The vapor pressure of chloroform is 173.11 mm Hg at 25 °C. A nonvolatile, nonelectrolyte that dissolves in chloroform is aspirin. Calculate the vapor pressure of the solution at 25 °C when 6.106 grams of aspirin, C,H§O4 (180.1 g/mol), are dissolved in 232.2 grams of chloroform. chloroform = CHCI3 = 119.40 g/mol. VP(solution) = mm Hg

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Chapter1: Chemical Foundations
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as per guidelines you can answer these two question because they are bits of the same question

The vapor pressure of chloroform is 173.11 mm Hg at 25 °C. A nonvolatile, nonelectrolyte that dissolves in chloroform is aspirin.
Calculate the vapor pressure of the solution at 25 °C when 6.106 grams of aspirin, C,H3O4 (180.1 g/mol), are dissolved in 232.2
grams of chloroform.
chloroform = CHCI3 = 119.40 g/mol.
%3|
VP(solution) =
mm Hg
Transcribed Image Text:The vapor pressure of chloroform is 173.11 mm Hg at 25 °C. A nonvolatile, nonelectrolyte that dissolves in chloroform is aspirin. Calculate the vapor pressure of the solution at 25 °C when 6.106 grams of aspirin, C,H3O4 (180.1 g/mol), are dissolved in 232.2 grams of chloroform. chloroform = CHCI3 = 119.40 g/mol. %3| VP(solution) = mm Hg
The vapor pressure of diethyl ether (ether) is 463.57 mm Hg at 25°C.
How many grams of chlorophyll, C55H72MGN4O5, a nonvolatile, nonelectrolyte (MW = 893.5 g/mol), must be added to 261.2
grams of diethyl ether to reduce the vapor pressure to 456.20 mm Hg ?
diethyl ether = CH;CH,0CH2CH3 = 74.12 g/mol.
g chlorophyll
Transcribed Image Text:The vapor pressure of diethyl ether (ether) is 463.57 mm Hg at 25°C. How many grams of chlorophyll, C55H72MGN4O5, a nonvolatile, nonelectrolyte (MW = 893.5 g/mol), must be added to 261.2 grams of diethyl ether to reduce the vapor pressure to 456.20 mm Hg ? diethyl ether = CH;CH,0CH2CH3 = 74.12 g/mol. g chlorophyll
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