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Full Description
This book deals with the basic principles, techniques, and advances being made--both experimentally and theoretically--in the study of nonequilibrium phenomena, particularly in statistical physics, chemical physics, biological physics, complex systems, and several other areas. Accessible to senior undergraduate students and post-graduate students, this self-contained book offers a choice of topics that enables them to form a coherent picture of the subject. Coverage includes equations and formulas for calculating distribution, diffusion, and dynamic mobility under different conditions. The book concludes with a generalized Langevin equation and the power spectrum of pulse sequences.
Contents
Introduction The Langevin Equation The Fluctuation-dissipation relationship The Velocity autocorrelation function Markov Processes The Fokker-Planck equation and the Ornstein-Uhlenbeck distribution Mean-squared displacement from the Langevin equation The Fokker Planck equation in phase space The diffusion equation Brownian motion Diffusion in a force field The Kubo-Green formula The dynamic mobility as a generalized susceptibility Power spectrum of a random process The generalized Langevin equation Power spectrum of a random pulse sequence Bibliography Index