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Q.(a) What happens when:- Potassium dichromate is heated with conc. Sulphuric Acid and Sodium Chloride (write only chemical reaction). [1]

(b) TiO2 is white, while TiCl3 is coloured, why? [1]
(c) Transition elements form interstitial compounds. Describe. [2]
(d) Write the electronic configuration of (Ce58) Cerium58. [1] OR
(a) What happens when:- Potassium permanganate reacts with oxalic acid in acidic medium [write only chemical equation] [1]
(b) Which is a stronger reducing agent Cr2+ or Fe2+ and why? [1]
(c) Transition elements form complex compounds. Describe. [2]
(d) Write the electronic configuration of Lawrencium (Lr103). [1]
Chhattisgarh CgbseCGBSE Intermediate Board 2024Subjective· 5mImportance★★★★★
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(a) is the classic chromyl chloride test; (b) colour tracks the presence of d electrons available for d-d transitions; (c) transition metals trap small atoms in lattice voids; (d) Cerium's anomalous filling puts one electron each in 4f and 5d.

(a) K2Cr2O7 heated with conc. H2SO4 and NaCl (chromyl chloride test):

This reaction gives orange-red vapours of chromyl chloride:

K2Cr2O7+4NaCl+6H2SO4→2CrO2Cl2↑(orange-red vapour)+2KHSO4+4NaHSO4+3H2OK_2Cr_2O_7 + 4NaCl + 6H_2SO_4 \rightarrow 2CrO_2Cl_2\uparrow(\text{orange-red vapour}) + 2KHSO_4 + 4NaHSO_4 + 3H_2O

(b) TiO2 white, TiCl3 coloured — why:

Colour in transition metal compounds arises from d-d electronic transitions (an electron absorbing visible light to jump between split d-orbitals in a ligand field). In TiO2, titanium is present as Ti4+, with electronic configuration [Ar]3d0[Ar]3d^0 — there are no d-electrons, so no d-d transition is possible, and TiO2 appears white (colourless). In TiCl3, titanium is present as Ti3+, with configuration [Ar]3d1[Ar]3d^1 — it has one unpaired d-electron, which can undergo a d-d transition upon absorbing a specific wavelength of visible light, giving TiCl3 its characteristic (violet/purple) colour.

(c) Interstitial compounds of transition elements:

Transition metals have relatively large interstitial voids/spaces within their close-packed crystal lattices. Small non-metal atoms such as H, C, N, or B can occupy these interstitial voids, forming interstitial compounds. These are typically:

  • Non-stoichiometric in composition (e.g., TiH1.7TiH_{1.7}, VH0.56VH_{0.56}),
  • Harder than the pure metal,
  • Retain metallic conductivity and lustre, …

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