CHEM 101
UVIC
Course Overview
Lessons & Practice
I. Welcome
1. Review: Measurement, Significant Figures, Atoms, Molecules and Ions
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. Electronic Structure and Periodic Properties of Elements
8hr2.2.1. The Basics of Absorption and Emission Spectra2.2.2. Bohr's Atomic Model 2.2.3. Absorption vs Emission of a Photon2.2.4. Example2.2.5. Example2.2.6. Bohr Model Equations2.2.7. Example2.2.8. Example2.2.9. Practice 2.2.10. The Bohr Model and Atomic Line Spectra2.2.11. Relating Electronic Transitions to Emission Spectra2.2.12. Example2.2.13. Practice2.2.14. Practice
2.4.1. The Bohr Model Vs The Quantum Model2.4.2. The Heisenberg Uncertainty Principle2.4.3. Example2.4.4. Practice2.4.5. Quantum Numbers2.4.6. Quantum Numbers Cheatsheet2.4.7. Example2.4.8. Example2.4.9. Example2.4.10. Practice2.4.11. Shapes (aka Boundary Diagrams) of Atomic Orbitals2.4.12. Drawing Atomic Orbitals2.4.13. Example2.4.14. Practice2.4.15. Angular and Radial Nodes2.4.16. Wave Properties of Electrons2.4.17. Plotting Radial Electron Probability2.4.18. Example2.4.19. Example2.4.20. Example2.4.21. Practice2.4.22. Relative Energies of Atomic Orbitals2.4.23. Rules for Orbital Filling2.4.24. Example2.4.25. Example2.4.26. Practice2.4.27. Practice
2.5.1. Electronic Configurations of Atoms2.5.2. Electron Configurastions Cheatsheet2.5.3. Electron Configuration Exceptions2.5.4. Example2.5.5. Example2.5.6. Practice2.5.7. Practice2.5.8. Practice 2.5.9. Electron Configurations of Ions of Main Group Elements2.5.10. Electron Configuration of Ions of Transition Elements2.5.11. Example2.5.12. Example2.5.13. Practice2.5.14. Diamagnetic Vs Paramagnetic 2.5.15. Example2.5.16. Practice2.5.17. Ground State Vs Excited State Electron Configurations2.5.18. Example2.5.19. Example2.5.20. Practice2.5.21. Practice
2.6.1. Effective Nuclear Charge 2.6.2. Example2.6.3. Practice2.6.4. Atomic Radius2.6.5. Atomic Radius Theory2.6.6. Example2.6.7. Example2.6.8. Practice2.6.9. Ionization Energy 2.6.10. Comparing 1st, 2nd, and 3rd Ionization Energies2.6.11. Practice2.6.12. Practice2.6.13. Practice2.6.14. Electron Affinity 2.6.15. Example2.6.16. Practice2.6.17. Practice2.6.18. Electronegativity 2.6.19. Example2.6.20. Practice2.6.21. Periodic Trends Theory2.6.22. Example2.6.23. Practice2.6.24. Practice2.6.25. Practice2.6.26. Exceptions to Periodic Trends Introduction2.6.27. Exceptions to Periodic Trends Examples2.6.28. Exceptions to Periodic Trends Summary2.6.29. Example2.6.30. Practice
3. Chemical Bonding and Molecular Geometry
3hr3.1.1. Introduction to Intramolecular Bonds3.1.2. Types of Intramolecular Bonds3.1.3. Example3.1.4. Example3.1.5. Practice3.1.6. Practice3.1.7. Properties of Covalent Bonds3.1.8. Example3.1.9. Practice3.1.10. Bond Energies3.1.11. Practice3.1.12. Lattice Energy (Property of Ionic Bonds)3.1.13. Example3.1.14. Example3.1.15. Practice3.1.16. Practice
4. Advanced Theories of Covalent Bonding
1.1hr4.3.1. Molecular Orbital Introduction Theory4.3.2. How to Draw MO Diagrams for Homonuclear Diatomics Theory4.3.3. Example: Molecular Orbitals of Li4.3.4. Example: Molecular Orbitals of HeH4.3.5. Practice: Diamagnetic Diatomics4.3.6. Practice: MO Orbitals4.3.7. Practice: Molecular Orbital (Challenging Problem)
5. Organic Chemistry
46min5.1.1. What is Organic Chemistry?5.1.2. Line Bond Drawing5.1.3. Hydrocarbons5.1.4. Naming Simple Hydrocarbons5.1.5. Hydrocarbon Nomenclature Example5.1.6. Practice: Hydrocarbon Naming5.1.7. Practice: Hydrocarbon Naming 25.1.8. Example: Identiying Isomers5.1.9. Practice: Hydrocarbon Isomers5.1.10. Addition to Alkenes and alkynes5.1.11. Example: Alkene and Alkyne Additions5.1.12. Alkene Addition Practice Problem5.1.13. Practice: Bromine Addition Problem
6. Intermolecular Forces, Liquids, Solids, and Materials
2.4hrIn-Term Test 1 Overview
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