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NCERT Exemplar · Q9

Q.Use the data given in Q.8 (ECr2O72−/Cr3+∘=1.33 VE^\circ_{Cr_2O_7^{2-}/Cr^{3+}} = 1.33\ V; ECl2/Cl−∘=1.36 VE^\circ_{Cl_2/Cl^-} = 1.36\ V; EMnO4−/Mn2+∘=1.51 VE^\circ_{MnO_4^-/Mn^{2+}} = 1.51\ V; ECr3+/Cr∘=−0.74 VE^\circ_{Cr^{3+}/Cr} = -0.74\ V) and find out which of the following is the strongest oxidising agent.

(i) Cl−Cl^-
(ii) Mn2+Mn^{2+}
(iii) MnO4−MnO_4^-
(iv) Cr3+Cr^{3+}
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The strongest oxidising agent is the species with the highest standard reduction potential. Among the given options, MnO4−MnO_4^- has E∘=+1.51 VE^\circ = +1.51\ V, the largest value, so it is the strongest oxidising agent. The correct option is (iii).

The question asks us to identify the strongest oxidising agent from a list of four species. An oxidising agent is a substance that gains electrons (gets reduced) in a redox reaction. The tendency of a species to get reduced is measured by its standard reduction potential (E∘E^\circ). The more positive the E∘E^\circ value, the stronger the oxidising agent.

We are given the standard reduction potentials for four half-reactions. But note: the options include both the oxidised and reduced forms of some couples. Let’s map each option to the relevant half-reaction and its E∘E^\circ value.

  1. Option (i): Cl−Cl^- This is the reduced form of the Cl2/Cl−Cl_2/Cl^- couple. The half-reaction is:

Cl2+2e−→2Cl−E∘=+1.36 VCl_2 + 2e^- \rightarrow 2Cl^- \quad E^\circ = +1.36\ V

Cl−Cl^- itself is already reduced — it would need to lose electrons to act as an oxidising agent, which is not favourable. So Cl−Cl^- is a very weak oxidising agent (in fact, it is a reducing agent). Its oxidising strength is negligible here.

  1. Option (ii): Mn2+Mn^{2+} This is the reduced form of the MnO4−/Mn2+MnO_4^-/Mn^{2+} couple. The half-reaction is:

MnO4−+8H++5e−→Mn2++4H2OE∘=+1.51 VMnO_4^- + 8H^+ + 5e^- \rightarrow Mn^{2+} + 4H_2O \quad E^\circ = +1.51\ V

Mn2+Mn^{2+} is the product after reduction — to act as an oxidising agent, it would need to be further reduced (to Mn metal or lower oxidation state), but that is not the relevant couple here. The Mn2+Mn^{2+} ion is a very poor oxidising agent; its standard reduction potential (for Mn2+/MnMn^{2+}/Mn) is −1.18 V-1.18\ V, which is highly negative. So Mn2+Mn^{2+} is a weak oxidiser.

  1. Option (iii): MnO4−MnO_4^-

    This is the oxidised form of the MnO4−/Mn2+MnO_4^-/Mn^{2+} couple. Its reduction potential is +1.51 V+1.51\ V, which is the highest among all the given E∘E^\circ values. A high positive E∘E^\circ means it has a strong tendency to gain electrons and get reduced. Therefore, MnO4−MnO_4^- is a very strong oxidising agent.

  2. Option (iv): Cr3+Cr^{3+}

    This is the oxidised form of the Cr3+/CrCr^{3+}/Cr couple:

    Cr3++3e−→CrE∘=−0.74 VCr^{3+} + 3e^- \rightarrow Cr \quad E^\circ = -0.74\ V …

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