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Lecture
Waves: nature, interference, electromagnetic communication
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Related lectures (27)
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Electromagnetic Waves in Plasmas
Covers the behavior of electromagnetic waves in non-magnetized plasmas and the simplification of equations for non-collisional plasmas.
Waves in Fluids: Basic Properties and Equations
Covers the properties of waves in fluids, focusing on surface waves and their mathematical representation.
Waves in Fluids: Basic Properties and Equations
Covers the fundamental properties and equations of waves in fluids, focusing on surface waves and their mathematical descriptions.
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.
Fluids and Electromagnetism
Explores Poiseuille flow, Navier-Stokes equation neglect, wave characteristics, and complex notation in fluid dynamics and wave phenomena.
Fundamentals of Electromagnetic Waves and Their Properties
Provides an overview of electromagnetic wave properties, including speed, refraction, frequency spectrum, and polarization.
Interference of Electromagnetic Waves
Explores the interference of electromagnetic waves and standing wave formation, illustrating how wave energy is spatially modulated by interference.
Photon Picture of Electromagnetic Waves
Explores the photon concept in electromagnetic waves, including energy, momentum, emission by charges, coherence length, and the electromagnetic spectrum.
Electromagnetic Waves: Energy and Momentum
Discusses the energy, momentum, and generation of electromagnetic waves, along with their applications in optics and radiation pressure.
Reflection and Refraction in Transparent Matter
Explores the laws of reflection and refraction in transparent matter, focusing on wave interaction with dielectric slabs.