Get Free Shipping on orders over $79
Macroscopic and Large Scale Phenomena : Coarse Graining, Mean Field Limits and Ergodicity - Adrian Muntean

Macroscopic and Large Scale Phenomena

Coarse Graining, Mean Field Limits and Ergodicity

By: Adrian Muntean

eText | 28 January 2016

At a Glance

eText


$159.01

or 4 interest-free payments of $39.75 with

 or 

Instant online reading in your Booktopia eTextbook Library *

Why choose an eTextbook?

Instant Access *

Purchase and read your book immediately

Read Aloud

Listen and follow along as Bookshelf reads to you

Study Tools

Built-in study tools like highlights and more

* eTextbooks are not downloadable to your eReader or an app and can be accessed via web browsers only. You must be connected to the internet and have no technical issues with your device or browser that could prevent the eTextbook from operating.

This book is the offspring of a summer school school "Macroscopic and large scale

phenomena: coarse graining, mean field limits and ergodicity", which was held in 2012 at the University of Twente, the Netherlands. The focus lies on mathematically rigorous methods for multiscale problems of physical origins.

Each of the four book chapters is based on a set of lectures delivered at the school, yet all authors have expanded and refined their contributions.

Francois Golse delivers a chapter on the dynamics of large particle systems in the mean field limit and surveys the most significant tools and methods to establish such limits with mathematical rigor. Golse discusses in depth a variety of examples, including Vlasov--Poisson and Vlasov--Maxwell systems.

Lucia Scardia focuses on the rigorous derivation of macroscopic models using $Gamma$-convergence, a more recent variational method, which has proved very powerful for problems in material science. Scardia illustrates this by various basic examples and a more advanced case study from dislocation theory.

Alexander Mielke's contribution focuses on the multiscale modeling and rigorous analysis of generalized gradient systems through the new concept of evolutionary $Gamma$-convergence. Numerous evocative examples are given, e.g., relating to periodic homogenization and the passage from viscous to dry friction.

Martin Goll and Evgeny Verbitskiy conclude this volume, taking a dynamical systems and ergodic theory viewpoint. They review recent developments in the study of homoclinic points for certain discrete dynamical systems, relating to particle systems via ergodic properties of lattices configurations.

on
Desktop
Tablet
Mobile

More in Applied Mathematics

Markov Chains : Theory and Applications - C.R. Rao

eBOOK

RRP $359.04

$323.99

10%
OFF
Pi the Laws of Duality - G. Neal

eBOOK

Grape Explications - Neal D. Hulkower

eBOOK

RRP $18.69

$17.99

Discrete Mathematics - Julian Ting

eBOOK

Mathematics for Engineers - Ritu Shrivastava

eBOOK