4-methyl-3-hexanol was prepared by reacting an alkene with either hydroboration-oxidation or oxymercuration-reduction. Draw the structure of the alkene that was used to prepare the alcohol in highest yield. . You do not have to consider stereochemistry. Indicate the method of preparation by drawing either BH, (for hydroboration-oxidation), or Hg (for oxymercuration-reduction), If there is more than one alkene that can be used for a given method, draw all of them. If either hydroboration-oxidation or oxymercuration-reduction can be used, just give the structures for one method. Separate structures with + signs from the drop-down menu.

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Chapter1: Chemical Foundations
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4-methyl-3-hexanol was prepared by reacting an alkene with either hydroboration-oxidation or oxymercuration-reduction.
Draw the structure of the alkene that was used to prepare the alcohol in highest yield.
You do not have to consider stereochemistry.
• Indicate the method of preparation by drawing either BH; (for
hydroboration-oxidation), or Hg (for oxymercuration-reduction), in a separate sketcher.
If there is more than one alkene that can be used for a given method, draw all of them.
If either hydroboration-oxidation or oxymercuration-reduction can be used, just give the structures for one method.
• Separate structures with + signs from the drop-down menu.
Transcribed Image Text:4-methyl-3-hexanol was prepared by reacting an alkene with either hydroboration-oxidation or oxymercuration-reduction. Draw the structure of the alkene that was used to prepare the alcohol in highest yield. You do not have to consider stereochemistry. • Indicate the method of preparation by drawing either BH; (for hydroboration-oxidation), or Hg (for oxymercuration-reduction), in a separate sketcher. If there is more than one alkene that can be used for a given method, draw all of them. If either hydroboration-oxidation or oxymercuration-reduction can be used, just give the structures for one method. • Separate structures with + signs from the drop-down menu.
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