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MS148 APPLIED PHYSICSM.Sc. (COMPUTER SCIENCE)FIVE YEAR INTEGRATED PROGRAMME
Posted Date: 29 May 2008 Resource Type: Articles/Knowledge Sharing Category: Syllabus
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Posted By: Pradeep Kumar Member Level: Silver Rating: Points: 3
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MS148 APPLIED PHYSICS 3 1 0 4 1. CRYSTAL PHYSICS 9 Space lattice – Unit cell – Bravais space lattices – Simple crystal structures – SC, BCC, FCC – Calculation of atomic radius – No. of atoms / unit cell – Co-ordination number – Packing factor – Imperfections – Point defects – Crystal growth from a melt – Zone refining technique – Czochralski technique – Growth from vapour – CVD – Epitaxial growth. 2. QUANTUM PHYSICS 9 Planck’s Quantum theory (qualitative) – Wave particle duality – Uncertainty principle – Schrodinger’s wave equation – Particle in a one – Dimensional Box – Particle in a three dimensional box – density of states – Fermi – Dirac statistics (qualitative). 3. SEMICONDUCTOR PHYSICS & DEVICES 9 Energy bands in solids (qualitative) – Classification of solids – conductors – semiconductors – Insulators – Intrinsic semiconductors – Carrier concentration – Variation of Fermi level with temperature – Variation of conductivity with temperature –Extrinsic semiconductors – N-type and P-type (Qualitative) – PN – Junction – Transistor – Field effect transistors – Mosfet. 4. OPTOELECTRONIC DEVICES 9 Light sources – LED –Laser principle – Semiconductor laser – Homojunction Heterojunction – Photodetectors – Photodiodes – Phototransistors – Optoelectronic modulation and switching devices – lightwave networks – optocouplers – optical fiber and characteristics (qualitative). 5. STORAGE MATERIALS 9 Different types of magnetic materials (qualitative) – Charge coupled devices – optical data storage – Recording and read out information – magneto-optical recording and read out. L : 45 + T: 15 = 60
REFERENCES 1. Narciso Garcia and Arthu Damask, “Physics for Computer Science Students”, Springer Verlag, New York, 1991. 2. Linda Edwards – Shea, “The essence of Solid State Electronics”, - Prentice – Hall of India Pvt Ltd., New Delhi, 2000. 3. Streetman B.G. and Banerjee S. “Solid State Electronic Devices”, Pearson Education Inc, New Delhi, 5th Edition, 2000. 4. P. Bhattacharya, “Semiconductor Optoelectronic Devices”, Pearson Education Inc, New Delhi, 2nd Edition, 2000. 5. Hawkes, W.J., “Optoelectronics – An Introduction”, Prentice Hall of India, New Delhi, 1996. 6. Keiser, G., “Optical fibre communications”, McGraw Hill Co., Tokyo, 1995.
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