Simple Brownian Diffusion

Simple Brownian Diffusion

Author: Daniel Thomas Gillespie

Publisher: OUP Oxford

Published: 2012-10-18

Total Pages: 336

ISBN-13: 0191641537

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Brownian diffusion is the motion of one or more solute molecules in a sea of very many, much smaller solvent molecules. Its importance today owes mainly to cellular chemistry, since Brownian diffusion is one of the ways in which key reactant molecules move about inside a living cell. This book focuses on the four simplest models of Brownian diffusion: the classical Fickian model, the Einstein model, the discrete-stochastic (cell-jumping) model, and the Langevin model. The authors carefully develop the theories underlying these models, assess their relative advantages, and clarify their conditions of applicability. Special attention is given to the stochastic simulation of diffusion, and to showing how simulation can complement theory and experiment. Two self-contained tutorial chapters, one on the mathematics of random variables and the other on the mathematics of continuous Markov processes (stochastic differential equations), make the book accessible to researchers from a broad spectrum of technical backgrounds.


Simple Brownian Diffusion

Simple Brownian Diffusion

Author: Daniel Thomas Gillespie

Publisher: Oxford University Press, USA

Published: 2013

Total Pages: 288

ISBN-13: 0199664501

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Brownian diffusion, the motion of large molecules in a sea of very many much smaller molecules, is topical because it is one of the ways in which biologically important molecules move about inside living cells. This book presents the mathematical physics that underlies the four simplest models of Brownian diffusion.


Diffusion Processes and their Sample Paths

Diffusion Processes and their Sample Paths

Author: Kiyosi Itô

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 341

ISBN-13: 3642620256

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Since its first publication in 1965 in the series Grundlehren der mathematischen Wissenschaften this book has had a profound and enduring influence on research into the stochastic processes associated with diffusion phenomena. Generations of mathematicians have appreciated the clarity of the descriptions given of one- or more- dimensional diffusion processes and the mathematical insight provided into Brownian motion. Now, with its republication in the Classics in Mathematics it is hoped that a new generation will be able to enjoy the classic text of Itô and McKean.


Brownian Motion

Brownian Motion

Author: Peter Mörters

Publisher: Cambridge University Press

Published: 2010-03-25

Total Pages:

ISBN-13: 1139486578

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This eagerly awaited textbook covers everything the graduate student in probability wants to know about Brownian motion, as well as the latest research in the area. Starting with the construction of Brownian motion, the book then proceeds to sample path properties like continuity and nowhere differentiability. Notions of fractal dimension are introduced early and are used throughout the book to describe fine properties of Brownian paths. The relation of Brownian motion and random walk is explored from several viewpoints, including a development of the theory of Brownian local times from random walk embeddings. Stochastic integration is introduced as a tool and an accessible treatment of the potential theory of Brownian motion clears the path for an extensive treatment of intersections of Brownian paths. An investigation of exceptional points on the Brownian path and an appendix on SLE processes, by Oded Schramm and Wendelin Werner, lead directly to recent research themes.


Essentials of Brownian Motion and Diffusion

Essentials of Brownian Motion and Diffusion

Author: Frank B. Knight

Publisher: American Mathematical Soc.

Published: 1981

Total Pages: 220

ISBN-13: 0821815180

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Presents some gratuitous generalities on scientific method as it relates to diffusion theory. This book defines Brownian motion by the characterization of P Levy, and then constructed in three basic ways and these are proved to be equivalent in the appropriate sense.


Brownian Diffusion of Submicron Particles in Air Under Nonequilibrium Conditions

Brownian Diffusion of Submicron Particles in Air Under Nonequilibrium Conditions

Author: W. George N. Slinn

Publisher:

Published: 1969

Total Pages: 62

ISBN-13:

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Brownian diffusion of particles with Knudsen number large compared to one is analyzed both in equilibrium and nonequilibrium environments. For air in equilibrium it is shown, using only Newton's laws and the central limit theorem that for specular reflection of the molecules, equipartition is a consequence of the motion. For diffuse reflections the diffusion coefficient is found to depend upon the temperature of the particle and on the number of molecules reflected diffusely. This illustrates a limitation of the fluctuation-dissipation theorem. The motion of Brownian particles in air that is in thermal and translational nonequilibrium, is influenced by heat flux and viscous stress. A new force is described which is similar to that used to explain the thermophoresis effect but which depends upon the viscous stress. The solution is found to the new Fokker-Planck equation. In the generalized convective-diffusion equation, the diffusion coefficient appears as a second order tensor and contains the influence of the viscous stress tensor on diffusion.


Investigations on the Theory of the Brownian Movement

Investigations on the Theory of the Brownian Movement

Author: Albert Einstein

Publisher: Courier Corporation

Published: 1956-01-01

Total Pages: 152

ISBN-13: 9780486603049

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Five early papers evolve theory that won Einstein a Nobel Prize: "Movement of Small Particles Suspended in a Stationary Liquid Demanded by the Molecular-Kinetic Theory of Heat"; "On the Theory of the Brownian Movement"; "A New Determination of Molecular Dimensions"; "Theoretical Observations on the Brownian Motion"; and "Elementary Theory of the Brownian Motion."


Basic Concepts for Simple and Complex Liquids

Basic Concepts for Simple and Complex Liquids

Author: Jean-Louis Barrat

Publisher: Cambridge University Press

Published: 2003-03-27

Total Pages: 410

ISBN-13: 9780521789530

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Presenting a unified approach, this book focusses on the concepts and theoretical methods that are necessary for an understanding of the physics and chemistry of the fluid state. The authors do not attempt to cover the whole field in an encyclopedic manner. Instead, important ideas are presented in a concise and rigorous style, and illustrated with examples from both simple molecular liquids and more complex soft condensed matter systems such as polymers, colloids, and liquid crystals.


Cell Biology by the Numbers

Cell Biology by the Numbers

Author: Ron Milo

Publisher: Garland Science

Published: 2015-12-07

Total Pages: 400

ISBN-13: 1317230698

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A Top 25 CHOICE 2016 Title, and recipient of the CHOICE Outstanding Academic Title (OAT) Award. How much energy is released in ATP hydrolysis? How many mRNAs are in a cell? How genetically similar are two random people? What is faster, transcription or translation?Cell Biology by the Numbers explores these questions and dozens of others provid