Download PH3254 Physics for Electronics Engineering (PEE) Books Lecture Notes Syllabus Part-A 2 marks with answers PH3254 Physics for Electronics Engineering Important Part-B 16 marks Questions, PDF Books, Question Bank with answers Key, PH3254 Physics for Electronics Engineering Syllabus & Anna University PH3254 Physics for Electronics Engineering Question Papers Collection.
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“PH3254 Physics for Electronics Engineering Notes, Lecture Notes, Previous Years Question Papers “
“PH3254 Physics for Electronics Engineering Important 16 marks Questions with Answers”
“PH3254 Physics for Electronics Engineering Important 2 marks & 16 marks Questions with Answers”
“PH3254 Physics for Electronics Engineering Important Part A & Part B Questions”
“PH3254 Physics for Electronics Engineering Syllabus, Local Author Books, Question Banks”
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PH3254 Physics for Electronics Engineering (PEE) Notes Part A & Part B Important Questions with Answers
PH3254 Physics for Electronics Engineering – Study Materials – Details
Semester | 02 |
Department | Electronics and Communication Engineering |
Year | First Year (I Year) |
Regulation | R2021 |
Subject Code / Name | PH3254 Physics for Electronics Engineering (PEE) |
Content | Syllabus, Question Banks, Local Authors Books, Lecture Notes, Important Part A 2 Marks Questions and Important Part B 16 Mark Questions, Previous Years Anna University Question Papers Collections. |
Material Format | PDF (Free Download) |
PH3254 Physics for Electronics Engineering (PEE) “R2021 – SYLLABUS”
PH3254 PHYSICS FOR ELECTRONICS ENGINEERING
UNIT I CRYSTALLOGRAPHY
Crystal structures: Crystal lattice – basis – unit cell and lattice parameters – crystal systems and Bravais lattices – Structure and packing fractions of SC, BCC, FCC, diamond cubic, NaCL, ZnS structures – crystal planes, directions and Miller indices – distance between successive planes – linear and planar densities – crystalline and noncrystalline materials –Example use of Miller indices: wafer surface orientation – wafer flats and notches – pattern alignment – imperfections in crystals.
UNIT II ELECTRICAL AND MAGNETIC PROPERTIES OF MATERIALS
Classical free electron theory – Expression for electrical conductivity – Thermal conductivity,
expression – Quantum free electron theory :Tunneling – degenerate states – Fermi- Dirac statistics – Density of energy states – Electron in periodic potential – Energy bands in solids – tight binding approximation – Electron effective mass – concept of hole. Magnetic materials: Dia, para and ferromagnetic effects – paramagnetism in the conduction electrons in metals – exchange interaction and ferromagnetism – quantum interference devices – GMR devices.
UNIT III SEMICONDUCTORS AND TRANSPORT PHYSICS
Intrinsic Semiconductors – Energy band diagram – direct and indirect band gap semiconductors – Carrier concentration in intrinsic semiconductors – extrinsic semiconductors – Carrier concentration in N-type & P-type semiconductors – Variation of carrier concentration with temperature – Carrier transport in Semiconductors: Drift, mobility and diffusion – Hall effect and devices – Ohmic contacts – Schottky diode.
UNIT IV OPTICAL PROPERTIES OF MATERIALS
Classification of optical materials – Optical processes in semiconductors: optical absorption and emission, charge injection and recombination, optical absorption, loss and gain. Optical processes in quantum wells – Optoelectronic devices: light detectors and solar cells – light emitting diode – laser diode – optical processes in organic semiconductor devices –excitonic state – Electro-optics and nonlinear optics: Modulators and switching devices – plasmonics.
UNIT V NANO DEVICES
Density of states for solids – Significance between Fermi energy and volume of the material – Quantum confinement – Quantum structures – Density of states for quantum wells, wires and dots – Band gap of nanomaterials –Tunneling – Single electron phenomena – Single electron Transistor. Conductivity of metallic nanowires – Ballistic transport – Quantum resistance and conductance – Carbon nanotubes: Properties and applications – Spintronic devices and applications – Optics in quantum structures – quantum well laser.
TEXT BOOKS:
1. S.O. Kasap. Principles of Electronic Materials and Devices, McGraw Hill Education (Indian
Edition), 2020.
2. R.F.Pierret. Semiconductor Device Fundamentals. Pearson (Indian Edition), 2006.
3. G.W.Hanson. Fundamentals of Nanoelectronics. Pearson Education (Indian Edition), 2009.
REFERENCES:
1. Laszlo Solymar, Walsh, Donald, Syms and Richard R.A., Electrical Properties of Materials, Oxford Univ. Press (Indian Edition) 2015.
2. Jasprit Singh, Semiconductor Optoelectronics: Physics and Technology, McGraw-Hill Education (Indian Edition), 2019.
3. Charles Kittel, Introduction to Solid State Physics, Wiley India Edition, 2019.
4. Mark Fox, Optical Properties of Solids, Oxford Univ.Press, 2001.
5. N.Gershenfeld. The Physics of Information Technology. Cambridge University Press, 2011.
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Anna University PH3254 Physics for Electronics Engineering Books Question Banks Lecture Notes Syllabus PH3254 Physics for Electronics Engineering Part A 2 Marks with Answers Part – B 16 Marks Questions with Answers & Anna University PH3254 Physics for Electronics Engineering Question Paper Collection and Local Author Books.
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