Le Chatelier's Principle (Edexcel International AS Chemistry): Revision Note

Exam code: XCH11

Richard Boole

Written by: Richard Boole

Reviewed by: Caroline Carroll

Updated on

The Position of Equilibrium

  • The position of the equilibrium refers to the relative amounts of products and reactants in an equilibrium mixture

  • When the position of equilibrium shifts to the left, it means the concentration of reactants increases

  • When the position of equilibrium shifts to the right, it means the concentration of products increases

Le Chatelier’s principle

  • Le Chatelier’s principle says that if a change is made to a system in dynamic equilibrium, the position of the equilibrium moves to counteract this change

  • The principle is used to predict changes to the position of equilibrium when there are changes in:

    • Concentration

    • Pressure

    • Temperature

Effects of concentration

  • When the concentration of a reactant is increased:

    • The equilibrium shifts to the right to use up the excess reactant

    • This forms more products

  • When the concentration of a reactant is decreased:

    • The equilibrium shifts to the left to replace the lost reactant

    • Products are used up

  • When the concentration of a product is increased:

    • The equilibrium shifts to the left to use up the excess product

  • When the concentration of a product is decreased:

    • The equilibrium shifts to the right to replace the lost product

  • To increase the yield of a product, increase the concentration of reactants or decrease the concentration of products as they form

Worked Example

Changes in equilibrium position

Using the reaction below:

CH3COOH (I) + C2H5OH (I)  ⇌  CH3COOC2H(I) + H2O (I)

Explain what happens to the position of equilibrium when:

  1. More CH3COOC2H5 is added

  2. Some C2H5OH is removed

Using the reaction below:

Ce4+ (aq) + Fe2+ (aq) ⇌ Ce3+ (aq) + Fe3+ (aq)

  1. Explain what happens to the position of equilibrium when water is added to the equilibrium mixture

Answers

Answer 1:

  • The position of the equilibrium moves to the left and more ethanoic acid and ethanol are formed

    • The reaction moves in this direction to oppose the effect of the added ethyl ethanoate, reducing its concentration

Answer2:

  • The position of the equilibrium moves to the left and more ethanoic acid and ethanol are formed

    • The reaction moves in this direction to oppose the removal of ethanol, so more ethanol and ethanoic acid are produced from ethyl ethanoate and water

Answer 3:

  • There is no effect

  • Water dilutes all ions equally, so there is no change in the ratio of reactants to products

Effects of pressure

  • Changes in pressure only affect reactions where reactants or products are gases

  • If the number of gas moles is equal on both sides, pressure changes have no effect

Change

Direction of shift

Increase pressure

Towards the side with fewer moles of gas

Decrease pressure

Towards the side with more moles of gas

Equal moles of gas on each side

No change

Worked Example

Changes in pressure

Predict the effect of increasing the pressure on the following reactions:

  1. N2O(g) ⇌ 2NO(g)

  2. CaCO(s) ⇌ CaO (s) + CO(g)

Predict the effect of decreasing the pressure on the following reaction:

  1. 2NO(g) ⇌ 2NO (g) + O(g)

Answers

Answer 1:

  • The equilibrium shifts to the left

  • There is 1 mole of gas on the left versus 2 on the right

  • This reduces the pressure

Answer 2:

  • The equilibrium shifts to the left

  • There are no gas molecules on the left but 1 mole of CO2 gas on the right

  • This reduces the pressure

Answer 3:

  • The equilibrium shifts to the right

  • There are 2 moles of gas on the left versus 3 on the right

  • This increases the pressure, opposing the decrease

Effects of temperature

  • Increasing temperature shifts the equilibrium in the endothermic direction

  • Decreasing temperature shifts the equilibrium in the exothermic direction

Change

Direction of shift

Increase temperature

Towards the endothermic direction

Decrease temperature

Towards the exothermic direction

Worked Example

Changes in temperature

Using the reaction below:

H(g) + CO(g) ⇌  H2O (g) + CO (g)    ΔH = +41.2 kJ mol-1

  1. Predict the effect of increasing the temperature on this reaction.

Using the reaction below:

Ag2CO(s)  ⇌  Ag2O (s) + CO(g)

  1. Increasing the temperature increases the amount of CO2 (g) at constant pressure. Is this reaction exothermic or endothermic? Explain your answer.

Answers

Answer 1:

  • The forward reaction is endothermic (ΔH = +41.2 kJ mol-1)

  • Increasing temperature shifts the equilibrium to the right to absorb the extra energy

Answer 2:

  • Increasing temperature shifts the equilibrium to the right (more CO2 produced)

  • The equilibrium shifts in the endothermic direction when temperature increases, so the forward reaction is endothermic

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Richard Boole

Author: Richard Boole

Expertise: Curriculum Expert

Richard has taught Chemistry for over 15 years as well as working as a science tutor, examiner, content creator and author. He wasn’t the greatest at exams and only discovered how to revise in his final year at university. That knowledge made him want to help students learn how to revise, challenge them to think about what they actually know and hopefully succeed; so here he is, happily, at SME.

Caroline Carroll

Reviewer: Caroline Carroll

Expertise: Head of Content Delivery

Caroline graduated from the University of Nottingham with a degree in Chemistry and Molecular Physics. She spent several years working as an Industrial Chemist in the automotive industry before retraining to teach. Caroline has over 12 years of experience teaching GCSE and A-level chemistry and physics. She is passionate about delivering high-quality resources to help students achieve their full potential.