i. Show that for an ideal solution of A and B, the mole fractions of A...
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i. Show that for an ideal solution of A and B, the mole fractions of A in vapor phase in equilibrium with solution is XAV XBl 1 + XAL PA PB (4- ii. A certain ideal liquid mixture of hexane and octane solution at 80°C has a vapor pressure of 500 mmHg. At 80°C the vapor pressures of pure hexane and octane are 1067 and 175 mmHg, respectively. Find the mole fractions in the liquid mixture and in the vapor phase. i. Show that for an ideal solution of A and B, the mole fractions of A in vapor phase in equilibrium with solution is XAV XBl 1 + XAL PA PB (4- ii. A certain ideal liquid mixture of hexane and octane solution at 80°C has a vapor pressure of 500 mmHg. At 80°C the vapor pressures of pure hexane and octane are 1067 and 175 mmHg, respectively. Find the mole fractions in the liquid mixture and in the vapor phase.
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Answer of Question 01 The image shows the following equation YAXB PAPB where YA is the mole fraction of A in the vapor phase XB is the mole fraction of B in the vapor phase PA is the vapor pressure of ... View the full answer
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