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Fisika Kuantum
Tahun Akademik:
Genap 2024/2025
Kelas-Offr:
AM-AM
Deskripsi:
Background of the Quantum Physics Experiment: 1. Black Body Radiation, 2. Photoelectric Effects Experiments, 3. Compton Effects, 4. Electron Diffraction, 5. Lines Spectrum, 6. Bohr Atomic Models. Wave Function: 1. Schrodinger’s Equation, 2 Statistical Interpretation, 3. Probability, 4. Normalization, 5. Momentum, 6. The Uncertainty Principle. Time-Independent Schrodinger Equation: 1. Stationary State, 2. Infinite Square Well, 3. Harmonic Oscillator, 4. Free Particle, 5. Delta-Function Potential, 6. Finite Square Well Potential, 7. Scattering Matrix. Quantum Mechanics in Three Dimensions: 1. Schrodinger Equations in Spherical Coordinates, 2. Hydrogen Atom, 3. Angular Momentum, 4. Spin. Time-Independent Perturbation Theory: 1. Nondegenerate Perturbation Theory, 2. Degenerate Perturbation Theory, 3. Hydrogen Fine Structure, 4. Zeeman Effect. WKB Approximation: 1. "Classical" Region, 2. Tunneling, 3. Connection Formulas. Time-Dependent Perturbation Theory: 1. Two-Level Systems, 2. Emission and Absorption of Radiation.
Capaian Pembelajaran
  • 1. Memahami prinsip-prinsip pokok Fisika Kuantum
  • 2. Mampu menyelesaian permasalahnya melalui analisis teoritis secara mandiri, kolaboratif, jujur, dan bertanggung jawab
Daftar Pustaka:
  • Stephen Gasiorowicz, 2003, Quantum Physics
  • Eny Latifah, 2023. Proses Termodinamis pada Sistem Kuantum 1D
  • Artikel jurnal terkait
  • Kamal Singh, S.P. Singh, M.K. Bagde, 2004. Quantum Mechanics.
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