Predict and calculate the effect of concentration changes on an equilibrium system. Some C₂H-CH₂OH is allowed to dissociate Into C&H CHO and H₂ at 523 K. At equilibrium, [CH,CH₂OH] = 0.195 M, and [CH₂CHO] [H₂] = 5.03x10-2 M. Additional CH CH₂OH is added so that [CH,CH₂OH]new = 0.319 M and the system is allowed to once again reach equilibrium. CH₂CH₂OH(g)CH₂CHO(g) + H₂(g) (a) In which direction will the reaction proceed to reach equilibrium? [ (b) What are the new concentrations of reactants and products after the system reaches equilibrium? [CH CH₂OH]-[ [C,HyCHO) [H₂] K=1.30x102 at 523 K M M M

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Predict and calculate the effect of concentration changes on an equilibrium system.
Some CH-CH₂OH is allowed to dissociate Into C&H CHO and H₂ at 523 K. At equilibrium, [C6H5CH₂OH] = 0.195
M, and [CH,CHO] [H₂] = 5.03x10-2 M. Additional C₂H-CH₂OH is added so that [CH-CH₂OH]new = 0.319 M
and the system is allowed to once again reach equilibrium.
CHCH₂OH(g)
C₂H5CHO(g) + H₂(g)
=
(a) In which direction will the reaction proceed to reach equilibrium? [
(b) What are the new concentrations of reactants and products after the system reaches equilibrium?
[CHCH₂OH]=
[CHyCHO]
[H₂]
M
K= 1.30x10 at 523 K
M
M
Transcribed Image Text:Predict and calculate the effect of concentration changes on an equilibrium system. Some CH-CH₂OH is allowed to dissociate Into C&H CHO and H₂ at 523 K. At equilibrium, [C6H5CH₂OH] = 0.195 M, and [CH,CHO] [H₂] = 5.03x10-2 M. Additional C₂H-CH₂OH is added so that [CH-CH₂OH]new = 0.319 M and the system is allowed to once again reach equilibrium. CHCH₂OH(g) C₂H5CHO(g) + H₂(g) = (a) In which direction will the reaction proceed to reach equilibrium? [ (b) What are the new concentrations of reactants and products after the system reaches equilibrium? [CHCH₂OH]= [CHyCHO] [H₂] M K= 1.30x10 at 523 K M M
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