An Introduction to the Kinetic Theory of Gases and Magnetoplasmas

An Introduction to the Kinetic Theory of Gases and Magnetoplasmas

by L. C. Woods
ISBN-10:
0198563930
ISBN-13:
9780198563938
Pub. Date:
04/28/1993
Publisher:
Oxford University Press, USA
ISBN-10:
0198563930
ISBN-13:
9780198563938
Pub. Date:
04/28/1993
Publisher:
Oxford University Press, USA
An Introduction to the Kinetic Theory of Gases and Magnetoplasmas

An Introduction to the Kinetic Theory of Gases and Magnetoplasmas

by L. C. Woods

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Overview

This book offers a simplified physical treatment of the kinetic theory of gases and magnetoplasmas. The text uses mean-free-path arguments when applicable and identifies problem areas where existing theory has either failed or has fallen short of expectations. Examples are provided by strong shock waves, ultrasonic waves (high Knudsen numbers), and transport across strong magnetic fields. The text pays particular attention to pressure, explaining the importance of allowing for its collisional nature from the outset in developing kinetic theory. In traditional theory, pressure is defined as a momentum flux, bypassing its collisional nature, and while this omission usually has no adverse practical effects, it leads to errors with increasing Knudsen numbers. The text is an indispensable introduction to the field for students in kinetic theory, physics, and applied mathematics, as well as to plasma researchers interested in transport phenomena.


Product Details

ISBN-13: 9780198563938
Publisher: Oxford University Press, USA
Publication date: 04/28/1993
Series: Oxford Science Publications Series
Pages: 304
Product dimensions: 6.38(w) x 9.56(h) x 0.87(d)

About the Author

Oxford University (Emeritus)

Table of Contents

1. Basic Concepts
2. The Maxwellian Velocity Distribution
3. Elementary Kinetic Theory
4. Particle Diffusion
5. Intermediate Kinetic Theory
6. Advanced Kinetic Theory
7. Boltzmann's Kinetic Equation
8. Second-order Kinetic Theory
9. Dynamics of Charged Particles
10. Kinetic Theory for Magnetoplasmas
11. Transport Across Strong Magnetic Fields

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