Question:

The adsorption of inert gases on the surface of activated charcoal increases with

Updated On: May 11, 2024
  • decrease of both atomic mass and temperature
  • increase of both atomic mass and temperature
  • increase of atomic mass and decrease in temperature
  • decrease of atomic mass and increase in temperature
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The Correct Option is C

Solution and Explanation

A gas having high atomic mass, will have greater intermolecular forces of attraction ahd hence cart be Iiquefied easily, The gas which is more easily Iiquefiable is more readily adsorbed. Adsorption increases with decrease of temperature.
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Concepts Used:

Surface Chemistry

The study of the chemical phenomena that occur at the interface of two surfaces which can be solid-liquid, solid-gas, solid-vacuum, liquid-gas, etc. 

Read Also: Surface Chemistry

Applications of surface chemistry are:

Adsorption:

The process of attraction and aggregation of the molecules of a substance on the surface of a solid is known as adsorption. For Example, N2 adsorbs on the surface of activated charcoal

Two types of adsorption are:-

  • Chemisorption: It is also known as Chemical Adsorption.
  • Physisorption: It is also known as Physical Adsorption.

Corrosion:

The process through which the refined metals convert themselves into more stable compounds is known as corrosion.

Crystallisation:

The type of technique used in order to purify the substances to separate Solids from liquids is known as crystallisation.

Heterogeneous Catalysis:

The process wherein a catalyst is used in order to increase the rate of a chemical reaction is known as catalysis. The catalyst does not undergo any transformation and can be recovered in a chemically unchanged state. 

There are two types of catalysis:-

  • When the catalyst involved and the reacting substances are same states of matter or in the same phase, it is known as Homogeneous Catalysis.
  • When the catalyst involved and the reacting substances are in different states of matter or different phases, it is known as Heterogeneous Catalysis.