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A solution contains non-volatile solute of molecular mass ${{M}_{P}}.$Which of the following can be used to calculate molecular mass of the solute in terms of osmotic pressure? $(m=\text{Mass}\,\text{of solute, }V=\text{Volume of solution and }\pi =\text{Osmotic pressure) }$
Which one of the statements given below concerning properties of solutions, describes a colligative effect
Colligative properties of a solution depends upon
If O.P. of $1M$ of the following in water can be measured, which one will show the maximum O.P.
Which of the following is not a colliagtive property
Which statement is wrong regarding osmotic pressure (P), volume (V) and temperature (T)
If a $0.1\ M$ solution of glucose (mol. wt. 180) and 0.1 molar solution of urea (mol. wt. 60) are placed on the two sides of a semipermeable membrane to equal heights, then it will be correct to say
The osmotic pressure of which solution is maximum (consider that deci-molar solution of each 90% dissociated)
The O.P. of equimolar solution of Urea, $BaC{{l}_{2}}$ and $AlC{{l}_{3}}$, will be in the order
For $0.1M$ solution, the colligative property will follow the order

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