ADVANCED ENGINEERING PHYSICS Syllabus — Government College of Enginee…
Full syllabus, topics and curated resources for ADVANCED ENGINEERING PHYSICS (Government College of Engineering and Technology, Jammu).
Study of electromagnetic fields and waves, laser and fibre optics, properties of surfaces and moments of inertia, waves and oscillations, semiconductor physics, and friction.
- Subject code: BST1203
- University: Government College of Engineering and Technology, Jammu
- Course: BE (2022 onwards)
- Branch: ME
- Semester: 2
ADVANCED ENGINEERING PHYSICS syllabus
Unit 1: ELECTROMAGNETIC FIELDS AND WAVES
- Concepts of Del Operator- gradient, divergence, curl and their physical significances
- Displacement Current
- Maxwell's equations in integral and differential form
- Poynting vector and Poynting theorem
- Electromagnetic wave propagation in free space
- e m wave equations for electric & magnetic fields for free space
- solutions (plane wave solution)
- velocity of E M waves
- Relation between E & B
Unit 2: LASER AND FIBRE OPTICS
- Concept and principal of Laser action
- Spontaneous and Stimulated emission
- Einstein's co-efficient
- coherence and characteristics of laser light
- Ruby
- CO2 laser
- Applications of lasers
- Optical Fiber
- Physical structure and basic theory
- critical angle
- Acceptance angle & acceptance cone
- Numerical Aperture
- characteristics and general applications of optical fibers
Unit 3: PROPERTIES OF SURFACES, MOMENTS AND PRODUCTS OF INERTIA
- Definition Moment of Inertia for areas
- Parallel axis theorem
- Perpendicular axis theorem
- Moment of inertia for composite area
- product of inertia form
- mass moment of inertia
Unit 4: WAVES & OSCILLATIONS
- Simple harmonic oscillations
- damped oscillations and differential equation
- logarithmic decrement
- relaxation time
- quality factor
- ultrasonic waves and their production
- applications of ultrasonic waves
Unit 5: SEMICONDUCTOR PHYSICS
- Structure of Atoms
- Energy band diagram
- Metal, Insulator and Semiconductor
- Intrinsic and Extrinsic semiconductors
- Direct & Indirect semiconductors (E-k diagrams)
- Electron and hole concentration in intrinsic semiconductor
- Charge densities in semiconductor
- Generation & Recombination of charge carrier
- Law of mobility & conductivity
- Current densities in semiconductors
- Fermi levels
- Mass action law
- Drift & Diffusion current
- Einstein relation for p-n junction
- Hall effect
- Hall co-efficient & its applications