product or missing reagent to complete each reaction. Use a dash or wedge bond to indicate stereochemistry, where applicable. Ignore OH OH 1. BH3-THF 2. H₂O2, NaOH inorganic byproducts. 9 Drawing 1. Hg(OAc)2, H₂O 2. NaBH4, NaOH

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Chapter1: Chemical Foundations
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A common alkene starting material is shown below. Predict the major product or missing reagent to complete each reaction. Use a dash or wedge bond to indicate stereochemistry, where applicable. Ignore inorganic byproducts.

**Diagram Explanation:**

1. **Starting Material:** A cyclohexene ring with a methyl group attached.
   
2. **Reaction Pathways:**
   - **Top Pathway:**
     - Reagents: 
       1. Hg(OAc)₂, H₂O
       2. NaBH₄, NaOH
   - **Bottom Pathway:**
     - Reagents:
       1. BH₃·THF
       2. H₂O₂, NaOH

The diagram is structured with an arrow pointing upward for the top reaction and downward for the bottom reaction, indicating distinct transformation pathways originating from the same starting alkene. Each pathway results in the formation of different alcohols, showcasing the use of hydroboration-oxidation and oxymercuration-demercuration reactions.
Transcribed Image Text:A common alkene starting material is shown below. Predict the major product or missing reagent to complete each reaction. Use a dash or wedge bond to indicate stereochemistry, where applicable. Ignore inorganic byproducts. **Diagram Explanation:** 1. **Starting Material:** A cyclohexene ring with a methyl group attached. 2. **Reaction Pathways:** - **Top Pathway:** - Reagents: 1. Hg(OAc)₂, H₂O 2. NaBH₄, NaOH - **Bottom Pathway:** - Reagents: 1. BH₃·THF 2. H₂O₂, NaOH The diagram is structured with an arrow pointing upward for the top reaction and downward for the bottom reaction, indicating distinct transformation pathways originating from the same starting alkene. Each pathway results in the formation of different alcohols, showcasing the use of hydroboration-oxidation and oxymercuration-demercuration reactions.
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