Mean Free Path: Definition, Impact of Size & Density

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The discussion centers on the concept of mean free path, defined as the average distance a molecule travels before colliding with another. Key points include that the mean free path decreases with increasing molecular size and density, while it is influenced by temperature, as higher temperatures increase molecular energy and collision frequency. The user initially selected statements 1, 5, and 6, believing them to be correct, but was informed that this selection was incorrect. The correct understanding emphasizes that larger molecules and higher density lead to a shorter mean free path, while the definition of mean free path is accurately captured in statement 6. Clarification on the formula for mean free path could provide further insight into the factors affecting its value.
lando45
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My teacher has set me this question:

Which of the following statements about the mean free path is correct?

1. The mean free path decreases as the size of the molecules increases.
2. The mean free path increases with the size of the molecules.
3. The mean free path decreases as the density of molecules increases.
4. The mean free path increases with the density of molecules.
5. The mean free path depends on the temperature of the gas.
6. The mean free path is the average distance traveled by a molecule between collisions.
7. The mean free path is the longest distance a particle can travel without colliding.


It doesn't specify how many of the statements are correct, so I tried selecting 1, 5 and 6, but that's incorrect.

I believe the definition of "mean free path" to the be the average distance a particle travels in a container before it collides with another particle.

So I chose 1 because increasing the size of the particles would make collisions more frequent, due to less free space in the container, and therefore a lower mean free path.

I chose 5 because if the temperature of the gas increases, the particles will have more energy, and will therefore move more eratically, causing more collisions, and therefore a low mean free path.

And finally, I chose 6 because this is basically a definition of the term.

Now why didn't I get this question right? Are the 3 options I've chosen correct? Should I be selecting any additional options? Or are the ones I've selected incorrect?
 
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Have you seen the formula for mean free path? From this can you tell what cause it to increase and decrease.
 
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