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Q.(a) [Cr(NH₃)₆]³⁺ is Paramagnetic while [Ni(CN)₄]²⁻ is diamagnetic. Explain why ? (2 marks)

(b) Define Ambidentate Ligand with an example. (1 mark)
Himachal HpboseHPBOSE Plus Two Board 2023Subjective· 3mImportance★★★★★
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Cr³⁺'s d³ configuration always leaves 3 unpaired electrons regardless of ligand; Ni²⁺'s d⁸ electrons get force-paired by the strong field ligand CN⁻ in the square planar [Ni(CN)₄]²⁻.

(a) Paramagnetism/diamagnetism:

[Cr(NH3)6]3+[Cr(NH_3)_6]^{3+}: Chromium here is Cr3+Cr^{3+}, a d3d^3 ion — with only 3 electrons occupying the 5 d-orbitals, they MUST occupy 3 different orbitals singly (Hund's rule), regardless of whether the ligand (NH3NH_3) is weak or strong field. This gives 3 unpaired electrons, so the complex is paramagnetic.

[Ni(CN)4]2−[Ni(CN)_4]^{2-}: Nickel here is Ni2+Ni^{2+}, a d8d^8 ion. CN−CN^- is a very strong field ligand, causing the d-electrons to pair up as much as possible. This forces the complex into square planar geometry with dsp2dsp^2 hybridisation, in which all 8 d-electrons end up paired (leaving one d-orbital empty for hybridisation). With no unpaired electrons, the complex is diamagnetic.

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