Physical Chemistry CHEM 3510
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This 2 page Class Notes was uploaded by Rebeka Zemlak MD on Wednesday October 21, 2015. The Class Notes belongs to CHEM 3510 at Tennessee Tech University taught by Scott Northrup in Fall. Since its upload, it has received 35 views. For similar materials see /class/225693/chem-3510-tennessee-tech-university in Chemistry at Tennessee Tech University.
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Date Created: 10/21/15
COURSE OUTLINE Chapters of Atkins are indicated and tentative time requirements are indicated This outline is subject to modi cation as the semester progresses Unit 0 Introduction August 25 1 lecture I Preliminaries A Overview of Physical Chemistry B Dimensions and Units Appendix 1 C Mathematical Review Appendix 2 II Review of Classical Mechanics Appendix 3 A Specifying the State of the System B Newton39s Law C Rotational Motion D Harmonic Motion in 1D E Summary of Classical Physics Unit I Quantum Theory Introduction and Principles Chapter 86 lectures I Failures of Classical Physics Breakdown of the Equipartition Theorem Spectral Distribution of BlackBody Radiation Line Spectra of Atoms Photoelectric Effect Diffraction of Electrons de Broglie equation WPOW III Quantum Picture A Specifying the State of the System wave functions B QM Principles operators expect values Unit II Quantum Mechanical Applications Chapter 9 3 lectures I Translational motion Particle in Free Space B Particle in 1D Box C Particle in 2D Box D Particle in 3D Box II Vibrational Motion A 1D Harmonic Oscillator III Rotational Motion and Angular Momentum A The TwoParticle Rigid Rotor angular momentum IV Tunneling Unit III Atomic Structure and Spectra Chapter 10 6 lectures I II H The Hydrogenlike Atom A Clues from Line Spectra B Clues from Scattering Expts C QM of Hydrogenic Atom Many Electron Atoms The Orbital Approximation Spin Penetration and Shielding Aufbau Principle Periodicity of Ionization Energies Numerical Computations of Many Electron Atomic Orbitals TWPDF Spectra of ManyElectron Atoms briefly Unit IV Molecular Structure Chapter 1 1 7 lectures I II H The Hydrogen Moleculeion A BornOppenheimer Approximation B The Molecular Orbital Approximation Diatomic Molecules Hydrogen and Helium Period 2 Diatomics Heteronuclear Diatomics The Variation Principle Hybridization WPOW Polyatomic Molecules Water Hybridization in Polyatomics Highly Conjugated Systems Huckel Advanced Computations Powgt Molecular Symmetry Chapter 12 2 lectures A Symmetry Elements and Operations B Symmetry Classes of Molecules C Consequences of Symmetry
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