MHT CET · Chemistry · Solutions
If vapour pressure of pure solvent and solution are 240 and 216 \(\mathrm{mm} \mathrm{Hg}\) respectively then mole fraction of solvent in solution is
- A 0.9
- B 0.1
- C 0.6
- D 0.4
Answer & Solution
Correct Answer
(A) 0.9
Step-by-step Solution
Detailed explanation
\(\mathrm{P}_1=216 \mathrm{~mm} \mathrm{Hg} . \mathrm{P}_1^0=240 \mathrm{~mm} \mathrm{Hg} \)
\( \Delta \mathrm{P}=\mathrm{P}_1^0-\mathrm{P}_1=240-216=24 \mathrm{~mm} \mathrm{Hg} \)
\( \text {Now,} \frac{\Delta \mathrm{P}}{\mathrm{P}_1^0}=\mathrm{x}_2 \)
\( \therefore \mathrm{x}_2=\frac{24 \mathrm{mmHg}}{240 \mathrm{mmHg}}-0.1\)
Hence, mole fraction of solvent, \(\mathrm{x}_1=1-\mathrm{x}_2=1-0.1=0.9\)
\( \Delta \mathrm{P}=\mathrm{P}_1^0-\mathrm{P}_1=240-216=24 \mathrm{~mm} \mathrm{Hg} \)
\( \text {Now,} \frac{\Delta \mathrm{P}}{\mathrm{P}_1^0}=\mathrm{x}_2 \)
\( \therefore \mathrm{x}_2=\frac{24 \mathrm{mmHg}}{240 \mathrm{mmHg}}-0.1\)
Hence, mole fraction of solvent, \(\mathrm{x}_1=1-\mathrm{x}_2=1-0.1=0.9\)
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