(a) Calculate emf and for the following cell at 298 K:
Given: ,
[, ]
OR
(b) For the reaction:
Calculate emf of the cell at 25 °C.
Given:
[, ]
(a) Calculate emf and for the following cell at 298 K:
Given: ,
[, ]
OR
(b) For the reaction:
Calculate emf of the cell at 25 °C.
Given:
[, ]
Primary answer — part (a)
Cell:
Step 1 — Standard cell potential
Step 2 — Cell reaction and n
- , so .
Step 3 — Nernst equation ()
- , so .
Step 4 — Gibbs energy
OR — part (b) (brief)
, .
- , .
Marking Scheme
- 1(a) 1 mark: with identified.
- 2(a) 2 marks: correct and Nernst substitution giving .
- 3(a) 2 marks: () with correct sign and units.
- 4OR (b) 2 marks: ; 2 marks: ; 1 mark: .
Hint
; then with the correctly-exponentiated Q, and .
Quick Oral Answer
First with two electrons transferred; the Nernst equation with gives , and .
Analysis & Explanation
Concept — Nernst equation and
The Nernst equation links the actual cell potential to concentrations:
- at 298 K,
and the free-energy change of the working cell is (use , not , when non-standard concentrations are given).
Setting up Q correctly
- For part (a), the balanced reaction gives ; the square on is essential.
- For part (b), solids (Ag, AgCl) are omitted and H₂ enters as its partial pressure: .
Exam trap
- Forgetting the exponents in Q (the 2 in or the squares in part b) is the most common scoring error.
- Sign of : it must come out negative here because E°cell and Ecell are positive (spontaneous cell).
Real-world
The silver–silver-chloride electrode of part (b) is a widely used, stable reference electrode in pH meters and biomedical sensors.
Common Mistakes
- 1Omitting the exponent on (writing instead of ), which changes log Q and the emf.
- 2Using instead of the actual in when concentrations are non-standard.
- 3Wrong n value: the Mg–Ag cell transfers 2 electrons ( is a one-electron couple but two are reduced per ).
Interesting Facts
The Nernst equation was formulated by Walther Nernst in 1889; he won the 1920 Nobel Prize in Chemistry for his work in thermochemistry.
The factor is at — it is temperature-dependent, so cell potentials shift measurably when the temperature changes.
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Frequently Asked Questions
Why is for the Mg–Ag cell?
Magnesium loses 2 electrons () and two silver ions each gain one electron (), so two electrons are transferred per overall reaction, giving .
Do you use or in ?
When concentrations are non-standard, use the actual from the Nernst equation: . only gives (standard free energy).
How is Q written for the AgCl–H₂ reaction?
Pure solids Ag and AgCl are excluded and hydrogen appears as its partial pressure, so .