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Q.Attempt any five of the following :

(a) Write the IUPAC name of the complex : [Co(H2O)(CN)(en)2]2+[Co(H_2O)(CN)(en)_2]^{2+}
(b) Why is geometrical isomerism not possible in tetrahedral complexes having two different types of unidentate ligands coordinated with the central metal ion ?
(c) Arrange the following complex ions in increasing order of their crystal field splitting energy (Δo\Delta_o) : [Co(NH3)6]3+[Co(NH_3)_6]^{3+}, [CoF6]3−[CoF_6]^{3-}, [Co(CN)6]3−[Co(CN)_6]^{3-}
(d) Write the hybridization and magnetic character of the complex [Ni(CO)4][Ni(CO)_4] on the basis of valence bond theory. [Atomic No. : Ni = 28]
(e) Out of [CoF6]3−[CoF_6]^{3-} and [Co(C2O4)3]3−[Co(C_2O_4)_3]^{3-}, which one complex is :
(i) more stable ?
(ii) the high spin complex ?
(f) What is the difference between an ambidentate ligand and bidentate ligand ?
(g) Write the electronic configuration of d5d^5 in terms of t2gt_{2g} and ege_g in an octahedral field when :
(i) Δo>P\Delta_o > P, and
(ii) Δo<P\Delta_o < P
CBSECBSE Class XII Board 2024Subjective· 5mImportance★★★★★
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Five coordination chemistry problems covering IUPAC nomenclature, geometrical isomerism in tetrahedral complexes, spectrochemical series ordering, VBT analysis of [Ni(CO)4][Ni(CO)_4], and crystal field electronic configurations. Each requires understanding ligand field theory, bonding, and structural principles.


(a) IUPAC Name of [Co(H2O)(CN)(en)2]2+[Co(H_2O)(CN)(en)_2]^{2+}

The IUPAC naming of coordination complexes follows a systematic protocol: ligands alphabetically (ignoring prefixes), then the metal with its oxidation state.

Step-by-step naming:

  1. Identify the ligands and their prefixes:

    • enen (ethylenediamine) appears twice → bis(ethylenediamine) (use "bis" for complex ligands)
    • H2OH_2O (aqua) appears once → aqua
    • CN−CN^- (cyano) appears once → cyano
  2. Arrange alphabetically (ignoring "bis"):

    • aqua (a) < bis(ethylenediamine) (e) < cyano (c)
  3. Determine oxidation state of Co:

    • Charge equation: x+0+(−1)+2(0)=+2x + 0 + (-1) + 2(0) = +2
    • Oxidation state: x=+3x = +3
  4. Assemble the name:

    • Ligands + metal(oxidation state) …

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