Related lectures (123)
Crystal Field Theory: Spectrochemical Series
Explores the Spectrochemical Series for metals and ligands, Crystal Field Splitting, Jahn-Teller distortion, and bonding interactions in coordination compounds.
Crystal Field Effects: Orbitals And Charged Environment
Explores the influence of a charged environment on the energies of individual 3d orbitals.
Atomic Structure: Quantum Numbers and Orbitals
Explores atomic structure, quantum numbers, orbitals, and the uncertainty principle in defining electron states and shapes.
Hybridization: Atomic Orbitals and Chemical Bonds
Explores hybridization theory, molecular orbitals, and resonance in chemical bonds, using examples like methane and benzene.
Metal Hydride Complex Symmetry
Explores the symmetry analysis of a deuterated metal hydride complex and its molecular orbitals.
Crystal Field Effects: Overview
Explores crystal field effects, from orbitals in charged environments to spin states in transition metals.
Atomic Structure: Electronic Configuration
Explores the electronic configuration of atoms, including orbitals, energy levels, and the periodic table of elements.
Organic Electronics: Electronic Perturbations and Semiconductor Devices
Explores challenges and advancements in organic electronics, covering transport, semiconductor devices, and quantum harmonic oscillators.
Ligand Field Theory: Crystal Field Splitting
Delves into ligand field theory, crystal field splitting, and molecular orbitals in transition metal complexes.
Plotting HF orbitals
Explains how to visualize molecular orbitals and the difference between spin-restricted and unrestricted calculations.

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