CHEM 1301A/B
UWO
Course Overview
Grade Boosters
Lessons & Practice
I. Welcome
1. Self-Study Concepts
42min2. High-School Chemistry
2.5hr3. Atomic Theory
4hr4. Periodic Properties (Trends)
2.1hr5. Ionic and Covalent Bonding
3hr5.6.1. Lewis Structures of Organic Compounds5.6.2. Filling in a Skeletal Structure5.6.3. Example: Organic Compounds5.6.4. Example: Skeletal Structure 15.6.5. Lewis Structures of Benzene Derivatives5.6.6. Example: Benzene Derivatives5.6.7. Practice: Organic Compounds5.6.8. Practice: Benzene Derivatives 15.6.9. Practice: Benzene Derivatives 25.6.10. Practice: Skeletal Structure 25.6.11. Practice: Skeletal Structure 2 part b5.6.12. Practice: Skeletal Structure 2 part c
6. VSEPR Theory
1.1hr7. Intermolecular Forces
1.9hr8. Valence Bond and Molecular Orbital Theory
55min8.1.1. Introduction to Valence Bond Theory Theory8.1.2. Example: Valence Bond Description of O and N8.1.3. Hybridization Theory8.1.4. Example: Valence Bond Description of Acetone8.1.5. Practice: Hybridization of Atoms in Methyldiazene8.1.6. Practice: Bonding in Methyldiazene8.1.7. Practice: Bonding in Methyldiazene Part 2
8.2.1. Molecular Orbital Theory Introduction8.2.2. How to Draw MO Diagrams for Homonuclear Diatomics8.2.3. Example: Molecular Orbitals of Li8.2.4. Example: Molecular Orbitals of HeH8.2.5. Practice: Diamagnetic Diatomics8.2.6. Practice: MO Orbitals Problem8.2.7. Practice: Molecular orbital (Challenging Problem)
9. Transition Metal Complexes
39min9.1.1. Complexes and ligands9.1.2. Writing Chemical Formulas of Transition Metal Complexes9.1.3. Isomers9.1.4. Stereoisomers9.1.5. Practice: Isomers9.1.6. Practice: Isomers II9.1.7. Practice: Transition Metal Shapes9.1.8. Practice: Transition Metal Complexes9.1.9. Stereochemistry of Transition Metals Summary
9.3.1. Crystal Field Theory9.3.2. Color of Transition Metal Complexes9.3.3. Steps to Understanding Transition Metal Complex Colours9.3.4. UV-Vis Spectroscopy9.3.5. Paramagnetism and High-Spin/Low-Spin Complexes9.3.6. Practice: Transition Metal Complex Absoprtion9.3.7. Practice: Transition Metal Complex Colours9.3.8. Practice: High Spin vs Low Spin
10. Functional Groups and IR Spectroscopy
11min11. Alkanes and Cycloalkanes
25min- 11.I. Chapter Intro
11.3.1. Conformational Isomers11.3.2. Newman Projections11.3.3. Newman Projection Conversion Concept Clarifier11.3.4. Anti vs Gauche Interactions11.3.5. Ranking the Energy of Rotomoers Practice Question #111.3.6. Ranking the Energy of Rotomoers Practice Question #211.3.7. Drawing Most Stable Rotomer Practice Question11.3.8. Cyclohexane Rings11.3.9. Drawing Ring Flips Concept Clarifier11.3.10. 1,3-diaxial Interactions in Cyclohexane Rings11.3.11. Energy of Chair Structures Practice Question11.3.12. Fischer Projections11.3.13. Stereochemistry in Fischer Projections Concept Clarifier
12. Alkenes and Alkynes
20min13. Chirality
33minME.3 Midterm Test - Mock Assessment
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