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Coronal mass ejection
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Related lectures (18)
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Magnetohydrodynamics: Modeling and Equations
Covers magnetohydrodynamics, focusing on modeling challenges and MHD equations in plasma physics.
Magnetohydrodynamics: Two-Fluid Model
Explores magnetohydrodynamics, emphasizing the two-fluid model, Alfvén's theorem, solar wind, dynamos, and magnetic reconnection.
Magnetic Reconnection
Covers magnetic reconnection, rising flux tubes, the Sweet-Parker model, energy balance, and open questions in plasma physics.
Magnetohydrodynamics: Plasma Physics
Covers the physics of plasmas, emphasizing magnetohydrodynamics and energy conversion processes.
Space Mission Design and Operations
Explores space mission design, Earth's magnetic field, solar activity, and cosmic radiation effects.
Astrophysics 3: Magnetic Reconnection
Explores magnetic reconnection in astrophysics, focusing on solar flares and the solar wind.
Plasma Astrophysics: Solar Dynamics
Explores how fusion energy powers the Sun and drives powerful solar events.
Astrophysics: Solar Magnetic Fields and Dynamo Theory
Explores solar magnetic fields, dynamo theory, turbulence effects, and solar cycle dynamics.
Solar Activity
Explores the Sun's magnetic-driven features like flares and coronal mass ejections.
Ideal MHD Waves
Covers the concept of Ideal MHD waves and the behavior of plasma under different conditions.
Magnetic Fields in Astrophysical Fluids
Explores the dynamics of astrophysical fluids, focusing on cosmic magnetic fields, synchrotron emission, and plasma stability.
MHD Dynamo: Plasma Flow to Magnetic Fields
Explores MHD dynamo theory, covering magnetic field generation by conductive fluid and the Babcock-Leighton mechanism.
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MHD: The Magnetohydrodynamic Description
Covers the Magnetohydrodynamic (MHD) description of plasma, including MHD equations, conservation properties, and ideal vs. resistive models.
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.
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