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Two balloons are filled, one with pure H...

Two balloons are filled, one with pure He gas and other by air respectively. If the pressure and temperature of these balloons are same, then the number of molecules per units volume is

A

more in the He filled balloon

B

same in both balloons

C

more in air filled balloons

D

in the ratio of 1:4

Text Solution

Verified by Experts

The correct Answer is:
B

Ideal gas equation can be written as
pv=nRT
or `n/v=p/(RT)`=constant
So, at constant pressure and temperature, all gases, will contain equal number of molecules per unit volume.
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RESONANCE ENGLISH-KINETIC THEORY OF GASES AND THERMODYNAMICS-Exercise
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  2. If an electric fan be switched on in a closed room, will the air of th...

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  3. Two balloons are filled, one with pure He gas and other by air respect...

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  4. A diatomic molecules has

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  5. Each molecule of a gas has f degree of freedom. The ratio (C(P))/(Cv)=...

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  6. One mole of gas having gamma =7//5 is mixed with 1 mole of a gas havin...

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  7. A gas is found to be obeyed the law p^2V = constant. The initial tempe...

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  8. The value of gamma of linear, arragement of triatomic gas molecules is

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  9. If the molar specific heat of a gas at constant pressure is 7/2R, then...

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  10. The internal energy change in a system that has absorbed 2 kcal of hea...

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  11. If Delta U and Delta W represent the increase in internal energy and w...

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  12. A monoatomic gas at pressure P(1) and volume V(1) is compressed adiaba...

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  13. A mass of diatomic gas (gamma = 1.4) at a pressure of 2 atmosphere is ...

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  14. When temperature of a gas is increased then which of the following sta...

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  15. A thermos flask contains coffee. It is vigorously sheken, considering ...

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  16. The work done by a gas taken through the closed process ABCA, see fig...

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  17. A thermodynamic system is taken through the cycle ABCD as shown in fig...

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  18. For adiabatic process of an ideal gas the value of (dP)/P is equals to

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  19. The change in internal energy of two moles of a gas during adiabatic e...

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  20. isobaric modulus of elasticity is

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