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If the number of molecule in a container...

If the number of molecule in a container is doubled. What will be the effect on the rms speed of the molecules?

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To solve the problem, we need to analyze the relationship between the number of molecules in a container and the root mean square (RMS) speed of those molecules. ### Step-by-Step Solution: 1. **Understanding RMS Speed**: The RMS speed (Vrms) of gas molecules is given by the formula: \[ V_{rms} = \sqrt{\frac{3RT}{m}} \] ...
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CBSE COMPLEMENTARY MATERIAL-KINETIC THEORY OF GASES-Objective question
  1. If the number of molecule in a container is doubled. What will be the ...

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  2. At what temperature is the rms velocity of a hydrogen molecule equal t...

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  3. The average kinetic energy of a gas molecule at 27^(@)C is 621xx10^(-1...

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  4. The equation of state for 5 g of oxygen at a pressure P and temperatur...

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  5. A gas is found to obey the law P^(2)V = constant. The initial temperat...

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  6. Every gas (real gas) behaves as an ideal gas

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  7. If gamma be the ratio of specific heats (C(p) & C(v)) for a perfect ga...

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  8. A gas is filled in a container at pressure P(0). If the mass of molecu...

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  9. The translational kinetic energy of gas molecules for 1 mol of gas is ...

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  10. Molecular motion shows itself as

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  11. A sample of gas is at 0^(@)C. The temperature at which its rms speed o...

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  12. The work done by (or on ) a gas per mole per kelvin is called

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  13. When a gas filled in a closed vessel is heated through 1^(@)C , its p...

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  14. The root mean square speed of the molecules of a gas is

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  15. The root mean square velocity of gas molecules is 10km//s. The gas is ...

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  16. According to the kinetic theory of gases, at absolute temperature

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  17. The quantity of heat required to raise one mole through 1K for a monoa...

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  18. The dimensions of universal gas constant is

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  19. An ant is moving on a plane horizontal surface. The number of degrees ...

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  20. The specific heat of gas

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  21. 250L of an ideal gas is heated at constant pressure from 27%(@)C such ...

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