Ammonia is manufactured in the Haber process by the reversible reaction between nitrogen and hydrogen - Edexcel - GCSE Chemistry Combined Science - Question 3 - 2023 - Paper 1
Question 3
Ammonia is manufactured in the Haber process by the reversible reaction between nitrogen and hydrogen.
(i) Write the balanced equation for the reversible reaction b... show full transcript
Worked Solution & Example Answer:Ammonia is manufactured in the Haber process by the reversible reaction between nitrogen and hydrogen - Edexcel - GCSE Chemistry Combined Science - Question 3 - 2023 - Paper 1
Step 1
Write the balanced equation for the reversible reaction between nitrogen and hydrogen to make ammonia, NH₃.
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Answer
The balanced equation for the reaction is:
N2(g)+3H2(g)⇌2NH3(g)
Step 2
Which row shows the typical conditions of temperature and pressure used in the Haber process?
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Answer
The correct answer is:
D 450 °C and 200 atmospheres.
Step 3
State the purpose of the iron.
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Answer
The purpose of iron in the Haber process is to act as a catalyst, which increases the rate of reaction without being consumed in the process.
Step 4
Explain how the position of equilibrium changes if the temperature is decreased.
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Answer
When the temperature is decreased, the position of the equilibrium will shift to the right, favoring the production of ammonia (NH₃). This occurs because the reaction is exothermic, meaning that lowering the temperature will favor the heat-producing side of the reaction.
Step 5
Devise an experiment to show how the position of equilibrium of this reaction is affected by temperature.
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Answer
Set up a sealed glass tube containing an equilibrium mixture of compounds A and B.
Place the sealed tube in a water bath at a controlled high temperature to ensure the equilibrium shifts to favor the formation of compound B.
Slowly lower the temperature of the water bath using ice in a beaker.
Observe and record the color change of the gas mixture in the tube.
The resulting pale brown color will indicate the shift in equilibrium towards compound A at lower temperatures, demonstrating the effect of temperature on equilibrium.