Introduction to Modern Magnetohydrodynamics

Introduction to Modern Magnetohydrodynamics

by Sébastien Galtier
ISBN-10:
1107158656
ISBN-13:
9781107158658
Pub. Date:
10/06/2016
Publisher:
Cambridge University Press
ISBN-10:
1107158656
ISBN-13:
9781107158658
Pub. Date:
10/06/2016
Publisher:
Cambridge University Press
Introduction to Modern Magnetohydrodynamics

Introduction to Modern Magnetohydrodynamics

by Sébastien Galtier
$81.99
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Overview

Ninety-nine percent of ordinary matter in the Universe is in the form of ionized fluids, or plasmas. The study of the magnetic properties of such electrically conducting fluids, magnetohydrodynamics (MHD), has become a central theory in astrophysics, as well as in areas such as engineering and geophysics. This textbook offers a comprehensive introduction to MHD and its recent applications, in nature and in laboratory plasmas; from the machinery of the Sun and galaxies, to the cooling of nuclear reactors and the geodynamo. It exposes advanced undergraduate and graduate students to both classical and modern concepts, making them aware of current research and the ever-widening scope of MHD. Rigorous derivations within the text, supplemented by over 100 illustrations and followed by exercises and worked solutions at the end of each chapter, provide an engaging and practical introduction to the subject and an accessible route into this wide-ranging field.

Product Details

ISBN-13: 9781107158658
Publisher: Cambridge University Press
Publication date: 10/06/2016
Pages: 288
Product dimensions: 7.05(w) x 9.92(h) x 0.63(d)

About the Author

Sébastien Galtier is a professor of astrophysics at the Université Paris-Saclay, France. His research focusses on magnetohydrodynamic turbulence and he has published widely in the field. He was President of the French National Program in Solar Physics (CNRS) from 2010 to 2014, and is an honorary member of the prestigious Institut Universitaire de France.

Table of Contents

Preface; Table of physical quantities; Part I. Foundations: 1. Introduction; 2. Magnetohydrodynamics; 3. Conservation laws; Part II. Fundamental Processes: 4. Magnetohydrodynamic waves; 5. Dynamo; 6. Discontinuities and shocks; 7. Magnetic reconnection; Part III. Instabilities and Magnetic Confinement: 8. Static equilibrium; 9. Linear perturbation theory; 10. Study of MHD instabilities; Part IV. Turbulence: 11. Hydrodynamic turbulence; 12. MHD turbulence; 13. Advanced MHD turbulence; Appendix 1. Solutions to the exercises; Appendix 2. Formulary; References; Index.
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