The mean free path for gas, with molecular diameter \(d\) and number density can be expressed as:

1. \(\dfrac{1}{\sqrt{2} n πd^{2}}\)

2. \(\dfrac{1}{\sqrt{2} n^{2} πd^{2}}\)

3. \(\dfrac{1}{\sqrt{2} n^{2} \pi^{2} d^{2}}\)

4. \(\dfrac{1}{\sqrt{2} n πd}\)

Subtopic:  Mean Free Path |
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The mean free path of gas molecules depends on:
(\(d=\) molecular diameter)

1. \(d\) 2. \(d^2\)
3. \(d^{-2}\) 4. \(d^{-1}\)
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The mean free path of molecules of a gas, (radius \(r\)) is inversely proportional to:
1. \(r^3\)
2. \(r^2\)
3. \(r\)
4. \(\sqrt{r}\)

Subtopic:  Mean Free Path |
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NEET - 2014
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On increasing the number density of a gas in a vessel, the mean free path of a gas:
1. decreases 2. increases
3. remains the same  4. becomes double
Subtopic:  Mean Free Path |
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