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Stochastic Processes in Nonequilibrium Systems: Sitges International School of Statistical Mechanics, June 1978, Sitges, Barcelona/Spain: Lecture Notes in Physics, cartea 84

Editat de L. Garrido, P. Seglar, P.J. Shepherd
en Limba Engleză Paperback – sep 1978

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Specificații

ISBN-13: 9783540089421
ISBN-10: 354008942X
Pagini: 380
Ilustrații: XVII, 357 p. 1 illus.
Dimensiuni: 170 x 244 x 20 mm
Greutate: 0.6 kg
Ediția:1978
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Lecture Notes in Physics

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

An introduction to stochastic processes for physicists.- Stochastic differential equations with non-Markov processes.- Aspects of the theory of brownian motion.- Path-integral methods in Nonequilibrium Thermodynamics and statistics.- Synergetios — a field beyond irreversible Thermodynamics.- Computer results on transport properties.- Kinetics of phase transitions.- Stochastic behavior of simple dynamical systems.- Fokker-Planck adescription of a Navier-Stokes fluid with instability.- Operator formalism for continuous Markov processes.- Applications of path integrals.- Functional integral methods for random fields.- Kinetic equations from Hamiltonian dynamics : The Markovian limit.- Boltzmann behaviour of a spatially inhomogeneous gas.- An example of processes in physics that are nonlocal in time : The interdependence of rotational processes in the dynamics of simple fluids.- Stochastic theory for hydrodynamical systems.- Fluctuation spectra near the threshold of a current instability.- Stochastic electrodynamics: Example of a nonlinear stochastic differential equation with a non white noise stochastic force.- Brownian motion in persistent fluctuations (without thermal equilibrium).- Covariant Wigner-function approach to relativistic quantum statistics.- Stochastic model of current-coupled channels in nerve membranes.- Derivation of stochastic transport equations for systems of interacting Brownian particles.- Thermodynamic instability; oscillations, and modification of nerve synapses.- Discussion of a random-walk model with correlated jumps.- Discussion of a quantum theory of diffusion including memory effects.- The dynamo effect in magnethydrodynamic turbulence.- Dynamical correlations in nonlinear chemical reactions.- A cooperative effect with significance inbiological evolution.