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Related lectures (32)
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.
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.
Collisional Processes in Plasmas
MOOC: Plasma Physics: Introduction
Explores collisional processes in plasmas, including electron beam slowing down, plasma resistivity, and collision frequencies.
Diffusion and transport in tokamak plasmas
Covers diffusive transport in tokamak plasmas, including classical and neo-classical diffusion, ambipolar diffusion, and turbulent transport.
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.
The Sun: Fusion Reactor
MOOC: Plasma Physics: Applications
Delves into the Sun as a fusion reactor, discussing properties, fusion process, and photon diffusion.
Diffusion in Fluids: Understanding Mass Transport
Covers diffusion, focusing on mass transport in fluids and its mathematical formulation.
Plasma Physics: Collective Behavior
Explores plasma properties, long-range forces, and magnetization in astrophysical contexts.
Chemical Equilibria and Reactivity
Explores gas properties, pressure, ideal and real gases, energy in reactions, and gas laws.
Biodiversity and the Living Planet Index: Global Trends
Covers the Living Planet Index and its role in tracking global biodiversity trends and threats.
Heat Equation: Diffusion and Temperature Distribution
Explores heat diffusion, temperature distribution, and thermal equilibrium in complex systems using the heat equation and Jupyter Notebook simulations.
Plasma Physics II: Fundamentals and Applications
Covers collisional and transport phenomena, collective phenomena, and wave-particle interactions in plasma physics.
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Plasma Applications: Industry & Medicine
MOOC: Plasma Physics: Applications
Surveys plasmas in industry and medicine, emphasizing industrial applications and plasma medicine uses.
Maximum Entropy Principle: Stochastic Differential Equations
Explores the application of randomness in physical models, focusing on Brownian motion and diffusion.
Chemical Equilibria and Reactivity
Explores the kinetic model of gases, Maxwell's law, diffusion, effusion, Graham's law, and gas pressure.
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Thermal Diffusion in Materials
Covers thermal expansion, conductivity, and diffusion in materials, explaining how temperature affects properties and heat transfer.
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.
Fluid Quantities and Two-Fluid Model
MOOC: Plasma Physics: Introduction
Covers fluid quantities, moments of kinetic equation, two-fluid model, and plasma turbulence simulation.
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