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What You'll Learn
Concepts:
Drawing Lewis Structures and Choosing Between Them with Formal Charge and Resonance
Gibbs Free Energy
Electrochemical Cells Anodes Cathodes and Faraday's Law in Chemistry
Michaelis-Menten Equation
Oxidation States in Inorganic Chemistry
Rate Laws and Reaction Order in Chemical Kinetics
Crystal Field Splitting Energy
de Broglie Matter Waves and the Schrödinger Equation for the Electron in Quantum Chemistry
Carbon Hybridization and Sigma-Pi Bond Formation
Effective Nuclear Charge and Electron Configurations in Multielectron Atoms
Hydrogen Atom
Periodic Trends in Ionization Energy and Electron Affinity Explained by Z_effective
Angular and Radial Nodes of p-Orbitals in Atomic Structure
Nernst Equation Cell Potential
How Vitamin B12 and Zinc Drive Methionine Synthase Catalysis in Biochemistry
Molecular Orbital Bond Order
Deriving Rate Laws from Reaction Mechanisms with the Steady State Approximation in Chemical Kinetics
Reversible Chemical Equilibrium Principles
Wave-Particle Duality of Light Explained by the Photoelectric Effect
Transition Metal Complex Color
Chelate Effect and Stability
Octet Rule Exceptions
First-Order Radioactive Decay and Second-Order Integrated Rate Laws in Chemical Kinetics
Acid-Base Titration Curve Shape
Activation Energy
Discovery of the Electron and Nucleus in Atomic Structure
Determining Hybridization and Bond Enthalpies of Reaction in Chemistry
Acid-Base Equilibria in Aqueous Solutions
Inverse Relationship Between Bond Length and Bond Strength
Conjugate Acid-Base Pairs and K_a K_b = K_w in Aqueous Acid-Base Chemistry