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High Voltage Engineering

Brand: Ashish Kumar
MPN: com.faadooengineers.free_highvoltageengineering
Category: App (Science)
Price: $0.00
Availability: Available instantly on compatible devices
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Features

  • This unique free application is for all students across the world. It covers 149 topics of High Voltage Engineering in detail. These 149 topics are divided in 5 units.
  • Each topic is around 600 words and is complete with diagrams, equations and other forms of graphical representations along with simple text explaining the concept in detail.
  • This USP of this application is "ultra-portability". Students can access the content on-the-go from anywhere they like.
  • Basically, each topic is like a detailed flash card and will make the lives of students simpler and easier.
  • Some of topics Covered in this application are:
  • 1. Introduction to Electrical Stress
  • 2. FINITE DIFFERENCE METHOD
  • 3. FINITE ELEMENT METHOD
  • 4. Condition for Energy Minimization in Finite element method
  • 5. CHARGE SIMULATION METHOD
  • 6. Significance of Charge Simulation Method
  • 7. SURFACE CHARGE SIMULATION METHOD
  • 8. COMPARISON OF VARIOUS TECHNIQUES
  • 9. ELECTROLYTIC TANK
  • 10. CONTROL OF ELECTRIC FIELD INTENSITY
  • 11. OPTIMISATION OF ELECTRODE CONFIGURATION
  • 12. Displacement of Contour Points
  • 13. Changing the Position of the Optimisation Charges and Contour Points
  • 14. Modification of Contour Elements
  • 15. MECHANISM OF BREAKDOWN OF GASES
  • 16. Townsend’s First Ionization Coefficient
  • 17. CATHODE PROCESSES- SECONDARY EFFECTS
  • 18. Townsend Second Ionisation Coefficient
  • 19. TOWNSEND BREAKDOWN MECHANISM
  • 20. STREAMER OR KANAL MECHANISM OF SPARK
  • 21. THE SPARKING POTENTIAL -PASCHEN’S LAW
  • 22. An analytical expression for the minimum sparking potential
  • 23. PENNING EFFECT & CORONA DISCHARGES
  • 24. TIME-LAG & BREAKDOWN IN ELECTRONEGATIVE GASES
  • 25. Application of Gases in Power System
  • 26. BREAKDOWN IN LIQUID DIELECTRICS
  • 27. Electronic & Electroconvection Breakdown
  • 28. Suspended Solid Particle Mechanism
  • 29. Cavity Breakdown
  • 30. TREATMENT OF TRANSFORMER OIL - Air Absorption
  • 31. Methods for Treatment of Transformer oil
  • 32. TESTING OF TRANSFORMER OIL
  • 33. Application of Oil in Power Apparatus
  • 34. BREAKDOWN IN SOLID DIELECTRICS
  • 35. Intrinsic Breakdown IN SOLID DIELECTRICS
  • 36. ELECTROMECHANICAL BREAKDOWN IN SOLID DIELECTRICS
  • 37. Breakdown due to Treeing and Tracking IN SOLID DIELECTRICS
  • 38. Thermal Breakdown IN SOLID DIELECTRICS
  • 39. Conclusion of Thermal Breakdown & Electrochemical Breakdown IN SOLID DIELECTRICS
  • 40. Solid Dielectrics Used in Power Apparatus
  • 41. Polyvinyl Chloride (PVC) & Polythene in Power Apparatus
  • 42. Insulating press boards, Mica, Ceramics & Glass in Power Apparatus
  • 43. Epoxy Resins in Power Apparatus
  • 44. Application of Insulating Materials – Power Transformers
  • 45. Circuit Breakers, Rotating Machines & Power Cables - Insulation
  • 46. Application of Insulating Materials - Power Capacitors
  • 47. Application of Insulating Materials - Capacitor Bushings
  • 48. BREAKDOWN IN VACUUM
  • 49. Electric Discharge in Vacuum
  • 50. Non-metallic Electron Emission Mechanism
  • 51. Clump Mechanism & Effect of Pressure on Breakdown Voltage
  • 52. HALF-WAVE RECTIFIER CIRCUIT
  • 53. No-Load Operation on Cockroft-Walton Voltage Multiplier Circuit
  • 54. Generator Loaded Operation on Cockroft-Walton Voltage Multiplier Circuit
  • 55. A Typical Cockroft Circuit
  • 56. Basic Principle of Operation of Electrostatic Generator
  • 57. Advantages of Electrostatic generator & Generation of High A.C Voltages
  • 58. Cascaded Transformers
  • 59. Equivalent Circuit of a Cascaded Transformer
  • 60. Reactive Power Compensation
  • 61. SERIES RESONANT CIRCUIT
  • 62. Advantages of Series Resonant Circuit
  • 63. IMPULSE VOLTAGE
  • 64. Types of Impulse Voltage
  • 65. IMPULSE GENERATOR CIRCUITS
  • 66. ANALYSIS OF Circuit with R2 on the load side of R1
  • 67. ANALYSIS OF circuit with R2 on the generator side of R1
  • 68. MULTISTAGE IMPULSE GENERATOR CIRCUIT
  • 69. CONSTRUCTION OF IMPULSE GENERATOR
  • 70. TRIGGERING AND SYNCHRONISATION OF THE IMPULSE GENERATOR
  • 71. Analysis of Impulse Current Generator
  • 72. SPHERE GAP

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