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Q.Discuss the general properties of transition elements with reference to 3d-transition series. OR Give the method of preparation of KMnO4. Discuss three oxidising properties of it in acidic medium.

Jammu Kashmir JkboseJKBOSE Class 12 Annual Regular Examination 2019Subjective· 5mImportance★★★★★
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The partly-filled (n-1)d orbitals of 3d-series elements give them variable oxidation states, colour, paramagnetism, catalytic power and a strong tendency to form complexes and alloys.

General properties of 3d-transition elements (Sc to Zn)

  1. Variable oxidation states: because the (n-1)d and ns electrons are close in energy, several can be lost successively (e.g. Mn shows +2 to +7), unlike main-group elements.
  2. Coloured ions: partly-filled d-orbitals allow d-d electronic transitions on absorbing visible light, giving coloured ions (Cu2+ blue, Mn2+ pale pink); Sc3+/Zn2+ (d0/d10) are colourless.
  3. Paramagnetism: unpaired d-electrons give most transition-metal ions paramagnetic behaviour; magnetic moment rises with the number of unpaired electrons.
  4. Catalytic activity: variable oxidation states and ability to form intermediate complexes with reactants make many (Fe, Ni, V2O5, MnO2) good catalysts.
  5. Complex formation: small, highly charged ions with vacant d-orbitals readily accept lone pairs from ligands, forming numerous coordination complexes.
  6. High melting/boiling points and hardness: strong metallic bonding, reinforced by covalent-type interaction of unpaired d-electrons.
  7. Alloy and interstitial compound formation: similar atomic sizes let them form substitutional alloys; small atoms (H, C, N) fit into lattice interstices to give hard interstitial compounds.

OR — Preparation of KMnO4 and its oxidising action

Preparation: pyrolusite ore (MnO2) is fused with KOH and an oxidising agent (KNO3 or air) to give potassium manganate (green):

2MnO2 + 4KOH + O2 -> 2K2MnO4 + 2H2O …

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