a tank at is filled with of carbon dioxide gas and of dinitrogen difluoride gas. you can assume both gases behave as ideal gases under these conditions. calculate the mole fraction and partial pressure of each gas, and the total pressure in the tank. round each of your answers to significant digits

Respuesta :

We need to know the number of moles of each gas in the tank as well as the tank's overall pressure in order to determine the mole fraction and partial pressure of each gas.

Let's say, for illustration, that the tank has a total pressure of 100 atmospheres and contains 10 moles of carbon dioxide and 20 moles of dinitrogen difluoride. The mole fractions of carbon dioxide and dinitrogen difluoride would be 10/(10+20) = 0.33 and 0.67, respectively. Carbon dioxide would have a partial pressure of 0.33 * 100 atms, or 33 atms, while dinitrogen difluoride would have a partial pressure of 0.67 * 100 atms, or 67 atms. As predicted, the tank's overall pressure would be 100 atmospheres.The mole fraction of a gas is the proportion of that gas's moles to the total moles of all the gases in the tank. We can determine the overall pressure in the tank by summing the partial pressures of all the gases once we have the partial pressure and mole fraction of each gas.

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