Quantum Reprogramming [electronic resource] : Ensembles and Single Systems: A Two-Tier Approach to Quantum Mechanics / by E.J. Post.
Erişim Adresi
ISBN
9789401584104
Dil Kodu
İngilizce
Yer Numarası
DK/11126
Yazar
Basım Bildirimi
1st ed. 1995.
Yayın Bilgisi
Dordrecht : Springer Netherlands : Imprint: Springer, 1995.
Fiziksel Niteleme
XIV, 322 p. online resource.
Dizi
Boston Studies in the Philosophy and History of Science, 2214-7942 ; 181
İçindekiler Notu
Introductory Remarks -- Introductory Remarks -- The Copenhagen Era -- The Psychology of the 1925 Revolution -- Reassessing Copenhagen -- Copenhagen Versus Copenhagen -- Von Neumann, Popper-EPR, Bohm, Bell, Aspect -- A Sommerfeld-De Rham View of Single Systems -- Period Integrals: A Universal Tool of Physics -- Larmor and Cyclotron Aspects of Flux Quanta -- Fitting Period Integrals to Physics -- Implications of Cooperative Behavior -- A Tale of Fine Structure Coincidences -- Classical Nonclassical Asymptotics -- An Attempt at Cohomological Synthesis -- Arrowed Time and Cyclic Time -- Quantum Cohomology -- Optimizing Reduction to Familiar Concepts -- Ramifications of the Two-Tier View of Q.M. -- Compatibility of Quantum Mechanics and Relativity -- Quantum Understanding in Global Perspective -- Absolute Versus Relative Indeterminism -- The Diffeo-4 Mandate of Michelson-Sagnac -- Epilogue for Extrapolating a Favor of Fortune -- Epilogue for Extrapolating a Favor of Fortune.
Özet, vb.
Many, perhaps most textbooks of quantum mechanics present a Copenhagen, single system angle; fewer present the subject matter as an instrument for treating ensembles, but the two methods have been silently coexisting since the mid-Thirties. This lingering dichotomy of purpose for a major physical discipline has much shrouded further insights into the foundations of quantum theory. Quantum Reprogramming resolves this long-standing dichotomy by examining the mutual relation between single systems and ensembles, assigning each its own tools for treating the subject at hand: i.e., Schrödinger-Dirac methods for ensembles versus period integrals for single systems. A unified treatment of integer and fractional quantum Hall effects and a finite description of the electron's anomalies are mentioned as measures of justification for the chosen procedure of resolving an old-time dichotomy. The methods of presentation are, in part, elementary, with repetitive references needed to delineate differences with respect to standard methods. The parts on period integrals are developed with a perspective on elementary methods in physics, thus leading up to some standard results of de Rham theory and algebraic topology. Audience: Students of physics, mathematics, philosophers as well as outsiders with a general interest in the conceptual development of physics will find useful reading in these pages, which will stimulate further inquiry and study.
Konu
Metaphysics.
History.
Quantum physics.
Algebraic topology.
Metaphysics.
History.
Quantum Physics.
Algebraic Topology.
History.
Quantum physics.
Algebraic topology.
Metaphysics.
History.
Quantum Physics.
Algebraic Topology.
Kurum Adı
Eseri Alıntıla
Referansları kullanmadan önce gözden geçirmeniz ve varsa gerekli düzeltmeleri yapmanız önerilir.
Dijital Kaynak
MARC Görünümü
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520 |aMany, perhaps most textbooks of quantum mechanics present a Copenhagen, single system angle; fewer present the subject matter as an instrument for treating ensembles, but the two methods have been silently coexisting since the mid-Thirties. This lingering dichotomy of purpose for a major physical discipline has much shrouded further insights into the foundations of quantum theory. Quantum Reprogramming resolves this long-standing dichotomy by examining the mutual relation between single systems and ensembles, assigning each its own tools for treating the subject at hand: i.e., Schrödinger-Dirac methods for ensembles versus period integrals for single systems. A unified treatment of integer and fractional quantum Hall effects and a finite description of the electron's anomalies are mentioned as measures of justification for the chosen procedure of resolving an old-time dichotomy. The methods of presentation are, in part, elementary, with repetitive references needed to delineate differences with respect to standard methods. The parts on period integrals are developed with a perspective on elementary methods in physics, thus leading up to some standard results of de Rham theory and algebraic topology. Audience: Students of physics, mathematics, philosophers as well as outsiders with a general interest in the conceptual development of physics will find useful reading in these pages, which will stimulate further inquiry and study.
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532 8 |aInaccessible, or known limited accessibility
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aMetaphysics.
650 0|aHistory.
650 0|aQuantum physics.
650 0|aAlgebraic topology.
650 14|aMetaphysics.
650 24|aHistory.
650 24|aQuantum Physics.
650 24|aAlgebraic Topology.
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024 7 |a10.1007/978-94-015-8410-4|2doi
041 |aeng
049 |aTürk Tarih Kurumu Kütüphanesi
050 4|aBD95-131
072 7|aHPJ|2bicssc
072 7|aPHI013000|2bisacsh
072 7|aQDTJ|2thema
082 04|a110|223
090 |aDK/11126
100 1 |aPost, E.J.|eauthor.|4aut|4http://id.loc.gov/vocabulary/relators/aut
245 10|aQuantum Reprogramming|h[electronic resource] :|bEnsembles and Single Systems: A Two-Tier Approach to Quantum Mechanics /|cby E.J. Post.
250 |a1st ed. 1995.
264 1|aDordrecht :|bSpringer Netherlands :|bImprint: Springer,|c1995.
300 |aXIV, 322 p.|bonline resource.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
347 |atext file|bPDF|2rda
490 1 |aBoston Studies in the Philosophy and History of Science,|x2214-7942 ;|v181
505 0 |aIntroductory Remarks -- Introductory Remarks -- The Copenhagen Era -- The Psychology of the 1925 Revolution -- Reassessing Copenhagen -- Copenhagen Versus Copenhagen -- Von Neumann, Popper-EPR, Bohm, Bell, Aspect -- A Sommerfeld-De Rham View of Single Systems -- Period Integrals: A Universal Tool of Physics -- Larmor and Cyclotron Aspects of Flux Quanta -- Fitting Period Integrals to Physics -- Implications of Cooperative Behavior -- A Tale of Fine Structure Coincidences -- Classical Nonclassical Asymptotics -- An Attempt at Cohomological Synthesis -- Arrowed Time and Cyclic Time -- Quantum Cohomology -- Optimizing Reduction to Familiar Concepts -- Ramifications of the Two-Tier View of Q.M. -- Compatibility of Quantum Mechanics and Relativity -- Quantum Understanding in Global Perspective -- Absolute Versus Relative Indeterminism -- The Diffeo-4 Mandate of Michelson-Sagnac -- Epilogue for Extrapolating a Favor of Fortune -- Epilogue for Extrapolating a Favor of Fortune.
520 |aMany, perhaps most textbooks of quantum mechanics present a Copenhagen, single system angle; fewer present the subject matter as an instrument for treating ensembles, but the two methods have been silently coexisting since the mid-Thirties. This lingering dichotomy of purpose for a major physical discipline has much shrouded further insights into the foundations of quantum theory. Quantum Reprogramming resolves this long-standing dichotomy by examining the mutual relation between single systems and ensembles, assigning each its own tools for treating the subject at hand: i.e., Schrödinger-Dirac methods for ensembles versus period integrals for single systems. A unified treatment of integer and fractional quantum Hall effects and a finite description of the electron's anomalies are mentioned as measures of justification for the chosen procedure of resolving an old-time dichotomy. The methods of presentation are, in part, elementary, with repetitive references needed to delineate differences with respect to standard methods. The parts on period integrals are developed with a perspective on elementary methods in physics, thus leading up to some standard results of de Rham theory and algebraic topology. Audience: Students of physics, mathematics, philosophers as well as outsiders with a general interest in the conceptual development of physics will find useful reading in these pages, which will stimulate further inquiry and study.
532 8 |aAccessibility summary: This PDF is not accessible. It is based on scanned pages and does not support features such as screen reader compatibility or described non-text content (images, graphs etc). However, it likely supports searchable and selectable text based on OCR (Optical Character Recognition). Users with accessibility needs may not be able to use this content effectively. Please contact us at accessibilitysupport@springernature.com if you require assistance or an alternative format.
532 8 |aInaccessible, or known limited accessibility
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aMetaphysics.
650 0|aHistory.
650 0|aQuantum physics.
650 0|aAlgebraic topology.
650 14|aMetaphysics.
650 24|aHistory.
650 24|aQuantum Physics.
650 24|aAlgebraic Topology.
710 2 |aSpringerLink (Online service)
773 0 |tSpringer Nature eBook
776 08|iPrinted edition:|z9780792335658
776 08|iPrinted edition:|z9789048145751
776 08|iPrinted edition:|z9789401584111
830 0|aBoston Studies in the Philosophy and History of Science,|x2214-7942 ;|v181
856 40|uhttps://doi.org/10.1007/978-94-015-8410-4
912 |aZDB-2-SHU
912 |aZDB-2-SXPR
912 |aZDB-2-BAE
950 |aHumanities, Social Sciences and Law (SpringerNature-11648)
950 |aPhilosophy and Religion (R0) (SpringerNature-43725)
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