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Slater-type orbital
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Computational chemistry
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Atomic Structure: From Particles to Properties
Explores the evolution of atomic theory, from indivisible particles to the quantum mechanical model of the atom, including the dual nature of electrons and the periodic table.
Isolated Magnetic Moments: An Atom In Magnetic Field
Explores the Hamiltonian of an atom in a magnetic field and its paramagnetic and diamagnetic responses.
Chemical Bonding: Crystal Lattices and Ionic Compounds
Explores crystal lattices, ionic compounds, properties of ionic compounds, and covalent bonds.
Advanced General Chemistry I: Electronic Structure of Atoms
Explores the electronic structure of atoms, covering energy levels, electron configurations, and atomic properties.
Quantum Chemistry Fundamentals
Covers the fundamentals of quantum chemistry, including valence bond theory and molecular orbitals.
Magnetic Anisotropy: Observations in Iron, Nickel, and Cobalt
Analyzes magnetization curves in iron, nickel, and cobalt to explain magnetic anisotropy.
Basis Sets II
Explores types of basis sets, polarization, diffuse functions, Pople basis sets, and convergence in computational chemistry.
Chemical Bonds: Hybridization and Molecular Geometry
Explores chemical bonds, hybridization, molecular geometry, and intermolecular forces, emphasizing the role of orbitals and valence electrons.
Symmetry and Group Theory
Explores symmetry and group theory applications in chemistry, covering matrix representations, normal modes, and harmonic oscillators.
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