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Changes Which Affect the Equilibrium Simplified Revision Notes

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1.8.5 Changes Which Affect the Equilibrium

Factors Affecting KcK_c

The value of the equilibrium constant, KcK_c, is influenced only by temperature changes. Changes in concentration or the addition of a catalyst do not affect the value of KcK_c

Effect of Temperature

Temperature plays a crucial role in shifting the equilibrium and changing the value of KcK_c. The direction of the shift depends on whether the reaction is exothermic or endothermic.

For an Exothermic Reaction ( ΔH<0\Delta H < 0 ):

  • Increasing the temperature shifts the equilibrium toward the reverse reaction, which is endothermic. This reduces the concentration of the products and increases the concentration of the reactants, causing the value of KcK_c to decrease.

  • Decreasing the temperature favours the forward reaction, increasing the concentration of the products and reducing the concentration of the reactants. This causes KcK_c to increase. For an Endothermic Reaction ( ΔH>0\Delta H > 0 ):

  • Increasing the temperature shifts the equilibrium to the forward reaction, raising the concentration of the products and increasing KcK_c

  • Decreasing the temperature shifts the equilibrium to the reverse reaction, reducing the product concentration and lowering KcK_c

infoNote

Example: For the reaction

2SO2(g)+O2(g)2SO3(g)2SO_2(g) + O_2(g) \rightleftharpoons 2SO_3(g) ΔH=:highlight[197kJ/mol]\quad \Delta H = :highlight[-197 \, kJ/mol]

Increasing temperature shifts the equilibrium to the left (reverse reaction), causing KcK_c to decrease.

Decreasing temperature shifts the equilibrium to the right (forward reaction), causing KcK_c to increase.

Factors That Do Not Affect KcK_c

Change in Concentration

Changes in the concentration of reactants or products do not affect KcK_c. When concentration changes occur, the system adjusts to maintain the equilibrium constant by shifting the position of equilibrium according to Le Chatelier's principle.

Addition of a Catalyst

A catalyst speeds up both the forward and reverse reactions equally, allowing the system to reach equilibrium faster. However, it does not change the equilibrium position or the value of KcK_c.

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