Q-19. What is the value of AH° for this reaction? 3H2(g) + O3(g) – 3H2O(1) H2(g) + ½ O2(g) → H2O(1) 302(g) → 203(g) AH°1 = -286 kJ-mol AH°2 = 271 kJ-mol %3D (B) -558 kJ•mol- (A) -15 kJ•mol- (C) -722 kJ·mol- (D) -994 kJ-mol NOlg)+ HOM) → 2HNO:) for the AH°1 = -76.6 kJ.mol1

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter18: Principles Of Chemical Reactivity: Entropy And Free Energy
Section18.7: Calculating And Using Standard Free Energies, Δfg˚
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Q-19. What is the value of AH° for this reaction?
3H2(g) + O3(g) – 3H2O(1)
H2(g) + ½ O2(g) → H2O(1)
302(g) → 203(g)
AH°1 = -286 kJ-mol
AH°2 = 271 kJ-mol
%3D
(B) -558 kJ•mol-
(A) -15 kJ•mol-
(C) -722 kJ·mol-
(D) -994 kJ-mol
NOlg)+ HOM) → 2HNO:)
for the
AH°1 = -76.6 kJ.mol1
Transcribed Image Text:Q-19. What is the value of AH° for this reaction? 3H2(g) + O3(g) – 3H2O(1) H2(g) + ½ O2(g) → H2O(1) 302(g) → 203(g) AH°1 = -286 kJ-mol AH°2 = 271 kJ-mol %3D (B) -558 kJ•mol- (A) -15 kJ•mol- (C) -722 kJ·mol- (D) -994 kJ-mol NOlg)+ HOM) → 2HNO:) for the AH°1 = -76.6 kJ.mol1
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