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Problem twelve: A cylinder contains two samples of different ideal gases. A piston separating the two gaves is free to move w

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Answer #1

Using the Ideal gas equation PV nRT for each side of the cylinder and know that the piston is in the half of the cylinder, indicates that gases occupy the same volume, then.

P_1V=n_1RT_1

P_2V=n_2RT_2

combine both ecuations, we have that

\frac{n_1T_1}{P_1}=\frac{n_2T_2}{P_2}

substituting the values

\frac{6 moles\times400K}{P_1}=\frac{3 moles\times800 K}{P_2}\Rightarrow \frac{2400}{P_1}=\frac{2400}{P_2}

Therefore, the two gases must have the same pressure for the equation of state to be satisfied.

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