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✦   LIBER   ✦

[Applied Mathematical Sciences] Brownian Dynamics at Boundaries and Interfaces Volume 186 || Brownian Models of Chemical Reactions in Microdomains

✍ Scribed by Schuss, Zeev


Book ID
120926647
Publisher
Springer New York
Year
2013
Tongue
English
Weight
455 KB
Edition
2013
Category
Article
ISBN
1461476879

No coin nor oath required. For personal study only.

✦ Synopsis


Brownian dynamics serve as mathematical models for the diffusive motion of microscopic particles of various shapes in gaseous, liquid, or solid environments. The renewed interest in Brownian dynamics is due primarily to their key role in molecular and cellular biophysics: diffusion of ions and molecules is the driver of all life. Brownian dynamics simulations are the numerical realizations of stochastic differential equations that model the functions of biological micro devices such as protein ionic channels of biological membranes, cardiac myocytes, neuronal synapses, and many more. Stochastic differential equations are ubiquitous models in computational physics, chemistry, biophysics, computer science, communications theory, mathematical finance theory, and many other disciplines. Brownian dynamics simulations of the random motion of particles, be it molecules or stock prices, give rise to mathematical problems that neither the kinetic theory of Maxwell and Boltzmann, nor Einstein’s and Langevin’s theories of Brownian motion could predict. This book takes the readers on a journey that starts with the rigorous definition of mathematical Brownian motion, and ends with the explicit solution of a series of complex problems that have immediate applications. It is aimed at applied mathematicians, physicists, theoretical chemists, and physiologists who are interested in modeling, analysis, and simulation of micro devices of microbiology. The book contains exercises and worked out examples throughout.


πŸ“œ SIMILAR VOLUMES


[Applied Mathematical Sciences] Brownian
✍ Schuss, Zeev πŸ“‚ Article πŸ“… 2013 πŸ› Springer New York 🌐 English βš– 390 KB

Brownian dynamics serve as mathematical models for the diffusive motion of microscopic particles of various shapes in gaseous, liquid, or solid environments. The renewed interest in Brownian dynamics is due primarily to their key role in molecular and cellular biophysics: diffusion of ions and molec

[Applied Mathematical Sciences] Brownian
✍ Schuss, Zeev πŸ“‚ Article πŸ“… 2013 πŸ› Springer New York 🌐 English βš– 581 KB

Brownian dynamics serve as mathematical models for the diffusive motion of microscopic particles of various shapes in gaseous, liquid, or solid environments. The renewed interest in Brownian dynamics is due primarily to their key role in molecular and cellular biophysics: diffusion of ions and molec

[Applied Mathematical Sciences] Brownian
✍ Schuss, Zeev πŸ“‚ Article πŸ“… 2013 πŸ› Springer New York 🌐 English βš– 669 KB

Brownian dynamics serve as mathematical models for the diffusive motion of microscopic particles of various shapes in gaseous, liquid, or solid environments. The renewed interest in Brownian dynamics is due primarily to their key role in molecular and cellular biophysics: diffusion of ions and molec

[Applied Mathematical Sciences] Brownian
✍ Schuss, Zeev πŸ“‚ Article πŸ“… 2013 πŸ› Springer New York 🌐 English βš– 885 KB

Brownian dynamics serve as mathematical models for the diffusive motion of microscopic particles of various shapes in gaseous, liquid, or solid environments. The renewed interest in Brownian dynamics is due primarily to their key role in molecular and cellular biophysics: diffusion of ions and molec

[Applied Mathematical Sciences] Brownian
✍ Schuss, Zeev πŸ“‚ Article πŸ“… 2013 πŸ› Springer New York 🌐 English βš– 311 KB

Brownian dynamics serve as mathematical models for the diffusive motion of microscopic particles of various shapes in gaseous, liquid, or solid environments. The renewed interest in Brownian dynamics is due primarily to their key role in molecular and cellular biophysics: diffusion of ions and molec