10. Between 0°C and 90°C, the potential of the cell Pt(s) | H(g. 1.00 atm) | HCl(aq, 0.100 m) | AgCl(s) Ag(s) is described by the equation: E(V) 0.35510-3.422×105 T-3.2347x10 T²+ 6.314×10 T³ where T is the temperature on the Celsius scale. Calculate A,S for the cell reaction at 50."C. a) -29.9 J/mol.°C b) -33.4 J/mol.°C c) -25.2 J/mol.°C d)-18.6J/mol C

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter19: Principles Of Chemical Reactivity: Electron Transfer Reactions
Section19.5: Electrochemical Cells Under Nonstandard Conditions
Problem 19.7CYU: The half-cells Ag+(aq. 1.0 M)|Ag(s) and H+(aq, ? M)|H2(1.0 bar) are linked by a salt bridge to...
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10. Between 0°C and 90°C, the potential of the cell Pt(s) | H:(g. 1.00 atm) | HCl(aq, 0.100
m) | AgCl(s) Ag(s) is described by the equation:
E(V) 0.35510-3.422x105 T-3.2347x10 T²+ 6.314×10 T³
where T is the temperature on the Celsius scale. Calculate A,S for the cell reaction at
50."C.
a) -29.9 J/mol.°C b)-33.4 J/mol.°C
c) -25.2 J/mol."C
d)-18.6 J/mol C
Transcribed Image Text:10. Between 0°C and 90°C, the potential of the cell Pt(s) | H:(g. 1.00 atm) | HCl(aq, 0.100 m) | AgCl(s) Ag(s) is described by the equation: E(V) 0.35510-3.422x105 T-3.2347x10 T²+ 6.314×10 T³ where T is the temperature on the Celsius scale. Calculate A,S for the cell reaction at 50."C. a) -29.9 J/mol.°C b)-33.4 J/mol.°C c) -25.2 J/mol."C d)-18.6 J/mol C
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