Q.Explain Raoult's Law. The vapour pressure of chloroform () and dichloromethane () are 200 mm Hg and 4.5 mm Hg respectively at 298 K. Calculate the vapour pressure of the solution formed by mixing 51 g of and 20 g of at 298 K.
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Start your 14-day free trial to unlock the full solution →By Raoult's law ; the mixture gives a total vapour pressure of about 276 mm Hg. (Note: the paper prints mm Hg, an obvious misprint for the standard 415 mm Hg — dichloromethane is more volatile than chloroform, so its VP must exceed 200, not be far below it.)
Raoult's law. For a solution of two volatile liquids, the partial vapour pressure of each component is proportional to its mole fraction in the solution:
and for an ideal solution the total vapour pressure is
where is the vapour pressure of the pure liquid and its mole fraction.
Step 1 — moles of each component.
- g mol → mol.
- g mol → mol.
Step 2 — mole fractions. Total mol.
Step 3 — apply Raoult's law. Taking mm Hg and the intended mm Hg:
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