s and Werner Heisenberg’s Conceptions of Levels.Gregor Schiemann - 2019 - HORIZON. Studies in Phenomenology 8 (1):103-122.
    The conception that the world can be represented as a system of levels of being can be traced back to the beginnings of European philosophy and has lost little of its plausibility in the meantime. One of the important modern conceptions of levels was developed by Nicolai Hartmann. It exhibits remarkable similarities and contrasts with the classification of the real developed by Werner Heisenberg in his paper Ordnung der Wirklichkeit (Order of Reality). In my contribution I will introduce these (...)
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  17. John Locke's Contemporaries' Reaction Against the Theory of Substratum in Metaphysics or Modernity? Simon Baumgartner, Thimo Heisenberg and Sebastian Krebs (Eds.).Mihretu P. Guta - 2013 - In Thimo Heisenberg and Sebastian Krebs Simon Baumgartner (ed.), Anthology. Bamberg University Press.. pp. 9-28.
    The goal of this paper is to critically examine the objections of John Locke’s contemporaries against the theory of substance or substratum. Locke argues in Essay that substratum is the bearer of the properties of a particular substance. Locke also claims that we have no knowledge of substratum. But Locke’s claim about our ignorance as to what substratum is, is contentious. That is, if we don’t know what substratum is, then what is the point of proposing it as a bearer (...)
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  18. 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 and (...)
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  19. Realismos E Anti-Realismos Na Física Do Século XX: Werner Heisenberg, O Pensamento Grego E Os Debates Na Contrução da Teoria Quântica.Anderson Cleiton Fernandes Leite - 2008 - Dissertation, UNB, Brazil
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  20. On Some Cognitive Features of Clifford Algebraic Quantum Mechanics and the Origin of Indeterminism in This Theory: A Derivation of Heisenberg Uncertainty Principle by Using the Clifford Algebra.Elio Conte - manuscript
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  21. Über Wolfgang Pauli - Quantenphysik, Verständnis der Natur und die Rolle der Psyche.Alfred Gierer - 2019 - In Wissenschaftliches Denken, das Rätsel Bewusstsein und pro-religiöse Ideen. Würzburg,Germany: Königshausen&Neumann. pp. 65-81.
    An abstract in English is included in the download. Wolfgang Pauli war einer der Grossen unter den Physikern des 20. Jahrhunderts, nicht ganz so berühmt wie Heisenberg und Einstein, aber annähernd ebenso bedeutend. Er war es, der bei der Entwicklung der Quantenphysik das sogenannte Ausschließungsprinzip entdeckte und damit den Weg zu unserem physikalischen Grundverständnis der ganzen Chemie eröffnete. Seine Gedanken galten aber auch hintergründigen wissenschaftsphilosophischen Fragen, und die gängigen Auffassungen über die Rolle von Vernunft und Materialismus in der Naturwissenschaft (...)
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  22.  10
    On the Nature of Consciousness.Sergei Vasiljev - manuscript
    The material world is determined and its boundaries are established on the basis of fundamental physical laws. It turns out that the non-material world is not empty. In this world the substance has been discovered that looks like a consciousness. Consciousness has the ability to interact with matter and determine the state of matter within the limits determined by the Heisenberg uncertainty relations. It is shown that elementary particles have something that can be called as elementary consciousness. More complicated (...)
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  23.  4
    Logic, Philosophy and Physics: A Critical Commentary on the Dilemma of Categories.Abhishek Majhi - forthcoming - Axiomathes:1-17.
    I provide a critical commentary regarding the attitude of the logician and the philosopher towards the physicist and physics. The commentary is intended to showcase how a general change in attitude towards making scientific inquiries can be beneficial for science as a whole. However, such a change can come at the cost of looking beyond the categories of the disciplines of logic, philosophy and physics. It is through self-inquiry that such a change is possible, along with the realization of the (...)
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  24.  81
    Quantum-Information Conservation. The Problem About “Hidden Variables”, or the “Conservation of Energy Conservation” in Quantum Mechanics: A Historical Lesson for Future Discoveries.Vasil Penchev - 2020 - Energy Engineering (Energy) eJournal (Elsevier: SSRN) 3 (78):1-27.
    The explicit history of the “hidden variables” problem is well-known and established. The main events of its chronology are traced. An implicit context of that history is suggested. It links the problem with the “conservation of energy conservation” in quantum mechanics. Bohr, Kramers, and Slaters (1924) admitted its violation being due to the “fourth Heisenberg uncertainty”, that of energy in relation to time. Wolfgang Pauli rejected the conjecture and even forecast the existence of a new and unknown then elementary (...)
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  25. Johannes Keplers Entfernung von der Modernen Wissenschaft.Gregor Schiemann - 2014 - In M. Egger (ed.), Festschrift für Manfred Baum. De Gruyter. pp. 383-402.
    Nach einer kurzen Erinnerung an einige von Keplers Hauptwerken, in denen traditionelle und moderne Elemente eingehen (Abschnitt 1), wird zwei Beispielen die Differenz zwischen diesen beiden Elementen näher untersucht. Das erste Beispiel, Keplers Naturbegriff, dient zur Diskussion der Kritik qualitativer Unterscheidungen. Hierbei stehen Keplers Verhältnis zur aristotelischen Naturauffassung und die Relevanz dieser Relation für die moderne Wissenschaftsauffassung im Mittelpunkt (Abschnitt 2). Das andere Beispiel befasst sich mit dem absoluten Wahrheitsanspruch von Keplers Wissenschaft und rückt damit exemplarisch eine Differenz zur modernen (...)
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  26. Particular Symmetries: Group Theory of the Periodic System.Pieter Thyssen & Arnout Ceulemans - 2020 - Substantia 4 (1):7-22.
    To this day, a hundred and fifty years after Mendeleev's discovery, the overal structure of the periodic system remains unaccounted for in quantum-mechanical terms. Given this dire situation, a handful of scientists in the 1970s embarked on a quest for the symmetries that lie hidden in the periodic table. Their goal was to explain the table's structure in group-theoretical terms. We argue that this symmetry program required an important paradigm shift in the understanding of the nature of chemical elements. The (...)
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  27. Quantum Mechanics in Terms of Realism.Arthur Jabs - 2017 - arXiv.Org.
    We expound an alternative to the Copenhagen interpretation of the formalism of nonrelativistic quantum mechanics. The basic difference is that the new interpretation is formulated in the language of epistemological realism. It involves a change in some basic physical concepts. The ψ function is no longer interpreted as a probability amplitude of the observed behaviour of elementary particles but as an objective physical field representing the particles themselves. The particles are thus extended objects whose extension varies in time according to (...)
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  28. Is the Quantum World Composed of Propensitons?Nicholas Maxwell - 2007 - In Mauricio Suarez (ed.), Probabilities, Causes and Propensities in Physics. Springer. pp. 221-243.
    In this paper I outline my propensiton version of quantum theory (PQT). PQT is a fully micro-realistic version of quantum theory that provides us with a very natural possible solution to the fundamental wave/particle problem, and is free of the severe defects of orthodox quantum theory (OQT) as a result. PQT makes sense of the quantum world. PQT recovers all the empirical success of OQT and is, furthermore, empirically testable (although not as yet tested). I argue that Einstein almost put (...)
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  29. How to Spell Out the Epistemic Conception of Quantum States.Simon Friederich - 2011 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 42 (3):149-157.
    The paper investigates the epistemic conception of quantum states---the view that quantum states are not descriptions of quantum systems but rather reflect the assigning agents' epistemic relations to the systems. This idea, which can be found already in the works of Copenhagen adherents Heisenberg and Peierls, has received increasing attention in recent years because it promises an understanding of quantum theory in which neither the measurement problem nor a conflict between quantum non-locality and relativity theory arises. Here it is (...)
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  30. Popper’s Paradoxical Pursuit of Natural Philosophy.Nicholas Maxwell - 2004 - In Jeremy Shearmur & Geoffrey Stokes (eds.), The Cambridge Companion to Popper. Cambridge University Press. pp. 170-207.
    Unlike almost all other philosophers of science, Karl Popper sought to contribute to natural philosophy or cosmology – a synthesis of science and philosophy. I consider his contributions to the philosophy of science and quantum theory in this light. There is, however, a paradox. Popper’s most famous contribution – his principle of demarcation – in driving a wedge between science and metaphysics, serves to undermine the very thing he professes to love: natural philosophy. I argue that Popper’s philosophy of science (...)
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  31. On the Physical Problem of Spatial Dimensions: An Alternative Procedure to Stability Arguments.Francisco Caruso & Roberto Moreira Xavier - 1987 - Fundamenta Scientiae 8 (1):73-91.
    Why is space 3-dimensional? The fi rst answer to this question, entirely based on Physics, was given by Ehrenfest, in 1917, who showed that the stability requirement for n-dimensional two-body planetary system very strongly constrains space dimensionality, favouring 3-d. This kind of approach will be generically called "stability postulate" throughout this paper and was shown by Tangherlini, in 1963, to be still valid in the framework of general relativity as well as for quantum mechanical hydrogen atom, giving the same constraint (...)
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  32. Biological Autonomy.Attila Grandpierre & Menas Kafatos - 2012 - Philosophy Study 2 (9):631-649.
    We argue that genuine biological autonomy, or described at human level as free will, requires taking into account quantum vacuum processes in the context of biological teleology. One faces at least three basic problems of genuine biological autonomy: (1) if biological autonomy is not physical, where does it come from? (2) Is there a room for biological causes? And (3) how to obtain a workable model of biological teleology? It is shown here that the solution of all these three problems (...)
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  33. Was ist Natur? Klassische Texte zur Naturphilosophie.Gregor Schiemann (ed.) - 1996 - Deutscher Taschenbuchverlag.
    "Wir mögen an der Natur beobachten, messen, rechnen, wägen und so weiter, wie wir wollen, es ist doch nur unser Maß und Gewicht, wie der Mensch das Maß der Dinge ist." So schrieb Goethe im Jahre 1807. "Die Natur wird uns keine Sonderbehandlung gewähren, nur weil wir uns als 'Krone der Schöpfung' betrachten... Ich fürchte, sie ist nicht eitel genug, um sich an den Menschen als einen Spiegel zu klammern, in dem allein sie ihre eigene Schönheit sehen kann", schreibt der (...)
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  34. Wissenschaft, Religion und die deutungsoffenen Grundfragen der Biologie.Alfred Gierer - 2009 - In Preprint series Max Planck Institute for the History of Science. Berlin: mpi history of science. pp. preprint 388.
    The full text of this essay is available in an English translation (also in philpapers) under: Alfred Gierer, Science, religion, and basic biological issues that are open to interpretation. Der Artikel bildet das Schlusskapitel des Buches " Alfred Gierer: Wissenschaftliches Denken, das Rätsel Bewusstsein und pro-religiöse Ideen", Königshausen&Neumann, Würzburg 2019. Reichweite und Grenzen naturwissenschaftlicher Erklärungen ergeben sich zum einen aus der universellen Gültigkeit physikalischer Gesetze, zum anderen aus prinzipiellen, intrinsischen Grenzen der Bestimmbarkeit und Berechenbarkeit, zumal bei selbstbezüglichen Fragestellungen. In diesem (...)
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  35. Generalized Uncertainty Principle.Saurav Dwivedi - manuscript
    Quantum theory brought an irreducible lawlessness in physics. This is accompanied by lack of specification of state of a system. We can not measure states even though they ever existed. We can measure only transition from one state into another. We deduce this lack of determination of state mathematically, and thus provide formalism for maximum precision of determination of mixed states. However, the results thus obtained show consistency with Heisenberg's uncertainty relations.
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  36.  20
    A Review of The Algebraic Approaches to Quantum Mechanics. Some Appraisals of Their Theoretical Importance.Antonino Drago - manuscript
    The main algebraic foundations of quantum mechanics are quickly reviewed. They have been suggested since the birth of this theory till up to last years. They are the following ones: Heisenberg-Born- Jordan’s (1925), Weyl’s (1928), Dirac’s (1930), von Neumann’s (1936), Segal’s (1947), T.F. Jordan’s (1986), Morchio and Strocchi’s (2009) and Buchholz and Fregenhagen’s (2019). Four cases are stressed: 1) the misinterpretation of Dirac’s algebraic foundation; 2) von Neumann’s ‘conversion’ from the analytic approach of Hilbert space to the algebraic approach (...)
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  37. An Investigation on the Basic Conceptual Foundations of Quantum Mechanics by Using the Clifford Algebra.Elio Conte - 2011 - Advanced Studies in Theoretical Physics 5 (11):485-544.
    We review our approach to quantum mechanics adding also some new interesting results. We start by giving proof of two important theorems on the existence of the A(Si) and i,±1 N Clifford algebras. This last algebra gives proof of the von Neumann basic postulates on the quantum measurement explaining thus in an algebraic manner the wave function collapse postulated in standard quantum theory. In this manner we reach the objective to expose a self-consistent version of quantum mechanics. In detail we (...)
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  38. Philosophical Problems of Quantum Ontology.Graeme Donald Robertson - 1976 - Dissertation, Cambridge
    What is a physical object according to the theory of quantum mechanics? The first answer to be considered is that given by Bohr in terms of the concept of complementarity. This interpretation is illustrated by way of an example, the two slit experiment, which highlights some of the associated problems of ontology. One such problem is the so-called problem of measurement or observation. Various interpretations of measurement in Quantum Theory, including those of Heisenberg, von Neumann, Everett and Bohr, are (...)
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  39.  15
    My Mind is Not the Universe: The Map is Not the Territory.Xiaoyang Yu - manuscript
    In order to describe my findings/conclusions systematically, a new semantic system (i.e., a new language) has to be intentionally defined by the present article. Humans are limited in what they know by the technical limitation of their cortical language network. A reality is a situation model (SM). For example, the conventionally-called “physical reality” around my conventionally-called “physical body” is actually a “geometric” SM of my brain. The universe is an autonomous objective parallel computing automaton which evolves by itself automatically/unintentionally – (...)
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  40. Quantum Mechanics Foundations.Bakytzhan Oralbekov - manuscript
    Gravity remains the most elusive field. Its relationship with the electromagnetic field is poorly understood. Relativity and quantum mechanics describe the aforementioned fields, respectively. Bosons and fermions are often credited with responsibility for the interactions of force and matter. It is shown here that fermions factually determine the gravitational structure of the universe, while bosons are responsible for the three established and described forces. Underlying the relationships of the gravitational and electromagnetic fields is a symmetrical probability distribution of fermions and (...)
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  41. Buddhismus Und Quantenphysik: Die Wirklichkeitsbegriffe Nāgārjunas Und der Quantenphsyik [I.E. Quantenphysik].Christian Thomas Kohl - 2005 - 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. Elastic Membrane Based Model of Human Perception.Alexander Egoyan - 2011 - Toward a Science of Consciousness.
    Undoubtedly the Penrose-Hameroff Orch OR model may be considered as a good theory for describing information processing mechanisms and holistic phenomena in the human brain, but it doesn’t give us satisfactory explanation of human perception. In this work a new approach explaining our perception is introduced, which is in good agreement with Orch OR model and other mainstream science theories such as string theory, loop quantum gravity and holographic principle. It is shown that human perception cannot be explained in the (...)
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  43. 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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  44.  50
    Indeterminism in Quantum Mechanics: Beyond and/or Within.Vasil Penchev - 2020 - Development of Innovation eJournal (Elsevier: SSRN) 8 (68):1-5.
    The problem of indeterminism in quantum mechanics usually being considered as a generalization determinism of classical mechanics and physics for the case of discrete (quantum) changes is interpreted as an only mathematical problem referring to the relation of a set of independent choices to a well-ordered series therefore regulated by the equivalence of the axiom of choice and the well-ordering “theorem”. The former corresponds to quantum indeterminism, and the latter, to classical determinism. No other premises (besides the above only mathematical (...)
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  45.  27
    Quantum Gravity As the Unification of General Relativity & Quantum Mechanics.Vasil Penchev - 2020 - Philosophy of Science eJournal (Elsevier: SSRN) 13 (32):1-3.
    A nonstandard viewpoint to quantum gravity is discussed. General relativity and quantum mechanics are to be related as two descriptions of the same, e.g. as Heisenberg’s matrix mechanics and Schrödinger’s wave mechanics merged in the contemporary quantum mechanics. From the viewpoint of general relativity one can search for that generalization of relativity implying the in-variance “within – out of” of the same system.
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  46.  35
    Quantum Mechanics and its Epistemological Implications.Antonio Portaluri - 2014 - Milano MI, Italia: Psiche e Realtà - Tecniche Nuove.
    On October 24th, 1927, the world's most important physicists met in Brussels for what is known as the fifth edition of the Solvay Conference. The focus of the discussion was the new Quantum Mechanics, to which most of the people present at the meeting had contributed but about which they had contrasting opinions. On the one hand, Niels Bohr and Werner Heisenberg claimed they had provided the new science with a definite structure, not subject to further modifications, while on (...)
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  47.  84
    The Communicational Properties of Single Photons Explain Their Strange Behavior in the Double-Slit Experiment.Mehran Shaghaghi - manuscript
    Simultaneous observation of the wave-like and particle-like aspects of the photon in the double-slit experiment is unallowed. The underlying reason behind this limitation is not understood. In this paper, we explain this unique behavior by considering the communicational properties of the photons. Photons have three independently adjustable properties (energy, direction, and spin) that can be used to communicate messages. The double-slit experiment setup fixes two of these properties and confines the single photon’s capacity for conveying messages to no more than (...)
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  48.  14
    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 Einstein, (...)
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  49. From Yijing to Copenhagen Interpretation of Quantum Physics.David Leong - manuscript
    In the quest and search for a physical theory of everything from the macroscopic large body matter to the microscopic elementary particles, with strange and weird concepts springing from quantum physics discovery, irreconcilable positions and inconvenient facts complicated physics – from Newtonian physics to quantum science, the question is- how do we close the gap? Indeed, there is a scientific and mathematical fireworks when the issue of quantum uncertainties and entanglements cannot be explained with classical physics. The Copenhagen interpretation is (...)
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  50. EPRB Paradox Resolution.Bell Inequalities Revisited.Jaykov Foukzon (ed.) - 2019 - Amazon.
    This book is devoted to the presentation of the new quantum mechanical formalism based on the probability representation of quantum states. In the 20s and 30s it became evident that some properties in quantum mechanics can be assigned only to the quantum mechanical system, but not necessarily to its constituents. This led Einstein, Podolsky and Rosen (EPR) to their remarkable 1935 paper where they concluded that quantum mechanics is not a complete theory of nature (EPR paradox). In order to avoid (...)
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