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15. Thermodynamics: Bond and Reaction Enthalpies
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Classroom Contents
Principles of Chemical Science
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- 1 1. The Importance of Chemical Principles
- 2 2. Atomic Structure
- 3 3. Wave-Particle Duality of Light
- 4 4. Wave-Particle Duality of Matter; Schrödinger Equation
- 5 5. Hydrogen Atom Energy Levels
- 6 6. Hydrogen Atom Wavefunctions (Orbitals)
- 7 7. Multielectron Atoms
- 8 8. The Periodic Table and Periodic Trends
- 9 9. Periodic Table; Ionic and Covalent Bonds
- 10 10. Lewis Structures
- 11 11. Formal Charge and Resonance
- 12 12. The Shapes of Molecules: VSEPR Theory
- 13 13. Molecular Orbital Theory
- 14 14. Valence Bond Theory and Hybridization
- 15 15. Thermodynamics: Bond and Reaction Enthalpies
- 16 16. Thermodynamics: Gibbs Free Energy and Entropy
- 17 17. Thermodynamics: Now What Happens When You Heat It Up?
- 18 18. Introduction to Chemical Equilibrium
- 19 19. Chemical Equilibrium: Le Châtelier’s Principle
- 20 20. Solubility and Acid-Base Equilibrium
- 21 21. Acid-Base Equilibrium: Is MIT Water Safe to Drink?
- 22 22. Acid-Base Equilibrium: Salt Solutions and Buffers
- 23 23. Acid-Base Titrations Part I
- 24 24. Acid-Base Titrations Part II
- 25 25. Oxidation-Reduction and Electrochemical Cells
- 26 26. Chemical and Biological Oxidations
- 27 27. Introduction to Transition Metals
- 28 28. Transition Metals: Crystal Field Theory Part I
- 29 29. Transition Metals: Crystal Field Theory Part II
- 30 30. Kinetics: Rate Laws
- 31 31. Nuclear Chemistry and Chemical Kinetics
- 32 32. Kinetics: Reaction Mechanisms
- 33 33. Kinetics and Temperature
- 34 34. Kinetics: Catalysts
- 35 35. Applying Chemical Principles