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Q.Describe with reason:

(i) Fe2+Fe^{2+} is a reducing agent while Mn2+Mn^{2+} is an oxidising agent.
(ii) Sc (Z = 21) is a transition element but Zn (Z = 30) is not.
(iii) Transition elements and their compounds work as good catalysts.
Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2024Subjective· 3mImportance★★★★★
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Fe2+Fe^{2+} reduces because it reaches the stable d5d^5 Fe3+Fe^{3+}; the very stable d5d^5 Mn2+Mn^{2+} makes the +3+3 manganese state oxidising. Sc (3d13d^1) is a transition element while Zn (3d103d^{10}) is not, and transition metals catalyse via variable oxidation states and surface action.

(i) Fe2+Fe^{2+} reducing vs the manganese case. Electronic configurations: Fe2+=[Ar]3d6Fe^{2+}=[Ar]3d^6, Fe3+=[Ar]3d5Fe^{3+}=[Ar]3d^5, Mn2+=[Ar]3d5Mn^{2+}=[Ar]3d^5, Mn3+=[Ar]3d4Mn^{3+}=[Ar]3d^4. A half-filled 3d53d^5 set is exceptionally stable (exchange energy).

  • Fe2+Fe^{2+} (d6d^6) readily loses one electron to become the stable half-filled Fe3+Fe^{3+} (d5d^5); by giving up an electron it reduces other species, i.e. Fe2+Fe^{2+} is a reducing agent.
  • For manganese the stable species is the +2+2 state, Mn2+Mn^{2+} (d5d^5). The higher Mn3+Mn^{3+} (d4d^4) is unstable and eagerly gains an electron to fall to the stable Mn2+Mn^{2+} (d5d^5); so it is the +3+3 manganese that behaves as a strong oxidising agent (and correspondingly Mn2+Mn^{2+} itself is very stable and resists oxidation, unlike Fe2+Fe^{2+}).

(ii) Sc is a transition element, Zn is not. A transition element is one whose atom, or one of its common ions, has a partially filled dd subshell.

  • Sc =[Ar]3d14s2=[Ar]3d^1 4s^2: the atom has an incomplete dd subshell (3d13d^1) → transition element.
  • Zn =[Ar]3d104s2=[Ar]3d^{10} 4s^2: the 3d3d subshell is completely full in both the atom and in Zn2+Zn^{2+} (3d103d^{10}) → not a transition element (it is a d-block metal but not a transition metal).

(iii) Transition elements/compounds as good catalysts. Reasons:

  • They possess variable oxidation states, so they can readily accept and donate electrons and provide alternative low-energy reaction paths (e.g. V2O5V_2O_5, FeFe, MnO2MnO_2). …

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