Showing posts with label molecular formula of a gaseous compound. Show all posts
Showing posts with label molecular formula of a gaseous compound. Show all posts

Tuesday, 12 February 2019


Applications of Avogadro’s Law


Avogadro’s law has been found very useful in chemistry. The usefulness of the Avogadro’s law lies in the fact that it differentiates between an atom and a molecule.
Some important applications of the Avogadro’s law are described below.

1. Explaining Gay-Lussac’s Law of Combining Volumes

Consider this reaction,
a A    +     b B    ®    c C   +     d D
Let, a molecules of A react with b molecules of B, and there be n molecules per unit volume of A.
Under similar conditions of temperature and pressure, B should also have n molecules per unit volume.
Then,
Volume of A involved in the reaction = 1 / n × a units

and,   Volume of B involved in the reaction = 1 / n × b units

Therefore, the ratio of volumes of the reacting gases A and B is, a/n : b/n or a : b

Since a and b are whole numbers (molecules cannot be in fractions), hence the volumes of the reacting gases bear a simple whole number ratio to each other.
This is the Gay-Lussac’s law of combining volumes.


2. Determining the atomicity of an elementary gas

To illustrate the determination of the atomicity of an elementary gas, let us consider the reaction between hydrogen and chlorine to form hydrogen chloride.
It has been observed experimentally that hydrogen and chlorine react in equal volumes. Then, one can write,

Atomicity of hydrogen and chlorine
Hydrogen    +      Chlorine     ®     Hydrogen chloride
   1 vol                 1 vol                        2 vol
n molecules         n molecules              2n molecules          (Avogadro’s law)
1/2 molecule       1/2 molecule               1 molecule

Since one molecule of hydrogen chloride contains one atom of hydrogen and one atom of chlorine, hence,
         1/2 molecule of hydrogen = 1 atom of hydrogen
or,         1 molecule of hydrogen = 2 atoms of hydrogen
Therefore, Atomicity of hydrogen = 2

Similarly,  1/2 molecule of chlorine = 1 atom of chlorine
or,             1 molecule of chlorine = 2 atoms of chlorine
Therefore,   Atomicity of chlorine = 2

Thus, the atomicity of both hydrogen and chlorine is two.

Atomicity of nitrogen and oxygen
Similarly, we can determine the atomicity of nitrogen and oxygen.
Nitrogen     +      Oxygen     ®     Nitric oxide
1 vol                    1 vol                    2 vol
n molecules         n molecules         2n molecules                       (Avogadro’s law)
1/2 molecule       1/2 molecule           1 molecule
 1 atom              1 atom                   1 molecule

Thus,    1/2 molecule of nitrogen = 1 atom of nitrogen
              1 molecule of nitrogen = 2 atoms of nitrogen
Therefore, Atomicity of nitrogen = 2

Also,       1/2 molecule of oxygen = 1 atom of oxygen
                1 molecule of oxygen = 2 atoms of oxygen
Therefore,    Atomicity of oxygen = 2



3. Relationship between molecular mass & vapour density


The vapour density (V.D.) of a gas is defined as the ratio between the mass of a certain volume of gas, to the mass of the same volume of hydrogen gas under similar condition of temperature and pressure. Thus,




According to the Avogadro’s law equal volumes of gases under similar conditions should contain equal number of molecules. So, if V mL of any gas contain n molecules, then

Since, one molecule of hydrogen contains 2 atoms, hence


As per definition



Hence,
 Molecular mass of the substance = 2 × V.D. of the substance

In general, therefore,
Molecular mass = 2 × Vapour density


4. Determining the molecular formula of a gaseous compound


The Avogadro’s law can also be used for determining the molecular formula of a gaseous compound, if the volumes of the reactants and products are known. This is illustrated by taking example of the reaction between nitrogen and hydrogen gases to form ammonia. Experimentally, it is found that one volume of nitrogen reacts with three volumes of hydrogen to form two volumes of ammonia. Then, one can write,

 Nitrogen    +      Hydrogen    ®     Ammonia
   1 vol                 3 vol                    2 vol
 n molecules        3n molecules       2n molecules                    (Avogadro’s law)
 1/2 molecule      1/2 molecule       1 molecule
or 1 atom           3 atom               1 molecule (atomicity of nitrogen and hydrogen = 2)

Thus, one molecule of ammonia contains one atom of nitrogen and three atoms of hydrogen.

Therefore, the molecular formula of ammonia is NH3.