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1. Drawing Conventions (M12Q0)
2. Refresher of VSEPR, VBT, and Polarity in Organic Molecules (M12Q1)
3. Alkanes and Cycloalkanes: Naming, Isomers and Intermolecular Forces (M12Q2)
4. Alkenes: Naming, Geometric Isomers, Intermolecular Forces and Bond Properties; Optical Isomers (M12Q3)
5. Alkynes and Aromatics: Naming, Intermolecular Forces and Bond Properties (M12Q4)
6. Functional groups: Suffixes/prefixes, Isomers, Intermolecular Forces (M12Q5)
7. Condensation and Hydrolysis Reactions (M12Q6)
8. Introduction to Kinetics; Concept of Reaction Rate (M13Q1)
9. Reaction Rates: Identifying Rates on Concentration vs Time Plots; Rates and Reaction Stoichiometry; Defining Average, Instantaneous, and Initial Rates (M13Q2)
10. Rate Laws and Reaction Order: Determining Rate Laws from Empirical Data; Method of Initial Rates (M13Q3)
11. Introduction to Flooding Techniques and Experimental Use of Initial Rates (M13Q4)
12. Integrated Rate Laws; Application of Pseudo-First Order (Flooding) Techniques (M13Q5)
13. Integrated Rate Laws and the Method of Half-Lives (M13Q6)
14. Nanoscale View of Chemical Kinetics: KMT Considerations, Activation Energy, Orientation of Molecules (M13Q7)
15. Relationship between Reaction Rates, Temperature, and Activation Energy; Arrhenius Equation, Orientation Factor (M13Q8)
16. Reaction Mechanisms; Elementary Steps (M13Q9)
17. Mechanisms and Multistep Reactions; Reaction Profiles; Rate Limiting Steps (M13Q10)
18. Catalysts; Connecting Mechanisms to Empirically-Determined Rate Laws; Catalysis; Critiques of Mechanisms (M13Q11)
19. Introduction to Chemical Equilibrium; Qualitative View of Chemical Equilibrium; Disturbances to Equilibrium and System Responses; Le Châtelier's Principle (M14Q1)
20. Equilibrium Expressions and Equilibrium Constants (M14Q2)
21. Combining Reactions and their Equilibrium Constants (M14Q3)
22. Reaction Quotient (M14Q4)
23. Calculations Involving the Equilibrium Constant (M14Q5)
24. Types of Equilibria (Phase, Partition, Etc) (M14Q6)
25. Arrhenius and Bronsted-Lowry Acids and Bases (M15Q1)
26. Relative Strengths of Acids and Bases (M15Q2)
27. Molecular Structure and Acid Strength (M15Q3)
28. Autoionization and the pH Scale (M15Q4)
29. Weak Acid and Weak Base Calculations (M15Q5)
30. Polyprotic Acids (M15Q6)
31. Acidity and Basicity of Salts (M15Q7)
32. Lewis Acids and Bases (M15Q8)
33. Defining a Buffer; Calculating the pH of a Buffer Solution (M16Q1)
34. Designing and Recognizing Buffer Solutions (M16Q2)
35. How A Buffer Works (M16Q3)
36. Titration of a Strong Acid with a Strong Base (M16Q4)
37. Interpretation of Titration Curves (M16Q5)
38. Titration of a Weak Acid with a Strong Base; Titration of a Weak Base with a Strong Acid (M16Q6)
39. Solubility (M16Q7)
40. Spontaneity and Product-Favored Reactions (M17Q1)
41. Microstates and Entropy (M17Q2)
42. Second Law of Thermodynamics (M17Q3)
43. Gibb's Free Energy (M17Q4)
44. ΔG and ΔG° (M17Q5)
45. ΔG°, K and Van't Hoff Plots (M17Q6)
46. Kinetics, Equilibrium, and Stability (M17Q7)
47. Redox Reactions; Oxidation Numbers and Definition (Review) (M18Q1)
48. Balancing Redox Reactions in Acidic and Basic Solutions (M18Q2)
49. Voltaic Cells (M18Q3)
50. Voltaic Cells and Standard Reduction Potential (M18Q4)
51. Standard Cell Potentials, E° (M18Q5)
52. E° and ΔG°, the Nerst Equation (M18Q6)
53. Batteries and Fuel Cells (M18Q7)
54. Electrolysis (M18Q8)
Appendix A: Periodic Table
Appendix B: Essential Mathematics
Appendix C: Units and Conversion Factors
Appendix D: Solubility Flow Chart
Appendix E: Specific Heat Capacities for Common Substances
Appendix F: Standard Thermodynamic Properties
Appendix G: Bond Enthalpy, Bond Length, Atomic Radii, and Ionic Radii
Appendix H: Electronegativity
Appendix I: Ionization Constants of Selected Weak Acids and Bases
Appendix J: Solubility Product Constant
Appendix K: Standard Electrode Potentials in Acidic or Basic Solutions
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