Given the standard cell potential for this cell is 0.115 V, and the measured cell potential is 0.0925, what is the concentration of chloride ions in the solution?

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Author:Steven S. Zumdahl
Publisher:Steven S. Zumdahl
Chapter18: Electrochemistry
Section: Chapter Questions
Problem 153CP: Consider the following galvanic cell: A 15 0-mole sample of NH is added to the Ag compartment...
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Question 10.d of 14
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M Cu2* as the second half cell
Cu²*(aq) + 2 e¯ → Cu(s) E°red=
0.337 V
The measured cell potential when
the water sample was placed into
the silver side of the cell was
0.0925 V.
Given the standard cell potential for
this cell is 0.115 V, and the
measured cell potential is 0.0925,
what is the concentration of
chloride ions in the solution?
| M
1
2
3
C
7
9.
+/-
x 10 0
LO
00
Transcribed Image Text:Question 10.d of 14 Submit M Cu2* as the second half cell Cu²*(aq) + 2 e¯ → Cu(s) E°red= 0.337 V The measured cell potential when the water sample was placed into the silver side of the cell was 0.0925 V. Given the standard cell potential for this cell is 0.115 V, and the measured cell potential is 0.0925, what is the concentration of chloride ions in the solution? | M 1 2 3 C 7 9. +/- x 10 0 LO 00
Question 10.d of 14
Submit
A student wishes to determine the
chloride ion concentration in a
water sample at 25 °C using a
galvanic cell constructed with a
graphite electrode and a half-cell of
AGCI(s) + e¯ → Ag(s) + Cl"(aq)
E°red = 0.2223 V
And a copper electrode with 0.500
M Cu2* as the second half cell
Cu²*(aq) + 2 e → Cu(s) E°red=
0.337 V
The measured cell potential when
the water sample was placed into
M
1
2
3
C
7
9.
+/-
x 10 0
LO
00
Transcribed Image Text:Question 10.d of 14 Submit A student wishes to determine the chloride ion concentration in a water sample at 25 °C using a galvanic cell constructed with a graphite electrode and a half-cell of AGCI(s) + e¯ → Ag(s) + Cl"(aq) E°red = 0.2223 V And a copper electrode with 0.500 M Cu2* as the second half cell Cu²*(aq) + 2 e → Cu(s) E°red= 0.337 V The measured cell potential when the water sample was placed into M 1 2 3 C 7 9. +/- x 10 0 LO 00
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