The vapor pressures of tetrachloromethane (A) and trichloroethylene (B) between 76.8 °C and 87.2 °C are given by the empirical formulas 2790.78 In(P/tor)=15.8401- T+226.4 and 2345.4 In(P/torr)=15.0124 - T+192.7 where T is the Celsius temperature. Compute the values of XA and ya at 82.0 °C. Assume an ideal solution with a total vapor pressure of 1 atm.
The vapor pressures of tetrachloromethane (A) and trichloroethylene (B) between 76.8 °C and 87.2 °C are given by the empirical formulas 2790.78 In(P/tor)=15.8401- T+226.4 and 2345.4 In(P/torr)=15.0124 - T+192.7 where T is the Celsius temperature. Compute the values of XA and ya at 82.0 °C. Assume an ideal solution with a total vapor pressure of 1 atm.
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![The vapor pressures of tetrachloromethane (A) and trichloroethylene (B) between 76.8 °C
and 87.2 °C are given by the empirical formulas
2790.78
In(P/torr)=15.8401–
T+226.4
and
2345.4
In(P / torr)=15.0124 –
T+192.7
where T is the Celsius temperature. Compute the values of XA and ya at 82.0 °C. Assume an
ideal solution with a total vapor pressure of 1 atm.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F91277f70-1158-4ed8-b43a-68abff16ddb2%2F2ce3f7b0-ff1b-413e-860d-5c8ebf1577ac%2Fyxo0jjq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The vapor pressures of tetrachloromethane (A) and trichloroethylene (B) between 76.8 °C
and 87.2 °C are given by the empirical formulas
2790.78
In(P/torr)=15.8401–
T+226.4
and
2345.4
In(P / torr)=15.0124 –
T+192.7
where T is the Celsius temperature. Compute the values of XA and ya at 82.0 °C. Assume an
ideal solution with a total vapor pressure of 1 atm.
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