SC/CHEM 1000 3.00
York U
Course Overview
Lessons & Practice
I. Welcome
1. Review (Chapters 1-4)
2.2hr- 1.I. Chapter Intro
1.7.1. Reaction Stoichiometry1.7.2. Practice: Balancing 1.7.3. Moles1.7.4. Example: Reaction Stoichiometry 1.7.5. Steps for doing Stoichiometry Problems1.7.6. Practice: Stoichiometry (Similar to a question asked on a previous year's midterm) 1.7.7. Practice: Hydrate Question (Similar to a question asked on a previous year's midterm)1.7.8. Example: Stoichiometry
1.8.1. Concentration of Solutions1.8.2. Example: Converting Molarity to Mole Fraction1.8.3. Example: Converting Mole Fraction to Molarity1.8.4. Example: Calculating Molarity from Combined Solutions1.8.5. Practice Question: Calculating Molarity from Mass1.8.6. Practice Question: Calculating Mole Fraction from Molarity
2. Gases (Chapter 5)
3hr3. Thermochemistry (Chapter 6)
2.2hr4. Atomic Structure (Chapter 7)
6hr4.3.1. The Basics of Absorption and Emission Spectra4.3.2. Bohr's Atomic Model 4.3.3. Absorption vs Emission of a Photon4.3.4. Example4.3.5. Example4.3.6. Bohr Model Equations4.3.7. Example4.3.8. Example4.3.9. Practice 4.3.10. The Bohr Model and Atomic Line Spectra4.3.11. Relating Electronic Transitions to Emission Spectra4.3.12. Example4.3.13. Practice4.3.14. Practice
4.6.1. Quantum Numbers4.6.2. Quantum Numbers Cheatsheet4.6.3. Example4.6.4. Example4.6.5. Example4.6.6. Practice4.6.7. Shapes (aka Boundary Diagrams) of Atomic Orbitals4.6.8. Drawing Atomic Orbitals4.6.9. Example4.6.10. Practice4.6.11. Angular and Radial Nodes4.6.12. Wave Properties of Electrons4.6.13. Plotting Radial Electron Probability4.6.14. Example4.6.15. Example4.6.16. Example4.6.17. Practice4.6.18. Nodes4.6.19. Relative Energies of Atomic Orbitals4.6.20. Rules for Orbital Filling4.6.21. Example4.6.22. Example4.6.23. Practice4.6.24. Practice
4.7.1. Electronic Configurations of Atoms4.7.2. Electron Configurastions Cheatsheet4.7.3. Electron Configuration Exceptions4.7.4. Example4.7.5. Example4.7.6. Practice4.7.7. Practice4.7.8. Practice 4.7.9. Electron Configurations of Ions of Main Group Elements4.7.10. Electron Configuration of Ions of Transition Elements4.7.11. Example4.7.12. Example4.7.13. Practice4.7.14. Diamagnetic Vs Paramagnetic 4.7.15. Example4.7.16. Practice4.7.17. Ground State Vs Excited State Electron Configurations4.7.18. Example4.7.19. Example4.7.20. Practice4.7.21. Practice
5. Periodic Properties (Chapter 8)
1.9hr6. Chemical Bonding (Chapters 9 & 10)
5hr6.10.1. Introduction to Valence Bond Theory6.10.2. Valence Bond Theory and Hybridization6.10.3. Example: Valence Bond Description of O and N6.10.4. Practice: Bonding in Methyldiazene6.10.5. Practice: Bonding in Methyldiazene Part 26.10.6. Example: Drawing Orbital Overlap Diagrams6.10.7. Example: Valence Bond Description of Acetone
6.11.1. Molecular Orbital Theory Introduction6.11.2. Drawing MO Diagrams6.11.3. Example: Molecular Orbital Theory Questions6.11.4. Practice: Bond Order6.11.5. How to Draw MO Diagrams for Homonuclear Diatomics6.11.6. Example: Molecular Orbitals of Li6.11.7. MO Diagrams of p Heteronuclear Diatomics6.11.8. Example: MO Diagrams of p Heteronuclear Diatomics6.11.9. MO Diagrams of p and s Heteronuclear Diatomics6.11.10. Example: MO Diagrams of p and s Heteronuclear Diatomics6.11.11. Practice: MO Diagrams of Heteronuclear Diatomics6.11.12. Example: Molecular Orbitals of HeH6.11.13. Practice: Diamagnetic Diatomics6.11.14. Practice: MO Orbitals Problem6.11.15. Practice Question: MO Diagrams of Homonuclear Diatomics6.11.16. Practice: Molecular orbital (Challenging Problem)
7. Solids, Liquids, and Intermolecular Forces (Chapter 11)
2.7hrME.1 Final Exam - Mock Assessment
Included in Wizeprep Plus
Final Exam - Mock Assessment
This mock exam has 92 questions
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