A chemist combined chloroform (CHCl,) and acetone (C₂H₂O) to create a solution where the mole fraction of chloroform, Xchloroform, is 0.219. The densities of chloroform and acetone are 1.48 g/mL and 0.791 g/mL, respectively. Calculate the molarity of the solution. molarity: Calculate the molality of the solution. molality: M 771

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stion 12 of 23 >
A chemist combined chloroform (CHCl,) and acetone (C,H,O) to create a solution where the mole fraction of chloroform,
Xchloroform, is 0.219. The densities of chloroform and acetone are 1.48 g/mL and 0.791 g/mL, respectively.
Calculate the molarity of the solution.
molarity:
Calculate the molality of the solution.
molality:
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771
Transcribed Image Text:stion 12 of 23 > A chemist combined chloroform (CHCl,) and acetone (C,H,O) to create a solution where the mole fraction of chloroform, Xchloroform, is 0.219. The densities of chloroform and acetone are 1.48 g/mL and 0.791 g/mL, respectively. Calculate the molarity of the solution. molarity: Calculate the molality of the solution. molality: about us careers privacy policy terms of use T contact us M 771
Biphenyl, C₁₂H₁0, is a nonvolatile, nonionizing solute that is soluble in benzene, C.H.
10
At 25 °C, the vapor pressure of pure benzene is 100.84 Torr. What is the vapor pressure of a solution made from dissolving
16.1 g of biphenyl in 34.7 g of benzene?
Psolution
Torr
Transcribed Image Text:Biphenyl, C₁₂H₁0, is a nonvolatile, nonionizing solute that is soluble in benzene, C.H. 10 At 25 °C, the vapor pressure of pure benzene is 100.84 Torr. What is the vapor pressure of a solution made from dissolving 16.1 g of biphenyl in 34.7 g of benzene? Psolution Torr
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