SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
6426
L8v5: Coupled Pendula with Specific Initial Conditions
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6427
L41v6: Schrodinger equation and electron particle interpretation
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6428
L34v5: Reflection and Transmission for Different Incident Angles and Brewster's Angle
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6429
L41v7: Standard model – gravitational waves – LIGO
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6430
L39v4: Single Slit Diffraction Pattern
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6431
L8v6: How Frequency Depends on Gravity
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6432
L34v6: Brewster's Angle [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6433
L41v8: Interferometer [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6434
L8v7: Beat Frequency
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6435
L39v5: Measuring Wavelength of Light [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6436
L35v1: Motivation – Soap Bubble Color
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6437
L4v1: Introduce a Driving Force
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6438
L39v6: Interference and Diffraction Pattern
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6439
L8v8: Examples of Beat Frequencies
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6440
L35v2: Superposition of Electric Fields
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6441
L4v3: Particular and Homogeneous Solution
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6442
L5v1: Coordinate System for a Driven Physical Pendulum
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6443
L39v7: Single-slit Diffraction and Double-slit Interference I [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6444
L35v3: Average Intensity of the Superposition of Electric Fields
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6445
L8v9: General Motion of Coupled Oscillators [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6446
L39v8: Single-slit Diffraction and Double-slit Interference II [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6447
L35v4: Complex Representation of Fields with a Phase Difference
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6448
L5v2: Small Angle Approximation for the Driven Physical Pendulum
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6449
L9v1: Review of Normal Modes and Coupled Oscillators
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6450
L3v1: Oscillation with a Drag Force
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences