At 25ºC, you conduct a titration of 20.00 mL of a 0.0400 M AgNo3 solution with a 0.050 M NaI soution within the following cell: saturated calomel electrode | Titration solution | Ag (s) For the cell as written, what is the voltage after the addition of 40.00 mL of NaI solution? The reduction potential for the saturated calomel electrode is E= 0.241 V. The standard reduction potential for the reaction: Ag++e- ® Ag (s) E0= 0.79993 V. The solubility constant of AgI is Ksp=8.3x10^-17 Note: the cell potential could be negative since the conditions are non-standard ones. a) -0.146 b) -0.292 c) 0.146 d) 0.360
At 25ºC, you conduct a titration of 20.00 mL of a 0.0400 M AgNo3 solution with a 0.050 M NaI soution within the following cell: saturated calomel electrode | Titration solution | Ag (s) For the cell as written, what is the voltage after the addition of 40.00 mL of NaI solution? The reduction potential for the saturated calomel electrode is E= 0.241 V. The standard reduction potential for the reaction: Ag++e- ® Ag (s) E0= 0.79993 V. The solubility constant of AgI is Ksp=8.3x10^-17 Note: the cell potential could be negative since the conditions are non-standard ones. a) -0.146 b) -0.292 c) 0.146 d) 0.360
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At 25ºC, you conduct a titration of 20.00 mL of a 0.0400 M AgNo3 solution with a 0.050 M NaI soution within the following cell:
saturated calomel electrode | Titration solution | Ag (s)
For the cell as written, what is the voltage after the addition of 40.00 mL of NaI solution? The reduction potential for the saturated calomel electrode is E= 0.241 V. The standard reduction potential for the reaction: Ag++e- ® Ag (s)
E0= 0.79993 V. The solubility constant of AgI is Ksp=8.3x10^-17
Note: the cell potential could be negative since the conditions are non-standard ones.
a) -0.146
b) -0.292
c) 0.146
d) 0.360
e) 0.180
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