Consider the reaction N₂(g) +20₂(g)- >2NO₂(g) Use the standard thermodynamic data in the tables linked above. Calculate AG for this reaction at 298.15K if the pressure of NO₂(g) is reduced to 16.22 mm Hg, while the pressures of N₂(g) and O₂(g) remain at 1 atm. ANSWER: I kJ/mol

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Consider the reaction
N₂(g) + 20₂(g)- >2NO₂(g)
Use the standard thermodynamic data in the tables linked above. Calculate AG for this reaction at 298.15K if the pressure of NO₂(g) is
reduced to 16.22 mm Hg, while the pressures of N₂(g) and O₂(g) remain at 1 atm.
ANSWER: I
kJ/mol
Transcribed Image Text:Consider the reaction N₂(g) + 20₂(g)- >2NO₂(g) Use the standard thermodynamic data in the tables linked above. Calculate AG for this reaction at 298.15K if the pressure of NO₂(g) is reduced to 16.22 mm Hg, while the pressures of N₂(g) and O₂(g) remain at 1 atm. ANSWER: I kJ/mol
Consider the reaction
2N₂(g) + O₂(g)2N₂O(g)
Using the standard thermodynamic data in the tables linked above, calculate AGrxn for this reaction at 298.15K if the pressure of each gas is
13.01 mm Hg.
ANSWER: I
kJ/mol
Transcribed Image Text:Consider the reaction 2N₂(g) + O₂(g)2N₂O(g) Using the standard thermodynamic data in the tables linked above, calculate AGrxn for this reaction at 298.15K if the pressure of each gas is 13.01 mm Hg. ANSWER: I kJ/mol
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