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"Electroweak Interactions" explores the concepts that led to unification of the weak and electromagnetic interactions. It provides the fundamental elements of the theory of compact Lie groups and their representations, enabling a basic understanding of the role of flavor symmetry in particle physics.
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Elementary particles --- Particles (Nuclear physics) --- Electroweak interactions --- Quantum chromodynamics --- Supersymmetry --- Congresses. --- Particules (physique nucléaire) --- Interactions électrofaibles --- Chromodynamique quantique --- Interactions électrofaibles. --- Chromodynamique quantique. --- Supersymétrie. --- Particules (physique nucléaire) --- Interactions électrofaibles. --- Supersymétrie.
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Elementary particles --- Electron-positron interactions. --- Positron annihilation. --- Z bosons --- Electroweak interactions --- Interactions électron-positon --- Positons --- Bosons Z --- Interactions électrofaibles --- Annihilation --- Interactions électron-positon --- Interactions électrofaibles
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Elementary particles --- Electroweak interactions --- Leptons (Nuclear physics) --- Interactions électrofaibles --- Leptons (Physique nucléaire) --- Congresses --- Congrès --- Interactions électrofaibles --- Leptons (Physique nucléaire) --- Congrès
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Elementary particles --- Weak interactions (Nuclear physics) --- Electroweak interactions --- Grand unified theories (Nuclear physics) --- Interactions faibles (Physique nucléaire) --- Interactions électrofaibles --- Unification, Théories de grande --- Congresses --- Congrès --- Interactions faibles (Physique nucléaire) --- Interactions électrofaibles --- Unification, Théories de grande --- Congrès
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This much-needed book -- the most comprehensive, up-to-date text available on nuclear physics -- expertly details the numerous theoretical techniques central to the discipline. It is based on lecture notes from a three-lecture series given at CEBAF (the Continuous Electron Beam Accelerator Facility), where John Dirk Walecka was at the time Scientific Director: Graduate Quantum Mechanics, Advanced Quantum Mechanics and Field Theory, and Special Topics in Nuclear Physics. The primary goal of this text is pedagogical; providing a clear, logical, in-depth, and unifying treatment of many diverse aspects of modern nuclear theory ranging from the non-relativistic many-body problem to the standard model of the strong, electromagnetic, and weak interactions. Four key topics are emphasized: basic nuclear structure, the relativistic nuclear many-body problem, strong-coupling QCD, and electroweak interactions with nuclei. The text is designed to provide graduate students with a basic level of understanding of modern nuclear physics so that they in turn can explore the scientific frontiers. Written by an eminent authority in the field, it will be welcomed by graduate students and researchers alike.
Electroweak interactions --- Nuclear reactions --- Nuclear structure --- Interactions électrofaibles --- Réactions nucléaires --- Structure nucléaire --- Continuous Electron Beam Accelerator Facility --- Electroweak interactions. --- Nuclear reactions. --- Nuclear structure. --- Continuous Electron Beam Accelerator Facility. --- Interactions électrofaibles --- Réactions nucléaires --- Structure nucléaire --- Continuous electron beam accelerator facility
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Superconducting Super Collider --- Quantum chromodynamics --- Electroweak interactions --- Monte Carlo method --- Particles (Nuclear physics) --- Nuclear counters --- Chromodynamique quantique --- Interactions électrofaibles --- Monte-Carlo, Méthode de --- Particules (Physique nucléaire) --- Détecteurs nucléaires --- Congresses --- Congrès --- Interactions électrofaibles --- Monte-Carlo, Méthode de --- Particules (Physique nucléaire) --- Détecteurs nucléaires --- Congrès --- Superconducting Super Collider - Congresses --- Quantum chromodynamics - Congresses --- Electroweak interactions - Congresses --- Monte Carlo method - Congresses --- Particles (Nuclear physics) - Congresses --- Nuclear counters - Congresses
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