Respuesta :
Looking at this equation P= (pa*pb)/ (pa+(pb-pa)) ya where pa=vap press a and ya= vap composition a and P= total pressure,it relates vapor pressure mixture to vapor composition. This is derived using the combination of Dalton's and Raoult's laws.
Answer: The mole fraction of heptane at 80°C is 0.506
Explanation:
We are given:
Vapor pressure of heptane at 80°C = 428 mmHg
Vapor pressure of octane at 80°C = 175 mmHg
Total pressure at 80°C = (428 + 175) = 603 mmHg
To calculate the mole fraction of heptane at 80°C, we use the equation given by Raoult's law, which is:
[tex]p_{heptane}=p_T\times \chi_{heptane}[/tex]
where,
[tex]p_A[/tex] = partial pressure of heptane = 305 mmHg
[tex]p_T[/tex] = total pressure = 603 mmHg
[tex]\chi_A[/tex] = mole fraction of heptane = ?
Putting values in above equation, we get:
[tex]305mmHg=603mmHg\times \chi_{heptane}\\\\\chi_{heptane}=0.506[/tex]
Hence, the mole fraction of heptane at 80°C is 0.506