Write structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. H • You do not have to consider stereochemistry. • Draw the enolate nucleophile in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop- down menu in the bottom right corner. • Separate structures with + signs from the drop-down menu.
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- Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. TH • You do not have to consider stereochemistry. • Draw the enolate ion in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate multiple reactants using the + sign from the drop-down menu. C opy ate OF ChemDoodleDraw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. You do not have to consider stereochemistry. Draw the enolate ion in its carbanion form." • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate multiple reactants using the+ sign from the drop-down menu. opy aate opy aste ChemDoodle" ChemDoodleDraw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. CE O • You do not have to consider stereochemistry. • Draw the enolate ion in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate multiple reactants using the + sign from the drop-down menu. ● [... ?
- Write structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. • You do not have to consider stereochemistry. • Draw the enolate nucleophile in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate structures with + signs from the drop-down menu.Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. • You do not have to consider stereochemistry. • Draw the enolate ion in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate multiple reactants using the + sign from the drop-down menu. *** 4 O-SIF YDraw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. me > . You do not have to consider stereochemistry. • Draw the enolate ion in its carbanion form. Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate multiple reactants using the + sign from the drop-down menu. . . D ☺ *** ChemDoodle Sn [F O
- Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. • You do not have to consider stereochemistry. • Draw the enolate ion in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate multiple reactants using the + sign from the drop-down menu. PreviousDraw structures for the carbonyl electrophile and enolate nucleophile that react to give the aldol or enone below. • You do not have to consider stereochemistry. • Draw the enolate ion in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate multiple reactants using the + sign from the drop-down menu. ChemDoodle Submit Answer Retry Entire Group 7 more group attampts remalningWrite structures for the carbonyl electrophile and enolate nucleophile that react to give the aldol below. ОН You do not have to consider stereochemistry. • Draw the enolate nucleophile in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. • Separate multiple reactants using the + sign from the drop-down menu.
- Complete the mechanism for the given base-catalyzed formation of a hemiacetal from cyclopentanecarbaldehyde and sodium methoxide in methanol by adding any missing atoms, bonds, charges, nonbonding electrons, and curved arrows. Step 1: complete the structure and add Step 2: complete the structure and add curved arrows. curved arrows. Select Draw Rings More Erase Select Draw Rings More Erase C H C H H. 1L :o - I :o :t t Draw structures for the carbonyl electrophile and enolate nucleophile that react to give the enone below. t 0 t ot ot pt • You do not have to consider stereochemistry. . Draw the enolate ion in its carbanion form. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate multiple reactants using the + sign from the drop-down menu. 9985 F ? Previous NextIn Part 1 add the curved arrows to the nucleophilic acyl substitution reaction mechanism. In Part 2, answer the multiple-choice question about the reaction in Part 1. Part 1 See Periodic Table O See Hint :ö: :Br: Add the missing curved arrow notation. 20 F CI Br I Part 2 Which statement is most correct regarding the equilibrium for the above reaction? Choose one: O The equilibrium favors the right (i.e., Kea > 1) because acetate is a better leaving group than bromide. O The equilibrium favors the right (i.e., Keg > 1) because bromide is a better leaving group than acetate. O The equilibrium favors the left (i.e. Keg « 1) because acetate is a better leaving group than bromide. O The equilibrium favors the left (i.e., Keg« 1) because bromide is a better leaving group than acetate.