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CHEM 162 Draft Schedule Week 1 (Sept. 28-Sept. 30) Intro Course policies, review of Lewis dot structures Chapter 13 Octets rule, expanded octets, VSEPR and molecular shapes Week 2 (Oct. 3 – Oct. 7) Chapter 14 Dipoles, orbital hybridization, bonding Chapter 14 Molecular orbital theory, Bond order, simple homonuclear MOs Chapter 14 MO diagrams, magnetism, s-p mixing, heteronuclear MOs Week 3 (Oct. 10 – Oct. 14) Chapter 15 Reaction rates, rate laws, integrated rate laws, half-lives Chapter 15 Using rate laws to understand mechanisms, steady state approx., temp. depend. NO CLASS ON OCTOBER 14 Week 4 (Oct. 17 - Oct. 21) Chapter 15 Catalysis, activation energy, reaction pathways Rate law examples, clarifications, etc., exam review MIDTERM #1 Week 5 (Oct. 24 – Oct. 28) Chapter 16 Intro to solids: Bonding, structures, unit cells Chapter 16 Solids: Metals, carbon & silicon, ionic, conductors / semi-conductors Chapter 16 Intermolecular forces, liquids, vapor pressure, phase diagrams Week 6 (Oct. 31 – Nov. 4) Chapter 16 Changes of state, Clausius-Clapeyron equation, water as a unique compound Chapter 17 Calculating molarity, molality, mole fraction, % by mass, % by volume Chapter 17 Solutions: composition, thermodynamics, solubility Week 7 (Nov. 7 – Nov. 11) Chapter 17 Colligative properties of electrolyte solutions Chapter 18 Elemental abundances, the periodic table, Groups, 1, 2, 3, 4 HOLIDAY Week 8 (Nov. 14 – Nov. 18) Chapter 18 Groups 5, 6, 7, 8 Chapter 18 Wrap-up Chapter 18, exam review MIDTERM #2 Week 9 (Nov. 21 – Nov. 25) Chapter 19 The transition elements: importance, MO theory revisited NO CLASS ON NOV. 23 HOLIDAY Week 10 (Nov. 28 – Dec. 2) Chapter 19 Coordination compounds: shape, ligands, properties Chapter 19 Crystal field theory Chapter 20 Nuclear chemistry Week 11 (Dec. 5 – Dec. 9) Chapter 21 Organic: alkanes, alkenes, alkynes and their substituents Chapter 21 Functional groups and their properties, IR spectroscopy Chapter 21 Petroleum, polymers and course wrap-up Final Exam: Monday, December 12 (8:30 – 10:20am) Reading List Week / Lecture Chapter and Section Week 1 Review of Lewis dot structures, octets rule, expanded octets, VSEPR and molecular shapes 13.10, 13.11, 13.12, 13.13 Dipoles, orbital hybridization, bonding, molecular orbital theory, bond order, simple homonuclear MOs, MO diagrams, magnetism, s-p mixing, heteronuclear MOs 14.1, 14.2, 14.3, 14.4, 14.5 Reaction rates, rate laws, integrated rate laws, half-lives, using rate laws to understand mechanisms, steady state approx., temperature dependence 15.1, 15.2, 15.3, 15.4, 15.5, 15.6, 15.7, 15.8 Catalysis, activation energy, reaction pathways 15.9 Solids: Bonding, structures, unit cells, metals, carbon & silicon, ionic, conductors / semi-conductors Intermolecular forces, liquids, vapor pressure, phase diagrams 16.3, 16.4, 16.5, 16.6, 16.7, 16.8, 16.9 16.1, 16.2, 16.10, 16.11 Changes of state, Clausius-Clapeyron equation, water as a unique compound, calculating molarity, molality, mole fraction, % by mass, % by volume, Solutions: composition, thermodynamics, solubility 16.10, 16.11, 17.1, 17.2, 17.3 Vapor pressure of solutions, boiling point elevation, freezing-point depression Osmotic pressure, colligative properties of electrolyte solutions Elemental abundances, the periodic table, Groups, 1, 2, 3, 4 17.4, 17.5, 17.6, 17.7 Groups 5, 6, 7, 8 18.7, 18.8, 18.9, 18.10, 18.11, 18.12, 18.13, 18.14 The transition elements: importance, MO theory revisited 19.1, 19.2 Coordination compounds: shape, ligands, properties, crystal field theory Nuclear chemistry 19.3, 19.4, 19.6, 19.7, 19.8 20.1, 20.2, 20.4 Organic: alkanes, alkenes, alkynes and their substituents, functional groups and their properties, IR spectroscopy, petroleum and polymers 21.1, 21.2, 21.3, 21.4, 21.5 14.9 Week 2 Week 3 Week 4 Week 5 Week 6 Week 7 18.1, 18.2, 18.3, 18.4, 18.5, 18.6 Week 8 Week 9 Week 10 Week 11