Q.Calculate the mole fraction of ethylene glycol () in a solution containing 20% of by mass.
The mole fraction of ethylene glycol in a 20% by mass aqueous solution is found by assuming 100 g of solution, converting masses to moles, and dividing moles of glycol by total moles. The result is 0.068.
Why mass percentage works as a starting point
When a problem says "20% by mass," it means that in every 100 grams of solution, 20 grams are the solute (ethylene glycol) and the remaining 80 grams are the solvent (water). This is the most direct way to get actual masses without any extra information. The mole fraction asks for the ratio of moles of one component to the total moles of all components — so we need to convert these masses into moles using molar masses.
Always assume 100 g of solution when given a mass percentage. It turns percentages directly into grams, which is the cleanest starting point.
Step-by-step calculation
1. Find the molar masses
Ethylene glycol is .
Carbon:
Hydrogen:
Oxygen:
Molar mass of glycol = .
Water is : .
2. Determine the masses in 100 g of solution
Mass of glycol = 20 g
Mass of water = 80 g
3. Convert masses to moles
Moles of glycol:
(approximately)
Moles of water:
(approximately)
4. Calculate total moles
Total moles =
5. Find the mole fraction of glycol
Mole fraction of glycol =
Rounding to three significant figures gives 0.068.
6. Find the mole fraction of water
Because the mole fractions of all components of a solution add up to 1, we can find the mole fraction of water in the same way:
Mole fraction of water =
As a quick check, it can also be obtained directly from the glycol value:
, confirming that the two mole fractions sum to 1.
A common mistake is to use the mass of the solution (100 g) as if it were the mass of the solvent. Remember: the 20% refers to the solute, so the solvent mass is 100 − 20 = 80 g, not 100 g.
The mole fraction of ethylene glycol is , and the mole fraction of water is (the two add up to 1).
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