Course Details
Subject {L-T-P / C} : MM2105 : Physics of Materials { 3-0-0 / 3}
Subject Nature : Theory
Coordinator : Syed Nasimul Alam
Syllabus
| Module 1 : |
Bohr's atomic model, Crystal Structure, Bragg’s Law and X-ray Diffraction, Semiconductors, Intrinsic and extrinsic semiconductors, carrier concentration, electrical conductivity and mobility, p-n Junction Diode, Fermi-Dirac Statistics, Hall Effect, Free electron model, Superconductivity, Meissner Effect, Type-I and Type-II superconductors, London Equation, BCS Theory, High-Temperature Superconductors, Quantum mechanics, Schrodinger Equation, Heisenberg Uncertainty Principle, Particle in a Box, Magnetism, B-H curve, Curie Temperature, Bohr magneton, Diffusion, Fick's first and second law, Solutions |
Course Objective
| 1 . |
This course enables students to understand the properties and behaviour of materials form the fundamentals of physics |
| 2 . |
Analyse the importance of material properties for a wide variety of engineering applications |
| 3 . |
The student learns how the laws of Physics govern the properties of materials |
Course Outcome
| 1 . |
Course Outcomes (COs)
|
Essential Reading
| 1 . |
William D. Callister, Jr. and R. Balasubramaniam, Materials Science & Engineering 6th Edition with Learning Student Resource CD 6th Edition Set, Wiley Second edition (1 January 2014) |
| 2 . |
V. Raghavan, Materials Science and Engineering: A First Course, Prentice Hall India Learning Private Limited 6th edition (1 January 2015) |
Supplementary Reading
| 1 . |
Prathap Haridoss, Physics of Materials: Essential Concepts of Solid-State Physics, Wiley |
| 2 . |
Safa Kasap, Principles of Electronic Materials and Devices Third Edition,, McGraw-Hill, 2006 |
