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Lecture
Plasma Waves in MHD Model
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Ideal MHD Waves
Covers the concept of Ideal MHD waves and the behavior of plasma under different conditions.
Plasma Waves: Two-Fluid Model
Explores plasma waves described by the two-fluid model and the behavior of Langmuir waves.
Magnetohydrodynamics: Modeling and Equations
Covers magnetohydrodynamics, focusing on modeling challenges and MHD equations in plasma physics.
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Explores MHD equilibrium configurations in 2D, focusing on tokamaks and stellarators for magnetic confinement.
Introduction to Plasma Physics
Covers high-confinement regimes, induced current density, fusion plasma self-sustainment, and MHD ideal conditions.
Tokamak Concept: Main Elements and Properties
Explores the main elements and properties of a tokamak, including shaping, safety factor, equilibrium, and the JET tokamak.
Magnetohydrodynamic Equilibrium Configurations
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Plasma Instabilities: Non-Linear Effects in Plasmas
Explores non-linear effects in plasmas, focusing on weakly coupled plasmas, Maxwell's equations, collisional effects, and parametric instabilities.
Plasma Waves: Propagation and Modes
Explores the propagation and modes of plasma waves, including R- and L-waves, Langmuir waves, and Faraday rotation.
Two-Fluid Waves
Explores two-fluid waves in plasma physics, discussing dispersion relations and wave propagation characteristics.