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MATH213 Instructor @UCiWjoIVIeuJENyeSA8Oltdw@youtube.com

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21:58
Lecture 13_3: The Fourier Transform
10:25
Lecture 13_2: Gibbs’ phenomenon
05:07
Lecture 13_1: RMS value of a sinusoid
21:29
Lecture 12_2: Filtering ripple
30:02
Lecture 12_1: Rectifiers
30:23
Dirichlet’s & Parseval’s Thms
20:54
Lecture 11_2: Real sinusoidal form
30:31
Lecture 11_1: Fourier series
34:27
Lecture 10_4: Bode plot for std. 2nd-order system
33:43
Lecture 10_3: Bode plot for standard 1st-order system
38:46
Lecture10_1: Stability
45:36
Lecture 10_2: Frequency responses of LTI systems
25:03
Lecture 8_3: Cruise control revisited
25:03
Lecture 8_3: More complex transfer functions
15:36
Lecture 8_4: More complex poles
15:36
Lecture 8_4; Effect of an additional pole
27:02
Lecture 8_2: The standard 2nd-order system
15:33
Lecture 8_1: Cruise control (ctd)
24:56
Lecture 7_3: Responses of LTI systems
29:59
Lecture 7_5: Cruise-control example
18:42
Lecture 7_4: The standard first-order system
11:24
Lecture_7_2: Transfer functions
23:18
Lecture_7_1: Exponential inputs
33:00
Lecture_6_3: Impulse response & convolution
19:05
Lecture_6_1: Signals & systems
34:15
Lecture_6_2: System properties
18:25
February 21, 2021
10:13
Lecture_5_3: The transform of the impulse
16:53
Lecture_5_2: The unit impulse function
12:41
Zero-state and zero-input responses
18:43
Initial-value problems
29:01
The final-value theorem
14:05
Rational functions
20:27
The Initial-value theorem
14:05
February 1, 2021
14:10
Lecture_3_3: Convolution
11:53
Example of convolution
20:08
Lect. 3-1: More transforms
32:12
Lecture_3_2: Transform properties
27:20
Lecture_1_2: A geometrical example
21:08
Lecture_1_3: A Partial Differential Equation
41:19
Lecture_1_1: Introduction
22:34
Lecture 0: Course outline