A researcher prepared three flasks with 5.00L that is fixed with pressure gauges and small valves, each ndividual flask is composed of 4.00g of an ideal gas at 273 K. Each flask is labeled ABC respectively, flask A contains 16.04 g/mol, flask B contains 20.18 g/mol Ne, and flask C contains an unknown gas. 1. Given that the internal pressure of flask C is 0.640 atm, find the molar mass of the gas it contains. 2. Arrange the gases in increasing diffusion rates when the valves have been opened. (Ex. A

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Please help me with this problem, kindly answer number 1, 2 and 3. And show solution for each. Thank you.

A researcher prepared three flasks with 5.00 L that is fixed with pressure gauges and small valves, each
individual flask is composed of 4.00g of an ideal gas at 273 K. Each flask is labeled ABC respectively, flask
A contains 16.04 g/mol, flask B contains 20.18 g/mol Ne, and flask C contains an unknown gas.
1. Given that the internal pressure of flask C is 0.640 atm, find the molar mass of the
gas
it contains.
2. Arrange the gases in increasing diffusion rates when the valves have been opened. (Ex. A<B<C).
3. If put into example that three gases are collected into a flask with 5.00-L under the same
temperature, find the total pressure in atmospheres.
Transcribed Image Text:A researcher prepared three flasks with 5.00 L that is fixed with pressure gauges and small valves, each individual flask is composed of 4.00g of an ideal gas at 273 K. Each flask is labeled ABC respectively, flask A contains 16.04 g/mol, flask B contains 20.18 g/mol Ne, and flask C contains an unknown gas. 1. Given that the internal pressure of flask C is 0.640 atm, find the molar mass of the gas it contains. 2. Arrange the gases in increasing diffusion rates when the valves have been opened. (Ex. A<B<C). 3. If put into example that three gases are collected into a flask with 5.00-L under the same temperature, find the total pressure in atmospheres.
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