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| * '''Lecture 8''', ~-Jan 30-~: <<la("Lecture8.pdf", "Statistical Distributions")>> (<<la("Lecture8powerpoint.pdf", "ppt")>>) * '''Lecture 9''', ~-Feb 4-~: <<la("Lecture9.pdf", "Quantum Gases")>> (<<la("Lecture9powerpoint.pdf", "ppt")>>) * '''Lecture 10''', ~-Feb 6-~: <<la("Lecture10.pdf", "Black body radiation & Laser")>> (<<la("Lecture10powerpoint.pdf", "ppt")>>) * '''Lecture 11''', ~-Feb 11-~: <<la("Lecture11.pdf", "Molecular Bonding")>> (<<la("Lecture11powerpoint.pdf", "ppt")>>) * '''Lecture 12''', ~-Feb 13-~: <<la("Lecture12.pdf", "Crystals, energy bands, and conduction")>> (<<la("Lecture12powerpoint.pdf", "ppt")>>) * '''Lecture 13&4''', ~-Feb 13-~: <<la("Lecture13_14.pdf", "Conduction, Semiconductors, and Superconductivity")>> (<<la("Lecture13powerpoint.pdf", "ppt13")>>)(<<la("Lecture14powerpoint.pdf", "ppt14")>>) |
Lecture Notes
Lecture 1, Jan 7: Wave, Schrodinger Eq, Bound states and unbound states (ppt)
Lecture 2, Jan 9: Schrodinger Eqs in Cartesian coordinates (ppt)
Lecture 3, Jan 14: Hydrogen Atom in 3D and Orbital Quantization (ppt)
Lecture 4, Jan 16: Hydrogen Atom solutions and whereabouts (ppt)
Lecture 5, Jan 21: Hydrogen like Atoms, L and S quantization, and periodic table (ppt)
Lecture 6, Jan 23: Angular momenta under magnetic fields (ppt)
Lecture 8, Jan 30: Statistical Distributions (ppt)
Lecture 9, Feb 4: Quantum Gases (ppt)
Lecture 10, Feb 6: Black body radiation & Laser (ppt)
Lecture 11, Feb 11: Molecular Bonding (ppt)
Lecture 12, Feb 13: Crystals, energy bands, and conduction (ppt)
Lecture 13&4, Feb 13: Conduction, Semiconductors, and Superconductivity (ppt13)(ppt14)