Physics for Electrical Engineering - PH3202

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Physics for Electrical Engineering






Physics for Electrical Engineering



UNIT I: DIELECTRIC MATERIALS AND INSULATION

UNIT II: ELECTRICAL AND MAGNETIC PROPERTIES OF MATERIALS


Conducting Materials
Important Questions and Answers: Conducting Materials
Magnetic Materials
Important Questions and Answers: Magnetic Materials
Super Conducting Materials
Important Questions and Answers: Super Conducting Materials
Dielectric Materials
Important Questions and Answers: Dielectric Materials
Conducting Materials
Solved Problems: Conducting Materials
Important Short Questions and Answers: Conducting Materials
Magnetic Materials
Super Conductors
Solved Problems: Magnetic and Superconducting Materials
Important Questions and Answers: Magnetic and Superconducting Materials
Dielectric Materials
Solved Problems: Dielectric Materials
Important Short Questions and Answers: Dielectric Materials

UNIT III: SEMICONDUCTORS AND TRANSPORT PHYSICS


Semiconducting Materials
Important Questions and Answers: Semiconducting Materials
Semiconducting Materials
Solved Problems: Semiconducting Materials
Important Short Questions and Answers: Semiconducting Materials

UNIT IV: OPTICAL PROPERTIES OF MATERIALS


Characteristics of Laser
Principle of Spontaneous and Stimulated emission - Einstein’s Quantum theory of radiation
Principle of Laser action and Methods of pumping action
Nd: YAG laser: Principle, Construction, Working, Characteristics, Advantages, Disadvantages and Applications
CO2 Molecular gas laser: Principle, Construction, Working, Characteristics, Advantages, Disadvantages and Applications
Solid State diode lasers
Semiconductor Diode laser: Principle, Construction, Working, Characteristics, Advantages, Disadvantages and Applications
Hetro Junction Laser: Principle, Construction, Working, Characteristics, Advantages, Disadvantages and Applications
Fiber Optics and Fiber Construction
Types of Optical Fibers
Difference between Step Index fiber and Graded Index fiber
The Fiber Optic Communication System: Principle, Working, and Advantages
Double Crucible Method
Types of Fiber Optic Sensors
Temperature Fiber Optic Sensor: Principle, Description and Working
Displacement Fiber Optic Sensor (Extrinsic Sensor): Principle, Description and Working
Medical Endoscope - Fiber Optic: Construction and working
Losses in Optical Fibers
Principle of operation of a Photo Detector
PIN Photo Diode
Light Emitting Diodes: Principle, Construction, Working, Advantages and Disadvantages
Important Short Questions and Answers: Photonics and fibre Optics

UNIT V: NANO DEVICES




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