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The Plasma Environment of Venus, Mars and Titan (Paperback, Softcover reprint of the original 1st ed. 2012): Karoly Szego The Plasma Environment of Venus, Mars and Titan (Paperback, Softcover reprint of the original 1st ed. 2012)
Karoly Szego
R4,537 Discovery Miles 45 370 Ships in 10 - 15 working days

This volume summarizes the recent results of the exploration of Venus, Mars and Titan in the field of space plasma physics. These are the only non-magnetic solar system bodies having dense atmospheres. A number of space missions investigated these objects; the past and the current missions are put in context with modern theoretical descriptions. The strength of the book is the comparison of the similarities and differences in the plasma interaction of Venus, Mars and Titan; such comparisons have not yet been published. This volume is aimed at graduate students and researchers working in planetary science and space physics. Previously published in Space Science Reviews journal, Vol. 162/1-4, 2011.

The Magnetodiscs and Aurorae of Giant Planets (Paperback, Softcover reprint of the original 1st ed. 2016): Karoly Szego,... The Magnetodiscs and Aurorae of Giant Planets (Paperback, Softcover reprint of the original 1st ed. 2016)
Karoly Szego, Nicholas Achilleos, Chris Arridge, Sarah Badman, Peter Delamere, …
R3,954 Discovery Miles 39 540 Ships in 10 - 15 working days

Readers will find grouped together here the most recent observations, current theoretical models and present understanding of the coupled atmosphere, magnetosphere and solar wind system. The book begins with a general discussion of mass, energy and momentum transport in magnetodiscs. The physics of partially ionized plasmas of the giant planet magnetodiscs is of general interest throughout the field of space physics, heliophysics and astrophysical plasmas; therefore, understanding the basic physical processes associated with magnetodiscs has universal applications. The second chapter characterizes the solar wind interaction and auroral responses to solar wind driven dynamics. The third chapter describes the role of magnetic reconnection and the effects on plasma transport. Finally, the last chapter characterizes the spectral and spatial properties of auroral emissions, distinguishing between solar wind drivers and internal driving mechanisms. The in-depth reviews provide an excellent reference for future research in this discipline.

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