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Plasma Medicine: Basics & Applications
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Related lectures (32)
Light Propagation in Plasmas
MOOC: Plasma Physics: Applications
Explores light propagation, resonant absorption, and collisionless absorption in plasmas.
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.
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
Covers high-confinement regimes, induced current density, fusion plasma self-sustainment, and MHD ideal conditions.
Electromagnetic Waves in Plasmas
Covers the behavior of electromagnetic waves in non-magnetized plasmas and the simplification of equations for non-collisional plasmas.
Plasma Applications: Industry & Medicine
MOOC: Plasma Physics: Applications
Surveys plasmas in industry and medicine, emphasizing industrial applications and plasma medicine uses.
Plasma Physics: Collective Behavior
Explores plasma properties, long-range forces, and magnetization in astrophysical contexts.
Plasma State: Properties and Effects
Covers the definition and properties of plasma, including ionization and collective effects.
Ion Acceleration with Lasers and Plasmas
MOOC: Plasma Physics: Applications
Explores ion acceleration with lasers and plasmas, including electric fields and nuclear reactions.
Plasma Physics: Debye Length
MOOC: Plasma Physics: Introduction
Explores the rigorous definition of plasma, emphasizing the Debye length and its implications.
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Plasma Physics: Frequencies and Parameters
MOOC: Plasma Physics: Introduction
Explores the definition of plasma, Debye length, plasma frequency, and collision frequency in various scenarios.
Collisional Processes in Plasmas
MOOC: Plasma Physics: Introduction
Explores collisional processes in plasmas, including electron beam slowing down, plasma resistivity, and collision frequencies.
Plasma Waves in MHD Model
MOOC: Plasma Physics: Introduction
Covers ideal MHD waves, including the shear Alfvén wave and compressional waves with a longitudinal component.
Plasma Physics: Introduction
MOOC: Plasma Physics: Introduction
Covers the properties, history, and applications of plasma in various fields.
Plasma Physics II: Fundamentals and Applications
Covers collisional and transport phenomena, collective phenomena, and wave-particle interactions in plasma physics.
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.
Burning Plasmas: Fast Ions Role
MOOC: Plasma Physics: Applications
Explores burning plasma specifics, fast ions role, losses, MHD modes, turbulence, Alfvén waves interaction, and burn stability.
Introduction to Plasma Physics
Introduces the basics of plasma physics, covering collective behavior, Debye length, and plasma conditions.
Sheaths and Plasma Etching
MOOC: Plasma Physics: Applications
Explores sheaths, ion flux, Bohm criterion, and plasma etching concepts.
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