SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
6401
L40v3: Interference and Diffraction – Different Wavelength [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6402
L32v5: Dipole Antenna [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6403
L38v2: N-slit Interference
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6404
L40v4: Single Slit Diffraction vs. Two Slit Interference [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6405
L33v1: Maxwell's Equation in a Dielectric
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6406
L38v3: N-slit Interference Intensity
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6407
L41v1: Is light a wave or a particle?
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6408
L33v2: Speed of Light in a Dielectric
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6409
L38v4: Phased Radar
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6410
L41v2: Electron interference
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6411
L7v1: Rewriting Equations of Motion Using Matrix Notation
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6412
L34v1: How to Get Good Contrast in Photos
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6413
L41v3: Variations on the electron interference experiment
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6414
L38v5: Single Electron Interference
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6415
L7v2: Expressing Amplitude Using Complex Notation
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6416
L34v2: Reflection and Transmission Boundary Conditions
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6417
L7v3: Solving for Eigenfrequencies
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6418
L39v1: Diffraction Analysis using 2D Fourier Transform
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6419
L41v4: Uncertainty principle and diffraction
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6420
L34v3: Apply Maxwell's Equations to Reflection and Transmission at Boundary
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6421
L8v10: Beat Phenomena [DEMO]
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6422
L41v5: Probabilistic nature of electron trajectories
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6423
L39v2: Diffraction Through a Single Slit using the 2D Fourier Transform
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6424
L34v4: Electric Field and Reflection and Transmission Coefficient
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6425
L39v3: Single Slit Diffraction Intensity
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences