Consider the following exothermic reaction system at equilibrium: N2(g) + 3H2(g) 2NH3(g) Predict how the following changes affect the number of moles of each component of the system after equilibrium is reestablished by completing the table below: Note: Use I for increase, D for decrease, NC for no change Add N₂(g) Remove H₂(g) Add NH3(g) Add He(g) Increase the temperature (constant P) Decrease the volume (constant T) Add a catalyst N₂ H₂ NH3

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Chapter1: Chemical Foundations
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Consider the following exothermic
reaction system at equilibrium: N2(g) +
3H2(g) 2NH3(g) Predict how the
following changes affect the number
of moles of each component of the
system after equilibrium is
reestablished by completing the table
below: Note: Use I for increase, D for
decrease, NC for no change
Add N₂(g)
Remove H₂(g)
Add NH3(g)
Add He(g)
G
Increase the temperature (constant P)
Decrease the volume (constant T)
Add a catalyst
N₂
Ć
H₂
NH3
Transcribed Image Text:Consider the following exothermic reaction system at equilibrium: N2(g) + 3H2(g) 2NH3(g) Predict how the following changes affect the number of moles of each component of the system after equilibrium is reestablished by completing the table below: Note: Use I for increase, D for decrease, NC for no change Add N₂(g) Remove H₂(g) Add NH3(g) Add He(g) G Increase the temperature (constant P) Decrease the volume (constant T) Add a catalyst N₂ Ć H₂ NH3
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