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General Chemistry
(CHM 113/116 and CHM 114)
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Over 20 hours of lectures covering 20 chapters of general chemistry!
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Chad McAllister
Class Curriculum
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Chapter 1 Matter and Measurement
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1.1 Matter
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Matter Quiz (7 Questions)
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1.2 Units, Conversions, and Significant Figures
Chapter 2 Atoms, Molecules, and Ions
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2.1 Atomic Structure and Introduction to the Periodic Table
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2.2 Nomenclature
Chapter 3 Stoichiometry
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3.1 Reactions and Calculations With Moles
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3.2 Mass Percents and Empirical and Molecular Formulas
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3.3 Limiting Reagent Calculations
Chapter 4 Aqueous Reactions and Solution Stoichiometry
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4.1 Solutions and Electrolytes
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4.2 Double Displacement Reactions
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4.3 Molarity, Solution Stoichiometry, and Dilutions
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4.4 Oxidation-Reduction Reactions
Chapter 5 Thermochemistry
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5.1 The First Law of Thermodynamics, Enthalpy, and Phase Changes
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5.2 Calorimetry
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5.3 Hess's Law and Enthalpies of Formation
Chapter 6 Electronic Structure
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New Lecture
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6.2 Electronic Transitions (Absorption and Emission)
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6.3 The de Broglie Relation, the Heisenberg Uncertainty Principle, and Orbitals
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6.4 Quantum Numbers
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6.5 Electronic Configurations
Chapter 7 Periodic Properties of the Elements
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7.1 Overview of Trends and Atomic Radius
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7.2 Ionization Energy
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7.3 Electron Affinity, Electronegativity, and Descriptive Chemistry
Chapter 8 Bonding and Lewis Structures
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8.1 Bonding and Lattice Energy
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8.2 Lewis Dot Structures
Chapter 9 Molecular Geometry and Bonding
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9.1 VSEPR Theory and Molecular Geometry
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9.2 Hybridization
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9.3 Polarity
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9.4 Sigma and Pi Bonds
Chapter 10 Gases
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10.1 Properties of Gases and the Ideal Gas Law
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10.2 Gas Laws
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10.3 Partial Pressures, Density, and the Volume of Ideal Gases at STP
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10.4 Graham's Law of Effusion and Real Gases
Chapter 11 Intermolecular Forces and Phase Diagrams
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11.1 Intermolecular Forces
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11.2 Phase Diagrams
Chapter 13 Kinetics
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13.1 Rates and Rate Expressions
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13.2 Rate Laws
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13.3 Mechanisms, Catalysts, and Reaction Coordinate Diagrams
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13.4 Collision Theory and the Arrhenius Equation
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13.5 Integrated Rate Laws and Half-Lives
Chapter 14 Equilibrium
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14.1 Equilibrium and Equilibrium Constants
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14.2 Le Chatelier's Principle
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14.3 Equilibrium Calculations
Chapter 15 Acids and Bases
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15.1 Introduction to Acids and Bases
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15.2 Introduction to the pH Scale and pH Calculations
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15.3 pH Calculations for Strong Acids and Bases
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15.4 pH Calculations for Weak Acids and Bases
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15.5 Acidity and Basicity of Salts
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15.6 Buffers
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15.7 Titrations and Titration Curves
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15.8 pH Calculations Involving Titrations
Chapter 16 Solubility Equilibria
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16.1 Solubility and Ksp
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16.2 The Common Ion Effect and Precipitation
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16.3 pH Effects on Solubility
Chapter 17 Thermodynamics
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17.1 The Laws of Thermodynamics
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17.2 Entropy
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17.3 Gibbs Free Energy and the Relationship between Delta G, Delta H, and Delta S
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17.4 Delta G, Delta H, Delta S and Formation Reactions
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17.5 Gibbs Free Energy and the Equilibrium Constant
Chapter 18 Electrochemistry
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18.1 Oxidation-Reduction Reactions and Oxidation States
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18.2 Balancing Oxidation-Reduction Reactions
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18.3 Galvanic Cells
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18.4 Standard Cell Potentials (aka emf or Voltage)
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18.5 Nonstandard Cell Potentials (the Nernst Equation)
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18.6 Reduction Potentials and the Relationship between Cell Potential, Delta G, and the Equilibrium Constant
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18.7 Electrolytic Cells
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18.8 Electrolysis Calculations
Chapter 19 Nuclear Chemistry
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19.1 Introduction to Nuclear Chemistry and Trends in Radioactivity
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19.2 Balancing Nuclear Reactions
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19.3 Routes of Nuclear Decay, Fission, and Fusion
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19.4 Kinetics of Nuclear Decay
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19.5 Energy of Nuclear Reactions and Nuclear Binding Energy
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