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| * '''Lecture 1''', ~-Jan 8-~: <<la("PH102_Lecture1.pdf", "Wave, Schrodinger Eq, Bound state and unbound state")>> (<<la("Lecture1powerpoint.pdf", "ppt format")>>) | * '''Lecture 1''', ~-Jan 7-~: <<la("Lecture1.pdf", "Wave, Schrodinger Eq, Bound states and unbound states")>> (<<la("Lecture1powerpoint.pdf", "ppt")>>) * '''Lecture 2''', ~-Jan 9-~: <<la("Lecture2v2.pdf", "Schrodinger Eqs in Cartesian coordinates")>> (<<la("Lecture2powerpoint.pdf", "ppt")>>) * '''Lecture 3''', ~-Jan 14-~: <<la("Lecture3.pdf", "Hydrogen Atom in 3D and Orbital Quantization")>> (<<la("Lecture3powerpoint.pdf", "ppt")>>) * '''Lecture 4''', ~-Jan 14-~: <<la("Lecture4.pdf", "Hydrogen Atom solutions and whereabouts")>> (<<la("Lecture4powerpoint.pdf", "ppt")>>) |
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 14: Hydrogen Atom solutions and whereabouts (ppt)