JEE Main 2023 — Solutions Question with Solution
From: JEE Main 2023 (Online) 11th April Evening Shift
Question
What weight of glucose must be dissolved in of water to lower the vapour pressure by ?
(Assume dilute solution is being formed)
Given : Vapour pressure of pure water is at room temperature. Molar mass of glucose is
Choose an option
Show full solutionCorrect option: A
Correct answer
A3.69 g
Step-by-step explanation
The lowering of vapor pressure of a solvent by a nonvolatile solute is given by Raoult's law:
where is the change in vapor pressure, is the mole fraction of the solute, and is the vapor pressure of the pure solvent.
Rearranging the formula for , we have:
Substituting the given values, we get :
Since the mole fraction of the solute is also equal to the number of moles of solute divided by the total number of moles, we can express as:
Assuming that the solution is dilute, the number of moles of water will be much larger than the number of moles of solute, so we can approximate the total number of moles as the number of moles of water.
Thus, we have :
Therefore, the number of moles of solute is :
The number of moles of water is the mass of the water divided by the molar mass of water (18 g/mol) :
So, the number of moles of solute is :
Finally, to find the mass of the glucose, we multiply the number of moles of glucose by the molar mass of glucose :
So, the correct answer is 3.69 g.
where is the change in vapor pressure, is the mole fraction of the solute, and is the vapor pressure of the pure solvent.
Rearranging the formula for , we have:
Substituting the given values, we get :
Since the mole fraction of the solute is also equal to the number of moles of solute divided by the total number of moles, we can express as:
Assuming that the solution is dilute, the number of moles of water will be much larger than the number of moles of solute, so we can approximate the total number of moles as the number of moles of water.
Thus, we have :
Therefore, the number of moles of solute is :
The number of moles of water is the mass of the water divided by the molar mass of water (18 g/mol) :
So, the number of moles of solute is :
Finally, to find the mass of the glucose, we multiply the number of moles of glucose by the molar mass of glucose :
So, the correct answer is 3.69 g.
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