Lecture notes
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- Lecture 1: Lewis structures of organic compounds (3 Sep)
- Lecture 2: Constitutional isomers (8 Sep)
- Lecture 3: Hybridization (10 Sep)
- Lecture 4: Dipoles (15 Sep)
- Lecture 5: Resonance (15 Sep)
- Lecture 6: Functional groups (17 Sep)
- Lecture 7a: Nomenclature: Introduction (17 Sep)
- Lecture 7b: Nomenclature: Complex substituents (22 Sep)
- Lecture 7c: Nomenclature: Priority groups I (24 Sep)
- Lecture 7d: Nomenclature: Priority groups II (28 Sep)
- Lecture 8a: Conformational analysis of acyclic alkanes (6 Oct)
- Lecture 8b: Conformational analysis of cyclic alkanes (8 Oct)
- Lecture 9: Homodesmotic reactions (15 Oct)
- Lecture 10: Stereoisomers (20 Oct)
- Lecture 11: The R,S system (22 Oct)
- Lecture 12: Optical activity (27 Oct)
- Lecture 13: The E,Z system (27 Oct)
- Lecture 14: Infrared spectroscopy (3 Nov)
- Lecture 15a: Nuclear magnetic resonance spectroscopy: The chemical shift (5 Nov)
- Lecture 15b: Nuclear magnetic resonance spectroscopy: Chemical-shift equivalence (10 Nov)
- Lecture 15c: Nuclear magnetic resonance spectroscopy: Splitting I (10 Nov)
- Lecture 15d: Nuclear magnetic resonance spectroscopy: Splitting II (12 Nov)
- Lecture 15e: Nuclear magnetic resonance spectroscopy: Integration & problem set (12 Nov)
- Lecture 16a: Addition to carbon–carbon double bonds: Reaction syllabus I (17 Nov)
- Lecture 16b: Addition to carbon–carbon double bonds: Reaction syllabus II (19 Nov)
- Lecture 16c: Addition to carbon–carbon double bonds: Problem set (19 Nov)
Posted 18 Nov 2009
This page is maintained by Bruno I. Rubio