2. Draw in the curved arrow mechanism and predict the major, neutral product consistent with the fact that the only interesting peak in the IR is a broad, symmetrical stretch at 3253 cm³¹. In reality, this is not the final, most stable product possible. We will discuss more in chapter 21. Assume H₂O is present in a large excess as solvent. Show all bonds formed and all bonds broken. Be sure to draw all intermediates and include formal charge where applicable. In a few words, describe the regioselectivity of the reaction. H3O+ H₂O

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2. Draw in the curved arrow mechanism and predict the major, neutral product consistent with the fact that the only
interesting peak in the IR is a broad, symmetrical stretch at 3253 cm²¹. In reality, this is not the final, most stable
product possible. We will discuss more in chapter 21. Assume H₂O is present in a large excess as solvent. Show all
bonds formed and all bonds broken. Be sure to draw all intermediates and include formal charge where applicable.
In a few words, describe the regioselectivity of the reaction.
H3O+
H₂O
Transcribed Image Text:2. Draw in the curved arrow mechanism and predict the major, neutral product consistent with the fact that the only interesting peak in the IR is a broad, symmetrical stretch at 3253 cm²¹. In reality, this is not the final, most stable product possible. We will discuss more in chapter 21. Assume H₂O is present in a large excess as solvent. Show all bonds formed and all bonds broken. Be sure to draw all intermediates and include formal charge where applicable. In a few words, describe the regioselectivity of the reaction. H3O+ H₂O
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