The freezing point depression constant of chloroform (CHC1:) is 4.70°C/m. The density of chloroform is 1.483g/cm. The normal freezing point of chloroform is -63.5°C. a. Calculate the freezing point of a solution made by mixing 43.10g of liquid bromine with 425.0 mL of chloroform. Assume that bromine does not ionize and therefore has a van't hoff factor of 1. (Make sure to show all your work!) b. Calculate the freezing point of a solution made by mixing 43.10g of solid naphthalene (CıcHs) with 425.0 mL of chloroform. (Show all work!)

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Chapter1: Chemical Foundations
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1.
The freezing point depression constant of chloroform (CHC13) is 4.70°C/m. The density
of chloroform is 1.483g/cm?. The normal freezing point of chloroform is -63.5°C.
a. Calculate the freezing point of a solution made by mixing 43.10g of liquid bromine with
425.0 mL of chloroform. Assume that bromine does not ionize and therefore has a van't
hoff factor of 1. (Make sure to show all your work!)
b. Calculate the freezing point of a solution made by mixing 43.10g of solid naphthalene
(CioH3) with 425.0 mL of chloroform. (Show all work!)
2.
Look up the freezing point and freezing point depression constant of lauric acid. Be sure
to cite the reference or URL.
Transcribed Image Text:1. The freezing point depression constant of chloroform (CHC13) is 4.70°C/m. The density of chloroform is 1.483g/cm?. The normal freezing point of chloroform is -63.5°C. a. Calculate the freezing point of a solution made by mixing 43.10g of liquid bromine with 425.0 mL of chloroform. Assume that bromine does not ionize and therefore has a van't hoff factor of 1. (Make sure to show all your work!) b. Calculate the freezing point of a solution made by mixing 43.10g of solid naphthalene (CioH3) with 425.0 mL of chloroform. (Show all work!) 2. Look up the freezing point and freezing point depression constant of lauric acid. Be sure to cite the reference or URL.
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