| S# |
Lecture |
Course |
Institute |
Instructor |
Discipline |
| 4976 |
Lecture 22: X-ray Diffraction Techniques II (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4977 |
Lecture 23: Point and Line Defects I (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4978 |
Lecture 24: Point and Line Defects II (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4979 |
Lecture 25: Introduction to Glassy Solids (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4980 |
Lecture 26: Engineering Glass Properties (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4981 |
1. History of Dynamics; Motion in Moving Reference Frames (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4982 |
Lecture 27: Reaction Rates (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4983 |
10. Equations of Motion, Torque, Angular Momentum of Rigid Bodies (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4984 |
Lecture 28: Introduction to Aqueous Solutions (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4985 |
11. Mass Moment of Inertia of Rigid Bodies (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4986 |
Lecture 29: Acids and Bases I (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4987 |
12. Problem Solving Methods for Rotating Rigid Bodies (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4988 |
Lecture 2: The Periodic Table (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4989 |
13. Four Classes of Problems With Rotational Motion (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4990 |
Lecture 30: Acids and Bases II (M-I-T)
|
Introduction to Solid-State Chemistry (M-I-T)
|
MIT
|
Prof. Jeffrey Grossman
|
Applied Sciences
|
| 4991 |
14. More Complex Rotational Problems & Their Equations of Motion (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4992 |
8. Fictitious Forces & Rotating Mass (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4993 |
15. Introduction to Lagrange With Examples (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4994 |
16. Kinematic Approach to Finding Generalized Forces (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4995 |
9. Rotating Imbalance (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4996 |
17. Practice Finding EOM Using Lagrange Equations (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4997 |
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4998 |
18. Quiz Review From Optional Problem Set 8 (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 4999 |
R10. Steady State Dynamics (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|
| 5000 |
19. Introduction to Mechanical Vibration (M-I-T)
|
Engineering Dynamics (M-I-T)
|
MIT
|
Prof. Dr. J. Kim Vandiver, Prof. Dr. David Gossard
|
Applied Sciences
|