
Graham's Law of Effusion
Presentation
•
Chemistry
•
11th - 12th Grade
•
Practice Problem
•
Medium
Standards-aligned
Audrey Nebzydoski
Used 65+ times
FREE Resource
10 Slides • 8 Questions
1
Graham's Law of Effusion
Mrs. Nebzydoski
2
Diffusion vs Effusion
Diffusion is when gases move throughout a space to reach an equilibrium.
Effusion is a gas escaping through a small hole.
3
Size matters:
Small gas particles travel faster than large gas particles
Small molecules effuse faster thsn larger molecules
4
Multiple Choice
Which will travel faster: oxygen gas or helium gas?
O2
He
5
Multiple Choice
Which travels faster? CO2 or Ar?
CO2
Ar
6
Equation:
The speed at which a gas effuses is dependent upon the size of the molecule.
7
Solving the equation:
We usual make gas B the BIGGER gas and gas A the smaller gas for calculations.
8
Example:
How much faster does hydrogen gas travel than neon gas?
Than answer is 3 x faster....
9
Multiple Choice
How much faster will He(g) travel than O2(g)?
4 times faster
2.8 times faster
0.35 times faster
0.125 times faster
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How to work out the last question...
11
Try this one on paper....
If an unknown gas travels 3 times faster than neon gas , what is the molar mass of the gas?
12
Multiple Choice
your answer to the problem you wrote down from the previous slide?
1.1 g/mol
2 g/mol
0.15 g/mol
0.45 g/mol
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How to solve the last problem
14
Multiple Choice
Usuing Graham's Law: If you had 2 identical balloons filled with Nitrogen gas (N2) and Helium gas (He), which balloon will deflate the fastest?
Helium balloon
nitrogen balloon
they will both deflate at the same rate
the balloons will both pop
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16
Multiple Choice
What is the chemical formula for the white solid "cloud" made in the reaction you just saw?
ammonia
hydrochloric acid
ammonium chloride
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Multiple Choice
Did the ammonium chloride cloud form closer to the NH3 side or the HCl side of the tube?
NH3
HCl
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Open Ended
Using Graham's Law: Explain why the cloud of ammonium chloride formed closer to the ammonia side of the tube than the hydrochloric acid side of the tube.
Graham's Law of Effusion
Mrs. Nebzydoski
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