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Organic Chemistry Reaction Mechanisms, Stereochemistry, and Alkynes: Study Guide

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Overview of Chemical Reactions

  • Recognizing Substitution Reactions.
    01:34
  • Recognizing Acid-Base Reactions.
    02:43
  • Recognizing Elimination Reactions.
    00:40

Reaction Mechanism

  • How to tell if charged molecules will react as nucleophiles or electrophiles.
    02:39
  • Nucleophile or Electrophile
    01:49
  • How to tell if uncharged molecules will react as nucleophiles or electrophiles.
    02:48

Introduction to Substitution

  • Predict the product
    05:55
  • Nucleophiles and Electrophiles can react in Bronsted-Lowry Reactions.
    05:01
  • Nucleophiles and Electrophiles can react in Substitution Reactions.
    01:47

The SN2 Mechanism

  • Ranking reactivity toward SN2
    04:03
  • Drawing the SN2 Mechanism
    08:33
  • Understanding the properties of SN2.
    11:57

SN1 Reaction

  • Drawing the SN1 Mechanism
    10:49
  • Why highly substituted leaving groups favor SN1.
    01:13
  • Understanding the properties of SN1.
    08:16

E2 Mechanism

  • Understanding the properties of E2.
    04:42
  • Drawing the E2 Mechanism.
    09:36
  • Rank reactivity toward E2
    02:03

The E1 Mechanism

  • Understanding the properties of E1.
    03:32
  • Drawing the E1 Mechanism.
    08:09

Leaving Groups

  • The 3 important leaving groups to know.
    07:22

Nucleophiles and Basicity

  • Understanding the difference between basicity and nucleophilicity.
    06:21

SN1 SN2 E1 E2 Chart (Big Daddy Flowchart)

  • How to predict SN2 and E2 mechanisms.
    09:52
  • How to predict SN1 and E1 mechanisms.
    06:30
  • Overview of the flowchart.
    02:27

Newman Projections

  • How to draw a Newman Projection Energy Diagram.
    07:27
  • How sigma bond rotation is visualized
    03:11
  • The energy states of 3 different Newman Projections.
    03:51

Drawing Newman Projections

  • Step 6 to Drawing Newman Projections
    01:31
  • Step 5 to Drawing Newman Projections
    01:51
  • Step 3 to Drawing Newman Projections
    00:28

Chair Flip

  • The 3 important factors when drawing chairs
    05:12

Equatorial Preference

  • Equatorial Preference
    04:02
  • Draw the following chair in the most stable conformation.
    03:17

A-Values

  • Calculating Chair Equilibrium
    06:27

Alkyne Hydration

  • Vinyl alcohols yield tautomers.
    03:51
  • Markovnikov addition of alcohols yields ketones.
    03:29

Hydrohalogenation

  • General properties of hydrohalogenation.
    04:07
  • Provide the mechanism
    02:24

Markovnikov

  • Provide the mechanism
    01:26
  • How to add to asymmetrical double bonds.
    03:38

Hydroboration

  • General properties of hydroboration-oxidation.
    06:38
  • Acid-catalyzed hydroboration-oxidation mechanism
    06:14

Addition Reaction

  • Provide the mechanism
    01:15
  • Features of Addition Mechanisms.
    05:39

Alkyne Hydrohalogenation

  • Double hydrohalogenation of alkynes.
    02:20
  • General properties of double addition reactions to alkynes.
    01:01

Alkyne Halogenation

  • Double halogenation of alkynes.
    02:15

Alkyne Oxidative Cleavage

  • General features of alkyne cleavage.
    02:13
  • Predict the product of the following reaction.
    03:50

Oxidation of Alcohols

  • Reagents
    01:52
  • Strong oxidizing agents
    05:53
  • Strong oxidizing agents
    03:40