This course will enable the students to
Course Outcomes (COs):
Course |
Learning outcome (at course level) |
Learning and teaching strategies |
Assessment Strategies |
|
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Paper Code |
Paper Title |
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PHY 123 |
Quantum Mechanics (Theory) |
The students will be able to – CO 11: Develop knowledge of quantum theory formulation through Schrodinger equation and Heisenberg’s matrix mechanics after an exposition of inadequacies of classical mechanics in explaining microscopic phenomena.
CO 12: Learn bra and ket formalism due to Dirac and apply the same to various problems
CO 13: Diagonalize the matrix and find energy eigen values in simple cases.
CO 14: Interpret wave function of quantum particle and probabilistic nature of its location and subtler points of quantum phenomena.
CO 15: Develop a knowledge and understanding of perturbation theory, level splitting, and radiative transitions.
CO 16: Learn about time dependent perturbations and significance of Fermi golden role
CO 17: Develop a knowledge and understanding of the relation between conservation laws and symmetries.
CO 18: Learn about angular momentum operators and C.G. Coefficients.
CO 19: Analyze quantum many body problems.
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Approach in teaching: Interactive Lectures, Discussion, Solving problems in tutorials, Demonstration. Power point Presentation Learning activities for the students: Self learning assignments, Effective questions, Seminar presentation. Additional learning through online videos and MOOC courses |
Class test, Semester end examinations, Quiz, Solving problems, Assignments, Presentations |
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