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Freshman Organic Chemistry II with Michael McBride

5.0 (1)
25 learners

What you'll learn

This course includes

  • 31.3 hours of video
  • Certificate of completion
  • Access on mobile and TV

Course content

1 modules • 38 lessons • 31.3 hours of video

Freshman Organic Chemistry II with Michael McBride

38 lessons • 31.3 hours
  • 1. Mechanism: How Energies and Kinetic Order Influence Reaction Rates49:00
  • 2. Peculiar Rate Laws, Bond Dissociation Energies, and Relative Reactivities48:14
  • 3. Rate and Selectivity in Radical-Chain Reactions46:46
  • 4. Electronegativity, Bond Strength, Electrostatics, and Non-Bonded Interactions50:08
  • 5. Solvation, H-Bonding, and Ionophores47:10
  • 6. Brønsted Acidity and the Generality of Nucleophilic Substitution46:47
  • 7. Nucleophilic Substitution Tools - Stereochemistry, Rate Law, Substrate, Nucleophile51:56
  • 8. Solvent, Leaving Group, Bridgehead Substitution, and Pentavalent Carbon48:27
  • 9. Pentavalent Carbon? E2, SN1, E148:05
  • 10. Cation Intermediates. Alkenes: Formation, Addition, and Stability51:15
  • 11. Carbocations and the Mechanism of Electrophilic Addition to Alkenes and Alkynes52:08
  • 12. Nucleophilic Participation During Electrophilic Addition to Alkenes49:05
  • 13. Addition to Form Three-Membered Rings: Carbenoids and Epoxidation50:55
  • 14. Epoxide Opening, Dipolar Cycloaddition, and Ozonolysis49:39
  • 15. Metals and Catalysis in Alkene Oxidation, Hydrogenation, Metathesis, and Polymerization50:36
  • 16. Isoprenoids, Rubber, and Tuning Polymer Properties46:27
  • 17. Alkynes. Conjugation in Allylic Intermediates and Dienes49:37
  • 18. Linear and Cyclic Conjugation Theory. 4n+2 Aromaticity47:46
  • 19. Aromatic Transition States: Cycloaddition and Electrocyclic Reactions49:13
  • 20. Electronic and Vibrational Spectroscopy49:47
  • 21. Functional Groups and Fingerprints in IR Spectroscopy. Precession of Magnetic Nuclei53:39
  • 22. Medical MRI and Chemical NMR49:21
  • 23. Diamagnetic Anisotropy and Spin-Spin Splitting48:20
  • 24. Higher-Order Effects, Dynamics, and the NMR Time Scale51:13
  • 25. C-13 and 2D NMR. Electrophilic Aromatic Substitution50:29
  • 26. Aromatic Substitution in Synthesis: Friedel-Crafts and Moses Gomberg50:49
  • 27. Triphenylmethyl and an Introduction to Carbonyl Chemistry45:34
  • 28. Mechanism and Equilibrium of Carbonyl Reactions49:04
  • 29. Imines and Enamines. Oxidation and Reduction50:02
  • 30. Oxidation States and Mechanisms46:58
  • 31. Periodate Cleavage, Retrosynthesis, and Green Chemistry46:08
  • 32. Measuring Bond Energies: Guest Lecture by Prof. G. Barney Ellison47:33
  • 33. Green Chemistry. Acids and Acid Derivatives49:20
  • 34. Acids and Acid Derivatives50:29
  • 35. Acyl Insertions and [gr]α-Reactivity48:49
  • 36. [gr]α-Reactivity and Condensation Reactions53:07
  • 37. Proving the Configuration of Glucose and Synthesizing Two Unnatural Products54:47
  • 38. Review: Synthesis of Cortisone52:09

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