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Localized vs Distributed Circuits: Spatial Criterion
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Related lectures (32)
Electromagnetic Waves in Plasmas
Covers the behavior of electromagnetic waves in non-magnetized plasmas and the simplification of equations for non-collisional plasmas.
Basic Principles & Resolution of Ultrasound
MOOC: Fundamentals of Biomedical Imaging: Ultrasounds, X-ray, positron emission tomography (PET) and applications
Explains the basic principles of ultrasound imaging and the factors determining resolution.
Electromagnetic Waves in Plasma
MOOC: Plasma Physics: Applications
Explores electromagnetic waves in plasma, covering dispersion, fluid equations, wave geometry, and light propagation in the ionosphere.
Photon: the light particle
MOOC: The Radio Sky I: Science and Observations
Delves into the properties and significance of the photon as a fundamental entity in the Universe.
The Free Particle
Covers the concept of the free particle in quantum mechanics and explores momentum, eigenstates, and wave packets.
Electromagnetic Waves: Reflection, Refraction, and Interference
Explores electromagnetic waves, wave optics, interference, and diffraction phenomena in experimental physics II.
Plasma Waves: Propagation and Modes
Explores the propagation and modes of plasma waves, including R- and L-waves, Langmuir waves, and Faraday rotation.
Electromagnetic Waves: Energy Density and Poynting Vector
Explains the energy density and Poynting vector in electromagnetic waves.
Frequency Domain Study: Acoustic Response Analysis
Explores the Frequency Domain study in COMSOL for analyzing acoustic responses to harmonic excitation in various fields.
Electromagnetic Waves: Wave Equation and Maxwell's Equations
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Explores the wave equation for electromagnetic waves, Maxwell's predictions, and the importance of polarization in defining wave properties.
Landauer Formalism: Coherence Lengths
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Explores Landauer formalism and coherence lengths in energy transport in nanostructures.
Fundamentals of Electromagnetic Waves and Their Properties
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Provides an overview of electromagnetic wave properties, including speed, refraction, frequency spectrum, and polarization.
Quantum Physics: Wave-Particle Duality
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Explores wave-particle duality in quantum physics, covering interference, matter waves, and energy quantization.
Electromagnetic Waves: Energy and Momentum
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Discusses the energy, momentum, and generation of electromagnetic waves, along with their applications in optics and radiation pressure.
Electromagnetic Waves: Concepts and Interactions
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Explores electromagnetic waves, photons, coherence length, superposition, and wave emission.
Waves in Fluids: Basic Properties and Equations
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Covers the properties of waves in fluids, focusing on surface waves and their mathematical representation.
Photon Picture of Electromagnetic Waves
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Explores the photon concept in electromagnetic waves, including energy, momentum, emission by charges, coherence length, and the electromagnetic spectrum.
Wave Propagation and Doppler Effect
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Explores wave propagation, wave packets, and the Doppler effect for mechanical and electromagnetic waves, including Hubble's law.
Waves: nature, interference, electromagnetic communication
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Covers the nature of waves, interference effects, and electromagnetic communication.
Quantum Mechanics: Wave-Particle Duality of Electrons
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Covers the wave-particle duality of electrons and their behavior in quantum mechanics.
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