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Course: Physical Chemistry JC206 (3 Credits) Instructors: S.K. Pati and S. Balasubramanian Course Description: (Estimated number of hours in brackets) • Particle in 1-d box, spherical box, Rigid Rotator, Quantum simple harmonic oscillator, Hydrogen atom, Orbital Shapes, Electronic transitions, Spin, Electronic configuration, Spin-Orbit coupling · · · (6) • Bonding: LCAO, H2 molecule, Valence Bond theory, Excited States, Diatomic molecules, vibrational, rotational spectra, Molecular Orbital theory, Electron Correlation, Electronegativity · · · (6) • Triatomic molecules, Hybrid orbitals, vibrational modes · · · (4) • Large Polyatomic molecules, Complexes, Chirality, Optical rotation, Magnetic properties of complexes · · · (3) • Intermolecular forces · · · (2) • Basics of Thermodynamics · · · (2) • Chemical Equilibria · · · (2) • Statistical mechanics of gases · · · (3) • Statistical mechanics of liquids · · · (3) • Phase Equilibria, Phase transitions · · · (3) • Electrolytes · · · (4) • Chemical Kinetics · · · (5) Total : 43 hours Course Textbooks: Primary: “Physical Chemistry” by R.S. Berry, S.A. Rice, and J. Ross (Oxford, 2nd Edition) Secondary: “Physical Chemistry: A Molecular Approach” by D.A. McQuarrie and J.D. Simon Tertiary: “Physical Chemistry” by P.W. Atkins Reference Books: 1. “Quantum Chemistry” by I.N. Levine 2. “Modern Quantum Chemistry” by Szabo and Ostlund 3. “Statistical Mechanics” by D.A. McQuarrie 1