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Lecture
Plasma Applications: Industry & Medicine
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Related lectures (33)
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.
Introduction to Plasma Physics
Introduces the basics of plasma physics, covering collective behavior, Debye length, and plasma conditions.
Plasma Physics: Collisions and Resistivity
Covers Coulomb collisions and resistivity in plasma, highlighting their random walk nature.
Newton's Laws and Collisions
Covers Newton's laws, forces, collisions, and conservation principles, illustrated through experiments and simulations.
Forced Harmonic Oscillator
Explores forced harmonic oscillators, resonance, initial conditions, and collision conservation principles.
Forced Harmonic Oscillator: Resonance
Explores the forced harmonic oscillator, damping, and resonance phenomenon, focusing on the amplitude of oscillations in resonance.
Plasma Physics: Collective Behavior
Explores plasma properties, long-range forces, and magnetization in astrophysical contexts.
Plasma Collisions: Coulomb Force
Analyzes Coulomb collisions between charged particles and the conservation of energy, momentum, and angular momentum.
Collisions in Line: Mechanics for SIE and GC
Explores collisions in line, emphasizing momentum and kinetic energy conservation, and the coefficient of restitution.
Elastic and Inelastic Collisions
Explores elastic and inelastic collisions, conservation laws, and special cases like billiard balls and rockets.
Action-Reaction Law, Collisions
Explores the action-reaction law, collisions, and conservation of momentum through various experiments and mathematical models.
Untitled
Magnetic Flux Freezing
Explains magnetic flux freezing and the transition to a 1-fluid model in plasma dynamics.
Collisions: Conservation Laws and Applications
Explores the study of collisions, emphasizing conservation laws and their broad applications beyond mechanics.
Elastic Collisions Analysis
Explores elastic and inelastic collisions, conservation laws, and real-world collision complexities.
Light Propagation in Plasmas
MOOC: Plasma Physics: Applications
Explores light propagation, resonant absorption, and collisionless absorption in plasmas.
Action-Reaction Law, Collisions
Covers the action-reaction law, types of collisions, and conservation of momentum.
Plasma Physics II: Fundamentals and Applications
Covers collisional and transport phenomena, collective phenomena, and wave-particle interactions in plasma physics.
Industrial Plasmas: Applications and Chemistry
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Explores industrial plasma applications, breakdown phenomena, and plasma chemistry challenges, including gas-phase reactions and transport processes.
Collisions: Conservation and Analysis
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Explores momentum and energy conservation in collisions, including elastic and inelastic scenarios, with practical demonstrations and conceptual questions.
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