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Related lectures (32)
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Stellarators: Confinement Concepts
Explores stellarators as alternatives to tokamaks, discussing 3D magnetic configurations, pros and cons, history, and other confinement concepts.
Thermonuclear Fusion: Power Balance
Explores fusion power density, losses, breakeven, ignition, and engineering fusion gain in thermonuclear fusion reactors.
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Plasma Physics and Fusion Energy
Explores the complexity of boundary plasma in fusion energy research, focusing on experimental techniques and simulations to understand plasma dynamics and improve fusion reactor design.
Nuclear Fusion: Creating Stars on Earth
Covers nuclear fusion as a sustainable energy source and its potential to create stars on Earth through advanced research and technology.
Introduction to Plasma Physics
Covers high-confinement regimes, induced current density, fusion plasma self-sustainment, and MHD ideal conditions.
Magnetohydrodynamics: Two-Fluid Model
Explores magnetohydrodynamics, emphasizing the two-fluid model, Alfvén's theorem, solar wind, dynamos, and magnetic reconnection.
Ideal MHD Waves
Covers the concept of Ideal MHD waves and the behavior of plasma under different conditions.
Introduction to Nuclear Engineering: Chain Reactions and Fuel Cycles
Explores chain reactions, criticality, reactor types, and fuel cycles in nuclear engineering.
Inertial and Magnetic Fusion
Explores the principles of Inertial and Magnetic Fusion, discussing energy balance, challenges, and progress towards burning plasma.