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Related lectures (30)
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 Equilibrium & Stability
Explores Magnetohydrodynamic equilibrium and stability, ideal MHD solutions, 'hairy ball' theorem, and boundary conditions.
Magnetic Reconnection
MOOC: Plasma Physics: Applications
Covers magnetic reconnection, rising flux tubes, the Sweet-Parker model, energy balance, and open questions in plasma physics.
Magnetohydrodynamics: Two-Fluid Model
Explores magnetohydrodynamics, emphasizing the two-fluid model, Alfvén's theorem, solar wind, dynamos, and magnetic reconnection.
Astrophysics: Solar Magnetic Fields and Dynamo Theory
Explores solar magnetic fields, dynamo theory, turbulence effects, and solar cycle dynamics.
Plasma Confinement: Single Particle Perspective
MOOC: Plasma Physics: Introduction
Discusses plasma confinement using magnetic mirrors and toroidal fields, emphasizing particle dynamics and the challenges of toroidal field confinement.
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Solar Cycle & Magnetic Fields
MOOC: Plasma Physics: Applications
Explores the solar cycle, sunspots, and magnetic fields in the Sun, including properties, dynamics, and historical observations.
Cosmic Magnetic Fields: Generation and Backreaction
Covers the generation of primordial magnetic fields and their backreaction effects in cosmology.
Magnetohydrodynamics: Modeling and Equations
Covers magnetohydrodynamics, focusing on modeling challenges and MHD equations in plasma physics.
Magnetic Fields and Currents
Explores magnetic fields, currents, Biot-Savart law, Ampère's law, and magnetic dipoles.
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Magnetohydrodynamics: Plasma Physics
Covers the physics of plasmas, emphasizing magnetohydrodynamics and energy conversion processes.
Stellarators: Confinement Concepts
MOOC: Plasma Physics: Applications
Explores stellarators as alternatives to tokamaks, discussing 3D magnetic configurations, pros and cons, history, and other confinement concepts.
MHD: The Magnetohydrodynamic Description
Covers the Magnetohydrodynamic (MHD) description of plasma, including MHD equations, conservation properties, and ideal vs. resistive models.
Tokamak Concept: Main Elements and Properties
MOOC: Plasma Physics: Applications
Explores the main elements and properties of a tokamak, including shaping, safety factor, equilibrium, and the JET tokamak.
MHD Turbulence and Dynamo Instabilities
Explores observational facts and the need for dynamos in generating magnetic fields.
Magnetogenesis and Baryogenesis: Pseudoscalar Inflation Insights
Covers the relationship between magnetogenesis and baryogenesis in pseudoscalar inflation.
Plasma Physics Fundamentals
Covers the basics of plasma physics, focusing on magnetic confinement and field effects on particles.
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