This book is an outcome of a European collaboration on applications of stochastical methods to problems of science and engineering. The articles present methods allowing concrete calculations without neglecting the mathematical foundations. They address physicists and engineers interested in scientific computation and simulation techniques.
In particular the volume covers: simulation, stability theory, Lyapounov exponents, stochastic modelling, statistics on trajectories, parametric stochastic control, Fokker Planck equations, and Wiener filtering.
| ISBN: | 9783540602149 |
| Publication date: | 9th October 1995 |
| Author: | Paul Kree, W Wedig |
| Publisher: | Springer an imprint of Springer Berlin Heidelberg |
| Format: | Hardback |
| Pagination: | 393 pages |
| Series: | Lecture Notes in Physics |
| Genres: |
Mathematical physics Probability and statistics Physics: Fluid mechanics Maths for scientists Artificial intelligence Applied physics Physics |
This book is an outcome of a European collaboration on applications of stochastical methods to problems of science and engineering. The articles present methods allowing concrete calculations without neglecting the mathematical foundations. They address physicists and engineers interested in scientific computation and simulation techniques.
In particular the volume covers: simulation, stability theory, Lyapounov exponents, stochastic modelling, statistics on trajectories, parametric stochastic control, Fokker Planck equations, and Wiener filtering.
Probabilistic Methods in Applied Physics features in the following genres: Mathematical physics, Probability and statistics, Physics: Fluid mechanics, Maths for scientists, Artificial intelligence, Applied physics, Physics
Probabilistic Methods in Applied Physics is available in Paperback, Hardback
Probabilistic Methods in Applied Physics was written by Paul Kree, W Wedig and published by Springer an imprint of Springer Berlin Heidelberg
Probabilistic Methods in Applied Physics has 393 pages
Yes it is part of Lecture Notes in Physics series