Home
Class 12
CHEMISTRY
At 10^(@)C, the osmotic pressure of urea...

At `10^(@)C`, the osmotic pressure of urea solution is `500 mm`.The solution is diluted and the temperature is raised to `25^(@)C`.when the osmotic pressure is found to be `105.3 mm`. Determine the extent of dilution.

Text Solution

Verified by Experts

For initial solution,`pi=500/760`atm,`T=283 K`
Using `piV=nRT rArr 500/760xx(V_(1))=nxxRxx283` …(i)
After dilution, let volume becomes `V_(2)` and temperature is
raised to `25^(@)C,i.e., 298 K`.
`pi=105.3/760`atm
`105.3/760xx(V_(2))=nxxRxx298` ...(ii)
`:.` By Eqs.(i) and Eqs.(ii), we get
`V_(1)/V_(2)=(283)/(298)xx(105.3)/(500)`
`V_(1)/V_(2)=1/5 rArr V_(2)=5V_(1)`
i.e., the solution was diluted to 5 times.
Promotional Banner

Topper's Solved these Questions

  • SOLUTIONS

    CENGAGE CHEMISTRY|Exercise Solved Examples|40 Videos
  • SOLUTIONS

    CENGAGE CHEMISTRY|Exercise Exercises (Linked Comprehension)|58 Videos
  • SOLID STATE

    CENGAGE CHEMISTRY|Exercise Ex 1.2 (Objective)|9 Videos
  • SURFACE CHEMISTRY

    CENGAGE CHEMISTRY|Exercise Archives Subjective|2 Videos

Similar Questions

Explore conceptually related problems

At 20^(@)C , the osmotic pressure of urea solution is 400 mm . The solution is diluted and the temperature is raised to 35^(@)C , when the osmotic pressureis found to be 105.3 mm . Determine extent of dilution.

The osmotic pressure of urea solution is 500 mm at 10^(@)C . The solution is diluted and the temperature raised to 25^(@)C , when the osmotic pressure is found to be 105.3 mm . Find the extend if dilution.

At 17^(@)C , the osmotic pressure of sugar solution is 580 torr. The solution is diluted and the temperature is raised to 57^(@)C , when the osmotic pressure is found to be 165 torr. The extent of dilution is a.2 times ,b.3 times ,c.4 times ,d.5 times

Osmotic pressure of urea solution is 56.6 mm Hg at a temperature of 10^(@)C . The solution is diluted and the temperature is raised to 40^(@) C such that the osmotic pressure is found to be 31.3 mm Hg . The extent of dilution will be :