Two samples of gas are separated in two rectangular 3.00-L chambers by a thin metal wall. One sample is pure helium and the other is pure radon. Both samples are at 27°C and show a pressure of 3.90 x 10 atm. Assuming that the metal wall separating the gases suddenly develops a circular hole of radius 4.00 x 10 calculate the pressure in each chamber after 13.0 h have passed. Consider that each gas molecule reaching the hole goes into other chamber and never return back to the side in which it initially began. m.

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Two samples of gas are separated in two rectangular 3.00-L chambers by a thin metal wall. One sample is pure helium and the other is pure radon. Both samples are at
27°C and show a pressure of 3.90 x 10 atm. Assuming that the metal wall separating the gases suddenly develops a circular hole of radius 4.00 x 10- m.
calculate the pressure in each chamber after 13.0 h have passed. Consider that each gas molecule reaching the hole goes into other chamber and never return back to
the side in which it initially began.
Pressure in He-chamber
atm
Pressure in Rn-chamber =
atm
Transcribed Image Text:Two samples of gas are separated in two rectangular 3.00-L chambers by a thin metal wall. One sample is pure helium and the other is pure radon. Both samples are at 27°C and show a pressure of 3.90 x 10 atm. Assuming that the metal wall separating the gases suddenly develops a circular hole of radius 4.00 x 10- m. calculate the pressure in each chamber after 13.0 h have passed. Consider that each gas molecule reaching the hole goes into other chamber and never return back to the side in which it initially began. Pressure in He-chamber atm Pressure in Rn-chamber = atm
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