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Field theory (Physics) --- 536.75 --- 530.19 --- Entropy. Statistical thermodynamics. Irreversible processes --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- 530.19 Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- 536.75 Entropy. Statistical thermodynamics. Irreversible processes
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536.75 --- 530.19 --- Entropy. Statistical thermodynamics. Irreversible processes --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- 530.19 Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- 536.75 Entropy. Statistical thermodynamics. Irreversible processes
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Physique théorique --- Theoretische natuurkunde --- Superstring theories --- Academic collection --- 530.19 --- Superstrings (Nuclear physics) --- Theories, Superstring --- String models --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- 530.19 Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc
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Field theory (Physics) --- Problems, exercises, etc --- -#KVIV --- 530.19 --- Classical field theory --- Continuum physics --- Physics --- Continuum mechanics --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- Problems, exercises, etc. --- 530.19 Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- #KVIV --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc --- Field theory (Physics) - Problems, exercises, etc
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Designed as a sequel to the authors' Introduction to Gauge Field Theory, Supersymmetric Gauge Field Theory and String Theory introduces first-year graduate students to supersymmetric theories, including supergravity and superstring theories. Starting with the necessary background in quantum field theory, the book covers the three key topics of high-energy physics. The emphasis is on practical calculations rather than abstract generalities or phenomenological results. Where possible, the authors show how to calculate, connecting the theoretical with the phenomenological. While the field continues to advance and grow, this book addresses the basic theory at the core and will likely remain relevant even if more advanced ideas change.
Supersymmetry --- Supergravity --- Superstring theories --- 530.19 --- Unified theories --- Particles (Nuclear physics) --- Symmetry (Physics) --- Superstrings (Nuclear physics) --- Theories, Superstring --- String models --- Superunified theories --- General relativity (Physics) --- Quantum theory --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- Supergravity. --- Superstring theories. --- Supersymmetry. --- 530.19 Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc --- Nuclear physics
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Quantum field theory. --- Quantum mechanics. Quantumfield theory --- Quantum field theory --- 530.19 --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- 530.19 Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- Relativistic quantum field theory --- Field theory (Physics) --- Quantum theory --- Relativity (Physics) --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc --- Théorie quantique --- Théorie quantique des champs.
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