The formation of sulphur trioxide, SO3 gas is shown in the following reaction: 2SO2 (g) + O2 (g) = 2SO3 (g) AH = -198.2 kJ By using Le Chatelier's principle, predict and explain the shift in equilibrium position, if any, when a) The pressure of the vessel is increased b) The oxygen gas is added to the system c) The neon gas is added to the system at constant volume.

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Author:Ball, David W. (david Warren), BAER, Tomas
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Chapter7: Equilibria In Multiple-component Systems
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The formation of sulphur trioxide, SO3 gas is shown in the following reaction:
2SO2 (g) + O2 (g) = 2SO3 (g)
AH = -198.2 kJ
By using Le Chatelier's principle, predict and explain the shift in equilibrium
position, if any, when
a) The pressure of the vessel is increased
b) The oxygen gas is added to the system
c) The neon gas is added to the system at constant volume.
Transcribed Image Text:The formation of sulphur trioxide, SO3 gas is shown in the following reaction: 2SO2 (g) + O2 (g) = 2SO3 (g) AH = -198.2 kJ By using Le Chatelier's principle, predict and explain the shift in equilibrium position, if any, when a) The pressure of the vessel is increased b) The oxygen gas is added to the system c) The neon gas is added to the system at constant volume.
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