Bromohydrin 1 can be prepared from the alkene shown below by reaction with Br2 and H20 as shown below. OH Br2, H20 Br Bromohydrin 1 There are two additional methods by which Bromohydrin 1 can be prepared from the same alkene. Each method requires two synthetic steps. Show these two methods by filling the boxes below with the necessary reagents. Each box must be one synthetic step (i.e., one reaction), but some reactions are 2- or 3-part reactions (e.g., reactions that require a work-up step). A reaction that is one synthetic step, but includes multiple parts, should be shown with i), ii), and/or iii) in the same box. OH 1) Br 2) Bromohydrin 1 1) 2)

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Bromohydrin 1 can be prepared from the alkene shown below by reaction with Br2 and H20 as shown below.
OH
Br2, H20
Br
Bromohydrin 1
There are two additional methods by which Bromohydrin 1 can be prepared from the same alkene. Each
method requires two synthetic steps. Show these two methods by filling the boxes below with the necessary
reagents. Each box must be one synthetic step (i.e., one reaction), but some reactions are 2- or 3-part reactions
(e.g., reactions that require a work-up step). A reaction that is one synthetic step, but includes multiple parts,
should be shown with i), ii), and/or iii) in the same box.
OH
1)
Br
2)
Bromohydrin 1
1)
2)
Transcribed Image Text:Bromohydrin 1 can be prepared from the alkene shown below by reaction with Br2 and H20 as shown below. OH Br2, H20 Br Bromohydrin 1 There are two additional methods by which Bromohydrin 1 can be prepared from the same alkene. Each method requires two synthetic steps. Show these two methods by filling the boxes below with the necessary reagents. Each box must be one synthetic step (i.e., one reaction), but some reactions are 2- or 3-part reactions (e.g., reactions that require a work-up step). A reaction that is one synthetic step, but includes multiple parts, should be shown with i), ii), and/or iii) in the same box. OH 1) Br 2) Bromohydrin 1 1) 2)
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