Question:

Four successive members of the first row transition elements listed below with atomic numbers. Which one of them is expected to have the highest $E_{m{^{3+}}/m{^{2+}}}^{\circ}$value?

Updated On: Jul 15, 2024
  • $Cr(Z = 24)$
  • $Mn (Z = 25)$
  • $Fe (Z = 26)$
  • $Co (Z = 27)$
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The Correct Option is D

Solution and Explanation

SRP value normally increases from left to right in the period of rf-block elements. Some SRP value are exceptionally higher due to stability of product ion. e.g.
$ \, \, \, \, \, \, \, \, \, \, \, E_{m{^{3+}}/m{^{2+}}}^{\circ} = +1.57 V; E_{Co{^{3+}}/Co{^{2+}}}^{\circ}=+1.97 V$
Thus, $E_{m{^{3+}}/m{^{2+}}}^{\circ}$ is highest for Co.
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Concepts Used:

D and F Block Elements

The d-block elements are placed in groups 3-12 and F-block elements with 4f and 5f orbital filled progressively. The general electronic configuration of d block elements and f- block elements are (n-1) d 1-10 ns 1-2 and (n-2) f 1-14 (n-1) d1 ns2 respectively. They are commonly known as transition elements because they exhibit multiple oxidation states because of the d-d transition which is possible by the availability of vacant d orbitals in these elements. 

They have variable Oxidation States as well as are good catalysts because they provide a large surface area for the absorption of reaction. They show variable oxidation states to form intermediate with reactants easily. They are mostly lanthanoids and show lanthanoid contraction. Since differentiating electrons enter in an anti-penultimate f subshell. Therefore, these elements are also called inner transition elements.

Read More: The d and f block elements