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. 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. ● [... ?Revlew Teples Referencen) Draw 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. ノク Imail hatucP Save and C
- 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. • 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. Previous
- Draw 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 ODraw 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 :In 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.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 Next