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The Nernst equation is one of the most important equations in electrochemistry.

ID: 931173 • Letter: T

Question

The Nernst equation is one of the most important equations in electrochemistry. To calculate the cell potential at non-standard-state conditions, the equation is where E is the potential in volts, Edegree is the standard potential in volts, R is the gas constant, T is the temperature in kelvins, n is the number of moles of electrons transferred, F is the Faraday constant, and Q is the reaction quotient. At standard temperature, 25 degreeC or 298 K, the equation has the form The reaction quotient has the usual form A table of standard reduction potentials gives the voltage at standard conditions, 1.00 M for all solutions and 1.00 M for all gases. The Nernst equation allows for the calculation of the cell potential E at other conditions of concentration and pressure. For the reaction what is the cell potential at 25degree if the concentrations are [Co^3+] = 0.681 M, [Co^2+] = 0.352 M, and [Cl^-] = 4.90 Times 10^2 M and the pressure of Cl_2 is P_cl_2 = 4.30 atm? Express your answer with the appropriate units.

Explanation / Answer

Q = [Co2+]2 x Pcl2 / [Co3+]2 [Cl-]2

Q = (0.352)^2 x 4.30 / (o.681)^2 x (4.90x 10^-2)^2

Q = 3872.4

Ecell = E0cell - (0.0591/n) lnQ

=> Ecell = 0.71 - (0.0591/2) ln(3872.4)

=> Ecell = 0.71 - 0.244

=> Ecell = 0.466 V <<<<<<---------(ANSWER)

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