1a. For the following reaction, write how the each of the changes will affect the indicated quantity, assuming a container of fixed size. For concentrations, write "increase", "decrease", or "no change". (For a chemical added, write how it would respond AFTER the addition.) NO₂(g) → 2 NO (g) + O₂(g) [NO₂] ΔΗΩ= +62kJ [NO] Change Adding NO₂ Adding NO Removing O₂ Raising the temperature Decreasing the pressure Adding a catalyst [0₂]

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Chapter1: Chemical Foundations
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1a. For the following reaction, write how the each of the changes will affect the indicated
quantity, assuming a container of fixed size. For concentrations, write "increase", "decrease",
or "no change". (For a chemical added, write how it would respond AFTER the addition.)
NO₂(g) → 2 NO (g) + O₂(g)
[NO₂]
ΔΗΩ= +62kJ
[NO]
Change
Adding NO₂
Adding NO
Removing O₂
Raising the temperature
Decreasing the pressure
Adding a catalyst
[0₂]
1b. For the reaction at a certain temperature: 3 H₂(g) + N₂(g) → 2 NH3(g), Kp = 4.3 x 10¹5.
Calculate the equilibrium partial pressure of NH3 if 0.900 atm of N₂ and 0.500 atm H₂ are placed
in a vessel and heated to this certain temperature.
Transcribed Image Text:1a. For the following reaction, write how the each of the changes will affect the indicated quantity, assuming a container of fixed size. For concentrations, write "increase", "decrease", or "no change". (For a chemical added, write how it would respond AFTER the addition.) NO₂(g) → 2 NO (g) + O₂(g) [NO₂] ΔΗΩ= +62kJ [NO] Change Adding NO₂ Adding NO Removing O₂ Raising the temperature Decreasing the pressure Adding a catalyst [0₂] 1b. For the reaction at a certain temperature: 3 H₂(g) + N₂(g) → 2 NH3(g), Kp = 4.3 x 10¹5. Calculate the equilibrium partial pressure of NH3 if 0.900 atm of N₂ and 0.500 atm H₂ are placed in a vessel and heated to this certain temperature.
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