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Lecture
Molecular Geometry and Hybridization
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Related lectures (30)
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Molecular Geometry: Tetrahedron Abstracts
Covers the concept of molecular geometry, focusing on the tetrahedron shape and the repulsion between linked atoms.
Ligand Field Theory: Crystal Field Splitting
Delves into ligand field theory, crystal field splitting, and molecular orbitals in transition metal complexes.
Atomic Orbitals and Molecular Bonding
Explores atomic orbitals, molecular bonding, valence electrons, hybridization, and molecular structure with multiple bonds.
Molecular Structure: Intramolecular Electron Delocalization
Discusses molecular structure and intramolecular electron delocalization, focusing on quantum mechanics and the transition from atomic to molecular orbitals.
Intermolecular Interactions: Forces and Bonds
Covers intermolecular forces, hydrogen bonding, biological molecules, DNA structure, and relative strengths of interactions.
Polymer Science: Secondary Interactions and Cohesive Energy
Explores polymer structures, cohesive energy, molecular orbitals, and non-covalent interactions influencing molecular organization.
Adsorption Phenomena: Physi- vs. Chemisorption
Compares physisorption and chemisorption, covering interaction, strength, equilibrium, and gas adsorption isotherms.
Chemical Bonding: Orbitals and Resonance
Covers the fundamentals of chemical bonding, focusing on orbitals and resonance in organic chemistry.
Molecular Geometry: Lewis Structures
Explains drawing Lewis structures, assigning charges, and determining molecular geometries based on electronic repulsion energy.
Chemical Bonds: Energy and Conductivity
Explores chemical bonds, bond energy, covalent bonds, carbon hybridization, delocalized bonding, and conductivity in solids.