An ant is moving on a plane's horizontal surface. The number of degrees of freedom of the ant will be:
1. 1
2. 2
3. 3
4. 6

Subtopic:  Law of Equipartition of Energy |
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If a gas has 'f' degree of freedom, the ratio of the specific heats of the gases, CPCV is

(1) 1+f2

(2) 1+f2

(3) 1+1f

(4) 1+2f

Subtopic:  Specific Heat |
 79%
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Molar specific heat at constant volume, for a non-linear triatomic gas is: (vibration mode neglected)

(1) 3R

(2) 4R

(3) 2R

(4) R

Subtopic:  Specific Heat |
 73%
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A mixture of ideal gases has 2 moles of He, 4 moles of oxygen and 1 mole of ozone at absolute temperature T. The internal energy of the mixture is:

(1) 13RT

(2) 11RT

(3) 16RT

(4) 14RT

 

Subtopic:  Specific Heat |
 62%
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E0 and EH respectively represent the average kinetic energy of a molecule of oxygen and hydrogen. If the two gases are at the same temperature, which of the following statement is true?

(1) E0  > EH

(2) E0  = EH

(3) E0  < EH

(4) Data insufficient

Subtopic:  Kinetic Energy of an Ideal Gas |
 80%
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14 g of CO at 27 oC is mixed with 16 g of O2 at 47 oC. The temperature of the mixture is: (vibration mode neglected)

(1) - 5 oC

(2) 32 oC

(3) 37 oC

(4) 27 oC

Subtopic:  Specific Heat |
 66%
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When one mole of a monatomic gas is mixed with one mole of a diatomic gas, then the equivalent value of γ for the mixture will be: (vibration mode neglected)

(1) 1.33

(2) 1.40

(3) 1.50

(4) 1.6

Subtopic:  Specific Heat |
 64%
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A box of negligible mass containing 2 moles of an ideal gas of molar mass M and adiabatic exponent γ moves with constant speed v on a smooth horizontal surface. If the box suddenly stops, then the change in the temperature of the gas will be:

(1) (γ-1)Mv24R

(2) γMv22R

(3) Mv22(γ-1)R

(4) (γ-1)Mv22R

Subtopic:  Specific Heat |
 52%
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On increasing number density for a gas in a vessel, the mean free path of a gas:

(1) Decreases

(2) Increases

(3) Remains same

(4) Becomes double

Subtopic:  Mean Free Path |
 80%
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Two closed containers of equal volume are filled with air at pressure P0 and temperature T0. Both are connected by a narrow tube. If one of the containers is maintained at temperature T0 and the other at temperature T, then new pressure in the container will be:

1. 2P0TT+T0

2. P0TT+T0

3. P0T2(T+T0)

4. T+T0P0

Subtopic:  Ideal Gas Equation |
 56%
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