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30/05/2018

GE8152 Engineering Graphics Syllabus PDF Regulation 2017 - Anna University R17 Syllabus Download

GE8152 Engineering Graphics Syllabus PDF Regulation 2017 - Anna University R17 Syllabus PDF Download

GE8152 Syllabus - In this page, GE8152 Engineering Graphics Syllabus is available in pdf format, Hence Anna University 1st Semester Engineering Students can download GE8152 syllabus.  Mupabnews.com also provide Anna University Regulation 2017 GE8152 (EG) Notes, Question Banks, Previous year Question Papers and Important Questions.


 In this page, GE8152 Engineering Graphics Syllabus is available in pdf format, Hence Anna University 1st Semester Engineering Students can download GE8152 syllabus.  Mupabnews.com also provide Anna University Regulation 2017 GE8152 Notes, Question Banks, Previous year Question Papers and Important Questions.

Anna University Syllabus Regulation 2017 - In Mupabnews.com, Students can also make use of Anna University Common syllabus for B.E/B.Tech/M.B.A/M.C.A  students of all affiliated college in tamilnadu. Anna University R17 syllabus for all department like Aero, Automobile, EEE, ECE, EI, CSE, Civil, Mechanical for the academic year 2018-2019.


GE8152 Engineering Graphics Syllabus PDF - Click here


Anna University 1st Semester GE8152 Engineering Graphics Syllabus Regulation 2017

UNIT I PROPERTIES OF MATTER
Elasticity – Stress-strain diagram and its uses - factors affecting elastic modulus and tensile strength – torsional stress and deformations – twisting couple - torsion pendulum: theory and experiment - bending of beams - bending moment – cantilever: theory and experiment – uniform and non-uniform bending: theory and experiment - I-shaped girders - stress due to bending in beams.
UNIT II WAVES AND FIBER OPTICS
Oscillatory motion – forced and damped oscillations: differential equation and its solution – plane progressive waves – wave equation. Lasers : population of energy levels, Einstein’s A and B coefficients derivation – resonant cavity, optical amplification (qualitative) – Semiconductor lasers: homojunction and heterojunction – Fiber optics: principle, numerical aperture and acceptance angle - types of optical fibres (material, refractive index, mode) – losses associated with optical fibers - fibre optic sensors: pressure and displacement.
UNIT III THERMAL PHYSICS
Transfer of heat energy – thermal expansion of solids and liquids – expansion joints - bimetallic strips - thermal conduction, convection and radiation – heat conductions in solids – thermal conductivity - Forbe’s and Lee’s disc method: theory and experiment - conduction through compound media (series and parallel) – thermal insulation – applications: heat exchangers, refrigerators, ovens and solar water heaters.
UNIT IV QUANTUM PHYSICS
Black body radiation – Planck’s theory (derivation) – Compton effect: theory and experimental verification – wave particle duality – electron diffraction – concept of wave function and its physical significance – Schrödinger’s wave equation – time independent and time dependent equations – particle in a one-dimensional rigid box – tunnelling (qualitative) - scanning tunnelling microscope.
UNIT V CRYSTAL PHYSICS
Single crystalline, polycrystalline and amorphous materials – single crystals: unit cell, crystal systems, Bravais lattices, directions and planes in a crystal, Miller indices – inter-planar distances - coordination number and packing factor for SC, BCC, FCC, HCP and diamond structures - crystal imperfections: point defects, line defects – Burger vectors, stacking faults – role of imperfections in plastic deformation - growth of single crystals: solution and melt growth techniques.


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