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Ziyad Masoud @UCX5Gx6_uMDNVCYveZCzKy1Q@youtube.com

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08:31
05 Modeling, Ex. 1
09:44
29 Base excitation (cont.)
15:44
16 Free vibration of damped systems
13:42
41 Natural response of multimode systems (cont.)
11:14
21 Harmonic excitation of undamped systems
11:46
32 Base excitation, Ex. 2
17:34
12 Modeling, Ex. 4
09:18
31 Base excitation, Ex. 1
21:57
48 Forced response of multimode systems
07:44
19 Free vibration of damped systems (cont.)
18:31
40 Natural response of multimode systems (cont.)
10:21
51 Forced response of damped multimode systems
05:23
09 Modeling, Ex. 2 (cont.)
17:09
10 Modeling, Ex. 3
11:57
50 Forced response of multimode systems, Ex. (matlab)
10:56
08 Modeling, Ex. 2 (cont.)
12:03
15 Free vibration of undamped systems (cont.)
15:09
42 Natural response of multimode systems, Ex.
09:10
35 Arbitrary input response
14:02
03 Degrees of freedom
09:06
45 Natural response of multimode systems, Ex. (cont.)
09:51
22 Harmonic excitation of undamped systems (cont.)
09:04
11 Modeling, Ex. 3 (cont.)
10:03
43 Natural response of multimode systems, Ex. (cont.)
15:49
49 Forced response of multimode systems, Ex.
11:09
27 Rotating unbalance
10:00
39 Natural response of multimode systems (cont.)
20:45
52 Forced response of damped multimode systems, Ex.
08:20
02 Harmonic motion (cont.)
16:00
20 Logarithmic decrement
16:17
18 Free vibration of damped systems (cont.)
06:05
24 Harmonic excitation of damped systems (cont.)
08:31
46 Natural response of multimode systems, Ex. (matlab)
13:08
17 Free vibration of damped systems (cont.)
09:48
13 Modeling, Ex. 5
10:54
23 Harmonic excitation of damped systems
09:16
26 Harmonic excitation, Ex. (cont.)
10:14
01 Harmonic motion
11:00
33 Transfer function
09:45
30 Base excitation (cont.)
09:46
25 Harmonic excitation, Ex.
13:33
44 Natural response of multimode systems, Ex. (cont.)
09:25
14 Free vibration of undamped systems
14:32
37 Arbitrary input response, Ex.
14:42
28 Base excitation
10:03
34 Impulse response
13:14
38 Natural response of multimode systems
19:33
47 Orthogonality of eigenvectors
09:15
36 Unit step input response
07:56
07 Modeling, Ex. 2
10:28
06 Modeling, Ex. 1 (cont.)
07:52
04 Modeling
10:38
Matlab simulink model of a Simple-Pendulum model
12:04
Matlab simulink model of a Quarter-Car model
18:04
Matlab Simulink model of a Drum-Mass system
21:05
Matlab Simulink model of a Mass-Spring-Damper system
16:02
Matlab Simulink model of a Mass-Spring system
17:05
60 Root Locus - Angles of Departure and Arrival, Example
12:02
59 Root Locus - Angles of Departure and Arrival
09:16
58 Root Locus - Imaginary Axis Crossing