Home
Class 12
CHEMISTRY
If osmotic presssure of 1M aqueous solut...

If osmotic presssure of 1M aqueous solution of `H_(2)SO_(4)` at 500 K is 90.2 atm. Calculate `K_(a2)` of `H_(2)SO_(4)`. Give your answer after multiplying 1000 with `K_(a_(2))`. (Assumme ideal solution) [Given : `K_(a_(1))` of `H_(2)SO_(4)=oo`,R=0.082 L atm`//`mol-K]

Text Solution

Verified by Experts

The correct Answer is:
300
Promotional Banner

Topper's Solved these Questions

  • LIQUID SOLUTIONS

    GRB PUBLICATION|Exercise 24|8 Videos
  • LIQUID SOLUTIONS

    GRB PUBLICATION|Exercise 26|7 Videos
  • LIQUID SOLUTIONS

    GRB PUBLICATION|Exercise 8|12 Videos
  • IONIC EQUILIBRIUM

    GRB PUBLICATION|Exercise All Questions|526 Videos
  • METALLUGY

    GRB PUBLICATION|Exercise Subjective type|1 Videos

Similar Questions

Explore conceptually related problems

If osmotic pressure of 1M aqueous solution of H_(2)SO_(4) at 500K is 90.2 atm. Calculate K_(a2) of H_(2)SO_(4) . Give your answer after multiplying 1000 with K_(a2) . (Assuming ideal solution). (Given: K_(a1) of H_(2)SO_(4) is oo,R=0.082 l t-atm//mol-K) .

The osmotic pressure of 0.2 molar solution of urea at 300 K(R = 0.082) litre atm mol^(-1)K^(-1) is

Why is K_(a_(2)) ltlt K_(a_(1)) for H_(2) SO_(4) in water ?

The lowering of vapour pressure of 0.1 M aqueous solution NaCl, CuSO_(4) and K_(2)SO_(4) are :

The lowering of vapour pressure of 0.1 M aqueous solution NaCl, CuSO_(4) and K_(2)SO_(4) are :

Realtive lowering in vapour pressure of a solution containing 1 mole K_(2)SO_(4) in 54 g H_(2)O is ( K_(2)SO_(4) in 100% ionised) :