7. 8. Provide the complete mechanism using Curved Arrow Formalism for the reaction of the molecule shown below treated with Cl₂/FeCl3. Include all pertinent resonance stabilized intermediates. Give the major product formed. NHCH3 Provide the 1H NMR data for the starting material above in Question #7 and for the product generated above in Question #7. Use the format of chemical shift, integration, multiplicity (e.g. 8 1.0, 3H, triplet). Be sure to clearly label all hydrogens and which peak it corresponds to.9. Tell how many signals would be visualized in the 13C NMR spectrum of the product.

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Chapter1: Chemical Foundations
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7.
Provide the complete mechanism using Curved Arrow Formalism for the
reaction of the molecule shown below treated with Cl₂/FeCl3. Include all pertinent
resonance stabilized intermediates. Give the major product formed.
NHCH3
CI
8.
Provide the 1H NMR data for the starting material above in Question #7
and for the product generated above in Question #7. Use the format of chemical
shift, integration, multiplicity (e.g. 8 1.0, 3H, triplet). Be sure to clearly label all
hydrogens and which peak it corresponds to.9. Tell how many signals would be
visualized in the 13C NMR spectrum of the product.
Transcribed Image Text:7. Provide the complete mechanism using Curved Arrow Formalism for the reaction of the molecule shown below treated with Cl₂/FeCl3. Include all pertinent resonance stabilized intermediates. Give the major product formed. NHCH3 CI 8. Provide the 1H NMR data for the starting material above in Question #7 and for the product generated above in Question #7. Use the format of chemical shift, integration, multiplicity (e.g. 8 1.0, 3H, triplet). Be sure to clearly label all hydrogens and which peak it corresponds to.9. Tell how many signals would be visualized in the 13C NMR spectrum of the product.
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