Skip to content
Question

Q.A solution 0.1 M of Na2SO4Na_2SO_4 is dissolved to the extent of 95%. What would be its osmotic pressure at 27∘^{\circ}C ? (R=0.0821 L atm K−1 mol−1R = 0.0821\ L\ atm\ K^{-1}\ mol^{-1})

CBSECBSE Class XII Board 2019Subjective· 3mImportance★★★★★
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

Osmotic pressure depends on the total concentration of particles in solution. For Na2SO4Na_2SO_4 that is 95% dissociated, the van’t Hoff factor ii is 2.85, giving an effective concentration of 0.285 M. The osmotic pressure at 27°C is 7.02 atm\boxed{7.02\ \text{atm}}.

Osmotic pressure is a colligative property — it depends only on the number of solute particles, not their identity. When an electrolyte like sodium sulfate dissolves, it dissociates into ions, increasing the particle count. The van’t Hoff factor ii accounts for this: it’s the ratio of actual particles in solution to the number of formula units dissolved.

For Na2SO4Na_2SO_4, complete dissociation gives 3 ions (2Na++SO42−2Na^+ + SO_4^{2-}). But here dissociation is only 95%, so we need the actual ii value.


  1. Find the van’t Hoff factor ii from the degree of dissociation.

    For a salt that gives nn ions per formula unit, the relation is:

i=1+α(n−1)i = 1 + \alpha (n - 1)

where α\alpha is the degree of dissociation (as a decimal).

Here n=3n = 3 and α=0.95\alpha = 0.95:

i=1+0.95(3−1)=1+0.95×2=1+1.90=2.85i = 1 + 0.95(3 - 1) = 1 + 0.95 \times 2 = 1 + 1.90 = 2.85

Tip

Notice that ii is less than 3 because dissociation is not complete. If it were 100%, ii would be exactly 3.

  1. Calculate the effective (total) concentration of particles.

    The nominal concentration is 0.1 M. The actual particle concentration is:

Ceffective=i×Cnominal=2.85×0.1=0.285 MC_{\text{effective}} = i \times C_{\text{nominal}} = 2.85 \times 0.1 = 0.285\ \text{M}

  1. Apply the osmotic pressure formula.

    The van’t Hoff equation for osmotic pressure is:

    Π=iCRT\Pi = iCRT …

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.