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Related lectures (17)
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Self-emergence of laser cavity solitons in microcombs
Explores the self-emergence of laser cavity solitons in microcombs, focusing on the role of slow nonlinearities.
Supercontinuum Generation: Introduction and Waveguide Dynamics
Introduces supercontinuum generation, discusses challenges in bulk generation, advantages of waveguides, and modeling considerations.
Shallow Water Waves: Stability and Tsunamis
Explores shallow water waves, stability conditions, and tsunamis through simulations and analytical solutions.
Waves in Inhomogeneous Medium
Explores waves in inhomogeneous media, covering initial and boundary conditions, numerical stability, eigen modes, and propagation principles.
Plasma Waves: Damping and Resonance
Explores plasma waves, emphasizing damping and resonance effects on energy exchange within the system.
Plasma Waves: Propagation and Modes
Explores the propagation and modes of plasma waves, including R- and L-waves, Langmuir waves, and Faraday rotation.
Versatile EM Wave Description
Summarizes EM chapters, emphasizing wave description, reflection laws, and light intensity calculations.
Plasma Physics II: Non-linear Plasma Dynamics
Explores non-linear phenomena in plasma physics, focusing on ion acoustic waves and the Korteweg de Vries equation.
Untitled
Shallow Water Waves: Linearization and Disturbances
Discusses the linearization of shallow water wave equations and the impact of variable depth on wave propagation velocity.
Supercontinuum Generation: Nonlinear Effects and Soliton Dynamics
Covers nonlinear effects in supercontinuum generation, soliton dynamics, and trends in fiber optics.
DC Motor, Characteristic Equations
Explores the characteristic equations of a DC motor and their impact on motor performance.
Electromagnetic Waves: Principles and Applications
Covers the principles of electromagnetic waves, including wave interference and diffraction.
Retaining Wall Design: Resultant of Actions - Thrust, Overloads, Water, Thrust Redistribution
Discusses retaining wall design, covering thrust, overloads, water pressure, and thrust redistribution, along with various calculation methods and special considerations.
Plasma Instabilities: Microinstabilities in Magnetized Plasmas
Explores kinetic effects in electrostatic instabilities in magnetized plasmas, focusing on wave-particle resonances and finite Larmor radius effects.
Wave Energy Analysis
Explores Froude number, wave energy, reflected waves, and drag coefficients.
Electromagnetic Waves
Covers the theory of electromagnetic waves and provides a detailed understanding of wave propagation.
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