
What will be the mole fraction of ethanol in a sample of spirit containing $85\% $ ethanol by mass?
A. $0.69$
B. $0.82$
C. $0.85$
D. $0.60$
Answer
492.9k+ views
Hint: The number of molecules of a specific component in a mixture divided by the total number of moles in the mixture is known as the mole fraction. It is a means of expressing a solution's concentration.
Formula used:
$\text{Moles} = \dfrac{\text{Mass}}{\text{Molar mass}}$
Mole fraction of component $A$ = $\dfrac{{{N_A}}}{{{N_A} + {N_B}}}$
${N_A} = $ Number of moles substance $A$
${N_B} = $ Number of moles of substance $B$
Complete answer:
Given:
Mass of ethanol $ = 85g$
Mass of solution$ = 100g$
To find: Mole fraction of ethanol
Mass of water$ = 100 - 85 = 15g$
Molar mass of ethanol$ = 46g/mol$
Molar mass of water$ = 18g/mol$
So now we can calculate the moles of ethanol and water.
Using the formula for calculating moles, we can find moles of ethanol and water:
$\text{Moles of ethanol} = \dfrac{\text{Moles of ethanol}}{\text{Molar mass of ethanol}}$
Moles of ethanol $ = \dfrac{{85g}}{{46g/mole}}$
Moles of ethanol$ = 1.85mole$
$\text{Moles of Water} = \dfrac{\text{Moles of water}}{\text{Molar mass of water}}$
Moles of water$ = \dfrac{{15}}{{18g/mole}}$
Moles of water$ = 0.83mole$
Now, from the number of moles we can calculate the mole fraction of ethanol.
Substituting the values in the formula of mole fraction,
$\text{Mole fraction of ethanol} = \dfrac{\text{Moles of ethanol}}{\text{Moles of ethanol + Moles of water}}$
Mole fraction of ethanol $ = \dfrac{{1.85mole}}{{1.85mole + 0.83mole}}$
Mole fraction of ethanol $ = 0.690$
Therefore, the mole fraction of ethanol is $0.690$.
Hence, the correct option is A. $0.69$.
Note:
The mole fraction is a fraction of molecules, and it differs from the mass fraction because different molecules have different masses. Spirit is an alcoholic beverage that can be made by distilling alcohol.
Formula used:
$\text{Moles} = \dfrac{\text{Mass}}{\text{Molar mass}}$
Mole fraction of component $A$ = $\dfrac{{{N_A}}}{{{N_A} + {N_B}}}$
${N_A} = $ Number of moles substance $A$
${N_B} = $ Number of moles of substance $B$
Complete answer:
Given:
Mass of ethanol $ = 85g$
Mass of solution$ = 100g$
To find: Mole fraction of ethanol
Mass of water$ = 100 - 85 = 15g$
Molar mass of ethanol$ = 46g/mol$
Molar mass of water$ = 18g/mol$
So now we can calculate the moles of ethanol and water.
Using the formula for calculating moles, we can find moles of ethanol and water:
$\text{Moles of ethanol} = \dfrac{\text{Moles of ethanol}}{\text{Molar mass of ethanol}}$
Moles of ethanol $ = \dfrac{{85g}}{{46g/mole}}$
Moles of ethanol$ = 1.85mole$
$\text{Moles of Water} = \dfrac{\text{Moles of water}}{\text{Molar mass of water}}$
Moles of water$ = \dfrac{{15}}{{18g/mole}}$
Moles of water$ = 0.83mole$
Now, from the number of moles we can calculate the mole fraction of ethanol.
Substituting the values in the formula of mole fraction,
$\text{Mole fraction of ethanol} = \dfrac{\text{Moles of ethanol}}{\text{Moles of ethanol + Moles of water}}$
Mole fraction of ethanol $ = \dfrac{{1.85mole}}{{1.85mole + 0.83mole}}$
Mole fraction of ethanol $ = 0.690$
Therefore, the mole fraction of ethanol is $0.690$.
Hence, the correct option is A. $0.69$.
Note:
The mole fraction is a fraction of molecules, and it differs from the mass fraction because different molecules have different masses. Spirit is an alcoholic beverage that can be made by distilling alcohol.
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