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標(biāo)題: Titlebook: Quantum Riemannian Geometry; Edwin J. Beggs,Shahn Majid Book 2020 Springer Nature Switzerland AG 2020 noncommutative geometry.quantum grou [打印本頁]

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書目名稱Quantum Riemannian Geometry影響因子(影響力)




書目名稱Quantum Riemannian Geometry影響因子(影響力)學(xué)科排名




書目名稱Quantum Riemannian Geometry網(wǎng)絡(luò)公開度




書目名稱Quantum Riemannian Geometry網(wǎng)絡(luò)公開度學(xué)科排名




書目名稱Quantum Riemannian Geometry被引頻次




書目名稱Quantum Riemannian Geometry被引頻次學(xué)科排名




書目名稱Quantum Riemannian Geometry年度引用




書目名稱Quantum Riemannian Geometry年度引用學(xué)科排名




書目名稱Quantum Riemannian Geometry讀者反饋




書目名稱Quantum Riemannian Geometry讀者反饋學(xué)科排名





作者: Disk199    時(shí)間: 2025-3-21 22:06

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Edwin J. Beggs,Shahn Majidpplementary material: .Combustion systems are confined fields of compressible fluids where exothermic processes of combustion take place, subject to boundary conditions imposed at its borders. The subject of .Dynamics of Combustion Systems. is presented in three parts:..Part 1. .Exothermicity. – con
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Edwin J. Beggs,Shahn Majidpplementary material: .Combustion systems are confined fields of compressible fluids where exothermic processes of combustion take place, subject to boundary conditions imposed at its borders. The subject of .Dynamics of Combustion Systems. is presented in three parts:..Part 1. .Exothermicity. – con
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Edwin J. Beggs,Shahn Majidpplementary material: .Combustion systems are confined fields of compressible fluids where exothermic processes of combustion take place, subject to boundary conditions imposed at its borders. The subject of .Dynamics of Combustion Systems. is presented in three parts:..Part 1. .Exothermicity. – con
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pplementary material: .Combustion systems are confined fields of compressible fluids where exothermic processes of combustion take place, subject to boundary conditions imposed at its borders. The subject of .Dynamics of Combustion Systems. is presented in three parts:..Part 1. .Exothermicity. – con
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pplementary material: .Combustion systems are confined fields of compressible fluids where exothermic processes of combustion take place, subject to boundary conditions imposed at its borders. The subject of .Dynamics of Combustion Systems. is presented in three parts:..Part 1. .Exothermicity. – con
作者: CORE    時(shí)間: 2025-3-23 17:24
Quantum Principal Bundles and Framings,udes bundles and bimodule q-monopole connections on the q- sphere, which combines with our quantum framing theory to provide our first encounter with a ’quantum Levi-Civita connection’ as a torsion free metric compatible bimodule connection on the cotangent bundle.
作者: hedonic    時(shí)間: 2025-3-23 18:22
Quantum Spacetime, model in the wave operator approach. We end with a brief introduction to ‘classical quantum gravity’ in the form of Poisson-Riemannian geometry and a brief introduction to the construction of quasiassociative examples by a one-sided module-algebra cochain twist.
作者: HUMP    時(shí)間: 2025-3-24 00:18
Book 2020 reinvention of differential geometry that refers only to the coordinate algebra, now possibly noncommutative, rather than to actual points..Such a theory is needed for the geometry of Hopf algebras or quantum groups, which provide key examples, as well as in physics to model quantum gravity effects
作者: 刺激    時(shí)間: 2025-3-24 02:57
Differentials on an Algebra,cohomology, quantum metrics, Laplacians, and many of the key examples that will feature throughout the book. These include matrix algebras and enveloping algebras of Lie algebras as noncommutative spaces, group algebras, the algebra of functions on groups and more generally on graphs, the noncommuta
作者: 細(xì)查    時(shí)間: 2025-3-24 10:32
Hopf Algebras and Their Bicovariant Calculi,co)quasitriangular case and crossed modules in the case of invertible antipode. We then cover the construction of differential structures on them and on associated algebras, including the theory of the quantum Lie algebra of a bicovariant calculus and of braided-Lie algebras in the coquasitriangular
作者: MURAL    時(shí)間: 2025-3-24 13:19
Vector Bundles and Connections,ive modules. The q-sphere, fuzzy sphere and q-fuzzy-sphere provide natural examples with nontrivial line bundles. The chapter also connects up via the associated projector with Connes’ approach to noncommutative geometry based on cyclic cohomology and the Chern-Connes pairing between K-theory and cy
作者: faction    時(shí)間: 2025-3-24 17:38
Curvature, Cohomology and Sheaves,reby provide a geometric approach to the Chern-Connes pairing more in line with Chern’s approach to characteristic classes in the classical case. We then study the cohomology of Hopf algebras and of differential sheaves, formulated as modules equipped with flat connections. We give analogues of clas
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Hopf Algebras and Their Bicovariant Calculi,on associated algebras, including the theory of the quantum Lie algebra of a bicovariant calculus and of braided-Lie algebras in the coquasitriangular case. Basic examples include q-SU. and the associated q-sphere. The chapter ends with the notion of a bar category needed to formulate complex conjugation and *-operations in a more categorical way.
作者: 刺激    時(shí)間: 2025-3-26 03:08
0072-7830 mmutative geometry of Alain Connes in a complementary way.Co.This book provides a comprehensive account of a modern generalisation of differential geometry in which coordinates need not commute. This requires a reinvention of differential geometry that refers only to the coordinate algebra, now poss
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https://doi.org/10.1007/978-3-030-30294-8noncommutative geometry; quantum groups; Hopf algebra; differential graded algebra; quantum Levi-Civita
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Quantum Complex Structures,This chapter formulates noncommutative complex structures along the lines of classical complex manifold theory including a bigrading of the exterior algebra to give a double complex. We then study holomorphic modules and implications for cohomology theories. Examples include the noncommutative torus and the q-sphere.
作者: 半導(dǎo)體    時(shí)間: 2025-3-26 17:54
Edwin J. Beggs,Shahn MajidProvides a self-contained and constructive approach to noncommutative differential geometry, which connects to the earlier approach to noncommutative geometry of Alain Connes in a complementary way.Co
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Quantum Riemannian Geometry978-3-030-30294-8Series ISSN 0072-7830 Series E-ISSN 2196-9701
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Book 2020-Civita’ bimodule connection, geometric Laplacians and, in some cases, Dirac operators. Thebook also covers elements of Connes’ approach to the subject coming from cyclic cohomology and spectral triples. Other topics include various other cohomology theories, holomorphic structures and noncommutativ
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Edwin J. Beggs,Shahn Majid.Chapter 8. Fronts and Interfaces ..Part 3. .Explosions. – revealing the dynamic features of fields and fronts due to rapid deposition of exothermic energy ..Chapter?9.? ?Blast Wave Theory.Chapter 10. Self-Similar Solution.Chapter 11. Phase Space Method.Chapter 12. Detonation.978-3-540-32607-6
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Edwin J. Beggs,Shahn Majid.Chapter 8. Fronts and Interfaces ..Part 3. .Explosions. – revealing the dynamic features of fields and fronts due to rapid deposition of exothermic energy ..Chapter?9.? ?Blast Wave Theory.Chapter 10. Self-Similar Solution.Chapter 11. Phase Space Method.Chapter 12. Detonation.978-3-540-32607-6
作者: 劇毒    時(shí)間: 2025-3-29 06:51
Edwin J. Beggs,Shahn Majid.Chapter 8. Fronts and Interfaces ..Part 3. .Explosions. – revealing the dynamic features of fields and fronts due to rapid deposition of exothermic energy ..Chapter?9.? ?Blast Wave Theory.Chapter 10. Self-Similar Solution.Chapter 11. Phase Space Method.Chapter 12. Detonation.978-3-540-32607-6
作者: Mercurial    時(shí)間: 2025-3-29 11:11
.Chapter 8. Fronts and Interfaces ..Part 3. .Explosions. – revealing the dynamic features of fields and fronts due to rapid deposition of exothermic energy ..Chapter?9.? ?Blast Wave Theory.Chapter 10. Self-Similar Solution.Chapter 11. Phase Space Method.Chapter 12. Detonation.978-3-540-32607-6
作者: ASSAY    時(shí)間: 2025-3-29 12:21





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