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Q.Copper sulphate cannot be stored in zinc vessel. This is because

(a) EMF of the reaction is negative
(b) EMF of the reaction is positive
(c) reduction potential value of Zn is more than Cu
(d) reduction potential value of Cu is negative
Meghalaya MboseMBOSE Meghalaya Intermediate Board 2026MCQ· 1mImportance★★★★★
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Zinc's much lower (more negative) standard reduction potential than copper's makes the displacement reaction's EMF positive, i.e. spontaneous — which is exactly why ZnZn metal corrodes when it touches CuSO4CuSO_4 solution.

Standard reduction potentials: E∘(Cu2+/Cu)=+0.34 VE^{\circ}(Cu^{2+}/Cu) = +0.34\ V; E∘(Zn2+/Zn)=−0.76 VE^{\circ}(Zn^{2+}/Zn) = -0.76\ V. Since Zn2+/ZnZn^{2+}/Zn has the far more negative (lower) reduction potential, ZnZn metal is the stronger reducing agent and is oxidised preferentially:

Zn(s)+Cu2+(aq)→Zn2+(aq)+Cu(s)Zn(s) + Cu^{2+}(aq) \rightarrow Zn^{2+}(aq) + Cu(s)

Ecell∘=Ecathode∘−Eanode∘=0.34−(−0.76)=+1.10 VE^{\circ}_{cell} = E^{\circ}_{cathode} - E^{\circ}_{anode} = 0.34-(-0.76) = +1.10\ V

Since ΔG∘=−nFEcell∘\Delta G^{\circ} = -nFE^{\circ}_{cell}, a positive Ecell∘E^{\circ}_{cell} gives a negative ΔG∘\Delta G^{\circ} — the reaction is thermodynamically spontaneous. So CuSO4CuSO_4 solution spontaneously reacts with a zinc container, dissolving the zinc (corroding it) and depositing copper metal on it.

Why the other options are wrong: …

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