5. (a) The molecule shown below can react with a base, and lose one of the five protons to form an anionic intermediate. Draw this anionic intermediate, and explain why that proton is removed instead of one of the others. CI H CI H7 H H Cl (b) The same molecule can react with Ag*, and lose one of the three chlorine atoms to form a cationic intermediate. Draw this cationic intermediate, and explain why that chlorine atom is removed, while neither of the other two are removed. CI H CI H7 H H CI

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5. (a) The molecule shown below can react with a base, and lose one of the five protons to form
an anionic intermediate. Draw this anionic intermediate, and explain why that proton is removed
instead of one of the others.
CI
H Cl
-H
H
H
Cl
(b) The same molecule can react with Ag", and lose one of the three chlorine atoms to form a
cationic intermediate. Draw this cationic intermediate, and explain why that chlorine atom is
removed, while neither of the other two are removed.
CI
H Cl
-H
H
H
H
CI
Transcribed Image Text:5. (a) The molecule shown below can react with a base, and lose one of the five protons to form an anionic intermediate. Draw this anionic intermediate, and explain why that proton is removed instead of one of the others. CI H Cl -H H H Cl (b) The same molecule can react with Ag", and lose one of the three chlorine atoms to form a cationic intermediate. Draw this cationic intermediate, and explain why that chlorine atom is removed, while neither of the other two are removed. CI H Cl -H H H H CI
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