MIT 8.03 Physics III: Vibrations and Waves - Fall 2004
ectures:
Lecture 1: Periodic Phenomena (Oscillations, Waves) - SHO - Complex Notation - Differential Equations - Physical Pendulum
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Lecture 2: Beats - Damped Free Oscillations (Under- Over- and Critically Damped) - Quality Q
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Lecture 3: Forced Oscillations with Damping Information about the Tacoma Narrows Bridge Collapse
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Lecture 4: Forced Oscillations - Power at Resonance (Resonance Absorption, Resonance Width, Quality Q) - Transient Phenomena (General Solutions including Initial Conditions)
Lecture 6: Driven Coupled Oscillators - Triple Pendulum - Steady State and Transient Solutions - Cramer's Rule
Lecture 8: Traveling Waves - Boundary Conditions - Standing Waves - Sound (Longitudinal Waves) - Energy in Waves
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Lecture 13: Electromagnetic Waves - Plane Wave Solutions to Maxwell's Equations - Polarization - Malus' Law
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Lecture 14: Accelerated Charges - Poynting Vector - Power - Rayleigh Scattering - Polarization
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Lecture 15: Doppler Effect - Sound - EM Radiation - Binary Stars - Neutron Stars and Black Holes - Expanding Universe
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Lecture 16: Boundary Conditions at Perfect Conductors - Reflection - Standing EM Waves - Transmission Lines - Radiation Pressure
Lecture 18: Boundary Conditions for Dielectrics - Index of Refraction - Snell's Law - Total Internal Reflection - Fresnel Equations - Brewster Angle
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