Statistical Physics and Chaos in Fusion Plasmas - Info and Reading Options
By Horton, C. W. and Linda Reichl


"Statistical Physics and Chaos in Fusion Plasmas" was published by Wiley in 1984 - New York, the book is classified in Science genre, it has 361 pages and the language of the book is English.
“Statistical Physics and Chaos in Fusion Plasmas” Metadata:
- Title: ➤ Statistical Physics and Chaos in Fusion Plasmas
- Authors: Horton, C. W.Linda Reichl
- Language: English
- Number of Pages: 361
- Is Family Friendly: Yes - No Mature Content
- Publisher: Wiley
- Publish Date: 1984
- Publish Location: New York
- Genres: Science
“Statistical Physics and Chaos in Fusion Plasmas” Subjects and Themes:
- Subjects: ➤ Plasma confinement - Chaotic behavior in systems - Nonlinear theories - Congresses - Statistical physics - Plasma (ionized gases)
Edition Specifications:
- Pagination: xiii, 361 p. :
Edition Identifiers:
- Google Books ID: 6xl5AAAAIAAJ
- The Open Library ID: OL3177191M - OL19174186W
- Online Computer Library Center (OCLC) ID: 9970440
- Library of Congress Control Number (LCCN): 83019649
- ISBN-10: 0471883107
- All ISBNs: 0471883107
AI-generated Review of “Statistical Physics and Chaos in Fusion Plasmas”:
Snippets and Summary:
Unique to this book is the collection of works on the problem of long-lived correlations in phase space of the Vlasov Poisson system.
"Statistical Physics and Chaos in Fusion Plasmas" Description:
Google Books:
Papers from twenty-nine of the world's leading scientists investigate the statistical properties of nonlinear dynamical systems, emphasizing their relation to the problem of plasma confinement. A powerful, new diagrammatic peturbation theory is presented for a first principles calculation of the Clump Kinetic equation, and for the first time, detailed calculations and experimental considerations describe the practical consequences of these correlations. Unique to this book is the collection of works on the problem of long-lived correlations in phase space of the Vlasov Poisson system. A new method of computing Lyapunov exponents from experimental data, and a method for calculating the splitting of periodic orbits in conservative systems are developed.
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