SC/CHEM 1100 4.00
York U
Course Overview
Lessons & Practice
I. Welcome
1. Module 1: Atoms, Ions, & Isotopes
42min2. Module 1: Stoichiometry
2.5hr3. Module 1: Chemical Reactions
1.9hr4. Module 1: Acids and Bases
2.5hr5. Module 2: Gases and their Properties
2.5hr6. Module 2: Intermolecular Forces and Physical Properties
1.9hr7. Module 2: Phase Transitions and Phase Diagrams
1hr8. Module 2: Chemical Bonding
1.3hr9. Module 3: Thermodynamics: Part 1
2.3hr10. Module 4: Equilibrium
2.6hr11. Module 4: Thermodynamics: Part 2
1.1hr12. Module 4: Solubility
1.3hr13. Early Atomic Theory to Quantum Theory
3hr14. Quantum Numbers and Electron Configurations
3hr15. Periodic Table Trends
2.1hr16. Lewis Structures & Resonance Structures
1.9hr17. VSEPR Shapes and Polarity
1.1hr18. Valence Bond Theory (Hybridization)
1.8hr18.5.1. sp3 Hybridization18.5.2. sp3 Hybridization - Example Problem18.5.3. sp2 Hybridization18.5.4. sp2 Hybridization - Example Problem18.5.5. sp Hybridization18.5.6. sp Hybridization - Example Problem18.5.7. Unhybridized p Orbitals18.5.8. Unhybridized p Orbitals - Example Problem18.5.9. dsp3 and d2sp3 Hybridization18.5.10. dsp3 Hybridization - Example Problem18.5.11. d2sp3 Hybridization - Example Problem18.5.12. Practice Question: Hybridization with d Orbitals
19. Molecular Orbital Theory
1.4hr19.1.1. Molecular Orbital Theory Introduction19.1.2. How to Draw MO Diagrams for Homonuclear Diatomics19.1.3. Example: Molecular Orbitals of Li19.1.4. Example: Molecular Orbitals of HeH19.1.5. Practice: Diamagnetic Diatomics19.1.6. Practice: MO Orbitals Problem19.1.7. Practice: Molecular orbital (Challenging Problem)
19.3.1. Example: MO Diagrams of 2s Block Molecules19.3.2. MO Diagrams of 2p Block Molecules19.3.3. s-p Mixing in MO Diagrams19.3.4. Example: MO Diagrams with s-p Mixing19.3.5. MO Diagrams without s-p Mixing - Example Problem19.3.6. Practice Question: MO Diagrams of Homonuclear Diatomics19.3.7. Practice Question: MO Diagrams of Neutral and Ionic Diatomics
20. Buffers and Titrations
2.8hr21. Introduction to Organic Chemistry
2.3hr22. Organic Chemistry Reactions
47min23. Kinetics
2.4hr23.3.1. Rate Laws23.3.2. Example: Determining Reaction Order23.3.3. Determining the Rate Law From Experimental Data 23.3.4. Shortcut to Find Units of k Quicker 23.3.5. Practice: Experimental Rate Law 23.3.6. Practice: Determining Rate Law Exponents23.3.7. Practice: Rate Law23.3.8. Practice: Units of the Rate Constant, K
24. Electrochemistry
3hrI Welcome
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