Draw the major product for this reaction. Ignore inorganic byproducts. HgSO4, H₂O

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Chapter1: Chemical Foundations
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**Title:** Reaction Product Prediction

**Question 12 of 32:**

**Task:** Draw the major product for this reaction. Ignore inorganic byproducts.

**Reaction Details:**
- **Reactant:** The image shows a compound with a structure featuring two benzene rings (phenyl groups) connected by a carbon-carbon triple bond (alkyne).
- **Reagents:** 
  - HgSO₄ (Mercury(II) sulfate)
  - H₂O (Water)
  - H₂SO₄ (Sulfuric acid)

**Instructions:** Use the provided reagents to predict and draw the major organic product of the reaction in the designated area. 

**Diagram Explanation:** 
There is an arrow indicating the transformation from the reactant (alkyne structure) to the expected major product. Below the arrow, there is a dashed box labeled "Select to Draw," indicating where the reaction product should be illustrated.

This exercise reinforces the theory and practice of alkyne hydration reactions, where the reactant is typically converted into a ketone using acidic conditions and mercury salts as a catalyst.
Transcribed Image Text:**Title:** Reaction Product Prediction **Question 12 of 32:** **Task:** Draw the major product for this reaction. Ignore inorganic byproducts. **Reaction Details:** - **Reactant:** The image shows a compound with a structure featuring two benzene rings (phenyl groups) connected by a carbon-carbon triple bond (alkyne). - **Reagents:** - HgSO₄ (Mercury(II) sulfate) - H₂O (Water) - H₂SO₄ (Sulfuric acid) **Instructions:** Use the provided reagents to predict and draw the major organic product of the reaction in the designated area. **Diagram Explanation:** There is an arrow indicating the transformation from the reactant (alkyne structure) to the expected major product. Below the arrow, there is a dashed box labeled "Select to Draw," indicating where the reaction product should be illustrated. This exercise reinforces the theory and practice of alkyne hydration reactions, where the reactant is typically converted into a ketone using acidic conditions and mercury salts as a catalyst.
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