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Fluids and Electromagnetism
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Related lectures (27)
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Electromagnetic Waves: Wave Equation and Maxwell's Equations
Explores the wave equation for electromagnetic waves, Maxwell's predictions, and the importance of polarization in defining wave properties.
Coupling of Waves in Reflectors
Covers the coupling of waves in periodic structures, focusing on the reflection coefficient for one period and the limitations of the Coupling of Modes approach.
Wave Equation of d'Alembert
Covers the wave equation of d'Alembert and physical wave illustrations on various systems.
Wave and Particle View
Explores the particle and wave views of energy transport and their mathematical expressions.
Waves in Inhomogeneous Medium
Explores waves in inhomogeneous media, covering initial and boundary conditions, numerical stability, eigen modes, and propagation principles.
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.
High Strain Rate Mechanics: Material Behavior Dynamics
Covers material behavior under rapid forces, wave propagation, dynamic stress-strain responses, and impact-induced damage.
Reflection and Refraction in Transparent Matter
Explores the laws of reflection and refraction in transparent matter, focusing on wave interaction with dielectric slabs.
Plasma Waves: Two-Fluid Model
Explores plasma waves described by the two-fluid model and the behavior of Langmuir waves.