26. Use Hess's law to calculate AG°rxn using the following information. NO(g) + O(g) → NO2(g) AG°rxn = ? 203(g) 3 O2(g) O2(g) 20(g) AG°rxn = +489.6 kJ AG°rxn=+463.4 kJ NO(g) + O3(g) NO2(g) + O2(g) AG°rxn= = -199.5 kJ A) +753.5 kJ B) +277.0 kJ C) -676.0 kJ D) -1152.5 kJ E)-225.7 kJ

Chemistry: Matter and Change
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Author:Dinah Zike, Laurel Dingrando, Nicholas Hainen, Cheryl Wistrom
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Chapter15: Energy And Chemical Change
Section15.3: Thermonuclear Equations
Problem 27SSC
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26. Use Hess's law to calculate AG°rxn using the following information.
NO(g) + O(g) → NO2(g)
AG°rxn = ?
203(g) 3 O2(g)
O2(g)
20(g)
AG°rxn = +489.6 kJ
AG°rxn=+463.4 kJ
NO(g) + O3(g)
NO2(g) + O2(g)
AG°rxn=
= -199.5 kJ
A) +753.5 kJ
B) +277.0 kJ
C) -676.0 kJ
D) -1152.5 kJ
E)-225.7 kJ
Transcribed Image Text:26. Use Hess's law to calculate AG°rxn using the following information. NO(g) + O(g) → NO2(g) AG°rxn = ? 203(g) 3 O2(g) O2(g) 20(g) AG°rxn = +489.6 kJ AG°rxn=+463.4 kJ NO(g) + O3(g) NO2(g) + O2(g) AG°rxn= = -199.5 kJ A) +753.5 kJ B) +277.0 kJ C) -676.0 kJ D) -1152.5 kJ E)-225.7 kJ
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