An electrochemical cell with the given line notation was constructed. S.C.E. || cell solution | Pt(s) The cell solution has a total volume of 1 L, a pH of 6.85, and is composed of 0.0019 M Ce(SO,),, 0.0011 M CeClą, and 0.0045 M Na, EDTA. The cell has a voltage of 0.242 V . Write the reaction for the right half-cell as a reduction and provide its standard reduction potential (E°). right half-cell reaction: Ce+ +e¯ → Ce3+ E° = Calculate the quotient for the uncomplexed ions, [Ce³+]/ [Ce++] , in the cell solution. [Ce3+] %3D [Ce++] Determine the formation constant quotient, K¡ (CEEDTA)/K¡ (CEEDTA¯). Kf (CEEDTA) K; (CEEDTA

Principles of Modern Chemistry
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ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter17: Electrochemistry
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An electrochemical cell with the given line notation was constructed.
S.C.E. Il cell solution | Pt(s)
The cell solution has a total volume of 1 L, a pH of 6.85, and is composed of 0.0019 M Ce(SO,),, 0.0011 M CeClą, and
0.0045 M Na, EDTA. The cell has a voltage of 0.242 V.
Write the reaction for the right half-cell as a reduction and provide its standard reduction potential (E°).
right half-cell reaction: Ce+ +e →
Ce3+
E° =
V
Calculate the quotient for the uncomplexed ions, [Ce+] /[Ce++], in the cell solution.
[Ce+]
[Ce+]
=
Determine the formation constant quotient, Kf (CEEDTA)/K¡ (CeEDTA-).
Kf (CEEDTA)
Kf (CEEDTA
Transcribed Image Text:An electrochemical cell with the given line notation was constructed. S.C.E. Il cell solution | Pt(s) The cell solution has a total volume of 1 L, a pH of 6.85, and is composed of 0.0019 M Ce(SO,),, 0.0011 M CeClą, and 0.0045 M Na, EDTA. The cell has a voltage of 0.242 V. Write the reaction for the right half-cell as a reduction and provide its standard reduction potential (E°). right half-cell reaction: Ce+ +e → Ce3+ E° = V Calculate the quotient for the uncomplexed ions, [Ce+] /[Ce++], in the cell solution. [Ce+] [Ce+] = Determine the formation constant quotient, Kf (CEEDTA)/K¡ (CeEDTA-). Kf (CEEDTA) Kf (CEEDTA
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