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B.Tech II Sem - Syllabus

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Engineering Physics

Name of Department: - Physics

1. Subject Code: TPH 101/201 Course Title: Engineering Physics

2. Contact Hours: L: 3 T: 0 P: 0

3. Examination Duration (Hrs): Theory 3 Practical 0

4. Relative Weight: CIE 25 PRS 0 MSE 25 SEE 50 PRE 0

5. Credits: 3
6. Semester: I/II
7. Category of Course: DSC
8. Pre-requisite: Basic Knowledge of Physics

9. Course Outcome: After completion of the course the students will be able to:
CO1: Define the wave nature of light through different phenomenon.
CO2: Extend the knowledge of Laser, fiber optics and polarization in engineering
problems.
CO3: Understand the concept of theory of relativity.
CO4: Discuss quantum theory of radiation and applications of Schrodinger wave
equations and Quantum Computing
CO5: Examine the behavior of superconductors and Explain the Maxwell’s
equations and nanomaterials.
10. Details of the Course:
Contact
UNIT CONTENTS
Hrs
Interference: Conditions of interference, Spatial and temporal coherence, Bi-prism,
interference in wedge shaped film, Newton’s rings.
Unit/Module-I
Diffraction: Fraunhofer diffraction at single slit and n-slits (Diffraction Grating). 9
Rayleigh’s criteria of resolution. Resolving power of grating.

Polarization: Basic theory of double refraction, Malus law, Ordinary and Extra-
ordinary ray, Production, and detection of plane, elliptically and circularly polarized
light, specific rotation and polarimeters.
Unit/Module- II Laser: Spontaneous and Stimulated emission of radiation, Einstein Coefficients,
9
Principle of laser action. Construction and working of Ruby and He-Ne laser
photovoltaic effect.
Fiber Optics: Introduction to fiber optics; types of fiber, acceptance angle and cone
angle, numerical aperture.
Special theory of relativity: Inertial and non-inertial frames, Galilean transformation,
Michelson-Morley experiment (qualitatively), Einstein postulates of special theory of
Unit/Module-III 8
relativity, Lorentz transformation equations, length contraction, time dilation, variation
of mass with velocity, mass-energy relation.
Quantum Mechanics: Quantum concept and radiation, Wave particle duality (de-
Broglie concept of matter waves), Heisenberg’s uncertainty principle, wave function
and its significance, Schrodinger’s equations, Schrodinger’s wave function for a
Unit/ Module-IV particle confined in one dimensional infinite potential box (rigid box), Eigen values and 8
Eigen functions.
Quantum computers: Introduction to quantum computing, Principle,
Nanocomputing, prospects and challenges.
Superconductivity: Essential properties of superconductors, zero resistivity, Type I,
Type II superconductors and their properties.
Unit/ Module-V Electromagnetism: Displacement current, Maxwell’s Equations in differential form. 8
Nano Physics: Density of states, Nanostructures, fabrication, and characterization
techniques (qualitatively).
Total 42

Text Books:
Year of
S.No. Name of Authors/Books/Publishers/Place of Publication Edition Publication/
Reprint
1. Ajoy Ghatak, “Optics”, Tata Mc Graw Hill. 4 Edition
th
2009
2. N. Subrahmanyam Brijlal& M. N. Avadhanulu, “Optics:”, S. Chand. 24thEdition 2010
3. A. Beiser, “Concepts of Modern Physics”, Tata Mc Graw Hill. 1stEdition
4. Resnick, Krane, Halliday, “Physics (vol I&II)”, Wiley. 5th Edition 2007
5. Robert Resnick, “Introduction to Special Relativity”, Wiley 1stEdition 2007
Publishers.
6. N. David Mermin, Quantum computer Science, Cambridge 1stEdition 2007
University Press.
7. Adam Smith, “The Beginner’s guide to quantum computing & 1stEdition 2022
mechanics”, A. Smith Media.
Reference Books 1stEdition

1. John R. Taylor, Chris D. Zafiratos, Michael A. Dubson, “Modern 1stEdition 2007


Physics”, Pearson Education.
2. Gerd Keiser, “Optic Fiber Communication”, Tata Mc. Graw Hill. 5thEdition 2017
3. Alastair I M Rae, Jim Napolitano, “Quantum Mechanics” Wiley. 6thEdition 2015
4. David J. Griffiths, “Introduction to Electrodynamics”, Prentice. 3rd Edition 2011
5. Charles P. Poole, Jr. Frank J. Owens, “Introduction to 2017
Nanotechnology”, Wiley.
6. Hug D. Young & Roger A. Freedman, “University Physics”, Edition, 12thEdition 2008
Pearson Publication.
7. Alan Giambattista, Betty Mc. Carthy Richardson, Robert C 1stEdition 2009
Richardson, “Fundamentals of Physics”, Tata Mc Graw Hill.
8. Parag Lala, “Quantum computing”, Tata Mc Graw Hill. 1stEdition 2019
9. Nielsen, “Quantum computation and quantum information 1stEdition 2007
“Cambridge University Press.

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