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Atomic and Molecular Physics (PHYS-602/BS Physics 04 years)
Magnetic Quantum Number, Spin-orbit interaction, Exclusion principle

Magnetic Quantum Number, Spin-orbit interaction, Exclusion principle

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Course Material
  • The Thomson model, The Rutherford model, Alpha-Particle Scattering
  • Nuclear dimensions, Electron orbits, Failure of classical Physics
  • Atomic spectra and its types, Atomic spectra of hydrogen atom , The Bohr atom
  • Energy levels and spectra , Atomic excitation and its mechanism, Frank Hertz experiment
  • Nuclear Motion and Reduced Mass, The Correspondence principle,Quantum Theory of the Hydrogen Atom, Quantum numbers, Total Quantum numbers, Orbital Quantum number
  • Magnetic Quantum Number, Spin-orbit interaction, Exclusion principle
  • Electron configuration in many electron-atoms, Hund’s rules, Coupling of angular momenta, LS-coupling, jj-coupling
  • Origin of Spectral lines, Selection Rules, One electron Spectra,Two-electron Spectra, Relative intensities in a multiplet, Xray spectra
  • Atoms in Magnetic and Electric fields: Space quantization, Magnetic moment, electron probability density
  • Zeeman Effect, Paschen-Back effect, Stark effect
  • The chemical bond, Molecular formation, Electron sharing
  • The H2 molecular ion, The linear combination of atomic orbits method, The H2 molecule
  • The Ionic bond, Theories of Bonding
  • The valence bond approach, Frankcondon principle
  • Chapters 14
  • Department Physics
  • Teacher Dr. Yasir Zaman
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