C6H5CHO reacts with H₂ to form CHÁCH₂OH. The equilibrium constant, Kp, for this reaction is 1.79 at 523 K. C₂H₂CHO(g) + H₂(g) 2 C₂H₂CH₂OH(g) The standard enthalpy change for this reaction (AHº) is -55.5 kJ/mol. (a) Predict the effect on the production of C6H5CH₂OH when the temperature of the equilibrium system is increased. (b) Use the van't Hoff equation to estimate the equilibrium constant for this reaction at 632 K. Kp at 632 K =

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Chapter14: Chemical Equilibrium
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C6H5CHO reacts with H₂ to form C6H5CH₂OH. The equilibrium constant, Kp, for this reaction is 1.79 at
523 K.
C6H5CHO(g) + H₂(g) 2CH₂CH₂OH(g)
The standard enthalpy change for this reaction (AHº) is -55.5 kJ/mol.
(a) Predict the effect on the production of C6H₂CH₂OH when the temperature of the equilibrium system
is increased.
ŵ
(b) Use the van't Hoff equation to estimate the equilibrium constant for this reaction at 632 K.
Kp at 632 K
=
Transcribed Image Text:C6H5CHO reacts with H₂ to form C6H5CH₂OH. The equilibrium constant, Kp, for this reaction is 1.79 at 523 K. C6H5CHO(g) + H₂(g) 2CH₂CH₂OH(g) The standard enthalpy change for this reaction (AHº) is -55.5 kJ/mol. (a) Predict the effect on the production of C6H₂CH₂OH when the temperature of the equilibrium system is increased. ŵ (b) Use the van't Hoff equation to estimate the equilibrium constant for this reaction at 632 K. Kp at 632 K =
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