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Related lectures (31)
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Vibrational Mechanics: Modes and Equations
Covers the fundamentals of vibrational mechanics and solving equations for vibrating systems.
Plasma Waves: Properties & Frequencies
Explores the properties of plasma waves, focusing on dispersion, cut-off, resonance frequencies, and wave modes.
Light Effects on Materials
Discusses properties like reflectance, transmittance, and absorption in materials.
Instability: parallel flow concepts
Explores fluid flow instabilities, including Rayleigh-Taylor and Kelvin-Helmholtz, and parallel flow concepts like normal mode decomposition and Squire's transformation.
Two-Fluid Waves
Explores two-fluid waves in plasma physics, discussing dispersion relations and wave propagation characteristics.
Inviscid Instabilities: Rayleigh Criterion
Explores parallel flow instabilities, Rayleigh inflection point criterion, and normal mode decomposition in 3D Euler equations.
Generalized Oscillator: Vibratory Mechanics
Explores the concept of a generalized oscillator in vibratory mechanics and its application to a two-degree-of-freedom system.
Elasticity Basics: Vibrational Modes Description
Covers the theory of elasticity to describe vibrational modes of mechanical resonators.
Vibrational Modes in Crystals
Explores vibrational modes in crystals, discussing Debye and Einstein models and their temperature-dependent behavior.
Matrices and Networks
Explores the application of matrices and eigendecompositions in networks.