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|a UAMI
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|a Boyarkin, Oleg.
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|a Advanced Particle Physics Two-Volume Set.
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|a Boca Raton :
|b Chapman and Hall/CRC,
|c 2011.
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|a 1 online resource (1221 pages)
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|a text
|b txt
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|a Print version record.
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|6 880-01
|a Cover; Volume I; Half Title; Title Page; Copyright Page; Dedication; Contents; Introduction; Designations; I: Mathematical Prelude; 1 Relativistic invariance; 2 Three-dimensional world; 2.1 Orthogonal transformation group O(3); 2.2 Tensor representations of the SO(3)-group; 3 The four-dimensional Minkowski space; 3.1 The homogeneous Lorenz group; 3.2 Classification of irreducible representations of the homogeneous Lorentz group; 3.3 Tensor representations of the limited homogeneous Lorentz group; 3.4 Spinor representations of the homogeneous Lorentz group.
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|a 3.5 Poincare group and its representations4 Lagrangian formulation of field theory; 4.1 Principle of least action. Lagrange-Euler equations; 4.2 Noether theorem and dynamic invariants; 4.3 Energy-momentum tensor; 4.4 Tensor of angular momentum; 4.5 Electromagnetic current vector and electric charge; 4.6 Isotopic spin; 5 Discrete symmetry operations; 5.1 Spatial inversion; 5.2 Time inversion; 5.3 Charge conjugation; 5.4 G-parity; 5.5 CPT theorem; Problems; References; II: Birds's-Eye View on the Microworld; 6 Fundamental interactions; 6.1 Species of interactions.
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|a 6.2 On the path to a unified field theory7 Atoms-Nuclei-Nucleons; 7.1 Atomism; 7.2 Rutherford model of the atom; 7.3 Structure of the atomic nucleus; 8 From muon to gluon; 9 Hadron families; 9.1 Yukawa hypothesis; 9.2 Isotopic multiplets; 9.3 Unitary multiplets; 10 Quark "atoms"; 10.1 Hypothesis of fundamental triplets; 10.2 X-ray photography of nucleons; 10.3 Parton model; 10.4 Quantum chromodynamics. The first acquaintance; 10.5 Heavy quarks and flavor symmetries; 11 Passing glance on the theory of electroweak interaction; 11.1 Spontaneous symmetry breaking.
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|a 11.2 Glashow-Weinberg-Salam theory12 Fundamental particles of the Standard Model; 13 Technical equipment of particle physics; 13.1 Accelerators; 13.2 Detectors; 13.3 Neutrino Telescopes; Problems; References; III: Quantum Idyll-Free Fields; 14 Scalar field; 14.1 Klein-Gordon equation; 14.2 Quantization; 14.3 Production and destruction operators; 14.4 Wave-corpuscle dualism; 14.5 Commutation relations. Properties of commutator functions; 14.6 Microcausality; 14.7 Relativistically covariant scheme of the canonical quantization; 14.8 Green function of the scalar field; 14.9 Causal Green function.
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|a 15.11 Dirac field quantization (configuration space).
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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|a Particles (Nuclear physics)
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650 |
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|a Elementary Particles
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|a Particules (Physique nucléaire)
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|a particle physics.
|2 aat
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|a Particles (Nuclear physics)
|2 fast
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|i has work:
|a Advanced Particle Physics Two-Volume Set (Text)
|1 https://id.oclc.org/worldcat/entity/E39PCXq9vhpwM4trRDQ3cBGHyd
|4 https://id.oclc.org/worldcat/ontology/hasWork
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776 |
0 |
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|i Print version:
|a Boyarkin, Oleg.
|t Advanced Particle Physics Two-Volume Set.
|d Boca Raton : Chapman and Hall/CRC, ©2011
|z 9781439804124
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856 |
4 |
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|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=5379435
|z Texto completo
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880 |
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|6 505-01/(S
|a 14.10 Chronological product. Convolution of operators14.11 First-order equation for scalar particles; 15 Particles with spin 1/2; 15.1 Dirac equation; 15.2 Calculating γ-matrix tracks; 15.3 Relativistic covariance; 15.4 Solutions of the free Dirac equation; 15.5 Once more about particles spin; 15.6 Polarization density matrix for Dirac particles; 15.7 Dirac equation in the external electromagnetic field; 15.8 Charge conjugation, spatial inversion, and time inversion for the Dirac field; 15.9 Relativistic quantization scheme; 15.10 Dirac field quantization (momentum space).
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|a ProQuest Ebook Central
|b EBLB
|n EBL5379435
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|a 92
|b IZTAP
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