50. If the partial pressure of each gas is equal to 1.00×10-2 atm at 298 K, calculate AG for the reaction below. AGF (kJ/mol) a) -42.57 kJ b) +42.57 kJ c) -31.16 kJ d) +31.16 kJ e) none of the above 3 NO2(g) + H₂O(1)→ 2 HNO3(1) + NO(g) 237.18 86.55 -51.29 -80.76
50. If the partial pressure of each gas is equal to 1.00×10-2 atm at 298 K, calculate AG for the reaction below. AGF (kJ/mol) a) -42.57 kJ b) +42.57 kJ c) -31.16 kJ d) +31.16 kJ e) none of the above 3 NO2(g) + H₂O(1)→ 2 HNO3(1) + NO(g) 237.18 86.55 -51.29 -80.76
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![50. If the partial pressure of each gas is equal to 1.00×10-2 atm at 298 K, calculate AG for the
reaction below.
AGF (kJ/mol)
a) -42.57 kJ
b) +42.57 kJ
c) -31.16 kJ
d) +31.16 kJ
e) none of the above
3 NO2(g) + H₂O(1)→
-51.29 237.18
2 HNO3(1) + NO(g)
-80.76 86.55](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa562074b-0201-41df-9a64-26eda42f1fac%2Fd48992fa-b394-4278-812a-f39309030084%2Fvcr6bhd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:50. If the partial pressure of each gas is equal to 1.00×10-2 atm at 298 K, calculate AG for the
reaction below.
AGF (kJ/mol)
a) -42.57 kJ
b) +42.57 kJ
c) -31.16 kJ
d) +31.16 kJ
e) none of the above
3 NO2(g) + H₂O(1)→
-51.29 237.18
2 HNO3(1) + NO(g)
-80.76 86.55
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