This excellent Free application is perfect for a lot of students around the globe. It covers 108 subjects of Fundamental Electrical at length. These 108 subjects are divided in five models. Each subject is about 600 words and it is filled with diagrams, equations along with other types of graphical representations together with simple text explaining the idea at length. This USP of the application is "ultra-portability". Students have access to the information on-the-move from anywhere that they like. Essentially, each subject is sort of a detailed expensive card and can result in the lives of scholars simpler and simpler. Couple of subjects Covered within this application are: 1. Introduction of **electrical engineering** 2. Current and current 3. Electric Potential and Current 4. Conductors and Insulators 5. Conventional versus electron flow 6. Ohm's Law 7. Kirchoff's Current Law (KVL) 8. Kirchoff's Current Law (KCL) 9. Polarity of current drops 10. Branch current method 11. Mesh current method 12. Summary of network theorems 13. Thevenin's Theorem 14. Norton's Theorem 15. Maximum Energy Transfer Theorem 16. star-delta transformation 17. Source Transformation 18. current and current sources 19. loop and nodal techniques of research 20. Unilateral and Bilateral elements 21. Passive and active elements 22. alternating electric current (AC) 23. AC Waveforms 24. The Typical and efficient Worth of an AC Waveform 25. RMS Worth of an AC Waveform 26. Generation of Sinusoidal (AC) Current Waveform 27. Idea of Phasor 28. Phase Difference 29. The Cosine Waveform 30. Representation of Sinusoidal Signal with a Phasor 31. Phasor representation of Current and Current 32. AC inductor circuits 33. Series resistor-inductor circuits: Impedance 34. Inductor eccentricities 35. Overview of Resistance, Reactance, and Impedance 36. Series R, L, and C 37. Parallel R, L, and C 38. Series-parallel R, L, and C 39. Susceptance and Admittance 40. Simple parallel (tank circuit) resonance 41. Simple series resonance 42. Energy in AC Circuits 43. Energy Factor 44. Energy Factor Correction 45. Quality Factor and Bandwidth of the Resonant Circuit 46. Generation of Three-phase Balanced Currents 47. Three-Phase, Four-Wire System 48. Wye and delta designs 49. Among line and phase currents, and line and phase power 50. Energy in balanced three-phase circuits 51. Phase rotation 52. Three-phase Y and Delta designs 53. Measurement of Energy in Three phase circuit 54. Introduction of calculating instruments 55. Various forces/torques needed in calculating instruments 56. General Theory Magnet Moving Coil (PMMC) Instruments 57. Working Concepts of PMMC 58. A multi-range ammeters 59. Multi-range voltmeter 60. Fundamental principle operation of Moving-iron Instruments 61. Construction of Moving-iron Instruments 62. Shunts and Multipliers for MI instruments 63. Dynamometer type Wattmeter 64. Summary of Energy System 65. Energy TRANSMISSION AND DISTRIBUTION 66. Magnetic Circuit 67. B-H Qualities 68. Analysis of Series magnetic circuit 69. Analysis of series-parallel magnetic circuit 70. Different laws and regulations for calculating magnetic area-Biot-Savart law 71. Amperes circuital law 72. Reluctance &lifier permeance 73. Introduction of Eddy Current &lifier Hysteresis Deficits 74. Eddy current 75. Derivation of the expression for eddy current reduction in a skinny plate 76. Hysteresis Loss 77. Hysteresis loss &lifier loop area 78. Steinmetzs empirical formula for hysteresis loss 79. Inductor 80. Pressure between two opposite faces from the core across an aura gap 81. ideal transformer 82. Practical transformer 83. equivalent circuit 84. Efficiency of transformer 85. Auto-Transformer 86. Introduction of D.C Machines 87. D.C machine Armature Winding 88. EMF Equation 89. Torque equation 90. Generator types &lifier Qualities 91. Qualities of the individually excited generator 92. Qualities of the shunt generator 93. Load sign of shunt generator 94. Single-phase Induction Motor

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