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Lecture
Collisional Processes in Plasmas
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Related lectures (32)
Untitled
MHD Equilibrium & Stability
Explores Magnetohydrodynamic equilibrium and stability, ideal MHD solutions, 'hairy ball' theorem, and boundary conditions.
Introduction to Plasma Physics
Introduces the basics of plasma physics, covering collective behavior, Debye length, and plasma conditions.
Plasma Physics: Collective Behavior
Explores plasma properties, long-range forces, and magnetization in astrophysical contexts.
Magnetohydrodynamics: Modeling and Equations
Covers magnetohydrodynamics, focusing on modeling challenges and MHD equations in plasma physics.
Plasma Physics: Collisions and Resistivity
Covers Coulomb collisions and resistivity in plasma, highlighting their random walk nature.
Plasma Heating: Neutral Beams
MOOC: Plasma Physics: Applications
Explores the limitations of ohmic heating in plasma and the advantages and drawbacks of neutral beam injection for additional plasma heating.
Magnetic Reconnection
MOOC: Plasma Physics: Applications
Covers magnetic reconnection, rising flux tubes, the Sweet-Parker model, energy balance, and open questions in plasma physics.
Burning Plasmas: Fast Ions Role
MOOC: Plasma Physics: Applications
Explores burning plasma specifics, fast ions role, losses, MHD modes, turbulence, Alfvén waves interaction, and burn stability.
MHD Equilibrium Stability
MOOC: Plasma Physics: Introduction
Delves into the stability of Magnetohydrodynamic equilibria in plasmas, analyzing various instabilities and methods for stability analysis.
MHD: The Magnetohydrodynamic Description
Covers the Magnetohydrodynamic (MHD) description of plasma, including MHD equations, conservation properties, and ideal vs. resistive models.
MHD Stability and Equilibrium
Explores MHD equilibrium and stability, emphasizing energy considerations for determining stability.
MHD Equilibrium: Equations and Applications
MOOC: Plasma Physics: Introduction
Covers the equations for static ideal MHD equilibrium and force-free and force-balanced equilibria in plasma physics.
MHD Dynamo: Plasma Flow to Magnetic Fields
MOOC: Plasma Physics: Applications
Explores MHD dynamo theory, covering magnetic field generation by conductive fluid and the Babcock-Leighton mechanism.
MHD Stability and Operational Limits
Explores MHD stability, instabilities, and operational limits in tokamak plasmas, emphasizing the importance of understanding equilibrium stability and the impact of instabilities on plasma confinement.
Plasma Waves in MHD Model
MOOC: Plasma Physics: Introduction
Covers ideal MHD waves, including the shear Alfvén wave and compressional waves with a longitudinal component.
Plasma Heating: Electron vs Ion
Explores the impact of heating on electron and ion temperatures in plasmas.
Magnetohydrodynamics: Two-Fluid Model
Explores magnetohydrodynamics, emphasizing the two-fluid model, Alfvén's theorem, solar wind, dynamos, and magnetic reconnection.
MHD Equilibrium Configurations
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.
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