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Introduction to MHD Instabilities
Fusion Science and Technology, 1998In this paper we will discuss the theoretical framework of ideal MHD stability. We first show that the Alfven wave is of central importance for the understanding of macroscopic plasma dynamics and, hence, of MHD stability. Then we introduce the elements of spectral theory needed for our study, and next we apply these methods to inhomogeneous plasmas in
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MHD and Micro-MHD Effects in Electrochemical Systems
1999Using a new type of electrode, MHDE, copper electrodeposition from acidic copper sulfate solution was examined.
Ryoichi Aogaki +2 more
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Evolutionarity of MHD Discontinuities
1994Of concern to us is the issue of the stability of MHD discontinuities with respect to their decomposition into more than one discontinuity. To answer this question small perturbations must be imposed on the discontinuity surface. If they do not instantaneously lead to large changes of the discontinuity, then the discontinuity is termed evolutionary.
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2014
Comprehensive, self-contained, and clearly written, this successor to Ideal Magnetohydrodynamics (1987) describes the macroscopic equilibrium and stability of high temperature plasmas - the basic fuel for the development of fusion power. Now fully updated, this book discusses the underlying physical assumptions for three basic MHD models: ideal ...
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Comprehensive, self-contained, and clearly written, this successor to Ideal Magnetohydrodynamics (1987) describes the macroscopic equilibrium and stability of high temperature plasmas - the basic fuel for the development of fusion power. Now fully updated, this book discusses the underlying physical assumptions for three basic MHD models: ideal ...
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2004
The ideal MHD equations The dynamics of magnetically confined plasmas, as exploited in laboratory nuclear fusion research and observed in astrophysical systems, is essentially of a macroscopic nature so that it can be studied in the fluid (MHD) model introduced in Chapter 2.
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The ideal MHD equations The dynamics of magnetically confined plasmas, as exploited in laboratory nuclear fusion research and observed in astrophysical systems, is essentially of a macroscopic nature so that it can be studied in the fluid (MHD) model introduced in Chapter 2.
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Liouville-type theorems for the 3D stationary Navier-Stokes, MHD and Hall-MHD equations
Journal of Mathematical Analysis and Applications, 2020Baoquan Yuan
exaly
Resonant MHD Waves in the Solar Atmosphere
Space Science Reviews, 2010M Goossens, R Erdelyi, M S Ruderman
exaly
Theoretical and experimental study of MHD (magnetohydrodynamic) micropump
Sensors and Actuators A: Physical, 2000Jaesung Jang, Seung S Lee
exaly

