Electromagnetics @ 45 Days

Electromagnetics Bachelor of Engineering(BE) videos According to syllabus of Institute of Engineering(IoE), Tribhuwan University (TU)

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Last updated Wed, 09-Oct-2024 Nepali
What will I learn?
  • After Completion of this Course, Students will get basics of Electromagnetics based on syllabus of IoE and will be able to secure good score in IoE exam.

Curriculum for this course
193 Lessons 31h 39m
0. Marks Distribution
1 Lessons
  • 1. Syllabus and Marks Distribution.mp4 00:15:25
  • 1. Introduction of Contents.mp4 00:02:37
  • 2. Introduction of Co-ordinate system.mp4 00:07:06
  • 3. Scalars and Vectors.mp4 00:05:18
  • 4. Algebraic Operation Involving Vectors.mp4 00:12:43
  • 5. Rectangular co-ordinate system.mp4 00:11:43
  • 6. Cylindrical Co-ordinate System.mp4 00:10:01
  • 7. Spherical Co-ordinate system.mp4 00:10:08
  • 8. Dot product of Cylindrical and Rectangular co-ordinate system.mp4 00:07:41
  • 9. Dot product of Rectangular and Spherical Co-ordinate System.mp4 00:10:55
  • 10. Dot Product of unit vector in Cylindrical and Spherical Co-ordinate System.mp4 00:04:53
  • 11. Cross Products.mp4 00:04:32
  • 12. Angle measument.mp4 00:06:18
  • 13. Numerical Example-1.mp4 00:06:44
  • 14. Numerical Example-2.mp4 00:06:40
  • 15. Numerical 4 (2074 Ashwin).mp4 00:07:26
  • 16. Numerical Example-3.mp4 00:07:39
  • 1. Introduction of Contents.mp4 00:04:32
  • 2. Coulomb's Law.mp4 00:08:28
  • 3. Electric Field Intensity.mp4 00:04:25
  • 4. Electric Field Intensity due to point charge.mp4 00:15:19
  • 5. Charge Distribution.mp4 00:05:57
  • 6. Electric Field Intensity due to Line Charge.mp4 00:19:49
  • 7. Electric Field Intensity due to Infinite sheet of Charge.mp4 00:16:59
  • 8. Numerical Example-1.mp4 00:12:40
  • 19. Numerical Example-3.mp4 00:10:50
  • 9. Numerical Example-2.mp4 00:09:20
  • 10. Electric Flux and Electric Flux Density.mp4 00:05:02
  • 11. Gauss' Law.mp4 00:10:38
  • 12. Application of Gauss law- field Due to point Charge.mp4 00:06:51
  • 13. Field due to Line Charge Using Gauss' Law.mp4 00:10:29
  • 14. Field due to Infinite Plate using Gauss' Law.mp4 00:06:15
  • 15. Electric field due to infinite coaxial cable.mp4 00:10:37
  • 16. Divergence and it's Physical Interpretation.mp4 00:10:37
  • 17. Maxwell's First Eqauation and Divergence Theorem.mp4 00:06:20
  • 18. Important Expression of Divergence.mp4 00:04:40
  • 20. Numerical Example-4.mp4 00:09:04
  • 21. Potential Difference and potential at a point.mp4 00:14:31
  • 22. Potential Gradient.mp4 00:14:48
  • 23. The Dipole.mp4 00:12:52
  • 24. Energy Density In Electrostatics Field.mp4 00:16:13
  • 25. Numerical Example-5.mp4 00:08:29
  • 26. Numerical Example-6.mp4 00:14:28
  • 27. Numerical Example-7.mp4 00:07:02
  • 28. Current and Current Density.mp4 00:08:35
  • 29. Principle of conservation of charge and continuity equation.mp4 00:08:01
  • 30. Point Form of Ohm's Law.mp4 00:03:57
  • 31. Ralaxation Time Constant.mp4 00:09:11
  • 32. Boundary Condition Between the Conductor and Free Space.mp4 00:14:11
  • 33. Numerical Example-8.mp4 00:09:30
  • 34. Dielectric and Polarization.mp4 00:10:37
  • 35. Relationship between D,E and P.mp4 00:09:34
  • 36. Boundary Condition between perfect Dielectric Medium.mp4 00:11:26
  • 37. Capacitor and Capacitance.mp4 00:03:10
  • 38. Numerical Example-9.mp4 00:14:48
  • 39. Derivation of Poisson's and Laplace's Equation.mp4 00:04:43
  • 40. Uniqueness Theorem.mp4 00:16:30
  • 41. One Dimensional Boundary Value Problem In Electrostatics.mp4 00:10:13
  • 42. Capacitane of parellel plate Capacitor using one dimension Boundary value.mp4 00:06:44
  • 43. Capacitance of Co-axial Capacitor using one dimensional Boundary Value.mp4 00:15:46
  • 44. Capacitance of Spherical Co-ordinaate using 1D Boundary Values-.mp4 00:12:10
  • 45. Two Dimensional Boundary Value Problem.mp4 00:04:28
  • 46. Numerical example-10.mp4 00:07:57
  • 1. Introduction of Contents.mp4 00:04:33
  • 2. Magnetic Material Properties.mp4 00:06:25
  • 3. Biot- Savart Law.mp4 00:06:29
  • 4. Application of Biot-Savart's law.mp4 00:14:09
  • 5. Ampere's Circuital Law.mp4 00:03:51
  • 6. Field Due to Infinitely Long filament.mp4 00:05:44
  • 7. Field due to Infinitely Co-axial Cable.mp4 00:11:20
  • 8. Curl.mp4 00:07:02
  • 9. Stokes' Theorem.mp4 00:07:26
  • 10. Magnetic Flux and Density.mp4 00:03:02
  • 11. The Scalar and Vector Magnetic Potential.mp4 00:08:36
  • 12. Force on moving charge.mp4 00:03:47
  • 13. Magnetic dipole and Magnetization.mp4 00:03:16
  • 14. Relationship Between B, H & M.mp4 00:06:18
  • 15. Boundary Condition of Magnetic Field.mp4 00:11:17
  • 16. Numerical Example-1.mp4 00:17:06
  • 17. Numerical Example-2.mp4 00:06:38
  • 18. Numerical Example-3.mp4 00:05:42
  • 19. Numerical Example-4.mp4 00:06:23
  • 20. Numerical Example-5.mp4 00:07:56
  • 21. Numerical Example-6.mp4 00:11:52
  • 22. Numerical Example-7.mp4 00:17:00
  • 1. Introduction of Contents.mp4 00:04:01
  • 2. Faraday's Law of Electromagnetic Induction.mp4 00:09:12
  • 3. Motional and Transformer Induction.mp4 00:11:08
  • 4. Ampere's Law Conflicting with the Continuity Equation.mp4 00:05:24
  • 5. Displacement Current.mp4 00:12:29
  • 6. Maxwell's equation for static and magnetic fields.mp4 00:07:44
  • 7. Generalized Form of Maxwell's Equation.mp4 00:12:01
  • 8. Numerical Example-1.mp4 00:17:37
  • 9. Characterstics of different medium.mp4 00:08:24
  • 10. Propagation Constant.mp4 00:15:29
  • 11. Wave impedance and Intrinsic Impedance.mp4 00:04:23
  • 12. Phasor.mp4 00:10:55
  • 13. Wave equation in Perfect Dielectric Medium.mp4 00:20:11
  • 14. Wave Equation in Lossy Dielectric Medium.mp4 00:22:15
  • 15. Pointing Vector.mp4 00:04:43
  • 16. loss Tangent.mp4 00:03:48
  • 17. Skin effect and Skin Depth.mp4 00:06:27
  • 18. Reflection of Uniform Plane Wave at normal Incidence.mp4 00:12:33
  • 19. Standing Wave Ratio.mp4 00:15:20
  • 20. Reflection of Uniform Plane at Oblique Incidence.mp4 00:21:55
  • 21. Numerical Example-2.mp4 00:05:38
  • 22. Numerical Example-3.mp4 00:13:25
  • 23. Numerical Example-4.mp4 00:08:40
  • 24. Numerical Example-5.mp4 00:11:26
  • 25. Numerical Example-6.mp4 00:05:50
  • 26. Numerical Example-7.mp4 00:08:55
  • 27. Numerical Example-8.mp4 00:07:00
  • 28. Numerical Example-9.mp4 00:13:53
  • 29. Numerical Example-10.mp4 00:08:30
  • 1. Introduction of Content.mp4 00:04:06
  • 2. Transmission line and its parameters.mp4 00:06:09
  • 3. Propagation Constant & characterstics Impedence of Transmission Line.mp4 00:15:13
  • 4. Give Reason Question.mp4 00:03:52
  • 5. Reflection Coefficient, VSWR, Input Impedence.mp4 00:20:58
  • 6. Impedance Matching.mp4 00:13:43
  • 7. Numerical Example-1.mp4 00:07:12
  • 8. Numerical Example-2.mp4 00:03:45
  • 9. Numerical example-3.mp4 00:08:18
  • 10. Numerical example-4.mp4 00:13:05
  • 11. Smith Chart.mp4 00:08:42
  • 12. Numerical Example-5.mp4 00:15:29
  • 13. Waveguide.mp4 00:09:32
  • 14. Types of Waveguide.mp4 00:04:04
  • 15. Mode of Waveguide.mp4 00:07:48
  • 16. Numerical Example-6.mp4 00:07:29
  • 17. Numerical Example-7.mp4 00:06:21
  • 18. Antennas.mp4 00:11:40
  • 19. Types of Antennas.mp4 00:04:53
  • 20. Radiation From a Dipole Antenna.mp4 00:04:31
  • 2074 Chaitra|Question No. 1.mp4 00:07:57
  • 2074 Chaitra|Question No. 2.mp4 00:09:29
  • 2074 Chaitra|Question No. 3.mp4 00:07:10
  • 2074 Chaitra|Question No. 4.mp4 00:10:20
  • 2074 Chaitra|Question No. 5.mp4 00:12:30
  • 2074 Chaitra|Question No. 6.mp4 00:15:38
  • 2074 Chaitra|Question No. 7.mp4 00:10:37
  • 2074 Chaitra|Question No. 8.mp4 00:23:07
  • 2074 Chaitra|Question No. 9.mp4 00:11:19
  • 2074 Chaitra|Question No. 10.mp4 00:05:35
  • 2074 Chaitra|Question No. 11.mp4 00:09:59
  • 2074 Chaitra|Question No. 12.mp4 00:12:21
  • 2075 Ashwin|Question No. 1.mp4 00:06:54
  • 2075 Ashwin|Question No. 2.mp4 00:18:03
  • 2075 Ashwin|Question No. 3.mp4 00:12:06
  • 2075 Ashwin|Question No. 4.mp4 00:06:18
  • 2075 Ashwin|Question No. 5.mp4 00:16:16
  • 2075 Ashwin|Question No. 6.mp4 00:20:16
  • 2075 Ashwin|Question No. 7.mp4 00:12:22
  • 2075 Ashwin|Question No. 8.mp4 00:10:33
  • 2075 Ashwin|Question No. 9.mp4 00:08:52
  • 2075 Ashwin|Question No. 10.mp4 00:06:38
  • 2075 Ashwin|Question No. 11.mp4 00:08:52
  • 2075 Ashwin|Question No. 12.mp4 00:06:05
  • 2075 Chaitra|Question No. 1.mp4 00:08:37
  • 2075 Chaitra|Question No. 2.mp4 00:15:44
  • 2075 Chaitra|Question No. 3.mp4 00:12:07
  • 2075 Chaitra|Question No. 4.mp4 00:08:44
  • 2075 Chaitra|Question No. 5.mp4 00:11:37
  • 2075 Chaitra|Question No. 6.mp4 00:06:55
  • 2075 Chaitra|Question No. 7.mp4 00:06:36
  • 2075 Chaitra|Question No. 8.mp4 00:04:39
  • 2075 Chaitra|Question No. 9.mp4 00:22:46
  • 2075 Chaitra|Question No. 10.mp4 00:07:05
  • 2075 Chaitra|Question No. 11.mp4 00:11:45
  • 2075 Chaitra|Question No. 12.mp4 00:11:18
  • 2075 Chaitra|Question No. 13.mp4 00:05:27
  • 2076 Ashwin|Question No. 1.mp4 00:13:16
  • 2076 Ashwin|Question No. 2.mp4 00:07:12
  • 2076 Ashwin|Question No. 3.mp4 00:17:52
  • 2076 Ashwin|Question No. 4.mp4 00:05:44
  • 2076 Ashwin|Question No. 5.mp4 00:06:36
  • 2076 Ashwin|Question No. 6.mp4 00:10:16
  • 2076 Ashwin|Question No. 7.mp4 00:13:58
  • 2076 Ashwin|Question No. 8.mp4 00:09:21
  • 2076 Ashwin|Question No. 9.mp4 00:14:59
  • 2076 Ashwin|Question No. 10.mp4 00:06:52
  • 2076 Ashwin|Question No. 11.mp4 00:04:45
  • 2076 Chaitra|Question No. 1.mp4 00:11:11
  • 2076 Chaitra|Question No. 2.mp4 00:11:22
  • 2076 Chaitra|Question No. 3.mp4 00:14:10
  • 2076 Chaitra|Question No. 4.mp4 00:11:14
  • 2076 Chaitra|Question No. 5.mp4 00:11:51
  • 2076 Chaitra|Question No. 6.mp4 00:15:12
  • 2076 Chaitra|Question No. 7.mp4 00:13:19
  • 2076 Chaitra|Question No. 8.mp4 00:13:02
  • 2076 Chaitra|Question No. 9.mp4 00:13:53
  • 2076 Chaitra|Question No. 10.mp4 00:07:49
  • 2076 Chaitra|Question No. 11.mp4 00:04:51
Requirements
  • Students are required to have knowledge of Electromagnetics based on syllabus of IoE
Description

The videos herein are strictly based on syllabus of Institute of Engineering Tribhuwan 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 basics of Vector Analysis and Coordinate System 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 thrist of curiosity of viewers will be quenched! Feedbacks and suggestion to improve are always welcome and highly appreciated!

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