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Q.(a) Why Zn, Cd and Hg are not regarded as transition metals?

(b) Why transition metals form complexes?
(c) Why Zn2+ salts are white in colour? OR
(a) How will you prepare KMnO4 from pyrolusite ore?
(b) Complete the reaction :
KMnO4 --Δ--> ?
Himachal HpboseHPBOSE Plus Two Board 2019Subjective· 3mImportance★★★★★
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Zn, Cd, Hg are excluded from the transition series because their d-orbitals are completely filled; transition metals complex due to small size/high charge/vacant d-orbitals; and Zn2+ is colourless because it has no unpaired d-electrons. (OR: KMnO4 is manufactured from pyrolusite via potassium manganate, and decomposes on heating to K2MnO4 + MnO2 + O2.)

  1. Why Zn, Cd, Hg are not regarded as transition metals: the defining feature of a transition element is that it has a partially filled d-subshell in the elemental state or in at least one of its common oxidation states. Zn, Cd, and Hg all have a completely filled d10d^{10} configuration both as the free metal and in their common +2+2 oxidation state (e.g. Zn: [Ar]3d104s2Zn:\ [Ar]3d^{10}4s^2, Zn2+: [Ar]3d10Zn^{2+}:\ [Ar]3d^{10}), so they do not satisfy this criterion and are placed at the end of the d-block but excluded from being called "transition metals" proper.
  2. Why transition metals form complexes: transition metal ions readily form coordination complexes because of:
  1. Comparatively small ionic size and high nuclear charge/charge density, giving strong electrostatic attraction for ligands.
  2. Availability of vacant d-orbitals (and s, p orbitals) of suitable energy to accept lone pairs of electrons donated by ligands, forming coordinate covalent bonds.
  3. Variable oxidation states, which lets them stabilise a range of ligand environments.

(c) Why Zn2+Zn^{2+} salts are white: colour in transition-metal compounds arises from d–d electronic transitions, where an electron is excited from a lower to a higher d-orbital by absorbing visible light. Zn2+Zn^{2+} has a completely filled 3d103d^{10} configuration — there are no vacant d-orbitals for an electron to be excited into within the d-subshell, so no d-d transition is possible, and consequently Zn2+Zn^{2+} salts appear white/colourless.

OR:

(a) Preparation of KMnO4KMnO_4 from pyrolusite (MnO2MnO_2):

Step 1 — pyrolusite ore is fused with KOH in the presence of an oxidising agent (air/O2O_2 or KNO3KNO_3) to give potassium manganate (green):

2MnO2+4KOH+O2→Δ2K2MnO4+2H2O2MnO_2 + 4KOH + O_2 \xrightarrow{\Delta} 2K_2MnO_4 + 2H_2O

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