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Brownian motion processes
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  • Browning Agents and Active Particlesby Frank Schweitzer

    Springer 2007; US$ 79.95

    Lays out a vision for a coherent framework for understanding complex systems. By developing the idea of Brownian agents, this work combines concepts from informatics, such as multiagent systems, with approaches of statistical many-particle physics. It also shows that Brownian agent models can be successfully applied in many different contexts. more...

  • Brownian Motionby Robert M. Mazo

    OUP Oxford 2008; US$ 70.00

    Brownian motion- the incessant motion of small particles suspended in a fluid- is an important topic in statistical physics and physical chemistry. This book studies its origin in molecular scale fluctuations, its description in terms of random process theory and also in terms of statistical mechanics. - ;Brownian motion - the incessant motion of small particles suspended in a fluid - is an important topic in statistical physics and physical chemistry. This book studies its origin in molecular scale fluctuations, its description in terms of random process theory and also in terms of statistical mechanics. A number of new applications of these descriptions to physical and chemical processes, as well as statistical mechanical derivations and... more...

  • Brownian Motionby Peter Mörters; Yuval Peres

    Cambridge University Press 2010; US$ 58.00

    Everything the graduate student in probability wants to know about Brownian motion, including the latest research in the field. more...

  • Analysis and Stochastics of Growth Processes and Interface Modelsby Peter Mörters; Roger Moser; Mathew Penrose

    OUP Oxford 2008; US$ 99.00

    This book is a collection of topical survey articles by leading researchers in the fields of applied analysis and probability theory, working on the mathematical description of growth phenomena. Particular emphasis is on the interplay of the two fields, with articles by analysts being accessible for researchers in probability, and vice versa. Mathematical methods discussed in the book comprise large deviation theory, lace expansion, harmonic multi-scale techniques andhomogenisation of partial differential equations. Models based on the physics of individual particles are discussed alongside models based on the continuum description of large collections of particles, and the mathematical theories are used to describe physical phenomena such... more...

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