The chemical equation for calcium oxide and calcium carbonate equilibrium is described below. kJ CaO(s) + CO2(8) = CACO3(s) ΔΗ = -176 mol Predict how the following changes would shift the equilibria. Be sure to start by writing the equilibrium (K) equation. Increased carbon dioxide concentration v [ Choose ] equilibrium will be unaffected equilibrium will shift to the left Increased partial pressure of carbon dioxide equilibrium will shift to the right One half of the calcium carbonate is [Choose] removed Total pressure is decreased [Choose] Catalyst is added [Choose] Temperature is increased [Choose]

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Chapter1: Chemical Foundations
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The chemical equation for calcium oxide and calcium carbonate equilibrium is described below.
kJ
CaO(s) + CO2(8) = CACO3(s)
ΔΗ
= -176
mol
Predict how the following changes would shift the equilibria. Be sure to start by writing the
equilibrium (K) equation.
Increased carbon dioxide concentration
v [ Choose ]
equilibrium will be unaffected
equilibrium will shift to the left
Increased partial pressure of carbon dioxide
equilibrium will shift to the right
One half of the calcium carbonate is
[Choose]
removed
Total pressure is decreased
[Choose]
Catalyst is added
[Choose]
Temperature is increased
[Choose]
Transcribed Image Text:The chemical equation for calcium oxide and calcium carbonate equilibrium is described below. kJ CaO(s) + CO2(8) = CACO3(s) ΔΗ = -176 mol Predict how the following changes would shift the equilibria. Be sure to start by writing the equilibrium (K) equation. Increased carbon dioxide concentration v [ Choose ] equilibrium will be unaffected equilibrium will shift to the left Increased partial pressure of carbon dioxide equilibrium will shift to the right One half of the calcium carbonate is [Choose] removed Total pressure is decreased [Choose] Catalyst is added [Choose] Temperature is increased [Choose]
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