20 L of SO2 diffuses through a porous partition in 60s. The volume of O2 that will diffuse under similar condition in 30s will be:-

1. 12.14 L

2. 14.14 L

3. 18.14 L

4. 28.14 L

Subtopic:  Graham's Law |
 79%
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At high pressure, the compressibility factor 'Z' is equal to -

1.  Unity

2. 1-PbRT
3. 1+PbRT

4.  Zero

Subtopic:  Compressibility Factor | van der Waal’s Correction |
 73%
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In which case is the rate of diffusion highest if all are present in the same container at the same temperature:

1. 4 g H2

2. 32 g O2

3. 22 g CO2

4. 56 g N2

Subtopic:  Graham's Law |
 73%
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The unit of van der Waals' constant 'b' is -

1. cm3 mol-1

2. litre mol-1

3. m3 mol-1

4. All of the above

Subtopic:  van der Waal’s Correction |
 74%
From NCERT
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At room temperature, the average speed of Helium is higher than that of Oxygen by a factor of -

1. 22

2. 6/2

3. 8

4. 6

Subtopic:  Molecular Velocity |
 88%
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Van der Waals equation at low pressure is -

1. PV = RT - Pb

2. PV = RT - aV

3. PV = RT + av

4. PV = RT + Pb

Subtopic:  van der Waal’s Correction |
 67%
From NCERT
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The compressibility factor for 1 mol of a van der Waals gas at 0°C and 100 atmospheric pressure is found to be 0.5. The volume of gas is-

1. 2.0224 L

2. 1.4666 L

3. 0.8542 L

4. 0.1119 L

Subtopic:  Compressibility Factor |
 68%
From NCERT
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A helium atom is two times heavier than a hydrogen molecule. At 298 K, the average kinetic energy of a helium atom is-

1. Same as that of a hydrogen molecule

2. Half that of a hydrogen molecule

3. Two times that of a hydrogen molecule 

4. Four times that of a hydrogen molecule 

Subtopic:  Kinetic Theory of Gas |
 68%
From NCERT
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A 2.24 L cylinder of oxygen at STP is found to develop a leakage. When the leakage was plugged, the pressure dropped to 570 mm of Hg. The number of moles of gas that escaped will be:

1. 0.050

2. 0.025

3. 0.075

4. 0.01

Subtopic:  Ideal Gas Law |
 60%
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At 0°C, the density of a certain oxide of a gas at 2 bar is the same as that of dinitrogen at 5 bar.

The molecular mass of the oxide would be -

1. 35 g/mol

2. 45 g/mol

3. 70 g/mol

4. 60 g/mol

Subtopic:  Gas Laws |
 76%
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