13) Calculate the AG, AG°f (kJ/mol) rxn at 298 K using the following information. A) -990.6 kJ 2 H₂S(g) + 3 O2(g) → 2 SO2(g) + 2 H₂O(g) -33.4 -300.1 -228.6 B) +112.4 kJ C) +66.8 kJ AG rxn = ? D) -528.7 kJ E) -495.3 kJ

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13) Calculate the AGᵒrxn at 298 K using the following information.
2 H2S(g) + 3 O2(g) → 2 SO2(g) + 2 H₂O(g)
- 33.4
-300.1
-228.6
AG°f (kJ/mol)
A) -990.6 kJ
B) +112.4 kJ
C) +66.8 kJ
2A1 (s) + 312 (s)
AG°r
rxn
?
D) -528.7 kJ
14) The standard cell potential for the cell using the overall cell reaction below is +2.20 V:
2A13+ (aq) + 61- (aq)
The voltage generated by the cell when [A13+] = 4.5 × 10-3 M and [I-] = 0.15 Mis
A) 2.32
B) 2.10
C) 2.39
D) 2.20
E) -495.3 kJ
V.
E) 2.23
Transcribed Image Text:13) Calculate the AGᵒrxn at 298 K using the following information. 2 H2S(g) + 3 O2(g) → 2 SO2(g) + 2 H₂O(g) - 33.4 -300.1 -228.6 AG°f (kJ/mol) A) -990.6 kJ B) +112.4 kJ C) +66.8 kJ 2A1 (s) + 312 (s) AG°r rxn ? D) -528.7 kJ 14) The standard cell potential for the cell using the overall cell reaction below is +2.20 V: 2A13+ (aq) + 61- (aq) The voltage generated by the cell when [A13+] = 4.5 × 10-3 M and [I-] = 0.15 Mis A) 2.32 B) 2.10 C) 2.39 D) 2.20 E) -495.3 kJ V. E) 2.23
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