Extent of adsorption of adsorbate from the solution phase increases with:
1. Increase in amount of adsorbate in solution.
2. Decrease in surface area of adsorbent.
3.  Increase in temperature of solution.
4. Decrease in amount of adsorbate in solution.

Subtopic:  Adsorption and Absorption |
 74%
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Physical adsorption is not favoured by : 

1. High pressure.

2. Negative H

3. Higher critical temperature of adsorbate.

4. High temperature.

 
Subtopic:  Adsorption and Absorption |
 82%
From NCERT
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Extent of physisorption of a gas increases with ......

1. Increase in temperature.

2. Decrease in temperature.

3.  Decrease in surface area of adsorbent.

4.  Decrease in strength of van der Waals’ force. 

Subtopic:  Adsorption and Absorption |
 88%
From NCERT
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An emulsion cannot be broken by ............. and ................

1. Heating.

2. Adding more amount of dispersion medium.

3. Freezing.

4. Centrifugation

Subtopic:  Emulsions |
 63%
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Physical adsorption of a gaseous species may change to chemical adsorption with ..........

1.  Decrease in temperature.

2.  Increase in temperature.

3.  Increase in surface area of adsorbent.

4.  Decrease in surface area of adsorbent.

Subtopic:  Adsorption and Absorption |
 77%
From NCERT
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In physisorption adsorbent does not show specificity for any particular gas because..........

1.  Involved van der Waals’ forces are universal.

2.  Gases involved behave like ideal gases.

3.  Enthalpy of adsorption is low.

4.  It is a reversible process.

Subtopic:  Adsorption and Absorption |
 74%
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Among the following options the example of absorption is :

1.  Water on silica gel.

2.  Water on calcium chloride.

3.  Hydrogen on finely divided nickel.

4.  Oxygen on metal surface.

Subtopic:  Adsorption and Absorption |
 67%
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On the basis of the data given below, the gas which shows the least adsorption on a definite amount of charcoal is-

Gas

CO2

SO2

CH4

H2

Critical temp./K

304

630

190

33

1. CO2
2. SO2
3. CH4
4. H2

Subtopic:  Adsorption and Absorption |
 67%
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At high concentration of soap in water, soap behaves as .......

1. Molecular colloid.

2. Associated colloid.

3. Macromolecular colloid.

4.  Lyophilic colloid.

Subtopic:  Colloidal Solution |
 82%
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Tyndall effect is shown by 

1. Aqueous solution of soap below critical micelle concentration.
2. Aqueous solution of soap above critical micelle concentration.
3. Aqueous solution of sodium chloride.
4. Aqueous solution of sugar.

Subtopic:  Colloidal Solution |
 74%
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