Home
Class 11
CHEMISTRY
The average veloctiy of an ideal gas mol...

The average veloctiy of an ideal gas molecule at `27^(@)C` is `0.3 m s^(-1)`. The average velocity at `927^(@)C` will be

A

0.6 m/sec

B

0.3 m/sec

C

0.9 m/sec

D

3.0 m/sec

Text Solution

Verified by Experts

The correct Answer is:
A

`bar(v) = sqrt((8 RT)/(pi M)) :. (bar(v)_(1))/(bar(v)_(2)) = sqrt((T_(1))/(T_(2)))`
`bar(v)_(1) = 0.3 ms^(-1), T_(1) = 27^(2)C = 300 K`
`bar(v)_(2) = ?, T_(2) = 927^(@)C = 1200 K`
`(0.3 ms^(-1))/(bar(v)_(2)) = sqrt((300 K)/(1200 K))`
`:. bar(v)_(2) = 2 xx (0.3 ms^(-1)) = 0.6 ms^(-1)`
Promotional Banner

Similar Questions

Explore conceptually related problems

The average velocity of an ideal gas molecule at 27^oC is 0.5 m/s. The average velocity at 927^o C will be

The average velocity of an ideal gas molecule at 27^oC is 0.4 m/s. The average velocity at 927^o C will be

The average velocity of an ideal gas molecule at 27^oC is 0.6m/s. The average velocity at 927^o C will be

The average velocity of an ideal gas molecule at 27^oC is 0.7m/s. The average velocity at 927^o C will be

The average velocity of an ideal gas molecule at 27^oC is 0.8m/s. The average velocity at 927^o C will be .

The average velocity of an ideal gas molecule at 27^oC is 0.9m/s. The average velocity at 927^o C will be .

The average speed of an ideal gas molecule at 27^(@)C is 0.3 m, sec^(-1) . The average speed at 927^(@)C

The average kinetic energy of a gas molecule is

Calculate the average velocity of oxygen molecule at 27^@C .

The average velocity of an ideal gas at 0^(@)C is 0.4 ms^(-1) . If the temperature of gas is increased to 546^(@)C its average velocity will be