Henry's Law Constant for nitrogen in water is 1.67 x 10–4 M•atm–1. If a closed canister contains 0.103 M nitrogen, what would be its pressure in atm?
9. Solutions
Henry's Law Calculations
- Multiple Choice1118views
- Multiple Choice
At 0ºC and 1.00 atm, as much as 0.84 g of O2 can dissolve in 1.0 L of water. At 0ºC and 4.00 atm, how many grams of O2 dissolve in 1.0 L of water?
405views - Multiple Choice
The atmospheric pressure in a lab is calculated as 1.3 atm. If oxygen gas contributes 62% of this atmospheric pressure, determine its mass (in g) dissolved at room temperature in 25 L of water. The Henry's Law Constant for oxygen in water at this temperature is 5.3 x 10-5 M/atm.
313views - Textbook Question
At a total atmospheric pressure of 1.00 atm, the partial pressure of CO2 in air is approximately 4.0 × 10-4atm. Using the data in Problem 9.4, what is the solubility of CO2 in an open bottle of seltzer water at 20 °C?
1647views - Textbook Question
The solubility of NH3 gas in water at an NH₃ pressure of 760.0 mmHg and 25°C is 51.8 g/100 mL and 27.0 g/100 mL at 50°C.
a.What is the solubility of NH3 if its partial pressure is reduced to 225.0 mmHg?
1683views - Textbook Question
The solubility of NH3 gas in water at an NH3 pressure of 760.0 mmHg and 25°C is 51.8 g/100 mL and 27.0 g/100 mL at 50°C.
b. How many moles of NH3 would be released from 1.0 L of a saturated NH3 solution if the temperature was increased from 25 to 50 °C?
1684views - Textbook Question
The solubility of CO2 gas in water is 0.15 g/100 mL at a CO2 pressure of 760 mmHg.
b. An atmospheric concentration of 380 ppm, CO2 corresponds to a partial pressure of 0.00038 atm. What percentage of the CO2 originally dissolved in the solution in part (a) remains in solution after the soft drink reaches equilibrium with the ambient atmosphere?
994views