There is H2 gas at 27 °C in the first of two separate closed equal volume containers and the other H2 gas at 127 °C. Since the pressures of the gases are equal, what is the ratio of the gas mass in the 1st container to the gas mass in the 2nd container? (H:1)

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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There is H2 gas at 27 °C in the first of two separate closed equal volume containers and the other H2 gas at 127 °C. Since the pressures of the gases are equal, what is the ratio of the gas mass in the 1st container to the gas mass in the 2nd container? (H:1)

 
 
 
 
 a)

 3/2

 B)

 5/4

 NS)

4/3

 D)

 1/2 

 TO)

 7/5

Expert Solution
Step 1

The ideal gas equation is 

 

PV = nRT PV = (mM)RT     [ moles (n) = mass/molar mass]m = PVMRT

m = mass of the gas 

P = pressure 

V = volume of flask

M = molar mass of the gas

R = gas constant

T = temperature in Kelvin 

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