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Lecture 1: The Importance of Chemical Principles
Lecture 2: Discovery of Electron and Nucleus
Lecture 3: Wave-Particle Duality of Light
Lecture 4: Wave-Particle Duality of Matter
Lecture 5: Hydrogen Atom Energy Levels
Lecture 6: Hydrogen Atom Wavefunctions
Lecture 7: P-Orbitals
Lecture 8: Multielectron Atoms and Electron Configurations
Lecture 9: Periodic Trends
Lecture 10: Covalent Bonds
Lecture 11: Lewis Structures
Lecture 12: Ionic Bonds
Lecture 13: Polar Covalent Bonds and VSEPR Theory
Lecture 14: Molecular Orbital Theory
Lecture 15: Valence Bond Theory and Hybridization
Lecture 16: Thermochemistry
Lecture 17: Entropy and Disorder
Lecture 18: Free Energy and Control of Spontaneity
Lecture 19: Chemical Equilibrium
Lecture 20: Le Chatelier's Principle
Lecture 21: Acid-Base Equilibrium
Lecture 22: Chemical and Biological Buffers
Lecture 23: Acid-Base Titrations
Lecture 24: Balancing Redox Equations
Lecture 25: Electrochemical Cells
Lecture 26: Chemical and Biological Redox Reactions
Lecture 27: Transition Metals
Lecture 28: Crystal Field Theory
Lecture 29: Metals in Biology
Lecture 30: Magnetism and Spectrochemical Theory
Lecture 31: Rate Laws
Lecture 32: Nuclear Chemistry and Elementary Reactions
Lecture 33: Reaction Mechanism
Lecture 34: Temperature and Kinetics
Lecture 35: Enzyme Catalysis
Lecture 36: Biochemistry