हिंदी

Calculate the Mass of a Compound (Molar Mass = 256 G Mol−1) to Be Dissolved in 75 G of Benzene to Lower Its Freezing Point by 0.48 K (Kf = 5.12 K Kg Mol−1).

Advertisements
Advertisements

प्रश्न

Calculate the mass of a compound (molar mass = 256 g mol−1) to be dissolved in 75 g of benzene to lower its freezing point by 0.48 K (Kf = 5.12 K kg mol−1).

Advertisements

उत्तर

\[Given: \]
\[\Delta T_f = 0 . 48 K\]
\[ K_f = 5 . 12 \text{K kg}\ \text{mol}^{- 1} \]
\[ w_1 = 75 g\]
\[ w_2 = ?\]
\[ M_2 = 256 g\ \text{mol}^{- 1} \]
\[\text{Using}\]
\[\Delta T_f = \frac{K_f \times w_2 \times 1000}{M_2 \times w_1}\]
\[ \Rightarrow w_2 = \frac{∆ T_f \times M_2 \times w_1}{K_f \times 1000} = \frac{0 . 48 \times 256 \times 75}{5 . 12 \times 1000} = 1 . 8 g\]

shaalaa.com
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
2013-2014 (March) Delhi Set 2

वीडियो ट्यूटोरियलVIEW ALL [1]

संबंधित प्रश्न

Determine the osmotic pressure of a solution prepared by dissolving 2.5 × 10−2 g of K2SO4 in 2L of water at 25°C, assuming that it is completely dissociated.

(R = 0.0821 L atm K−1 mol−1, Molar mass of K2SO4 = 174 g mol−1)


At 300 K, 36 g of glucose present in a litre of its solution has an osmotic pressure of 4.98 bar. If the osmotic pressure of the solution is 1.52 bars at the same temperature, what would be its concentration?


Determine the amount of CaCl2 (i = 2.47) dissolved in 2.5 litre of water such that its osmotic pressure is 0.75 atm at 27°C.


Two solutions have different osmotic pressures. The solution of higher osmotic pressure is called ____________.


20 g of a substance were dissolved in 500 mL of water and the osmotic pressure of the solution was found to be 600 mm of mercury at 15°C. The molecular weight of the substance is ______.


A solution containing 10 g per dm3 of urea (molar mass 60 g mol−1) is isotonic with 5% solution of non-volatile solute, MB of solute is:


In isotonic solutions:

(i) Solute and solvent both are same.

(ii) Osmotic pressure is same.

(iii) Solute and solvent may or may not be same.

(iv) Solute is always same solvent may be different.


Arrange the following solutions in the order of increasing osmotic pressure (π) assuming complete ionization.

  1. 0.5M Li2 SO4
  2. 0.5M KCl
  3. 0.5M Al2 (SO4)3 
  4. 0.1 M BaCl2

Write the condition of reverse osmosis.


The plot of osmotic pressure (π) vs concentration (mol L−1) for a solution gives a straight line with slope 25.73 L bar mol−1. The temperature at which the osmotic pressure measurement is done is ______.

(Use R = 0.083 L bar mol−1 K−1)


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×