11. In the drawing to the right, fill in gas particles to represent Henry's Law." 12. Write the equation for Henry's Law. 13. If the pressure in a closed system increases, the solubility of a gas 14. The solubility of methane in water at 20°C and 1.00 atm pressure is 0.026 g/L. If the temperature remains constant, what will be the solubility of this gas at the following 3₁ pressures 5₂=2 J,P₂ by P₁ A³₂ 0.60 atm B) ₁₂ P. - P2 1.80 atm

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11. In the drawing to the right, fill in gas particles to represent Henry's Law. P.-P2
12. Write the equation for Henry's Law.
13. If the pressure in a closed system increases, the solubility of a gas
14. The solubility of methane in water at 20°C and 1.00 atm pressure is
0.026 g/L. If the temperature remains constant, what will be the solubility of this gas at the following
3₁
pressures
5₂=2
J,P₂
by
P₁
A³₂
0.60 atm
B) ₁₂
1.80 atm
Transcribed Image Text:11. In the drawing to the right, fill in gas particles to represent Henry's Law. P.-P2 12. Write the equation for Henry's Law. 13. If the pressure in a closed system increases, the solubility of a gas 14. The solubility of methane in water at 20°C and 1.00 atm pressure is 0.026 g/L. If the temperature remains constant, what will be the solubility of this gas at the following 3₁ pressures 5₂=2 J,P₂ by P₁ A³₂ 0.60 atm B) ₁₂ 1.80 atm
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