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The Henry's law constant for $\mathrm{O}_{2}$ is …

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Problem 23 Easy Difficulty

The Henry's law constant for $\mathrm{CO}_{2}$ is $3.4 \times 10^{-2} \mathrm{Matm}$ at $25^{\circ} \mathrm{C}$ . What pressure of carbon dioxide is needed to maintain a $\mathrm{CO}_{2}$ concentration of 0.10 $\mathrm{M}$ in a can of lemon-lime soda?

Answer

2.9 $\mathrm{atm}$

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01:16

Aadit S.

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Chemistry 102

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Chapter 11

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Video Transcript

To answer this question, we need to use Henry's Law. Henry's law relates the concentration of a gas in a solution to the vapor to the partial pressure of the gas over the solution. With an equation such as this, one concentration of gas is equal to a constant, multiplied by the partial pressure of the gas over the solution. So if we know the K value of 3.4 times 10 to the negative two moles per liter atmosphere, we can solve for the pressure. If we know the concentration, The pressure required to achieve a concentration of .10 moles per liter Would be equal to 2.9 atmospheres. You'll notice that all the units cancel, except for 1/1 over atmospheres and 1/1 over X. Is X. So 1/1 over atmospheres is simply atmospheres.

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Paul Flowers, Klaus Theopold, Richard Langley, William R. Robinson

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