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Answer the following in brief · Q6

Q.vi. Using the relationsip between ΔG0\Delta G^0 of cell reaction and the standard potential associated with it, how will you show that the electrical potential is an intensive property ?

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Step 1. From ΔG0=−nFEcell0\Delta G^0=-nFE^0_{cell}, we get Ecell0=−ΔG0nFE^0_{cell}=-\dfrac{\Delta G^0}{nF}.

Step 2. ΔG0\Delta G^0 is EXTENSIVE — if the balanced equation is multiplied by 2 (double the amounts reacting), ΔG0\Delta G^0 also doubles.

Step 3. But the number of electrons transferred, nn, ALSO doubles when the equation is multiplied by 2.

Step 4. So Ecell0=−2ΔG02nF=−ΔG0nFE^0_{cell}=-\dfrac{2\Delta G^0}{2nF}=-\dfrac{\Delta G^0}{nF} — exactly the same value as before scaling. …

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