Calculate the mole fraction of ethylene glycol (C2H6O2) in a solutioncontaining 20% of C2H6O2 by mass
Question
Calculate the mole fraction of ethylene glycol (C2H6O2) in a solution containing 20% of C2H6O2 by mass
Solution
To calculate the mole fraction of ethylene glycol (C2H6O2) in a solution containing 20% of C2H6O2 by mass, we need to follow these steps:
Step 1: Convert the mass percentage to grams. Given that the solution contains 20% of C2H6O2 by mass, we can assume we have 100 grams of the solution. Therefore, the mass of C2H6O2 in the solution is 20 grams.
Step 2: Calculate the moles of C2H6O2. To calculate the moles, we need to know the molar mass of C2H6O2. The molar mass of C2H6O2 is calculated by adding up the atomic masses of each element: (2 * 12.01 g/mol) + (6 * 1.01 g/mol) + (2 * 16.00 g/mol) = 62.07 g/mol.
Now, we can calculate the moles of C2H6O2 by dividing the mass (20 grams) by the molar mass (62.07 g/mol): moles of C2H6O2 = 20 g / 62.07 g/mol = 0.322 moles.
Step 3: Calculate the total moles of the solution. Since we assumed we have 100 grams of the solution, we need to calculate the moles of the solution. To do this, we need to know the molar mass of the solution. However, the molar mass of the solution is not provided in the question. Therefore, we cannot calculate the exact moles of the solution.
Step 4: Calculate the mole fraction. The mole fraction of C2H6O2 can be calculated by dividing the moles of C2H6O2 by the total moles of the solution. Let's assume the total moles of the solution are "n" moles: mole fraction of C2H6O2 = moles of C2H6O2 / total moles of the solution = 0.322 moles / n moles.
Since we don't have the exact value for the total moles of the solution, we cannot calculate the exact mole fraction of C2H6O2 in the solution.
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