8. Calculate the mole fraction of water in the solution described in Q5. The density of pure water at 25 "C is 0.997 g mL ' (13.3). 9. Calculate the molality of a solution of DSW (13.3). 10. Calculate the molarity of a solution of D5W (13.3).

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Chapter1: Chemical Foundations
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5. At 25 "C, you make a homogeneous solution of 90.9 g of dextrose
in 100 mL of water. Is this solution saturated, unsaturated, or
supersaturated (13.2)?
Saturated
6. If you then cool this solution to 5 °C, and the solution remains
homogeneous, would the solution then be saturated, unsaturated, or
supersaturated (13.2)?
Supersaturated
7. Is DSW a saturated, unsaturated, or supersaturated solution of
dextrose in water (13.2)?
8. Calculate the mole fraction of water in the solution described in
Q5. The density of pure water at 25 °C is 0.997 g mL (13.3).
9. Calculate the molality of a solution of DSW (13.3).
10. Calculate the molarity of a solution of D5W (13.3).
11. Calculate the osmotic pressure Il of the solution of D5W (13.4).
2. Calculate the osmotic pressure II of the solution of dextrose from
Q5 (13.4).
3. What would happen to your patient's blood if you administered
an IV containing a solution of dextrose in water from Q5 (13.4)?
Be specific. The osmotic pressure of human blood at 37 °C is
about 7.5 atm.
Transcribed Image Text:5. At 25 "C, you make a homogeneous solution of 90.9 g of dextrose in 100 mL of water. Is this solution saturated, unsaturated, or supersaturated (13.2)? Saturated 6. If you then cool this solution to 5 °C, and the solution remains homogeneous, would the solution then be saturated, unsaturated, or supersaturated (13.2)? Supersaturated 7. Is DSW a saturated, unsaturated, or supersaturated solution of dextrose in water (13.2)? 8. Calculate the mole fraction of water in the solution described in Q5. The density of pure water at 25 °C is 0.997 g mL (13.3). 9. Calculate the molality of a solution of DSW (13.3). 10. Calculate the molarity of a solution of D5W (13.3). 11. Calculate the osmotic pressure Il of the solution of D5W (13.4). 2. Calculate the osmotic pressure II of the solution of dextrose from Q5 (13.4). 3. What would happen to your patient's blood if you administered an IV containing a solution of dextrose in water from Q5 (13.4)? Be specific. The osmotic pressure of human blood at 37 °C is about 7.5 atm.
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