How do you calculate the ionization energy of a hydrogen atom in its ground state?
Step 1: Rydberg expression for calculating Ionization energy:-
The amount of energy required to extract an electron from an isolated gaseous atom to form a positive ion is called Ionization energy.
For calculating the Ionization energy of a hydrogen atom in its ground state we can use the Rydberg expression given as:
( Where Wavelength of the electron
= the Rydberg Constant and has the value,
= the principal quantum number of the lower energy level,
= the principal quantum number of the higher energy level.)
Step 2: Calculate the value of and :-
As the electron exists in the groundground state we have considered series 1 from which the transitions occur is known as The Lyman Series.
Now, we know that as the value of increases, the value of decreases. When, you can say that
Step 3: Calculating the value of from the Rydberg expression:-
To calculate the ionization energy of the hydrogen atom in its ground state the Rydberg expression can be written as;
, so the expression becomes:
Step 4: Calculating frequency:-
Here, the velocity of light
and = Frequency
Hence,
Step 5: Calculating ionization energy:-
We know,
(Where The ionization energy of the Hydrogen atom
planks constant
= Frequency )
Hence, the ionization energy can be calculated as:
Hence, Using the Rydberg expression, the Ionization energy of a hydrogen atom in its ground state can be calculated to be