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NITHIN's E STUDY ROOM @UC2v00Ln6v4BDn9D7ubUyjHQ@youtube.com

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27:42
1 October 2021
33:19
WINDING DIAGRAM. PROBLEMS. Lecture 16
16:05
WINDING DIAGRAM. Lecture 15. DC MACHINES & TRANSFORMERS. Mod 1
29:23
Methods To Improve COMMUTATION. Lecture 14. DC Machines & Transformers.
26:50
COMMUTATION. Lecture no. 13. DCMT. KTU EET202
25:57
DEMAGNETISING AND CROSSMAGNETISING AT. Lecture 12. DC Machines & Transformers.
20:37
ARMATURE REACTION. Part 2. Lecture 11. EET202 DCMT. Module 1,2
29:00
ARMATURE REACTION. Lecture 10. DC MACHINES &TRANSFORMERS. EET202. Module 1&2
15:16
Problems EMF equation. Lecture 9. DC MACHINES & TRANSFORMERS. KTU EET202. Module 1&2
34:18
DC GENERATOR CLASSIFICATION. LECTURE 8. DC MACHINES &TRANSFORMERS. KTU EET202.
19:03
EMF EQUATION OF DC GENERATOR.Lectute 07. KTU EET202. DC MACHINES & TRANSFORMERS. Module 1&2
13:45
ARMATURE WINDING- terminologies. KTU- EET202. DC MACHINES & TRANSFORMERS. Lecture 6. Module 1
30:09
LAP & WAVE WINDING. DC MACHINES. KTUEET202. DC MACHINES & TRANSFORMERS.Lecture 5
30:47
ARMATURE WINDING - introduction. DC Machines & Transformers. KTU EET202. LECTURE 4. Module 1&2
25:47
Construction Details - DC Generator. KTU EET202. DC MACHINES & TRANSFORMERS. Lecture 3. Module 1,2
32:03
WORKING OF DC GENERATOR. FLEMINGS RIGHT HAND RULE. KTU. EE202 DCMT. Lecture 2. Module 1,2
29:10
FARADAYS LAW - ELECTROMAGNETIC INDUCTION. DC MACHINES & TRANSFORMERS(EET 202)Lecture 1.
22:11
Three phase unbalanced load. problems, neutral current. Lecture 42. EET 201. Circuits & Networks.
48:56
3 phase power- Basic concepts. Lecture 41. EET201. Circuits & Networks. mModule 4
52:09
series, Parallel, Cascade connection of 2 port networks. LECTURE 40. Circuits & Networks. Mod 5
34:18
ABCD PARAMETERS. THEORY & PROBLEMS. LECTURE 39.CIRCUITS & NETWORKS. KTU EET 201. Module 5
31:40
H PARAMETERS. THEORY & PROBLEMS. Lecture 38. Circuits & Networks. KTU - EET 201. Module 5
38:09
Y Parameter in tetms of Z. Lecture 37. Circuits & Networks. KTU. EET 201. Module 5
24:36
Y PARAMETER SOLVED PROBLEMS. EET201 Circuits & Networks . Lecture 36. Module 5
29:16
Y PARAMETERS - Circuits & Networks. KTU - EET 201. Lecture 35. Module 5
21:50
Z PARAMETER - EQUIVALENT CIRCUIT & CONDITION FOR SYMMETRY. Lecture 33. Circuits & Networks
35:17
Z parameters - Problems with R L & C. KTU EET 201.Circuits & Networks. LECTURE 33. Module 5
35:31
TWÒ PORT NETWORK- Z PARAMETERS . Lecture 32. Circuits & Networks _ KTU. Module5
32:36
Adjustment of Gain K from Bode plot. Lecture 32. Linear Control Systems. Module 5
16:56
PHASE & GAIN MARGIN FROM BODE PLOT. Lecture 30 KTU. Linear Control Systems
30:45
BODE PHASE PLOT. Lecture 29. Linear Control Systems. KTU. module 5
18:18
NODAL ANALYSIS OF RLC - WITH LAPLACE TRANSFORM. LECTURE 31. Circuits & Networks
54:55
BODE MAGNITUDE PLOT. Lecture 29. Linear Control Systems. KTU.
35:12
BODE PLOT. INTRODUCTION. Lecture 28. Linear Control Systems. KTU.
29:19
MESH ANALYSIS OF RLC CIRCUIT USING LAPLACE. Lecture 30. KTU. CIRCUITS &NETWORKS. MODULE 3
16:22
EFFECT OF ADDITION OF ZERO. Lecture 27. Linear Control Systems. KTU. Module 4
27:44
EFFECT OF ADDING A POLE. Lecture 26. Linear Control Systems. (KTU) Module 4
31:00
STABILITY ANALYSIS FROM ROOTLOCUS. Lecture 25. Linear Control Systems (KTU). Module 4
21:16
RLC SWITCHING WITH AC. S DOMANE ANALYSIS. LECTURE 29. CIRCUITS & NETWORKS. EET 201. KTU. Module 3
34:53
ROOT LOCUS DIAGRAM SOLVED PROBLEMS. Lecture 24. KTU EE303. Linear Control Systems. Module 4
18:06
RL switching with AC source. s domain analysis. Lecture 28. CIRCUITS & NETWORKS. KTU. Module 3
26:25
RLC CIRCUIT. S DOMANE ANALYSIS. LECTURE 27. CIRCUITS & NETWORKS. KTU. Module 3
28:55
ROOT LOCUS DIAGRAM.(Crossing on jw axis) LECTURE 23. LINEAR CONTROL SYSTEMS. KTU. Mod 4
20:07
RC SWITCHING - S DOMANE ANALYSIS. Lecture 26. CIRCUITS & NETWORKS. EET201. KTU. Module 3
24:14
Root locus diagram. Solved Problem. Lecture 22. LINEAR CONTROL SYSTEMS. EE303. KTU. Module 4
16:11
RL switching (S Domane solution) - Nodal analysis. Lecture 25. EET201 Circuits & Networks. (KTU)
26:34
ROOT LOCUS DIAGRAM ( With Angle of arrival & Departure). Lecture21. Linear Control Systems. MOD 4
30:41
ROOT LOCUS DIAGRAM ( Rule- Break away/In points). Lecture 20 Linear Control Systems. (KTU EE303)
27:57
RL Circuit (S domain). LECTURE 24..Solved Problems.KTU _EET201 CIRCUITS & NETWORKS. Module 3
39:16
Root locus diagram. Linear control system.KTU EE303. Lecture 19. Module 4
22:58
R, L & C representation in frequency domain. CIRCUITS & NETWORKS. KTU EET 201. Lecture 23. Mod 3
25:45
Frequency domain analysis - RL circuit. Circuits & Networks KTU EET201. Lecture 22. Module3
37:34
Second Order Systems. Problems with Solutions. Linear Control Systems. KTU EEE 303. Lecture 18.Mod 2
31:38
Time doamain specifications. 2nd order system. Linear Contril system. KTU EE303. LECTURE 17.MODULE 2
34:03
Partial Fraction Techniques- LINEAR CONTROL SYSTEMS(KTU). Lecture 16, Module 2
34:07
Inverse Lpalce & Partial Fraction- Circuits & Networks. (KTU). Lecture 21. Module 3
26:44
Laplace Transform in Control System
34:10
Introdouction to Laplace Transform. EET 201 Circuits & Networks(KTU). Lecture 20 ( Module 3)
35:47
Classification of second order system. KTU-EE 303.LINEAR CONTROL SYSTEMS. Lecture 14
40:42
Second order systems- Response & Analysis. KTU-EE303.Linear control systems. Lecture 13