Answer:
0.0126 moles are released
Explanation:
Using Henry's law, where the amount of dissolved gas in a liquid is proportional to its partial pressure above the liquid:
S = kĆP
Where S is solubility (5.6x10ā»ā“molLā»Ā¹), k is Henry's constant and P is partial pressure (0.80atm)
Replacing:
5.6x10ā»ā“molLā»Ā¹ / 0.80atm = 7x10ā»ā“molLā»Ā¹atmā»Ā¹
Thus, with Henry's constant, solubility of Nā when partial pressure is 3.8atm is:
S = 7x10ā»ā“molLā»Ā¹atmā»Ā¹ Ć 3.8atm
S = 2.66x10ā»Ā³molLā»Ā¹
Thus, when the deepd-sea diver has a pressure of 3.8amt, moles dissolved are:
6.0L Ć 2.66x10ā»Ā³molLā»Ā¹ = 0.01596 moles of Nā
At the surface, pressure is 0.80atm and solubility is 5.6x10ā»ā“molLā»Ā¹, moles dissolved are:
6.0L Ć 5.6x10ā»ā“molLā»Ā¹ = 3.36x10ā»Ā³mol
Thus, released moles are:
0.01596mol - 3.36x10ā»Ā³mol = 0.0126 moles are released