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Related lectures (29)
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Heating and Current Drive by Waves
Explores the use of waves for heating and current drive in tokamaks, focusing on ICRH and LH waves, their mechanisms, and antenna features.
Electromagnetic Waves in Plasmas
Covers the behavior of electromagnetic waves in non-magnetized plasmas and the simplification of equations for non-collisional plasmas.
Photon Picture of Electromagnetic Waves
Explores the photon concept in electromagnetic waves, including energy, momentum, emission by charges, coherence length, and the electromagnetic spectrum.
Maxwell Equations for Antennas: Theory and Applications
Explores the application of Maxwell's equations to antennas, covering radiation, potentials, currents, waves, and polarization.
Antennas: Characteristics and Applications
Explores antenna characteristics, families, Maxwell's equations application, reciprocity, wave propagation, directivity, and frequency features.
Radiation and Antennas
Explores interference, reflection, diffraction, fog effects, antennas, noise, EIRP, and link assessment in radiation and antennas.
Plasma Waves: Two-Fluid Model
Explores plasma waves described by the two-fluid model and the behavior of Langmuir waves.
Waves in Fluids: Basic Properties and Equations
Covers the properties of waves in fluids, focusing on surface waves and their mathematical representation.
Fundamentals of Electromagnetic Waves and Their Properties
Provides an overview of electromagnetic wave properties, including speed, refraction, frequency spectrum, and polarization.
Plasma Waves: Properties & Frequencies
Explores the properties of plasma waves, focusing on dispersion, cut-off, resonance frequencies, and wave modes.