Question 6 The voltaic cell described by the notation below measured a potential of 1.8 V. If the reaction was maintained at 30°C, calculate the standard reduction potential of the cathode half-cell. | J2- (1.50 M) | J() || Ag* (0.047 M) | Ag(s) Pt(s) | (Use R = 8.314 J/mol-K; F = 96485 C/mol) Express your answer with 3 decimal places and do not encode the units. If negative, include the sign in your encoded answer.

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Question 6
The voltaic cell described by the notation below measured a potential of 1.8 V. If the reaction was maintained at 30°C, calculate the standard reduction potential of the cathode half-cell.
Pt(s) | J2-(1.50 M) | J(1) || Ag* (0.047 M) | Ag(s)
(Use R = 8.314 J/mol-K; F = 96485 C/mol)
Express your answer with 3 decimal places and do not encode the units. If negative, include the sign in your encoded answer.
Transcribed Image Text:Question 6 The voltaic cell described by the notation below measured a potential of 1.8 V. If the reaction was maintained at 30°C, calculate the standard reduction potential of the cathode half-cell. Pt(s) | J2-(1.50 M) | J(1) || Ag* (0.047 M) | Ag(s) (Use R = 8.314 J/mol-K; F = 96485 C/mol) Express your answer with 3 decimal places and do not encode the units. If negative, include the sign in your encoded answer.
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