1. Given the following mixture of two compounds 40.00 g of X (MW =60.00 g/mol)(density 0.961 g/mL) and 610.00 g of Y (77.00 g/mol))(density 1.138 g/mL), calculate the molarity of X.   2. Given the following mixture of two compounds 30.00 mL of X (MW =78.00 g/mol)(density 0.819 g/mL) and 665.00 g of Y (60.00 g/mol))(density 0.942 g/mL), calculate the molarity of X.   3. Given the following mixture of two compounds 55.00 g of X (MW =95.00 g/mol)(density 1.116 g/mL) and 615.00 mL of Y (68.00 g/mol))(density 0.823 g/mL), calculate the molality of X.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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1. Given the following mixture of two compounds 40.00 g of X (MW =60.00 g/mol)(density 0.961 g/mL) and 610.00 g of Y (77.00 g/mol))(density 1.138 g/mL), calculate the molarity of X.

 

2. Given the following mixture of two compounds 30.00 mL of X (MW =78.00 g/mol)(density 0.819 g/mL) and 665.00 g of Y (60.00 g/mol))(density 0.942 g/mL), calculate the molarity of X.

 

3. Given the following mixture of two compounds 55.00 g of X (MW =95.00 g/mol)(density 1.116 g/mL) and 615.00 mL of Y (68.00 g/mol))(density 0.823 g/mL), calculate the molality of X.

 

4. Given the following mixture of two compounds 40.00 mL of X (MW =69.00 g/mol)(density 1.234 g/mL) and 710.00 mL of Y (81.00 g/mol))(density 1.209 g/mL), calculate the molality of X.

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