Electric Circuits And Machines @ 45 Days

Electric Circuits and Machines, Bachelor of Engineering(BE) videos according to syllabus of Institute Of Engineering(IOE), Tribhuvan University (TU)

Intermediate 5 (2 Reviews ) 92 Students enrolled
Last updated Wed, 09-Oct-2024 Nepali
What will I learn?
  • After the completion of this course, students will get the complete knowledge of Electric Circuits and Machines.

Curriculum for this course
154 Lessons 35h 1m
0. How to Purchase Course from MeroSchool
1 Lessons
  • 0. How to Purchase Course from MeroSchool.mp4 00:03:30
  • 1. Contents of Network Analysis of AC Circuit and Dependent Sources.mp4 00:04:49
  • 2. Introduction & Sources of Electrical Network.mp4 00:07:38
  • 3. Nodal Analysis (Type I).mp4 00:11:24
  • 4. Nodal Analysis( Type II).mp4 00:04:44
  • 5. Nodal Analysis (Type III).mp4 00:07:26
  • 6. Nodal Analysis (Type IV).mp4 00:04:44
  • 7. Nodal analysis (Numerical Example-1).mp4 00:05:53
  • 8. Nodal analysis (Numerical Example-2).mp4 00:04:36
  • 9. Nodal analysis (Numerical example-3).mp4 00:08:20
  • 10. Mesh Analysis (Type I).mp4 00:12:37
  • 11. Mesh Analysis (Type-II).mp4 00:07:48
  • 12. Mesh Analysis (Type III).mp4 00:04:27
  • 13. Mesh Analysis (Numerical Example-1).mp4 00:06:50
  • 14. Mesh Analysis (Numerical Example-2).mp4 00:06:37
  • 15. Mesh Analysis (Numerical Example-3).mp4 00:05:31
  • 16. Resonance in Series RLC Circuit.mp4 00:22:27
  • 17. Resonance in Series RLC Circuit (Numerical example-1).mp4 00:04:22
  • 18. Resonance in Series RLC Circuit( Numerical example-2).mp4 00:06:27
  • 19. Resonance in Parallel RLC Circuit.mp4 00:13:30
  • 20. Parallel RLC Circuit(Numerical Example).mp4 00:06:35
  • 1. Introduction of Initial Condition.mp4 00:11:55
  • 2. Initial Condition For Inductor.mp4 00:11:25
  • 3. Initial Condition for Capacitor.mp4 00:13:27
  • 4. Voltage Current Relationship Of Different Circuit Element.mp4 00:05:05
  • 5. Numerical Example-1.mp4 00:09:52
  • 6. Numerical Example-2.mp4 00:18:01
  • 7. Numerical Example-3.mp4 00:15:51
  • 8. Numerical Example-4.mp4 00:05:47
  • 9. Numerical Example-5.mp4 00:13:51
  • 10. Numerical Example-6.mp4 00:09:10
  • 11. Numerical Example-7.mp4 00:08:30
  • 12. Numerical Example-8.mp4 00:16:26
  • 13. Numerical Example-9.mp4 00:12:28
  • 1. Contents.mp4 00:06:07
  • 2. Introduction.mp4 00:09:21
  • 3. Solution Techniques of Differential Equations.mp4 00:11:33
  • 4. R-L Series Circuit with DC Excitation.mp4 00:07:25
  • 5. Response of RL Circuit with DC Excitation (example-1).mp4 00:08:49
  • 6. Response of RL Circuit with Exponential Excitation.mp4 00:14:09
  • 7. RL Circuit with Exponential Excitation (example-2).mp4 00:09:53
  • 8. RL Circuit with Sinusoidal Excitation(example-3).mp4 00:13:49
  • 9. RC Circuit with DC excitation.mp4 00:05:08
  • 10. RC Circuit with Exponential Excitation.mp4 00:14:14
  • 11. RC Circuit with Exponential Excitation (example-4).mp4 00:12:49
  • 12. RC Circuit with Sinusoidal Excitation.mp4 00:12:41
  • 13. RC Circuit with Sinusoidal Excitation(example-5).mp4 00:16:48
  • 14. RLC Circuit with dc excitation.mp4 00:20:01
  • 15. RLC Circuit (example-6).mp4 00:13:33
  • 16. RLC Circuit (example-7).mp4 00:12:19
  • 17. RLC Circuit (example-8).mp4 00:21:46
  • 18. RLC Circuit (example-9).mp4 00:16:44
  • 19. RLC with Sinusoidal Excitation (example-10).mp4 00:20:09
  • 20. RLC Circuit (example-11).mp4 00:07:01
  • 21. RLC Circuit Example-12.mp4 00:09:29
  • 22. RLC Circuit Example-13.mp4 00:13:24
  • 23. RLC Circuit example-14.mp4 00:22:57
  • 1. Introduction.mp4 00:03:38
  • 2. Some Important Formula.mp4 00:05:13
  • 3. Steps for Solving any Circuit by Laplace Transform.mp4 00:04:22
  • 4. Partial Fraction Expression.mp4 00:10:49
  • 5. Numerical example-1.mp4 00:09:18
  • 6. Numerical example-2.mp4 00:07:51
  • 7. Numerical example-3.mp4 00:12:41
  • 8. Numerical example-4.mp4 00:07:03
  • 9. RC Circuit (Numerical example-5).mp4 00:09:32
  • 10. RLC Circuit (Numerical example-6).mp4 00:14:59
  • 11. RLC Circuit (Numerical Example-7).mp4 00:14:37
  • 12. RL Circuit (Numerical example-8).mp4 00:10:45
  • 13. Numerical example-9.mp4 00:24:15
  • 14. Numerical example-10.mp4 00:09:41
  • 15. Numerical example-11.mp4 00:09:17
  • 16. Numerical example-12.mp4 00:09:36
  • 1. Contents.mp4 00:05:31
  • 2. Introduction.mp4 00:14:50
  • 3. Z-parameters Calculation.mp4 00:07:22
  • 4. Y-parameters Calculation.mp4 00:06:17
  • 5. T-parameters Calculation.mp4 00:07:36
  • 6. T'-Parameters Calculation.mp4 00:06:01
  • 7. h-parameters calculation.mp4 00:05:45
  • 8. g-parameters calculation.mp4 00:07:02
  • 9. Condition for Reciprocity of Two Port Network.mp4 00:25:16
  • 10. Interconnection of Two port Network (Series).mp4 00:12:48
  • 11. Interconnection of Two Port Network (Parallel).mp4 00:12:06
  • 12. Interconnection of Two Port Network (cascade).mp4 00:09:37
  • 13. Relationship Between Parameters.mp4 00:19:21
  • 14. Numerical Example 2.mp4 00:21:34
  • 15. Numerical example 3.mp4 00:16:39
  • 16. Numerical Example 4.mp4 00:13:43
  • 17. Numerical Example 5.mp4 00:13:50
  • 18. Numerical example 6.mp4 00:17:13
  • 19. Numerical example 7.mp4 00:13:37
  • 1. Magnetic Circuits and its Types.mp4 00:33:05
  • 2. B-H Relationship and Hystereisis with DC Excitation.mp4 00:26:33
  • 3. Hysteresis with AC Excitation - Hysteresis Loss and Eddy Current Loss.mp4 00:17:09
  • 4. Faraday's Law of Electromagnetic Induction , Statically and Dynamically Induced EMF.mp4 00:11:03
  • 5. Force on Current Carrying Conductor - Expression for Self Inductance.mp4 00:10:03
  • 6. Numerical 1 (2076 Baisakh).mp4 00:18:32
  • 7. Numerical 2 (flux calculation in the core having multiple windings.mp4 00:15:30
  • 8. Numerical 3 (Parallel magnetic circuit).mp4 00:20:20
  • 9. Numerical 4 (2069 - ring related).mp4 00:08:30
  • 10. Numerical 5 (2073 Magh - ring related).mp4 00:12:05
  • 11. Numerical 6 (2069 Bhadra- self inductance).mp4 00:06:32
  • 1. Construction, Operating Principle and EMF Equation of Single Phase Transformer.mp4 00:21:49
  • 2. Mutual Inductance and Coupled Circuit Model.mp4 00:07:03
  • 3. No Load and Load Operation of Transformer.mp4 00:16:45
  • 4. Equivalent Circuit Diagram of Transformer (Detail).mp4 00:32:39
  • 5. Capacity of Transformer - Exciting Current Harmonics - Transformer Inrush Current.mp4 00:14:15
  • 6. Transformer Testing (Polarity test).mp4 00:07:32
  • 7. Transformer Testing ( No Load or Open Circuit test ).mp4 00:23:22
  • 8. Transformer Testing (Short circuit test).mp4 00:23:22
  • 9. Voltage Regulation.mp4 00:27:43
  • 10. Losses , Efficiency and Condition for Maximum Efficiency in a Transformer.mp4 00:20:13
  • 11. Instrument Transformer (current transformer & potential transformer).mp4 00:15:35
  • 12. Auto Transformer (Construction , working principle & Cu saving).mp4 00:17:15
  • 13. Numerical 1 (2076 Baisakh - step up transformer testing.mp4 00:30:52
  • 14. Numerical 2 (2072 Magh - step down transformer testing).mp4 00:27:16
  • 15. Numerical 3 (2073 Bhadra - efficiency related).mp4 00:12:41
  • 16. Numerical 4 (2073 Magh - efficiency related).mp4 00:07:10
  • 17. Numerical 5 (2071 Magh - efficiency related).mp4 00:13:06
  • 18. Numerical 6 (2070 magh).mp4 00:09:26
  • 19. Numerical 7 (2069 bhadra - efficiency related).mp4 00:20:01
  • 1. Constructional details of DC Machine and Armature Windings.mp4 00:14:18
  • 2. Operating Principle and EMF Equation of DC Generator.mp4 00:35:46
  • 3. Operating Principle and Torque Equation of DC motor.mp4 00:48:06
  • 4. Back EMF and its Role in DC Motor.mp4 00:15:23
  • 5. Types of DC Motor and Performance Characteristics of DC motor.mp4 00:38:17
  • 6. Starting of DC Motors ( 3 point and 4 point starters).mp4 00:24:59
  • 7. Speed Control of DC shunt motor.mp4 00:28:01
  • 8. Speed Control of DC Series Motor.mp4 00:23:46
  • 9. Losses, Efficiency and Voltage Regulation in DC Generator.mp4 00:03:28
  • 10. Numerical 1 (2076 Baisakh - short shunt and long shunt compound dc generator).mp4 00:54:11
  • 11. Numerical 2 (2075 Bhadra - dc shunt generator).mp4 00:20:56
  • 12. Numerical 3 (2076 Baisakh - dc shunt motor).mp4 00:23:05
  • 13. Numerical 4 (2075 Bhadra - dc shunt motor).mp4 00:17:06
  • 14. Numerical 5 (2073 Magh - dc shunt motor).mp4 00:14:52
  • 15. Numerical 6 (2075 Baisakh - dc series motor).mp4 00:11:55
  • 16. Numerical 7 (2066 Magh - dc series motor).mp4 00:13:56
  • 1. Construction and Operating Principle of Three Phase Induction Motor.mp4 00:34:33
  • 2. Torque Equation of Three Phase Induction Motor at Standstill and Running Condition.mp4 00:21:22
  • 3. Torque Slip Characteristics , Condition for max. torque & effect of rotor resistance on torque slip characteristics.mp4 00:28:14
  • 4. Single Phase Induction Motor.mp4 00:05:28
  • 5. Double Field Revolving Theory.mp4 00:17:23
  • 6. Starting of Single Phase Induction Motor.mp4 00:06:13
  • 7. Capacitor Start Motor.mp4 00:04:36
  • 8. Capacitor Run Motor.mp4 00:03:15
  • 9. Capacitor Start and Run Motor.mp4 00:05:21
  • 10. Shaded Pole Motor.mp4 00:03:12
  • 11. Single Phase Synchronous motor.mp4 00:04:40
  • 12. Hysteresis Motor.mp4 00:05:10
  • 13. Universal Motor.mp4 00:08:19
  • 14. Stepper Motor.mp4 00:12:53
  • 15. Servo Motor.mp4 00:09:16
  • 16. Schrage Motor.mp4 00:03:36
Requirements
  • Students are required to have knowledge of knowledge of Electrical Machine and Electric Circuit Theory, based on syllabus of IoE
Description

The videos herein are strictly based on syllabus of Institute of Engineering Tribhuvan University, Nepal promoting "e-Learning in Nepal" and are made with intention to provide guidance to the "Bachelor in Engineering(BE) appearing students", for securing good results. The course tries to cover all the lessons of Electric Circuits and Machines with solution of most frequently asked questions in final exam of BE with fundamental theories and numerical solutions. We strongly believe that, viewers will be benefited from these videos and the thirst of curiosity of viewers will be quenched! Feedbacks and suggestion to improve are always welcome and highly appreciated!

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Includes:
  • 35+ Hours On demand videos
  • 154 Lessons
  • 45 Days Subscription
  • Access On Mobile And Web

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