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Gas Absorption and Molecular Formation: Quantum Concepts
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Classical and Quantum Mechanics: Foundations and Applications
Explores classical and quantum mechanics, covering observables, momentum, Hamiltonian, and the Schrödinger equation, as well as quantum chemistry and the Schrödinger's cat experiment.
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Diode Schottky and PN Heterojunctions: Band Structure Analysis
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Quantum Couplers: Hamiltonians and Coupling Mechanisms
Covers quantum couplers, focusing on Hamiltonians, coupling mechanisms, and their applications in quantum computing.
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Explores the transition from atomic to molecular orbitals, covering quantum systems, approximations, valence electrons, and covalent bonds.
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Covers the Hamiltonian of Heisenberg and the interaction between classical magnetic moments.
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Explores intermolecular electron delocalization, band structure in organic crystals, and the interaction of molecules with light.
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Explains electron energy levels, quantum numbers, and electron distribution in orbitals.
Quantum Wells: Coupled Quantum States and Energy Levels
Covers quantum wells, coupled states, energy levels, and the implications for molecular formation.