Equal moles of hydrogen and oxygen gases are placed in a container with a pin-hole through which both can escape. What fraction of the oxygen escapes in the time required for one-half of the hydrogen to escape?
 
1. 1/4
2. 3/8
3. 1/2
4. 1/8

Subtopic:  Graham's Law |
 64%
NEET - 2016
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Equal masses of H2, O2 and CH4 have been taken in a container of volume V at temperature 27 ºC in identical conditions. The ratio of the volumes of gases H2:O2 : CH4 would be:

1. 8:16:1
2. 16:8:1
3. 16:1:2
4. 8:1:2

Subtopic:  Gas Laws |
 75%
AIPMT - 2014
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Which is not correct curve for gay-lusacc's law?

1 .  

2.     

3.   

4.     

 

Subtopic:  Gas Laws |
 69%
From NCERT
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In two vessels of 1 litre each at the same temperature 1 g of H2 and 1 g of CH4 are taken, for these:

1.  Vrms values will be same

2.  Kinetic energy per mol will be same

3.  Total kinetic energy will be same

4.  Pressure will be same

Subtopic:  Kinetic Theory of Gas |
 61%
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 The van der Waals parameters for gases W, X, Y and Z are

Gas

a (atm L2 mol-2)

b(L mol-1)

W

4.0

0.027

X

8.0

0.030

Y

6.0

0.032

Z

12.0

0.027

Which one of these gases has the highest critical temperature?

1.  W

2.  X

3.  Y

4.  Z

Subtopic:  Compressibility Factor |
 77%
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The excluded volume of a gas will be larger, if TCPC is:

1.  small

2.  large

3.  equal to 1

4.  less than unity

Subtopic:  Compressibility Factor |
 66%
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However great the pressure, a gas cannot be liquified above its:

1.  Boyle temperature

2.  Inversion temperature

3.  Critical temperature

4.  Room temperature

Subtopic:  Liquefaction of Gases & Liquid |
 83%
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The van der Waal's equation of law of corresponding states for 1 mole of gas is:

1.  Pr+3Vr2 3Vr-1=8Tr

2.  Pr-3Vr2 3Vr-1=8Tr

3.  Pr+3Vr2 3Vr+1=8πTr

4.  Pr+3Vr2 3Vr+1=8

Subtopic:  Kinetic Theory of Gas |
 69%
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Calculate isothermal compressibility constant for an ideal gas at 2 atm pressure.

1. 0.3 atm-1

2. 0.4 atm-1

3. 0.5 atm-1

4. 0.6 atm-1

Subtopic:  Gas Laws |
 58%
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An air bubble starts rising from the bottom of a lake, its diameter is 3.6 mm at the bottom and 4 mm at the surface. The depth of the lake is 250 cm and the temperature at the surface is 40°C. What is the temperature at the bottom of the lake? (Given atmospheric pressure = 76 cm of Hg and g=980 cm sec-2. Neglect surface tension effect).

1. 293.46 K

2. 193.7K

3. 283.3 K

4. 280.4K

Subtopic:  Ideal Gas Law |
 56%
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