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Draw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. (please show which structure I need to put as the answer).
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- Draw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. CH3 CH3 CH3COCI/ AICI3 H₂C. You do not have to consider stereochemistry. Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one.Draw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. LOCH3 LOCH3 HNO3 / CH3CO₂H O₂N • You do not have to consider stereochemistry. • Include all valence lone pairs in your answer. ● In cases where there is more than one answer, just draw one.Draw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. CI CI HNO3 / H2SO4 O2N You do not have to consider stereochemistry. • Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one.
- Draw the least stable resonance form for the intermediate in the following electrophilic substitution reaction. CEN Br₂/FeBra • You do not have to consider stereochemistry. Include all valence lone pairs in your answer. In cases where there is more than one answer, just draw one. Br CEN IDraw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. CH3O + You do not have to consider stereochemistry. • Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one. ? [F H3PO4 CH3O OHDraw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. H3PO4 CH3O CH3O • You do not have to consider stereochemistry. • Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one. +opy aste C P - [F Fo OH
- Draw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. CH3 Br2 / FeBr3 • You do not have to consider stereochemistry. Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one. OO. #[ ] در ChemDoodle CH3 BrDraw the least stable resonance form for the intermediate in the following electrophilic substitution reaction. NO₂ C Br₂ / FeBr3 Br • You do not have to consider stereochemistry. Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one. NO₂Consider this reaction: Br CH;OH Br-Br H3CO The mechanism proceeds through a first cationic intermediate, intermediate 1. Nucleophilic attack leads to intermediate 2, which goes on to form the final product. In cases that involve a negatively charged nucleophile, the attack of the nucleophile leads directly to the product. Br + CH3OH Br Intermediate 1 Intermediate 2 (product) In a similar fashion, draw intermediate 1 and intermediate 2 (final product) for the following reaction. OH + Br2 + HBr Br racemic mixture
- Draw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. OH CH3 + + H3C CH₂ CH3 First stage in synthesis of the preservative BHT • You do not have consider stereochemistry. • Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one. ▼ H3PO4 ? OH CH3 CH3 CH3 CH3Consider this reaction: Br CH3OH Br-Br H3CO The mechanism proceeds through a first cationic intermediate, intermediate 1. Nucleophilic attack leads to intermediate 2, which goes on to form the final product. In cases that involve a negatively charged nucleophile, the attack of the nucleophile leads directly to the product. H. Br + CH;OH Br Intermediate 2 (product) Intermediate 1 In a similar fashion, draw intermediate 1 and intermediate 2 (final product) for the following reaction. OH + Br2 + HBr Br racemic mixtureDraw the most stable resonance form for the intermediate in the following electrophilic substitution reaction. OH CCI3 H2SO4 CCI3 CI- First stage in synthesis of the insecticide DDT, which is now banned in the US You do not have to consider stereochemistry. Include all valence lone pairs in your answer. • In cases where there is more than one answer, just draw one.