Electromagnetic Field Theory & Transmission Lines
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Welcome to the dear learners of the Electromagnetic Field Theory Online learning course students!
PVV details the step-by-step procedure for learning Electromagnetic Field Theory&Transmission Lines course from Scratch. Online learning course from scratch. Electromagnetism is a branch of physical science that deals all about electricity and magnetism interactions. This field plays a vital role in electronics. Now we are living under the EM waves because EM is all around us, every time we turn ON any switch or if we press any key on a computer keyboard, or every time we perform a similar action involving an everyday electrical device, electromagnetic actions comes into the picture to play. The most common use of electromagnets is in electric motors are using in our domestic purpose in our homes. of course, vacuum cleaners, refrigerators, washing machines, tumble driers, food blenders, fan ovens, microwaves, dish-washers, hair driers all are based on some principles of electromagnetic induction and other ways. So It is a foundational stone for the upcoming modern technologies in computer science engineering, electromechanics engineering, and photonics technologies.
The course comprises 7 sections
Section1:Introduction to electromagnetics which is a prerequisite to learn EM field theory course covered
Section2: Review of coordinate systems
Section3: Electrostatics
Section4: Electromagnetics
Section5:Electromagnetic characteristics
Section6:Transmission lines1
Section7:Transmission lines2
Introduction:
Electromagnetics (EM) is the subject having to do with electromagnetic fields. Electromagnetic field theory is essential to the course for developing the mist of electronics devices like switches, relays, and some electromagnetic devices also developed by this knowledge. So EM theory is essential and necessary on the basis for understanding the devices and systems used for electrical and magnetic energy. Both electric and magnetic fields are defined in terms of the forces they produce in the real world. An electromagnetic field is made up of interdependent electric and magnetic fields, which is the case when the fields are varying with time, that is, they are dynamic in nature. So those who want to look for the design of electromagnetic devices this course really helps a lot and undergraduates also can take this course for betterment in their career.
What is a field and what is a vector field and what is a scalar field and how the field is created and how the field will act on point charges and in charged bodies will let you know in this course.
First, you will learn the Review of coordinate systems: So the review of coordinate systems deals with the cartesian, cylindrical and spherical coordinate systems and how to convert one coordinate to another coordinate system.
Before learning the EM field theory some vector algebra also required all the concepts which are required are given in the course as a part of the introductory part. Later discussed the divergence and gradient, as well as the stokes theorem and the divergence theorem, were discussed elaborately.
In the next section, you will know all about electrostatics that means coulombs law and electric field and electric field intensity at different charged bodies and in given points. Gauss law and Laplace and Poissons law relaxation time and uniqueness theorem electric potential energy density also discussed clearly.
In magneto statics deals with all about when the charges are in motion. in this section you will learn the biot savarts law, amperes circuit and force law as well as the fore between two parallel conductors and other important topics covered.
In electromagnetic characteristics deal with electric field components and magnetic components how it will be varied with time and the eave equations and wave propagation for dielectric medium and conductors solved. Intrinsic impedance and polarization techniques were also covered elaborately.
In the next subsequent sections transmission lines 1 and 2 discussed and what is transmission lines and the derivation of basic transmission lines and intrinsic impedance, open circuit and short circuit conditions in the load for transmission lines and other concepts delivered.
Feel free to ask any doubt while learning the course
Happy learning!
Skill Gems Education
PUDI V V S NARAYANA
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1Introduction to Electromagnetic TheoryVideo lesson
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2What is fielld and explaining of all the fields including electromagnatic fieldVideo lesson
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3Position VectorVideo lesson
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4Distance vectorVideo lesson
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5Types of vectors and Unit Vector clear explanationVideo lesson
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6Formulas used in Electromagnetics---Vector AlgebraVideo lesson
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7Formulas used in Electromagnetics---Vector Algebra Contd.,Video lesson
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8Formulas used in Electromagnetics---Vector Algebra Contd.,Video lesson
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9Formulas used in Electromagnetics---Vector Algebra Contd.,Video lesson
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10Formulas used in Electromagnetics---Vector AlgebraVideo lesson
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11Formulas used in Electromagnetics---Vector Algebra Contd.,Video lesson
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12Review of Coordinate systems-Rectangular coordinate systemVideo lesson
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13Cylindrical coordinate systemVideo lesson
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14Spherical Coordinate systemVideo lesson
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15Point Transformation: Cylindrical to Rectangular vice-versaVideo lesson
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16Rectangular to Cylindrical point transformationVideo lesson
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17Revision of all Point transformation formulasVideo lesson
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18Rectangular to Cylindrical Vector transformationVideo lesson
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19Cylindrical to Rectangular to Cylindrical Vector transformation contd.,Video lesson
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20Rectangular to Spherical Vector transformation contd.,Video lesson
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21What is del operator del with temperatureVideo lesson
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22Divergence or Dot productVideo lesson
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23Divergence TheoremVideo lesson
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24Mathematical expression of CurlVideo lesson
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25CurlVideo lesson
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26Variation of temperature with Del operator in 3 dimensionVideo lesson
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27physical characteristics of a DivergenceVideo lesson
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28physical characteristics of a CurlVideo lesson
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29Curl proofVideo lesson
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30Stokes TheoremVideo lesson
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31Coulombs LawVideo lesson
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32Coulombs law contd.,Video lesson
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33Coulombs law contd.,Video lesson
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34Coulombs law applied due to system of chargesVideo lesson
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35Electric Field and Electric field intensityVideo lesson
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36Electric field due to system of chargesVideo lesson
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37Electric field lines and its propertiesVideo lesson
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38Line integralVideo lesson
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39Surface integral and Volume integralVideo lesson
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40Continuous charge distributionsVideo lesson
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41Electric field intensity due to various charge distributionsVideo lesson
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42Electric flux linesVideo lesson
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43Electric flux densityVideo lesson
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44Electric flux density contd.,Video lesson
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45Electric flux density due to various charge distributionsVideo lesson
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46Gauss lawVideo lesson
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47Gauss theorem proofVideo lesson
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48Continuity variation for time varying fieldsVideo lesson
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49Relaxation timeVideo lesson
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50Electric potentialVideo lesson
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51Electric potential due to different chargesVideo lesson
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52Maxwells equationsVideo lesson
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53Relationbetween E and HVideo lesson
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54Energy density and energy stored in a electrostatic fieldVideo lesson
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55Energy density and energy stored in a electrostatic field contd.,Video lesson
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56Poissons equationVideo lesson
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57laplace equationVideo lesson
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58Uniqueness theoremVideo lesson
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59Introduction to magnetostaticsVideo lesson
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60Biot savarts lawVideo lesson
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61Amperes circuit or work lawVideo lesson
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62Amperes circuit or work law proofVideo lesson
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63H due to infinite sheet currentVideo lesson
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64maxwells equation and magnetic flux densityVideo lesson
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65Magnetic forceVideo lesson
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66Faraday's lawVideo lesson
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67Transformer EMF and motional induced EMFVideo lesson
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68Transformer EMF and motional induced EMFVideo lesson
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69Transformer EMF and motional induced EMFVideo lesson
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70Modified Ampere circuital law for time varying fieldsVideo lesson
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71Displacement current density and currentVideo lesson
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72Magnetic Force on current elementVideo lesson
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73Amperes force law between two conductorsVideo lesson
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74Maxwell's equationsVideo lesson
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75Maxwell equations for time varying fieldsVideo lesson
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76Maxwell's equations for sinusoidal variationsVideo lesson
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77Electromagnetic wave characteristics introductionVideo lesson
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78Wave equation for lossless deltaVideo lesson
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79Wave equations for lossless conducting mediumVideo lesson
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80EM Wave equation in phasor formVideo lesson
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81EM wave equation for conducting mediumVideo lesson
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82Wave propagation in a lossless mediumVideo lesson
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83Wave propagation in lossless conducting mediumVideo lesson
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84Attenuation constant and phase constantVideo lesson
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85Conductors and dielectricVideo lesson
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86EM wave equation in good dielectricVideo lesson
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87EM wave characteristics in good conductorVideo lesson
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88Wave propagation in good condition good deltax continuedVideo lesson
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89Skin depthVideo lesson
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90Uniform plane waveVideo lesson
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91Uniform plane wave characteristics and propertiesVideo lesson
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92polarization of uniform plane waveVideo lesson
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