Three gases (CO2, 02, and N) are trapped in individual bulbs of difterent volumes below. When the valves are opened, the individual gases expand and occupy the entire volume (10.00 L) of the apparatus. Assume that the temperature is constant. The mole fraction of each gas is equal to the partial pressure of a gas divided by the total pressure What is the mole fraction of N2(g) in the mixture? (XN2 = PN2/Ptotal) %3D Gas Volume (1) Pressure (atm) Bulb Carbon dioxide 3.00 1.00 Oxygen 1.00 1.00 Nitrogen 6.00 3.00 III O a 0.81 O b. 2.23 Oc 1.80 d. 0.500 0.654 f. The temperature must be known

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Three gases (CO, 02, and N) are trapped in individual bulbs of difterent volumes
below. When the valves are opened, the individual gases expand and occupy the entire volume (10.00 L) of the
apparatus. Assume that the temperature is constant.
The mole fraction of each gas is equal to the partial pressure of a gas divided by the total pressure
%3D
What is the mole fraction of N2(g) in the mixture? (XN2 = PN2/Ptotal)
Bulb
Gas
Volume (1)
Pressure (atm)
Carbon dioxide
3.00
1.00
Oxygen
1.00
1.00
Nitrogen
6.00
3.00
III
O a 0.81
O b. 2.23
O 1.80
d. 0.500
0.654
f.
The temperature must be known
Transcribed Image Text:Three gases (CO, 02, and N) are trapped in individual bulbs of difterent volumes below. When the valves are opened, the individual gases expand and occupy the entire volume (10.00 L) of the apparatus. Assume that the temperature is constant. The mole fraction of each gas is equal to the partial pressure of a gas divided by the total pressure %3D What is the mole fraction of N2(g) in the mixture? (XN2 = PN2/Ptotal) Bulb Gas Volume (1) Pressure (atm) Carbon dioxide 3.00 1.00 Oxygen 1.00 1.00 Nitrogen 6.00 3.00 III O a 0.81 O b. 2.23 O 1.80 d. 0.500 0.654 f. The temperature must be known
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