Galvanic Cell — Nernst Equation

Compute the real cell potential (E_cell) of an electrochemical cell under non-standard conditions with the Nernst equation, along with K_eq, ΔG, ΔG°, and the reaction quotient Q

K ≫ 10¹⁰: reaction proceeds essentially to completion under standard conditions.

Reference Cell

Pick a classic galvanic cell or build your own

Electrons transferred

Cell operating temperature

0100

Standard reduction potential vs SHE (1 M, 25 °C)

V
-33

Ion activity in the half-cell (logarithmic scale)

M
1.000e-45
Cathode-ion stoichiometric coef.

IUPAC cell notation

Zn(s) │ Zn²⁺(1 M) ║ Cu²⁺(1 M) │ Cu(s)

Results

E cell (Nernst, real)

1.1

V
E° cell (standard)

1.1

V
ΔG (real)

-212.3

kJ/mol
Equilibrium constant K

1.541e+37

Reaction quotient Q

1

Galvanic Cell — Spontaneous Process
ΔG° (standard)-212.3kJ/mol
Max. electrical work (−ΔG)212.3kJ/mol
RT/nF factor at T0.01285V
1.1VANODE (−)Zn²⁺ (1 M)OxidationCATHODE (+)Cu²⁺ (1 M)ReductionZnCuSalt Bridge+e⁻ →

Oxidation · ANODE (−)

Zn(s) → Zn²⁺ + 2e⁻

Reduction · CATHODE (+)

Cu²⁺ + 2e⁻ → Cu(s)

Fundamentals & Explanation