Calculate AG° in kJ/mol for this galvanic cell. Report vOur answer with 4 significant figures You do

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Chapter1: Chemical Foundations
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R = 8.314
mol·K
F = 96,485 mot
AG = AG° + RT · In(Q)
ΔΕΔΕ-).In(O)
Half Reaction (Note: All given as reduction)
E° (V)
02 (g) + 4 H*(aq) + 4 e¯ → 2 H20 (1)
1.229
2 z" (aq)
Z2 (s) + 2 e
3+
(aq) + 3 е
0.426
A (s)
0.292
2 H20 (1) + 2 e
G2+ (aq) + 2 e
H2 (g) + 2 OH (aq)
- 0.828
G (s)
- 1.245
>
M2+ (aq) + 2 e
- 1.893
→ M (s)
A student constructs a voltaic electrochemical cell with two metal electrodes
[metal G and metal A] in their respective aqueous nitrate solutions
[G(NO3)2 and A(NO3)3].
Use this information, as well as the reduction potentials in the table above to
complete each statement below.
Consider the same cell from the above prompt.
Calculate AG° in kJ/mol for this galvanic cell.
Report your answer with 4 significant figures. You do not need to report units with your
answer. If your value is negative, make sure to include a "-" symbol.
Transcribed Image Text:R = 8.314 mol·K F = 96,485 mot AG = AG° + RT · In(Q) ΔΕΔΕ-).In(O) Half Reaction (Note: All given as reduction) E° (V) 02 (g) + 4 H*(aq) + 4 e¯ → 2 H20 (1) 1.229 2 z" (aq) Z2 (s) + 2 e 3+ (aq) + 3 е 0.426 A (s) 0.292 2 H20 (1) + 2 e G2+ (aq) + 2 e H2 (g) + 2 OH (aq) - 0.828 G (s) - 1.245 > M2+ (aq) + 2 e - 1.893 → M (s) A student constructs a voltaic electrochemical cell with two metal electrodes [metal G and metal A] in their respective aqueous nitrate solutions [G(NO3)2 and A(NO3)3]. Use this information, as well as the reduction potentials in the table above to complete each statement below. Consider the same cell from the above prompt. Calculate AG° in kJ/mol for this galvanic cell. Report your answer with 4 significant figures. You do not need to report units with your answer. If your value is negative, make sure to include a "-" symbol.
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