Predict the position of the equilibrium for the reaction and provide a brief explanation. (The acidic protons are shown in red.) &d=d& C D O Reverse direction is favored because B is better stabilized by resonance, making B the stronger base and D the weaker acid. Q Reverse direction is favored because B is better stabilized by resonance, making B the weaker base and D the stronger acid. O Forward direction is favored because B is better stabilized by resonance, making B the stronger base and D the weaker acid. O Forward direction is favored because B is better stabilized by resonance, making B the weaker base and D the stronger acid.

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3.6 Position of Equilibrium and Choice of Reagents
Predict the position of the equilibrium for the reaction and provide a brief explanation.
(The acidic protons are shown in red.)
C
D
O Reverse direction is favored because B is better stabilized by resonance, making B the stronger base and D the weaker acid.
O Reverse direction is favored because B is better stabilized by resonance, making B the weaker base and D the stronger acid.
ⒸForward direction is favored because B is better stabilized by resonance, making B the stronger base and D the weaker acid.
O Forward direction is favored because B is better stabilized by resonance, making B the weaker base and D the stronger acid.
Transcribed Image Text:3.6 Position of Equilibrium and Choice of Reagents Predict the position of the equilibrium for the reaction and provide a brief explanation. (The acidic protons are shown in red.) C D O Reverse direction is favored because B is better stabilized by resonance, making B the stronger base and D the weaker acid. O Reverse direction is favored because B is better stabilized by resonance, making B the weaker base and D the stronger acid. ⒸForward direction is favored because B is better stabilized by resonance, making B the stronger base and D the weaker acid. O Forward direction is favored because B is better stabilized by resonance, making B the weaker base and D the stronger acid.
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