Introduction to Statistical Physics
Autor Kerson Huangen Limba Engleză Hardback – 21 sep 2009
The book first covers the classical ensembles of statistical mechanics and stochastic processes, including Brownian motion, probability theory, and the Fokker–Planck and Langevin equations. To illustrate the use of statistical methods beyond the theory of matter, the author discusses entropy in information theory, Brownian motion in the stock market, and the Monte Carlo method in computer simulations. The next several chapters emphasize the difference between quantum mechanics and classical mechanics—the quantum phase. Applications covered include Fermi statistics and semiconductors and Bose statistics and Bose–Einstein condensation. The book concludes with advanced topics, focusing on the Ginsburg–Landau theory of the order parameter and the special kind of quantum order found in superfluidity and superconductivity.
Assuming some background knowledge of classical and quantum physics, this textbook thoroughly familiarizes advanced undergraduate students with the different aspects of statistical physics. This updated edition continues to provide the tools needed to understand and work with random processes.
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Specificații
ISBN-13: 9781420079029
ISBN-10: 1420079026
Pagini: 334
Ilustrații: 137 black & white illustrations, 4 black & white tables
Dimensiuni: 156 x 234 x 23 mm
Greutate: 1.35 kg
Ediția:Revizuită
Editura: CRC Press
Colecția Chapman and Hall/CRC
ISBN-10: 1420079026
Pagini: 334
Ilustrații: 137 black & white illustrations, 4 black & white tables
Dimensiuni: 156 x 234 x 23 mm
Greutate: 1.35 kg
Ediția:Revizuită
Editura: CRC Press
Colecția Chapman and Hall/CRC
Public țintă
UndergraduateCuprins
A Macroscopic View of Matter. Heat and Entropy. Using Thermodynamics. Phase Transitions. The Statistical Approach. Maxwell–Boltzmann Distribution. Transport Phenomena. Canonical Ensemble. Grand Canonical Ensemble. Noise. Stochastic Processes. Time-Series Analysis. The Langevin Equation. Quantum Statistics. Quantum Ensembles. The Fermi Gas. The Bose Gas. Bose–Einstein Condensation. The Order Parameter. Superfluidity. Superconductivity. Appendix. Index.
Notă biografică
Kerson Huang is Professor of Physics, Emeritus at MIT. Since retiring from active teaching, Dr. Huang has been engaged in biophysics research.
Recenzii
… suitable for advanced engineering study in an engineering or physics curriculum. … The problems at the end of each chapter and the discussion of applications will help students grasp many difficult concepts. … very readable and should be considered for an undergraduate program or by people wanting to learn about statistical physics.
—IEEE Electrical Insulation Magazine, Vol. 27, No. 3, May/June 2011
—IEEE Electrical Insulation Magazine, Vol. 27, No. 3, May/June 2011
Descriere
Written by a world-renowned theoretical physicist, this textbook thoroughly familiarizes advanced undergraduate students with the different aspects of statistical physics. Along with many new exercises, this second edition expands discussion of phase transition in thermodynamics, covers stochastic processes in greater depth, reflects current research and emerging technology concerning Bose–Einstein condensation, and makes the Ginsburg–Landau theory of the order parameter accessible to students. The methodology is illustrated with applications in information theory, the stock market, computer simulations, semiconductors, and more. A solutions manual is available upon qualifying course adoption.