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Magnetohydrodynamics of the Sun

Magnetohydrodynamics of the Sun

Magnetohydrodynamics of the Sun

Eric Priest, University of St Andrews, Scotland
May 2014
Available
Hardback
9780521854719
£82.00
GBP
Hardback
USD
eBook

    Magnetohydrodynamics of the Sun is a completely new up-to-date rewrite from scratch of the 1982 book Solar Magnetohydrodynamics, taking account of enormous advances in understanding since that date. It describes the subtle and complex interaction between the Sun's plasma atmosphere and its magnetic field, which is responsible for many fascinating dynamic phenomena. Chapters cover the generation of the Sun's magnetic field by dynamo action, magnetoconvection and the nature of photospheric flux tubes such as sunspots, the heating of the outer atmosphere by waves or reconnection, the structure of prominences, the nature of eruptive instability and magnetic reconnection in solar flares and coronal mass ejections, and the acceleration of the solar wind by reconnection or wave-turbulence. It is essential reading for graduate students and researchers in solar physics and related fields of astronomy, plasma physics and fluid dynamics. Problem sets and other resources are available at www.cambridge.org/9780521854719.

    • This is a completely rewritten version of the author's 1982 book Solar Magnetohydrodynamics, which was a standard reference in the field
    • Gives a comprehensive review of modern solar observations and covers the whole range of solar MHD theory
    • Addresses the key unsolved puzzles in modern solar physics such as the dynamo, coronal heating, and flare acceleration problems
    • Includes end-of-chapter problems which can be downloaded from www.cambridge.org/9780521854719

    Product details

    May 2014
    Hardback
    9780521854719
    576 pages
    260 × 207 × 30 mm
    1.7kg
    493 b/w illus. 13 tables 94 exercises
    Available

    Table of Contents

    • Preface
    • 1. A description of the Sun
    • 2. Basic equations of MHD
    • 3. Magnetohydrostatics
    • 4. Waves
    • 5. Shock waves
    • 6. Magnetic reconnection
    • 7. Instability
    • 8. Dynamo theory
    • 9. Magnetoconvection and sunspots
    • 10. Heating of the upper atmosphere
    • 11. Prominences
    • 12. Solar flares and coronal mass ejections
    • 13. The solar wind
    • Appendices
    • References
    • Index.
    Resources for
    Type
    Chapter 1 solutions.pdf
    Size: 65.88 KB
    Type: application/pdf
    Chapter 9 solutions.pdf
    Size: 87.15 KB
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    Chapter 2 solutions.pdf
    Size: 70.25 KB
    Type: application/pdf
    Chapter 10 solutions.pdf
    Size: 144.35 KB
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    Chapter 3 solutions.pdf
    Size: 62.32 KB
    Type: application/pdf
    Chapter 11 solutions.pdf
    Size: 79.5 KB
    Type: application/pdf
    Chapter 4 solutions.pdf
    Size: 74.02 KB
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    Chapter 12 solutions.pdf
    Size: 158.61 KB
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    Chapter 5 solutions.pdf
    Size: 59.8 KB
    Type: application/pdf
    Chapter 13 solutions.pdf
    Size: 109.65 KB
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    Chapter 6 solutions.pdf
    Size: 113.59 KB
    Type: application/pdf
    Chapter 7 solutions.pdf
    Size: 94.96 KB
    Type: application/pdf
      Author
    • Eric Priest , University of St Andrews, Scotland

      Eric Priest completed his PhD thesis with T. G. Cowling at Leeds in 1969, having moved to a tenured position at St Andrews University in 1968. He gradually built up an internationally renowned Solar MHD group there and is now a highly active Emeritus Professor. He has edited fifteen books and written over 450 research papers. His book Solar Magnetohydrodynamics (1982) became a standard text in the field and has been completely rewritten from scratch to be reborn as Magnetohydrodynamics of the Sun. Honours include being elected a Fellow of the Royal Society (2002) and being awarded the Hale Prize of the American Astronomical Society (2002) and the Gold Medal of the Royal Astronomical Society (2009).