In Bohr's model of the atom, the period \(T\) of revolution of an electron in the \(n^{\text{th}}\) orbit is related to the radius of the orbit. The radius \(r_n\) is proportional to \(n^2\) and the velocity \(v_n\) is inversely proportional to \(n\).
Since the period \(T\) is the time taken to complete one revolution, it is proportional to \(n^3\) because it depends on both the radius and the speed of the electron.
Therefore, the period of revolution is proportional to \(n^3\).
Charges are uniformly spread on the surface of a conducting sphere. The electric field from the center of the sphere in a point outside the sphere varies with distance \( r \) from the center as 
Match the following types of nuclei with examples shown: 
Match the following:
In the following, \( [x] \) denotes the greatest integer less than or equal to \( x \). 
Choose the correct answer from the options given below:
For x < 0:
f(x) = ex + ax
For x ≥ 0:
f(x) = b(x - 1)2