The equation of state for 5 g of oxygen at a pressure P and temperature T, when occupying a volume V, will be

1. PV=5/32RT                               

2. PV=5RT

3. PV=5/2RT                                 

4. PV=5/16RT

(where R is the gas constant)

Subtopic:  Ideal Gas Equation |
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At a given volume and temperature, the pressure of a gas :

1. Varies inversely as its mass

2. Varies inversely as the square of its mass

3. Varies linearly as its mass

4. Is independent of its mass

Subtopic:  Ideal Gas Equation |
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Two thermally insulated vessels \(1\) and \(2\) are filled with air at temperatures \(\mathrm{T_1},\) \(\mathrm{T_2},\) volume \(\mathrm{V_1},\) \(\mathrm{V_2}\) and pressure \(\mathrm{P_1},\) \(\mathrm{P_2}\) respectively. If the valve joining the two vessels is opened, the temperature inside the vessel at equilibrium will be:

1. \(T_1+T_2\) 2. \(\dfrac{T_1+T_2}{2}\)
3. \(\dfrac{T_1T_2(P_1V_1+P_2V_2)}{P_1V_1T_2+P_2V_2T_1}\) 4. \(\dfrac{T_1T_2(P_1V_1+P_2V_2)}{P_1V_1T_1+P_2V_2T_2}\)
Subtopic:  Ideal Gas Equation |
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In Vander Waal’s equation, a and b represent P+aV2v-b=RT

1. Both a and b represent correction in volume

2. Both a and b represent adhesive force between molecules

3. a represents adhesive force between molecules and b correction in volume

4. a represents correction in volume and b represents adhesive force between molecules

Subtopic:  Ideal Gas Equation |
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At 0°C the density of a fixed mass of a gas divided by pressure is x. At 100°C, the ratio will be:

1. x                                   

2. 273373x

3. 373273x                           

4. 100273x

Subtopic:  Ideal Gas Equation |
 73%
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If an ideal gas has volume V at 27°C and it is heated at a constant pressure so that its volume becomes 1.5V. Then the value of final temperature will be

1. 600°C                             

2. 177°C

3. 817°C                             

4. None of these

Subtopic:  Ideal Gas Equation |
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In Boyle's law what remains constant :

1. PV                                     

2. TV

3. VT                                     

4. PT

Subtopic:  Ideal Gas Equation |
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Equation of gas in terms of pressure (P), absolute temperature (T) and density (d) is :

1. P1T1d1=P2T2d2                                 

2. P1T1d1=P2T2d2

3. P1d2T1=P2d1T1                                 

4. P1d1T1=P2d2T2

Subtopic:  Ideal Gas Equation |
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The respective speeds of the molecules are 1, 2, 3, 4 and 5 km/sec. The ratio of their r.m.s. velocity and the average velocity will be

1. 11 : 3                                   

2. 3 : 11

3. 1 : 2                                         

4. 3 : 4

Subtopic:  Types of Velocities |
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Two vessels having equal volume contain molecular hydrogen at one atmosphere and helium at two atmospheres respectively. If both samples are at the same temperature, the mean velocity of hydrogen molecules is

1. Equal to that of helium                           

2. Twice that of helium

3. Half that of helium                                 

4. 2 times that of helium

Subtopic:  Types of Velocities |
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