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| * <<la("Lecture2_Notes.pdf","Lecture 2, Jan. 11")>>: Wave functions and Schrodinger Equation * <<la("Lecture3_notes.pdf","Lecture 3, Jan. 13")>>: 1d finite and infinite potential wells and 3d infinite potential well |
* ~+'''Lecture 23'''+~, ~-Mar 12-~: <<la("LectureNotes23.pdf","Fundamental particles and interactions")>> * ~+'''Lecture 22'''+~, ~-Mar 9-~: <<la("LectureNotes22.pdf","Nuclear Fission and Fusion Reactions")>> * ~+'''Lecture 21'''+~, ~-Mar 7-~: <<la("LectureNotes21.pdf","Radioactive decays and radioactive decay law")>> * ~+'''Lecture 20'''+~, ~-Mar 5-~: <<la("LectureNotes20.pdf","Nuclear Models: Liquid Drop and Shell")>> * ~+'''Lecture 19'''+~, ~-Mar 2-~: <<la("LectureNotes19rev.pdf","Nuclear structure, size, and force")>> * ~+'''Lecture 18'''+~, ~-Feb 24-~: <<la("LectureNotes18.pdf","Superconductors")>> * ~+'''Lecture 17'''+~, ~-Feb 22-~: <<la("LectureNotes17.pdf","Semiconductor Theory and Devices")>> * ~+'''Lecture 16'''+~, ~-Feb 17-~: <<la("LectureNotes16.pdf","Energy bands and Conduction")>> * ~+'''Lecture 15'''+~, ~-Feb 15-~: <<la("LectureNotes15.pdf","Molecular spectra and Crystalline solids")>> * ~+'''Lecture 14'''+~, ~-Feb 13-~: <<la("LectureNotes14.pdf","Molecules")>> * ~+'''Lecture 13'''+~, ~-Feb 10-~: <<la("LectureNotes13.pdf","Boson Examples: Black body radiation and Laser")>> * ~+'''Lecture 12'''+~, ~-Feb 8-~: <<la("LectureNotes12.pdf","Classical limits and Quantum Gas Examples")>> * ~+'''Lecture 11'''+~, ~-Feb 6-~: <<la("LectureNotes11rev.pdf","Quantum Statistics")>> * ~+'''Lecture 10'''+~, ~-Feb 3-~: <<la("LectureNotes10.pdf","Boltzman Statistics")>> * ~+'''Lecture 9'''+~, ~-Jan 30-~: <<la("LectureNotes9rev.pdf","Angular momentum in external magnetic fields")>> * ~+'''Lecture 8'''+~, ~-Jan 27-~: <<la("LectureNotes8new.pdf","Multi-electron atoms, identical particles, and exclusion principle")>> {{{#!wiki comment * <<color(Corrections were made on the lecture notes uploaded on the 26th. See the red text in the document)>> }}} {{{#!wiki comment * <<la("Lecture8.pdf", "In-class power point presentation as pdf")>> }}} * ~+'''Lecture 7'''+~, ~-Jan 25-~: <<la("LectureNotes7.pdf","Spin and LS Coupling")>> {{{#!wiki comment * <<la("Lecture7.pdf", "In-class power point presentation as pdf")>> }}} * ~+'''Lecture 6'''+~, ~-Jan 23-~: <<la("LectureNotes6.pdf","3-d Schrodinger Equation for the hydrogen atom II")>> {{{#!wiki comment * <<la("Lecture6.pdf", "In-class power point presentation as pdf")>> }}} * ~+'''Lecture 5'''+~, ~-Jan 20-~: <<la("PH102_LectureNotes5new.pdf","3-d Schrodinger Equation for the hydrogen atom I")>> {{{#!wiki comment * <<la("Lecture5new.pdf", "In-class power point presentation as pdf")>> }}} * ~+'''Lecture 4'''+~, ~-Jan 18-~: <<la("PH102_LectureNotes4.pdf","Hydrogen atom spectral lines")>> {{{#!wiki comment * <<la("Lecture4web.pdf", "In-class power point presentation as pdf")>> }}} * ~+'''Lecture 3'''+~, ~-Jan 13-~: <<la("PH102_Lecture3_rev.pdf","1d finite and infinite potential wells and 3d infinite potential well")>> * ~+'''Lecture 2'''+~, ~-Jan 11-~: <<la("Lecture2_Notes.pdf", "Wave functions and Schrodinger Equation")>> |
Lecture 23, Mar 12: Fundamental particles and interactions
Lecture 22, Mar 9: Nuclear Fission and Fusion Reactions
Lecture 21, Mar 7: Radioactive decays and radioactive decay law
Lecture 20, Mar 5: Nuclear Models: Liquid Drop and Shell
Lecture 19, Mar 2: Nuclear structure, size, and force
Lecture 18, Feb 24: Superconductors
Lecture 17, Feb 22: Semiconductor Theory and Devices
Lecture 16, Feb 17: Energy bands and Conduction
Lecture 15, Feb 15: Molecular spectra and Crystalline solids
Lecture 14, Feb 13: Molecules
Lecture 13, Feb 10: Boson Examples: Black body radiation and Laser
Lecture 12, Feb 8: Classical limits and Quantum Gas Examples
Lecture 11, Feb 6: Quantum Statistics
Lecture 10, Feb 3: Boltzman Statistics
Lecture 9, Jan 30: Angular momentum in external magnetic fields
Lecture 8, Jan 27: Multi-electron atoms, identical particles, and exclusion principle
Corrections were made on the lecture notes uploaded on the 26th. See the red text in the document
Lecture 7, Jan 25: Spin and LS Coupling
Lecture 6, Jan 23: 3-d Schrodinger Equation for the hydrogen atom II
Lecture 5, Jan 20: 3-d Schrodinger Equation for the hydrogen atom I
Lecture 4, Jan 18: Hydrogen atom spectral lines
Lecture 3, Jan 13: 1d finite and infinite potential wells and 3d infinite potential well
Lecture 2, Jan 11: Wave functions and Schrodinger Equation