| S# |
Lecture |
Course |
Institute |
Instructor |
Discipline |
| 3101 |
Lecture 12 Capacitors and First-Order Systems
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3102 |
Lecture 13 Digital Circuit Speed
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3103 |
L1 Course Administration Information and Overview
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3104 |
Lecture 14 State and Memory
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3105 |
Lecture 14 Instruction Scheduling
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3106 |
Lecture 15 Second-Order Systems (part 1)
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3107 |
Lecture 15 Instruction Scheduling (cont.)
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3108 |
Lecture 16 Register Allocation
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3109 |
Lecture 15 Second-Order Systems (part 2)
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3110 |
Lecture 17 Putting it all Together
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3111 |
Lecture 16 Sinusoidal Steady State
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3112 |
Lecture 8 Unoptimized Code Generation
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3113 |
Lecture 17 The Impedance Model
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3114 |
Lecture 9 Unoptimized Code Generation (cont.)
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3115 |
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3116 |
R1 Scanner Parser Project
|
Computer Language Engineering (M-I-T)
|
MIT
|
Prof. Martin Rinard, Prof. Saman Amarasinghe
|
Applied Sciences
|
| 3117 |
Lecture 19 The Operational Amplifier Abstraction
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3118 |
Lecture 2 Basic Circuit Analysis Method
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3119 |
Lecture 20 Operational Amplifier Circuits
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3120 |
Lecture 21 Op Amps Positive Feedback
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3121 |
Advanced and Multivariate SPC
|
Control of Manufacturing Processes (M-I-T)
|
MIT
|
Duane Boning, David Hardt
|
Applied Sciences
|
| 3122 |
Lecture 22 Energy and Power
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|
| 3123 |
Aliasing and Higher Order Models
|
Control of Manufacturing Processes (M-I-T)
|
MIT
|
Duane Boning, David Hardt
|
Applied Sciences
|
| 3124 |
Case Study 1 Tungsten CVD DOE RSM
|
Control of Manufacturing Processes (M-I-T)
|
MIT
|
Duane Boning, David Hardt
|
Applied Sciences
|
| 3125 |
|
Circuits and Electronics (M-I-T)
|
MIT
|
Prof. Dr. Anant Agarwal
|
Applied Sciences
|