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Draw the curved arrows for the resonance stabilization of the enolate anion. Provide the structure for the second resonance form.
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- Draw the curved arrow(s) to depict the formation of the keto form of an enolate ion via a strong base, B. Complete the resonance structures of the enolate anion\'s keto and enolate forms with bonds, charges, and nonbonding electron pairs. Use curved arrows to show how the keto form resonates to the enolate form.Draw an appropriate alkyl halide and a nucleophile in conjugate base form that are required to give methyl phenyl ether.Draw a stepwise mechanism for the following reaction. This reaction combines two processes together: the opening of an epoxide ring with a nucleophile and the addition of an electrophile to a carbon–carbon double bond. (Hint: Begin the mechanism by protonating the epoxide ring.)
- Draw the neutral organic product of the reaction.How to draw any nucleophilic substitution product ?Draw a stepwise mechanism for the following reaction. This reaction combines two processes: the opening of an epoxide ring with a nucleophile and the addition of an electrophile to a carbon–carbon double bond. (Hint: Begin the mechanism by protonating the epoxide ring.)
- If you answered "yes" for the first susbtrate, draw the intermediate that forms during a nucleophilic substitution reaction in the space below the table.n 16 of 17 > Question Organic Chemistry Maxwell presented by Macmillan Learning Draw curved arrows to depict the formation of the keto form of an enolate ion via a strong base, represented by B. Complete the resonance structures of the enolate anion's keto and enolate forms with bonds, charges, and nonbonding electron pairs. Use curved arrows to show how the keto form resonates to the enolate form. Do not delete any pre-drawn bonds, charges, or lone pairs. If you accidentally delete a vital part of the structure, click the undo button in the lower left. Step 1: Add curved arrows to show the formation Step 2: Complete the resonance structure of the of the keto form. keto form, then add curved arrows. Select Draw Rings More Erase Select Draw Rings More Erase H B B : B BH MacBook Pro G Search or type URL & $ 7 8 9. 4 Y U R K D F G ? N + .. .. 1L I Bdraw the major organic product of the Bronsted acid-base reaction. Include all lone pairs and charges as appropriate. Ignore any counterions.
- Complete the curved arrow mechanism of the following double elimination reaction when 2,2-dichloro-3,3-dimethylbutane is treated with two equivalents of sodium amide and heated in mineral oil. A.) Use three curved arrows to show the elimination of the first hydrogen chloride. B.) Use three curved arrows to show the elimination of the second hydrogen chloride. C.) Complete the structure of the organic product formed from the double elimination. The ammonia and chloride ion formed in step 1 is not drawn for clarity.Draw the stepwise, arrow-pushing mechanism for the following reaction. Show each step with arrows indicating eleectron movement.2. Draw the mechanism of the base-catalyzed aldol condensation reaction of two molecules of acetone using the arrow formalism.