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The Physics of Fluids and Plasmas

The Physics of Fluids and Plasmas
An Introduction for Astrophysicists

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  • Date Published: December 1998
  • availability: Available
  • format: Paperback
  • isbn: 9780521555432

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  • A good working knowledge of fluid mechanics and plasma physics is essential for the modern astrophysicist. This graduate textbook provides a clear, pedagogical introduction to these core subjects. Assuming an undergraduate background in physics, this book develops fluid mechanics and plasma physics from first principles. This book is unique because it presents neutral fluids and plasmas in a unified scheme, clearly indicating both their similarities and their differences. Also, both the macroscopic (continuum) and microscopic (particles) theories are developed, establishing the connections between them. Throughout, key examples from astrophysics are used, though no previous knowledge of astronomy is assumed. Exercises are included at the end of chapters to test the reader's understanding. This textbook is aimed primarily at astrophysics graduate students. It will also be of interest to advanced students in physics and applied mathematics seeking a unified view of fluid mechanics and plasma physics, encompassing both the microscopic and macroscopic theories.

    • Illustrated throughout with key problems in astrophysics, without assuming a background knowledge of astronomy
    • Exercises included at the end of chapters test the reader's understanding
    • Uniquely presents fluid mechanics and plasma physics from a unified point of view - highlighting both their similarities and differences
    • Both macroscopic (continuum) and microscopic (particle) theories are developed, clarifying connections between the two approaches
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    Reviews & endorsements

    "The Physics of Fluids and Plasmas presents the basic ideas of hydrodynamics, plasma dynamics, and stellar dynamics under realistic astrophysical conditions. The text is unique in its extensive development of the similarities and differences of these three concepts, combining the essential formal calculations with the simple physical concepts to give the reader an intuitive grasp of the dynamical phenomena of the active astronomical universe...the author applies the theoretical tools to such diverse phenomena as magnetic buoyancy and sunspots, magnetohydrodynamics dynamos, stellar winds, jets, coronal heating, magnetic reconnection, accretion disks, etc....The new student, as well as the experienced research worker, will find this textbook useful and instructive." Professor Eugene N. Parker, Enrico Fermi Institute, University of Chicago.

    "[This] book provides a comprehensive introduction to both fluid dynamics and to plasma physics, with many astrophysical examples. Here at last is an excellent textbook for a theoretical course, at graduate level, in plasma astrophysics." Professor Nigel O. Weiss, FRS, Department of Applied Mathematics and Theoretical Physics, University of Cambridge

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    Product details

    • Date Published: December 1998
    • format: Paperback
    • isbn: 9780521555432
    • length: 448 pages
    • dimensions: 247 x 186 x 25 mm
    • weight: 0.8kg
    • contains: 90 b/w illus. 2 tables 68 exercises
    • availability: Available
  • Table of Contents

    Introduction
    Part I. Neutral Fluids:
    2. Boltzmann equation
    3. March towards hydrodynamics
    4. Properties of ideal fluids
    5. Viscous flows
    6. Gas dynamics
    7. Linear theory of waves and instabilities
    8. Turbulence
    9. Rotation and hydrodynamics
    Part II. Plasmas:
    10. Plasma orbit theory
    11. Dynamics of many charged particles
    12. Collisionless processes in plasmas
    13. Collisional processes and the one-fluid model
    14. Basic magnetohydrodynamics
    15. Theory of magnetic topologies
    16. Dynamo theory
    Appendices: A. Useful vector relations
    B. Integrals in kinetic theory
    C. Formulae and equations in cylindrical and spherical coordinates
    D. Values of various quantities
    E. Basic parameters pertaining to plasmas
    Suggestions for further reading
    References.

  • Author

    Arnab Rai Choudhuri, Indian Institute of Science, Bangalore

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