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Related lectures (30)
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Wave Equation: Mechanical Systems
Explores the wave equation for mechanical systems, covering different wave velocities and solutions.
Electromagnetic Waves in Plasmas
Covers the behavior of electromagnetic waves in non-magnetized plasmas and the simplification of equations for non-collisional plasmas.
Fluids and Electromagnetism
Explores Poiseuille flow, Navier-Stokes equation neglect, wave characteristics, and complex notation in fluid dynamics and wave phenomena.
Waves in Fluids: Basic Properties and Equations
Covers the properties of waves in fluids, focusing on surface waves and their mathematical representation.
Interaction of E-M Waves with Matter: Transmission, Absorption, Reflection
Explores how electromagnetic waves interact with matter, emphasizing transmission, absorption, and reflection.
Waves: nature, interference, electromagnetic communication
Covers the nature of waves, interference effects, and electromagnetic communication.
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: Energy and Momentum
Discusses the energy, momentum, and generation of electromagnetic waves, along with their applications in optics and radiation pressure.
Transmission Line Networks and Multiconductor Lines
Explores transmission line networks and multiconductor lines, discussing wave propagation and complex network examples.
Transmission Line Theory: Frequency Solutions
Explores frequency solutions for transmission lines, including voltage reflection coefficients and the Blumer index.
Wave-Particle Duality & Schrodinger Equation
Explores wave-particle duality and the Schrodinger equation in quantum mechanics.
Electromagnetic Waves: Principles and Applications
Covers the principles of electromagnetic waves, including wave interference and diffraction.
Introduction to Acoustics
Covers the science of sound, wave propagation, acoustic properties, and sound wave characteristics.
Multiconductor Transmission Lines
Explores solutions and examples for multiconductor transmission lines, covering line parameters, wave propagation, inductance, capacitance matrices, and modal wave equations.
A Journey Through the Fascinating World of Waves
Explores the history and future of waves, from remote sensing to wireless networks and 'smart dust', highlighting their impact on various fields.
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.
Wave Equation of d'Alembert
Covers the wave equation of d'Alembert and physical wave illustrations on various systems.
Plasma Waves: Propagation and Modes
Explores the propagation and modes of plasma waves, including R- and L-waves, Langmuir waves, and Faraday rotation.
Wave Propagation and Doppler Effect
Explores wave propagation, wave packets, and the Doppler effect for mechanical and electromagnetic waves, including Hubble's law.
Elastic Calculation of Connections
Covers the plastic calculation of connections and anchoring techniques in metal construction.
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