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Quantum Mechanics: Schrödinger Equation
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Quantum Chemistry Fundamentals
Covers the fundamentals of quantum chemistry, including valence bond theory and molecular orbitals.
Atomic Structure: Energy Levels and Quantum Numbers
Explains electron energy levels, quantum numbers, and electron distribution in orbitals.
Chemical Bonds: Lewis Structures and Molecular Geometry
Explains chemical bonding, focusing on Lewis structures and molecular geometry using VSEPR theory.
Electron Configurations and Quantum Physics
Explores electron configurations, quantum numbers, and the implications of electron spin.
Metal Hydride Complex Symmetry
Explores the symmetry analysis of a deuterated metal hydride complex and its molecular orbitals.
Molecular Orbitals in Conjugated Systems
Explores molecular orbitals in conjugated systems, covering bond lengths, energy barriers, electronic interactions, and aromaticity.
Covalent Bonds: Formation and Energy Diagrams
Explores the formation and energy diagrams of covalent bonds, as well as the polarization and representation of polarized bonds.
Molecular Structure and Bonding
Explores molecular orbitals, bonding interactions, covalent and ionic bonds, bond energies, resonance structures, and atomic electronegativity.
Atomic Orbitals: Shapes, Configurations, and Exceptions
Explores atomic orbitals shapes, electron configurations, stability principles, and exceptions to the Aufbau rule.
Chemical Bonding: Resonance and Orbitals
Explores resonance in chemical bonding, focusing on Lewis structures, molecular orbitals, and orbital interactions.