Compound AG° (kJ/mol) -665.9 NH4HCO3(s) NH3(g) -16.45 CO2(g) H20(!) -394.4 -237.1 Consider the given reaction: NH3(g) + CO2(g) + H20(!) = NH4HCO3(s) Calculate AG at 298K for this reaction when the pressures of NH3 and CO2 are 0.52 atm and 0.31 atm, respectively. O 22.5 kJ -26.7 kJ -13.4 kJ 13.4 kJ O -22.5 kJ

Chemistry & Chemical Reactivity
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Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter18: Principles Of Chemical Reactivity: Entropy And Free Energy
Section18.6: Gibbs Free Energy
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Compound
AG° (kJ/mol)
-665.9
NH4HCO3(s)
NH3(g)
CO2(9)
H20(!)
-16.45
-394.4
-237.1
Consider the given reaction:
NH3(g) + CO2(g) + H20(!) = NH4HCO3(s)
Calculate AG at 298K for this reaction when the pressures of NH3 and CO2 are 0.52 atm and 0.31 atm, respectively.
22.5 kJ
-26.7 kJ
-13.4 kJ
13.4 kJ
O -22.5 kJ
Transcribed Image Text:Compound AG° (kJ/mol) -665.9 NH4HCO3(s) NH3(g) CO2(9) H20(!) -16.45 -394.4 -237.1 Consider the given reaction: NH3(g) + CO2(g) + H20(!) = NH4HCO3(s) Calculate AG at 298K for this reaction when the pressures of NH3 and CO2 are 0.52 atm and 0.31 atm, respectively. 22.5 kJ -26.7 kJ -13.4 kJ 13.4 kJ O -22.5 kJ
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