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Lecture
Diffusion and Transport in Tokamak Plasmas
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Related lectures (31)
Diffusion and transport in tokamak plasmas
Covers diffusive transport in tokamak plasmas, including classical and neo-classical diffusion, ambipolar diffusion, and turbulent transport.
Introduction to Plasma Physics
Covers the dynamics of particles in electric and magnetic fields in plasma physics.
Diffusion: Macroscopic View
Explores diffusion from a macroscopic perspective, emphasizing the derivation of the diffusion equation through mass conservation and fixed flux law.
MHD Equilibrium & Stability
Explores Magnetohydrodynamic equilibrium and stability, ideal MHD solutions, 'hairy ball' theorem, and boundary conditions.
Cosmic Magnetic Fields: Generation and Backreaction
Covers the generation of primordial magnetic fields and their backreaction effects in cosmology.
Magnetic Fields and Currents
Explores magnetic fields, currents, Biot-Savart law, Ampère's law, and magnetic dipoles.
Diffusion in Fluids: Understanding Mass Transport
Covers diffusion, focusing on mass transport in fluids and its mathematical formulation.
Plasma Physics: Impact Ionisation and Random Walk
Explores impact ionisation in plasma physics and the random walk model as a key challenge in understanding plasma confinement.
Transport Phenomena: Onsager Relations and Heat Equation
Covers Onsager relations, diffusion equation, Fourier's law, electrical transport, Ohm's law, and thermophoresis.
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.
Classical Transport in Plasmas
MOOC: Plasma Physics: Applications
Explores classical transport in plasmas, covering random walks, diffusion, and the derivation of diffusion coefficients in different plasma scenarios.
Sources of Magnetic Fields and Induction
Explores the generation of magnetic fields, induction, and practical applications in electromagnetism.
Symmetry Breaking: Magnetic Fields in Cosmology
Covers symmetry breaking and its role in generating magnetic fields in cosmology.
Magnetostatics: Electric Current and Magnetic Fields
Explores the interaction between electric currents and magnetic fields, including Ampère's law and electromagnetic induction.
Diffusion and Transport Phenomena
Explores diffusion, transport phenomena, Fick's law, thermal and electrical transport, Onsager's relations, and thermoelectric effects.
Magnetic Forces: Biot-Savart Law
Explores magnetic phenomena, current, charge conservation, Biot-Savart law, and Ampère's force law.
Magnetogenesis and Baryogenesis: Pseudoscalar Inflation Insights
Covers the relationship between magnetogenesis and baryogenesis in pseudoscalar inflation.
Inflationary Magnetogenesis: Primordial Curvature Perturbations and Magnetic Fields
Covers the relationship between primordial curvature perturbations and inflationary magnetic fields, emphasizing observational evidence and theoretical models.
Magnetism: Basics and Phenomena
Explores the basics of magnetism, magnetic fields, and magnetic properties in materials.
Random Walk Simulation: Mean Displacement and Diffusion Coefficient
Covers random walk simulation, mean displacement, and diffusion coefficient calculations for weakly ionized particles.
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