SCCI Digital Library and Forum

Vibrations and Waves

S# Lecture Course Institute Instructor Discipline
1
L10v1: Overview of Symmetry Matrix
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
2
L10v2: Symmetry Matrix and the K Matrix Commute
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
3
L10v3: Use Symmetry Eigenvectors to Solve for Oscillation Eigenfrequency
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
4
L11v1: Equations of Motion for an Infinite System
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
5
L11v2: Symmetry Matrix for Translation
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
6
L16v2: Traveling Wave Solution
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
7
L11v3: Oscillation Frequency Solution
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
8
L16v3: Graphical Representation of Traveling Waves
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
9
L11v4: Value of beta
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
10
L16v4: Superposition of waves
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
11
L11v5: Infinite System with Space-Translation Symmetry Solution
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
12
L16v5: KE and PE of Waves
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
13
L20v1: Review of Maxwell's Equations: Divergence and Curl
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
14
L12v1: Review of Symmetry Matrices and Normal Mode Eigenvector Problems
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
15
L20v2: Maxwell's Equations and the Speed of Light
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
16
L16v6: Relation Between Stationary Wave and Traveling Waves
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
17
L12v2: Equation of Motion for the Infinite Mass and String System
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
18
L20v3: Speed of Light and the Magnetic Field Wave Equation
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
19
L17v1: Waves in Different Media – Reflection and Transmission
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
20
L12v3: Solve the Matrix for the Infinite Mass and String System
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
21
L20v4: Plane Wave Electric Field Solution and Direction of Propagation
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
22
L17v2: Reflection and Transmission Coefficients
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
23
L12v4: Dispersion Relationship
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
24
L17v3: Reflection and Transmission Limiting Cases
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences
25
L20v5: Plane Wave Magnetic Field Solution
Vibrations and Waves MIT Yen-Jie Lee, Alex Shvonski, Michelle Tomasik Basic and Health Sciences