X(g) + 2Y(g) = Z(g) ' AH =+175kJmol· sion for Kc for this reaction is: K. = [Z] [X] [Y]* %3D f K, for this reaction was 2.70mol?dm“. the equilibrium mixture showed that the concentration of was 0.400moldm3 and the concentration of product Z was n3. formation provided to calculate the concentration of reactant Y m. Give your answer to an appropriate number of significant figu and explain the effect of an increase in temperature on the value = reaction.

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3. Reactants X and Y react in a reversible reaction to produce product X. The
equation for this reaction is:
X(g) + 2Y(g) = Z(g) AH=+175kJmol·"
%3D
The expression for Kc for this reaction is:
K. = [Z]
[X] [Y]²
The value of K, for this reaction was 2.70mol²dm*6.
Analysis of the equilibrium mixture showed that the concentration of
reactant X was 0.400moldm3 and the concentration of product Z was
0.350moldm3.
a. Use the information provided to calculate the concentration of reactant Y at
equilibrium. Give your answer to an appropriate number of significant figures.
b. Describe and explain the effect of an increase in temperature on the value of
Kc for this reaction.
Transcribed Image Text:3. Reactants X and Y react in a reversible reaction to produce product X. The equation for this reaction is: X(g) + 2Y(g) = Z(g) AH=+175kJmol·" %3D The expression for Kc for this reaction is: K. = [Z] [X] [Y]² The value of K, for this reaction was 2.70mol²dm*6. Analysis of the equilibrium mixture showed that the concentration of reactant X was 0.400moldm3 and the concentration of product Z was 0.350moldm3. a. Use the information provided to calculate the concentration of reactant Y at equilibrium. Give your answer to an appropriate number of significant figures. b. Describe and explain the effect of an increase in temperature on the value of Kc for this reaction.
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