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Week 1 |
Plasma
Physics and Magnetohydrodynamics |
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Motivation: The MHD description
Review: Essential plasma physics |
1,2, Notes
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MHD model: Postulates, derivation of two-fluid/one-fluid MHD from kinetic theory; scale independence |
3
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Week 2 |
MHD
Conservation Properties |
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Magnetic flux tubes; flux conservation; conservative form
of MHD equations; conservation laws |
4.1 - 4.3
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Dissipative MHD; jump conditions; MHD discontinuities |
4.4 - 4.6
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Week 3 |
MHD
Waves and Characteristics |
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MHD waves; phase
velocity, group velocity; dispersion diagrams |
5.1 - 5.2
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Friedrichs
diagrams; characteristics |
5.3 - 5.4
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Week 4 |
MHD
Equilibria |
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MHD equilibria;
magnetohydrostatics; Grad-Shafranov equation |
Notes
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Cylindrical
plasmas |
9
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Week 5 |
Spectral Theory |
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Stability
concepts; force operator formalism; initial value problem |
6.1 - 6.3
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Quadratic forms;
variational principles; energy principle; extension to interface
plasmas |
6.4 - 6.6
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Week 6 |
Waves
and Instabilities in Inhomogeneous Plasmas |
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Rayleigh-Taylor instability |
7
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Kelvin-Helmholtz
instability |
Notes
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Week 7 |
Instabilities Cont'd |
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Interchange instability |
Notes
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Magnetic annihilation and stagnation point flow; Sweet-Parker
reconnection |
Notes
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Week 8 |
Magnetic Reconnection
and Resistive
Plasmas |
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Unsteady reconnection; tearing
mode |
Notes
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Petschek
reconnection |
Notes
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Week 9 |
Transonic Flows and Shocks |
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MHD shocks |
Notes
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Shocks cont'd |
Notes
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Week 10 |
Channel
Flows and Boundary Layers |
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Stationary and channel flows;
MHD boundary layers |
Notes
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