Henry's law is important in environmental chemistry, where it predicts the distribution of pollutants between water and the atmosphere. The hydrocarbon 1,3-butadiene (C4H6) emitted in wastewater streams, for example, can pass into the air, where it is degraded by processes induced by light from the sun. The Henry's law constant for 1,3-butadiene in water at 25 °C is 3960 atm, when the following form of the law is used: P1,3-butadiene-1,3-butadiene X1,3-butadiene Calculate the partial pressure of 1,3-butadiene vapor in equilibrium with a solution of 1.81 g of 1,3-butadiene per 1000 L of water. How many 1,3-butadiene molecules are present in each cubic centimeter of vapor? P1,3-butadiene atm molecules per cubic centimeter

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Chapter1: Chemical Foundations
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Henry's law is important in environmental chemistry, where it predicts the distribution of pollutants between water and the
atmosphere. The hydrocarbon 1,3-butadiene (C4H6) emitted in wastewater streams, for example, can pass into the air, where it
is degraded by processes induced by light from the sun.
The Henry's law constant for 1,3-butadiene in water at 25 °C is 3960 atm, when the following form of the law is used:
P1,3-butadiene = k1,3-butadiene X1,3-butadiene
Calculate the partial pressure of 1,3-butadiene vapor in equilibrium with a solution of 1.81 g of 1,3-butadiene per 1000 L of
water. How many 1,3-butadiene molecules are present in each cubic centimeter of vapor?
P1,3-butadiene
atm
molecules per cubic centimeter
Transcribed Image Text:Henry's law is important in environmental chemistry, where it predicts the distribution of pollutants between water and the atmosphere. The hydrocarbon 1,3-butadiene (C4H6) emitted in wastewater streams, for example, can pass into the air, where it is degraded by processes induced by light from the sun. The Henry's law constant for 1,3-butadiene in water at 25 °C is 3960 atm, when the following form of the law is used: P1,3-butadiene = k1,3-butadiene X1,3-butadiene Calculate the partial pressure of 1,3-butadiene vapor in equilibrium with a solution of 1.81 g of 1,3-butadiene per 1000 L of water. How many 1,3-butadiene molecules are present in each cubic centimeter of vapor? P1,3-butadiene atm molecules per cubic centimeter
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