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Q.(i) Distinguish homogeneous and heterogeneous catalysis.

(2)
(ii) Explain Tyndal effect. Write any one practical application of this effect. (2)
Kerala DhseKerala DHSE Plus Two Board 2022Subjective· 4mImportance★★★★★
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Homogeneous catalysis has the catalyst in the same phase as the reactants; heterogeneous catalysis has it in a different phase. The Tyndall effect is the scattering of light by colloidal particles, which makes the beam's path visible.

(i) Homogeneous vs heterogeneous catalysis:

  • Homogeneous catalysis: the catalyst and the reactants are present in the same phase (all gases, or all in one liquid solution). Example: oxidation of SO2 to SO3 in the lead chamber process, catalysed by NO gas - 2SO2(g) + O2(g) --NO(g)--> 2SO3(g), all species gaseous.

  • Heterogeneous catalysis: the catalyst is present in a different phase from the reactants, most commonly a solid catalyst acting on gaseous or liquid reactants. Example: the Haber process for ammonia synthesis, N2(g) + 3H2(g) --Fe(s)--> 2NH3(g), where solid iron catalyses a gas-phase reaction (also: Pt/Pd in catalytic converters, V2O5 in the Contact process).

(ii) Tyndall effect: when a strong beam of light is passed through a colloidal solution/sol, the path of the light becomes visible when viewed from a direction at right angles to the incident beam. This happens because the colloidal particles (whose size is comparable to the wavelength of visible light) scatter light in all directions.

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