de Broglie's Explanation of Bohr's Second Postulate
de Broglie's Explanation of Bohr's Second Postulate: Overview
This topic covers concepts, such as de Broglie's Explanation of Bohr's Second Postulate, Relation Between de-Broglie Wavelength and Circumference of Bohr's Radius and Limitations of Bohr's Model.
Important Questions on de Broglie's Explanation of Bohr's Second Postulate
Radius of first orbit in is . Then de-Broglie wavelength of electron in the third orbit is

The de-Broglie wavelength associated with electrons revolving round the nucleus in a singly ionised helium atom in first excited state, will be

The De-Broglie wavelength associated with electrons revolving round the nucleus in a hydrogen atom in ground state, will be-

The de-Broglie wavelength of the electron in the first Bohr orbit of the Hydrogen atom is equal to ( denotes the Bohr radius)

De-Broglie wavelength of a body of mass m and kinetic energy E is given by (symbols have their usual meanings):

If an electron in a hydrogen atom, revolving in its second excited state (having radius ). what is the de-Broglie wavelength of this electron?

An electron is moving in Bohr's fourth orbit. Its de-Broglie wave length is . What is the circumference of the fourth orbit?

The ratio of the de-Broglie wavelength of an -particle and a proton of same kinetic energy is
