Alkenes can be converted to alcohols by hydroboration-oxidation. (a) Draw the structure of the alcohol or alcohols formed in the reaction sequence. Clearly indicate stereochemistry by drawing a wedged bond, a dashed bond and two in-plane bonds per each chiral carbon. Draw hydrogen atoms that are connected to wedge-and-dash bonds. (b) Characterize the product or products of the reactions. -d (a) 1. B₂H6, diglyme 2. H₂O₂, HO-, H₂O Be sure to draw hydrogens on oxygen, where applicable. Rings More Select Draw C H O Erase

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Macmillan Learning
Alkenes can be converted to alcohols by hydroboration-oxidation. (a) Draw the structure of the alcohol or alcohols formed in the
reaction sequence. Clearly indicate stereochemistry by drawing a wedged bond, a dashed bond and two in-plane bonds per each
chiral carbon. Draw hydrogen atoms that are connected to wedge-and-dash bonds.(b) Characterize the product or products of
the reactions.
e
1. B₂H6,
diglyme
2. H₂O₂, HO™,
H₂O
Be sure to draw hydrogens on oxygen, where applicable.
Select
Draw
Rings
More
C H O
Erase
Transcribed Image Text:Macmillan Learning Alkenes can be converted to alcohols by hydroboration-oxidation. (a) Draw the structure of the alcohol or alcohols formed in the reaction sequence. Clearly indicate stereochemistry by drawing a wedged bond, a dashed bond and two in-plane bonds per each chiral carbon. Draw hydrogen atoms that are connected to wedge-and-dash bonds.(b) Characterize the product or products of the reactions. e 1. B₂H6, diglyme 2. H₂O₂, HO™, H₂O Be sure to draw hydrogens on oxygen, where applicable. Select Draw Rings More C H O Erase
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