Results for 'Bohr, Kant, atomic theory, correspondence principle, quantum physics'

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  1. A Kantian Interpretation of Niels Bohr's Early Correspondence Principle: 1917-1924.Roberto Angeloni - 2017 - Studia Philosophica Estonica 10 (1):8-24.
    In the present paper I aim to discuss the philosophical foundations of the early correspondence principle, by comparing the conceptual structure underlying the first correspondence principle with the procedure of analogy that Immanuel Kant introduced in the Critique of Judgment from 1790. On such a comparison, I will seek to demonstrate the consistency of the conceptual ratio according to which the correspondence principle is to the classical "concepts" of space and time, as these a priori forms of (...)
     
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  2.  65
    Atomic theory and the description of nature.Niels Bohr - 1934 - Woodbridge, Conn.: Ox Bow Press.
    Introductory survey -- Atomic theory and mechanics -- The quantum postulate and the recent development of atomic theory -- The quantum of action and the description of nature -- The atomic theory and the fundamental principles underlying the description of nature.
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  3.  10
    Correspondence principle versus Planck-type theory of the atom.Sandro Petruccioli - 2014 - Archive for History of Exact Sciences 68 (5):599-639.
    This article examines the problem of the origins of the correspondence principle formulated by Bohr in 1920 and intends to test the correctness of the argument that the essential elements of that principle were already present in the 1913 “trilogy”. In contrast to this point of view, moreover widely shared in the literature, this article argues that it is possible to find a connection between the formulation of the correspondence principle and the assessment that led Bohr to abandon (...)
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  4.  18
    Atoms, metaphors, and paradoxes: Niels Bohr and the construction of a new physics.Sandro Petruccioli - 1993 - New York: Cambridge University Press.
    This book reexamines the birth of quantum mechanics, in particular examining the development of crucial and original insights of Bohr. In particular, it gives a detailed study of the development and the interpretation given to Bohr's Principle of Correspondence. It also describes the role that this principle played in guiding Bohr's research over the critical period from 1920 to 1927.
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  5. Atomic physics and human knowledge.Niels Bohr - 1958 - New York,: Wiley.
    These articles and speeches by the Nobel Prize-winning physicist date from 1934 to 1958. Rather than expositions on quantum physics, the papers are philosophical in nature, exploring the relevance of atomic physics to many areas of human endeavor. Includes an essay in which Bohr and Einstein discuss quantum and_wave equation theories. 1961 edition.
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  6.  74
    Essays 1958-1962 on atomic physics and human knowledge.Niels Bohr - 1963 - Woodbridge, Conn.: Ox Bow Press.
  7.  70
    The Principle Underlying Quantum Mechanics.Aage Bohr, Ben R. Mottelson & Ole Ulfbeck - 2004 - Foundations of Physics 34 (3):405-417.
    The present article reports on the finding of the principle behind quantum mechanics. The principle, referred to as genuine fortuitousness, implies that the basic event, a click in a counter, comes without any cause and thus as a discontinuity in spacetime. From this principle, the formalism of quantum mechanics emerges with a radically new content, no longer dealing with things to be measured. Instead, quantum mechanics is recognized as the theory of distributions of uncaused clicks that form (...)
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  8.  80
    On the notions of causality and complementarity.Niels Bohr - 1948 - Dialectica 2 (3-4):312-319.
    SummaryA short exposition is given of the foundation of the causal description in classical physics and the failure of the principle of causality in coping with atomic phenomena. It is emphasized that the individuality of the quantum processes excludes a separation between a behaviour of the atomic objects and their interaction with the measuring instruments denning the conditions under which the phenomena appear. This circumstance forces us to recognize a novel relationship, conveniently termed complementarity, between empirical (...)
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  9. The description of nature: Niels Bohr and the philosophy of quantum physics.John Honner - 1987 - New York: Oxford University Press. Edited by Niels Bohr.
    Niels Bohr, founding father of modern atomic physics and quantum theory, was as original a philosopher as he was a physicist. This study explores several dimensions of Bohr's vision: the formulation of quantum theory and the problems associated with its interpretation, the notions of complementarity and correspondence, the debates with Einstein about objectivity and realism, and his sense of the infinite harmony of nature. Honner focuses on Bohr's epistemological lesson, the conviction that all our description (...)
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  10.  6
    Filosofiske skrifter.Niels Bohr - 2013 - Aarhus: i samarbejde med Niels Bohr Arkivet.
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  11.  93
    The quantitative epistemological content of Bohr's correspondence principle.Arthur Komar - 1970 - Synthese 21 (1):83 - 92.
    The basic dynamical quantities of classical mechanics, such as position, linear momentum, angular momentum and energy, obtain their fundamental epistomological content by means of their intimate relationship to the symmetries of the space-time manifold which is the arena of physics. The program of canonical quantization can be understood as a two stage process. The first stage is Bohr's Correspondence Principle, whereby the basic dynamical quantities of the quantum theory are required to retain precisely the same relationship to (...)
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  12.  15
    The Correspondence Principle and the Understanding of Decoherence.Sebastian Fortin & Olimpia Lombardi - 2019 - Foundations of Physics 49 (12):1372-1393.
    Although Bohr’s Correspondence Principle (CP) played a central role in the first days of quantum mechanics, its original version seems to have no present-day relevance. The purpose of this article is to show that the CP, with no need of being interpreted in terms of the quantum-to-classical limit, still plays a relevant role in the understanding of the relationships between the classical and the quantum domains. In particular, it will be argued that a generic version of (...)
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  13.  17
    Scientific Explanation and Atomic Physics[REVIEW]James Brennan - 1985 - Review of Metaphysics 38 (3):660-662.
    In the long history of science there is nothing quite like the famous dialogue which ensued between Albert Einstein and Neils Bohr about the validity and meaning of the new quantum theory. By 1927 when the first public debate took place, both men stood at the top of their profession. Einstein was the creator of the Special and General theories of relativity and also had made major contributions to atomic theory. Bohr had developed the successful model of the (...)
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  14.  35
    Bohr correspondence principle for large quantum numbers.Richard L. Liboff - 1975 - Foundations of Physics 5 (2):271-293.
    Periodic systems are considered whose increments in quantum energy grow with quantum number. In the limit of large quantum number, systems are found to give correspondence in form between classical and quantum frequency-energy dependences. Solely passing to large quantum numbers, however, does not guarantee the classical spectrum. For the examples cited, successive quantum frequencies remain separated by the incrementhI −1, whereI is independent of quantum number. Frequency correspondence follows in Planck's limit,h (...)
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  15.  42
    An immanent criticism of Lakatos' account of the 'degenerating phase' of Bohr's atomic theory.Hans Radder - 1982 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 13 (1):99-109.
    Summary This paper presents an immanent criticism of Lakatos' reconstruction of the degenerating phase of Bohr's atomic theory. That is to say, the historiographical methods used are exclusively of a Lakatosian kind. Such a closer Lakatosian look at the historical episode in question shows that Lakatos' own reconstruction is incorrect on three essential points. These are the role of the correspondence principle, the position of the hard core in Bohr's programme, and the presence of important novel predicted facts. (...)
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  16. 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 (...)
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  17.  73
    On the verge of umdeutung in minnesota: Van vleck and the correspondence principle.Anthony Duncan & Michel Janssen - unknown
    In October 1924, The Physical Review, a relatively minor journal at the time, published a remarkable two-part paper by John H. Van Vleck, working in virtual isolation at the University of Minnesota. Van Vleck used Bohr's correspondence principle and Einstein's quantum theory of radiation to find quantum formulae for the emission, absorption, and dispersion of radiation. The paper is similar but in many ways superior to the well-known paper by Kramers and Heisenberg published the following year that (...)
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  18. The Quantum Postulate and the Recent Development of Atomic Theory.Niels Bohr - 1928 - Nature 121:580--590.
  19.  66
    Epistemic Primacy vs. Ontological Elusiveness of Spatial Extension: Is There an Evolutionary Role for the Quantum?Massimo Pauri - 2011 - Foundations of Physics 41 (11):1677-1702.
    A critical re-examination of the history of the concepts of space (including spacetime of general relativity and relativistic quantum field theory) reveals a basic ontological elusiveness of spatial extension, while, at the same time, highlighting the fact that its epistemic primacy seems to be unavoidably imposed on us (as stated by A.Einstein “giving up the extensional continuum … is like to breathe in airless space”). On the other hand, Planck’s discovery of the atomization of action leads to the fundamental (...)
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  20. Transcendental Philosophy And Quantum Physics.Patrícia Kauark-Leite - 2010 - Manuscrito 33 (1):243-267.
    In the Critique of Pure Reason Kant argues that the empirical knowledge of the world depends on a priori conditions of human sensibility and understanding, i. e., our capacities of sense experience and concept formation. The objective knowledge presupposes, on one hand, space and time as a priori conditions of sensibility and, on another hand, a priori judgments, like the principle of causality, as constitutive conditions of understanding. The problem is that in the XX century the physical science completely changed (...)
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  21.  8
    Practicing the Correspondence Principle in the Old Quantum Theory: A Transformation Through Implementation.Martin Jähnert - 2019 - Springer Verlag.
    This book presents a history of the correspondence principle from a new perspective. The author provides a unique exploration of the relation between the practice of theory and conceptual development in physics. In the process, he argues for a new understanding of the history of the old quantum theory and the emergence of quantum mechanics. The analysis looks at how the correspondence principle was disseminated and how the principle was applied as a research tool during (...)
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  22.  65
    The incongruent correspondence: Seven non-classical years of old quantum theory.Shahin Kaveh - 2014 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 46 (2):239-246.
    The Correspondence Principle of old quantum theory is commonly considered to be the requirement that quantum and classical theories converge in their empirical predictions in the appropriate asymptotic limit. That perception has persisted despite the fact that Bohr and other early proponents of CP clearly did not intend it as a mere requirement, and despite much recent historical work. In this paper, I build on this work by first giving an explicit formulation to the mentioned asymptotic requirement (...)
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  23.  21
    On the verge of Umdeutung in Minnesota: Van Vleck and the correspondence principle. Part one.Michel Janssen & Anthony Duncan - 2007 - Archive for History of Exact Sciences 61 (6):553-624.
    In October 1924, The Physical Review, a relatively minor journal at the time, published a remarkable two-part paper by John H. Van Vleck, working in virtual isolation at the University of Minnesota. Using Bohr’s correspondence principle and Einstein’s quantum theory of radiation along with advanced techniques from classical mechanics, Van Vleck showed that quantum formulae for emission, absorption, and dispersion of radiation merge with their classical counterparts in the limit of high quantum numbers. For modern readers (...)
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  24.  20
    On the verge of Umdeutung in Minnesota: Van Vleck and the correspondence principle. Part two.Michel Janssen & Anthony Duncan - 2007 - Archive for History of Exact Sciences 61 (6):625-671.
    This is the second installment of a two-part paper on developments in quantum dispersion theory leading up to Heisenberg’s Umdeutung paper. In telling this story, we have taken a 1924 paper by John H. Van Vleck in The Physical Review as our main guide. In this second part we present the detailed derivations on which our narrative in the first part rests. The central result that we derive is the Kramers dispersion formula, which played a key role in the (...)
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  25. The philosophical writings of Niels Bohr.Niels Bohr - 1987 - Woodbridge, Conn.: Ox Bow Press.
    v. 1. Atomic theory and the description of nature -- v. 2. Essays 1932-1957 on atomic physics and human knowledge -- v. 3. Essays 1958-1962 on atomic physics and human knowledge -- v. 4. Causality and complementarity.
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  26.  43
    Essays 1932-1957 on atomic physics and human knowledge.Niels Bohr - 1958 - Woodbridge, Conn.: Ox Bow Press.
    Introduction -- Light and life -- Biology and atomic physics -- Natural philosophy and human cultures -- Discussion with Einstein on epistemological problems in atomic physics -- Unity of knowledge -- Atoms and human knowledge -- Physical science and the problem of life.
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  27. Kantian and Neo-Kantian First Principles for Physical and Metaphysical Cognition.Michael E. Cuffaro - manuscript
    I argue that Immanuel Kant's critical philosophy—in particular the doctrine of transcendental idealism which grounds it—is best understood as an `epistemic' or `metaphilosophical' doctrine. As such it aims to show how one may engage in the natural sciences and in metaphysics under the restriction that certain conditions are imposed on our cognition of objects. Underlying Kant's doctrine, however, is an ontological posit, of a sort, regarding the fundamental nature of our cognition. This posit, sometimes called the `discursivity thesis', while considered (...)
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  28. Inter-theory Relations in Quantum Gravity: Correspondence, Reduction and Emergence.Karen Crowther - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 63:74-85.
    Relationships between current theories, and relationships between current theories and the sought theory of quantum gravity (QG), play an essential role in motivating the need for QG, aiding the search for QG, and defining what would count as QG. Correspondence is the broad class of inter-theory relationships intended to demonstrate the necessary compatibility of two theories whose domains of validity overlap, in the overlap regions. The variety of roles that correspondence plays in the search for QG are (...)
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  29.  18
    Niels Bohr's Philosophy of Quantum Physics in the Light of the Helmholtzian Tradition of Theoretical Physics.Steen Brock - 2003 - Logos Verlag Berlin.
    Steen Brock paints a cross-disciplinary picture of the philosophical and scientific background for the rise of the quantum theory. He accounts for the unity of Kantian metaphysics of Nature, the Helmholtzian principles, and the Hamiltonian methods of modern pre-quantum physics. Brock shows how Planck's vision of a generalization of classical physics implies that the original quantum mechanics of Heisenberg can be regarded as a successful attempt to maintain this modern unity of physics.However, for Niels (...)
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  30.  10
    Complementarity Beyond Physics: Niels Bohr's Parallels.Arun Bala - 2017 - Cham: Imprint: Palgrave Macmillan.
    In this study Arun Bala examines the implications that Niels Bohr's principle of complementarity holds for fields beyond physics. Bohr, one of the founding figures of modern quantum physics, argued that the principle of complementarity he proposed for understanding atomic processes has parallels in psychology, biology, and social science, as well as in Buddhist and Taoist thought. But Bohr failed to offer any explanation for why complementarity might extend beyond physics, and his claims have been (...)
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  31. Quantum Mechanics and the Received View of Theories.Phillip Frank & Niels Bohr - 1986 - In Robert G. Colodny (ed.), From Quarks to Quasars: Philosophical Problems of Modern Physics. University of Pittsburgh Press. pp. 7--203.
     
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  32. Fakeons, quantum gravity and the correspondence principle.Damiano Anselmi - manuscript
    The correspondence principle made of unitarity, locality and renormalizability has been very successful in quantum field theory. Among the other things, it helped us build the standard model. However, it also showed important limitations. For example, it failed to restrict the gauge group and the matter sector in a powerful way. After discussing its effectiveness, we upgrade it to make room for quantum gravity. The unitarity assumption is better understood, since it allows for the presence of physical (...)
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  33.  86
    Genuine Fortuitousness. Where Did That Click Come From?Ole Ulfbeck & Aage Bohr - 2001 - Foundations of Physics 31 (5):757-774.
    The paper presents a revised view of quantum mechanics centered on the notion (“genuine fortuitousness”) that the click in a counter is a totally lawless event, which comes by itself. A crucial point is the distinction between events on the spacetime scene and the content of the symbolic algorism. A revised conception of matrix variables emerges, by which such a variable, as part of a whole, does not have a value, under any circumstance. This conception is at variance with (...)
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  34. Quantum physics without quantum philosophy.Detlef Dürr, Sheldon Goldstein & Nino Zanghì - 1995 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 26 (2):137-149.
    Quantum philosophy, a peculiar twentieth-century malady, is responsible for most of the conceptual muddle plaguing the foundations of quantum physics. When this philosophy is eschewed, one naturally arrives at Bohmian mechanics, which is what emerges from Schrodinger's equation for a nonrelativistic system of particles when we merely insist that 'particles' means particles. While distinctly non-Newtonian, Bohmian mechanics is a fully deterministic theory of particles in motion, a motion choreographed by the wave function. The quantum formalism emerges (...)
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  35.  37
    Quantum physics and the philosophical tradition.Aage Petersen - 1968 - New York,: Belfer Graduate School of Science, Yeshiva University.
    Piercing incisively and deeply into the nature of the overlapping of the material andmental realms. Aage Petersen uncovers the reciprocal relations between quantum physics and theconcepts of metaphysics and epistemology, assessing the extent to which each has influenced theother. The author is eminently qualified to undertake this important work, which grew out of hisclose contact with Neils Bohr and his Copenhagen school during the years 1952-1962.Although themathematical formalism of quantum physics has long since been established, the (...)
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  36. Quantum Physics: an overview of a weird world: A primer on the conceptual foundations of quantum physics.Marco Masi - 2019 - Indy Edition.
    This is the first book in a two-volume series. The present volume introduces the basics of the conceptual foundations of quantum physics. It appeared first as a series of video lectures on the online learning platform Udemy.]There is probably no science that is as confusing as quantum theory. There's so much misleading information on the subject that for most people it is very difficult to separate science facts from pseudoscience. The goal of this book is to make (...)
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  37. Three puzzles about Bohr's correspondence principle.Alisa Bokulich - unknown
    Niels Bohr’s “correspondence principle” is typically believed to be the requirement that in the limit of large quantum numbers (n→∞) there is a statistical agreement between the quantum and classical frequencies. A closer reading of Bohr’s writings on the correspondence principle, however, reveals that this interpretation is mistaken. Specifically, Bohr makes the following three puzzling claims: First, he claims that the correspondence principle applies to small quantum numbers as well as large (while the statistical (...)
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  38.  49
    On the theory of measurement in quantum mechanical systems.I. I. I. Durand - 1960 - Philosophy of Science 27 (2):115-133.
    This paper is concerned with the description of the process of measurement within the context of a quantum theory of the physical world. It is noted that quantum mechanics permits a quasi-classical description (classical in the limited sense implied by the correspondence principle of Bohr) of those macroscopic phenomena in terms of which the observer forms his perceptions. Thus, the process of measurement in quantum mechanics can be understood on the quasi-classical level by transcribing from the (...)
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  39.  55
    Continuous quantum measurements and the action uncertainty principle.Michael B. Mensky - 1992 - Foundations of Physics 22 (9):1173-1193.
    The path-integral approach to quantum theory of continuous measurements has been developed in preceding works of the author. According to this approach the measurement amplitude determining probabilities of different outputs of the measurement can be evaluated in the form of a restricted path integral (a path integral “in finite limits”). With the help of the measurement amplitude, maximum deviation of measurement outputs from the classical one can be easily determined. The aim of the present paper is to express this (...)
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  40.  56
    An examination of the quantum theories III.William Marias Malisoff - 1934 - Philosophy of Science 1 (4):398-408.
    The Bohr formulation—the original one—is now largely a matter of history. The usual career of a theory was its fate. It explained much, but it failed at the first signs of complication, even for the simplest molecules as hydrogen and helium. Some results were either only approximate in a loose or incomplete fashion, e.g. in the application of the correspondence principle to intensities, the only reliable predictions being only for an absence of certain lines, or they quite disagreed with (...)
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  41. Quantum physics, philosophy, and the image of God: Insights from Wolfgang Pauli.K. V. Laurikainen - 1990 - Zygon 25 (4):391-404.
    Nobel Laureate in physics Wolfgang Pauli studied philosophy and the history of ideas intensively, especially in his later years, to form an accurate ontology vis-à-vis quantum theory. Pauli's close contacts with the Swiss psychiatrist C.G. Jung gave him special qualifications for also understanding the basic problems of empirical knowledge. After Pauli's sudden death in 1958, this work was maintained mainly in his posthumously published correspondence, which so far extends only to 1939. Because Pauli's view differs essentially from (...)
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  42. Early impact of quantum physics on chemistry: George Hevesy’s work on rare earth elements and Michael Polanyi’s absorption theory. [REVIEW]Gabor Pallo - 2011 - Foundations of Chemistry 13 (1):51-61.
    After Heitler and London published their pioneering work on the application of quantum mechanics to chemistry in 1927, it became an almost unquestioned dogma that chemistry would soon disappear as a discipline of its own rights. Reductionism felt victorious in the hope of analytically describing the chemical bond and the structure of molecules. The old quantum theory has already produced a widely applied model for the structure of atoms and the explanation of the periodic system. This paper will (...)
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  43. Transcendental Philosophy and Quantum Theory.Patricia Kauark-Leite - 2010 - Manuscrito – Rev. Int. Fil 33 (1):243-267.
    In the Critique of Pure Reason Kant argues that the empirical knowledge of the world depends on a priori conditions of human sensibility and understanding, i. e., our capacities of sense experience and concept formation. The objective knowledge presupposes, on one hand, space and time as a priori conditions of sensibility and, on another hand, a priori judgments, like the principle of causality, as constitutive conditions of understanding. The problem is that in the XX century the physical science completely changed (...)
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  44.  11
    Review of Slobodan Perovic's From Data to Quanta: Niels Bohr’s Vision of Physics[REVIEW]Michael E. Cuffaro - 2023 - Philosophy of Science 91 (2):525-529.
    There has, as of late, emerged a promising strand in the historical and philosophical literature on Bohr that focuses on the central importance assigned in his view to the details of the experimental context under which observations of the systems described by quantum theory are made. Perovic’s book, which I summarize in the first part of this review, belongs to this tradition. The book is not without its shortcomings, which I summarize in the second part of this review, but (...)
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  45.  7
    Principles of physics.Donald R. Franceschetti (ed.) - 2016 - Ipswich, Massachusetts: Salem Press, a division of EBSCO Information Services, Inc. ;.
    Aberrations -- Absorption -- Accuracy and precision -- Alpha radiation -- Amplitude -- Angular forces -- Angular momentum -- Antenna -- Arago dot -- Aperture -- Archimedes's principle -- Band theory of solids -- Bernoulli's principle -- Beta radiation -- Blackbody radiation -- Bohr atom -- Bose condensation -- Bra-ket notation -- British thermal unit (BTU) -- Calculating system efficiency -- Circular motion -- Closed systems and isolated systems -- Concave and convex -- Conservation of charge -- Conservation of energy (...)
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  46. Quantum Physics and Philosophical Problems.V. A. Fok - 1971 - Russian Studies in Philosophy 10 (3):252-256.
    The chief object of my paper is to clarify the notion of relativity to the means of observation as the basis for description of physical phenomena. This concept is so important that it deserves the name "the principle of relativity to the means of observation." This principle is particularly important to a correct understanding of quantum mechanics. The notion of relativity to the means of observation is, in a certain sense, a generalization of the notion of relativity to the (...)
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  47. Between classical and quantum.Nicolaas P. Landsman - 2007 - Handbook of the Philosophy of Science 2:417--553.
    The relationship between classical and quantum theory is of central importance to the philosophy of physics, and any interpretation of quantum mechanics has to clarify it. Our discussion of this relationship is partly historical and conceptual, but mostly technical and mathematically rigorous, including over 500 references. For example, we sketch how certain intuitive ideas of the founders of quantum theory have fared in the light of current mathematical knowledge. One such idea that has certainly stood the (...)
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  48. Heuristics and the generalized correspondence principle.Hans Radder - 1991 - British Journal for the Philosophy of Science 42 (2):195-226.
    Several philosophers of science have claimed that the correspondence principle can be generalized from quantum physics to all of (particularly physical) science and that in fact it constitutes one of the major heuristical rules for the construction of new theories. In order to evaluate these claims, first the use of the correspondence principle in (the genesis of) quantum mechanics will be examined in detail. It is concluded from this and from other examples in the history (...)
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  49.  14
    Quantum Physics and the Philosophical Tradition. [REVIEW]O. H. S. - 1969 - Review of Metaphysics 22 (3):576-576.
    This book is a preliminary treatment investigating how quantum physics' view of the world is related to the central concepts and doctrines of the western philosophical tradition. Recognizing the analogy between the subject-object distinction in philosophy and the instrument-system distinction in physics, Petersen sees that the problems of description in quantum theory and in philosophy have a profound kinship and suggests that quantal description and the concept of complementarity might play an important role in the solution (...)
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  50.  43
    An instructional model for a radical conceptual change towards quantum mechanics concepts.George Kalkanis, Pandora Hadzidaki & Dimitrios Stavrou - 2003 - Science Education 87 (2):257-280.
    We believe that physics education has to meet today’s requirement for a qualitative approach to Quantum Mechanics (QM) worldview. An effective answer to the corresponding instructional problem might allow the basic ideas of QM to be accessed atan early stage of physics education. This paper presents part of a project that aims at introducing a sufficient, simple, and relevant teaching approach towards QM into in-/preservice teacher education, i.e., at providing teachers with the indispensable scientific knowledge and epistemological (...)
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