SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
6351
L15v1: General Solution to Wave Equation and Fourier decomposition
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6352
L24v1: Transmission of Information by Wave Pulse
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6353
L15v2: Fourier Solution for Arbitrary Shape
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6354
L19v4: Misconception – Shape of a Wave Exiting a Tube
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6355
L29v3: Review of Boundary Conditions and Snell's Law
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6356
L24v2: Pulse Function for a Non-dispersive Medium
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6357
L16v1: Review of Normal Modes in a Continuous Bound System
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6358
L19v5: Summary and Boundary Conditions
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6359
L24v3: Set-up Fourier Transform for a Wave in a Dispersive Medium
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6360
L29v4: Total Internal Reflection
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6361
L1v1: Equation of Motion for a Horizontal Block and Spring
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6362
L24v4: Delta Function to Extract the Fourier Transform Weights
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6363
L29v5: Total Internal Reflection [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6364
L1v2: Motion of the Mass from Initial Conditions
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6365
L2v1: Complex Notation to Describe Simple Harmonic Motion
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6366
L25v1: Idea for Transmission of AM Signals
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6367
L1v3: Small Oscillations
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6368
L25v2: Functional Form of AM Signal Transmission
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6369
L2v2: Properties of Complex Numbers
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6370
L1v4: Release Angle of Pendulum [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6371
L2v3: Energy in the Simple Harmonic Oscillator
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6372
L25v3: Review of How AM Signals Transmit
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6373
L1v5: Multiple Potential Well [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6374
L31v3: Single Photon Source
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6375
L26v1: Review of Fourier transform properties
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences