Q.Henry's law constant for in water is Pa at 298 K. Calculate the quantity of in 500 mL of soda water when packed under 2.5 atm pressure at 298 K.
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Start your 14-day free trial to unlock the full solution →This problem uses Henry's Law to relate the partial pressure of above soda water to its mole fraction dissolved in the water. We then convert this mole fraction to the mass of dissolved in 500 mL of water, finding it to be approximately .
Henry's Law describes the relationship between the partial pressure of a gas above a liquid and the concentration of that gas dissolved in the liquid. It's a fundamental concept for understanding how gases like dissolve in beverages like soda water. The higher the partial pressure of the gas, the more of it will dissolve in the liquid, up to a certain point.
The law is expressed as:
Where:
is the partial pressure of the gas above the solution.
is Henry's Law constant for the specific gas and solvent at a given temperature.
is the mole fraction of the gas dissolved in the solution.
In soda water, gas is dissolved under pressure. When you open a bottle of soda, the pressure above the liquid decreases, causing the dissolved to come out of solution as bubbles, which is why it fizzes. This problem asks us to calculate the amount of dissolved when packed under a specific pressure.
Let's break down the calculation step-by-step:
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Identify Given Values and Target:
We are given:
- Henry's Law constant for () = Pa
- Volume of soda water = 500 mL
- Partial pressure of () = 2.5 atm
- Temperature = 298 K (This confirms the value is appropriate for the conditions, but isn't directly used in the calculation itself).
Our goal is to find the "quantity" of , which typically means its mass in grams or moles.
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Convert Units for Consistency:
Henry's Law constant () is given in Pascals (Pa), but the pressure () is in atmospheres (atm). To use the formula correctly, both pressure values must be in the same units. We'll convert atmospheres to Pascals.
We know that .
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Apply Henry's Law to Find the Mole Fraction of :
Now we can use Henry's Law to find the mole fraction () of dissolved in the water.
Rearranging for :
This mole fraction is a dimensionless quantity, representing the ratio of moles of to the total moles in the solution.
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Calculate Moles of Solvent (Water):
Soda water is primarily water. We can assume that the 500 mL volume refers to the volume of water.
The density of water is approximately .
Mass of water = Volume Density
Mass of water =
Next, we need the molar mass of water ().
Molar mass of .
Moles of water () =
Watch outWe assume the density of soda water is approximately the same as pure water. This is a reasonable approximation because the amount of dissolved is very small, as we will see.
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Relate Mole Fraction to Moles of : …
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