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Lecture
Electromagnetic Waves: Principles and Applications
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Electromagnetic Waves: Reflection, Refraction, and Interference
Explores electromagnetic waves, wave optics, interference, and diffraction phenomena in experimental physics II.
Electromagnetic Waves and Optics
Covers the fundamentals of electromagnetic waves and optics, including interference phenomena, diffraction, refraction, and reflection of light.
Electromagnetic Waves: Theory & Applications
Explores electromagnetic waves, Maxwell's equations, circuits, and wave propagation through different media.
Wave-Matter Interaction: Diffraction and Diffusion Phenomena
Discusses wave-matter interactions, focusing on diffraction and diffusion phenomena, including principles of reflection, refraction, and the significance of X-ray interactions.
Wave Optics: Wave Phenomena & Interference
Explores wave propagation, diffraction, interference, and Young's double-slit experiment.
Fundamentals of Electromagnetic Waves and Their Properties
Provides an overview of electromagnetic wave properties, including speed, refraction, frequency spectrum, and polarization.
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.
Waves in Fluids: Basic Properties and Equations
Covers the properties of waves in fluids, focusing on surface waves and their mathematical representation.
Electromagnetic Waves: Energy and Momentum
Discusses the energy, momentum, and generation of electromagnetic waves, along with their applications in optics and radiation pressure.
Interference and Diffraction Phenomena
Explores how electromagnetic waves interfere and diffract, impacting their propagation and energy distribution over distance.