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An electron is moving on a circular path around a stationary neutron under gravitational interaction Masses of the neutron and electron are M and m respectively. If Bohr's quantum condition holds here the minimum permissible de Broglie wavelength associated with the electron will be -

An electron is moving on a circular path around a stationary neutron under gravitational interaction Masses of the neutron and electron are M and m respectively. If Bohr's quantum condition holds here the minimum permissible de Broglie wavelength associated with the electron will be -

On the basis of the de Broglie hypothesis, obtain the expression for the de Broglie wavelength associated with an electron accelerated from rest through a p.d. V.

Dual nature of matter was proposed by Louis de Broglie. a) Calculate the de Broglie wavelength associated with an electron with velocity equal to that of light .

Plot a graph of the de - Broglie wavelength associated with electron as a function of accelerating potential .

Plot a graph of the de - Broglie wavelength associated with a proton versus its momentum .

The de Broglie wavelength (lambda) associated with a material particle is_____.

What is the de-Broglie wavelength associated with the hydrogen electron in its third orbit

Calculate de Broglie’s wavelength associated with an electron moving with a velocity equal to l/10th that of light.