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Minimum de-Broglie wavelength is associa...

Minimum de-Broglie wavelength is associated with.

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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 -

The kinetic energy of an electron is 500 eV. Calculate the de-Broglie wavelength associated with it.

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

A potential of 10000 V is applied across an x-ray tube. Find the ratio of de-Broglie wavelength associated with incident electrons to the minimum wavelength associated with x-rays.

A potential of 10000 V is applied across an x-ray tube. Find the ratio of de-Broglie wavelength associated with incident electrons to the minimum wavelength associated with x-rays.

A proton when accelerated through a potential difference of V, has a De-Broglie wavelength lambda associated with it.if an alpha -particle is to have the same De-Broglie wavelength lambda, it must be accelerated through a potential difference of

An electrono of mass m, when accelerated through a potential difference V, has de-Broglie wavelength lambda . The de-Broglie wavelength associated with a proton of mass M accelerated through the same potential difference, will be:

An electron of mass 'm', when accelerated through a potential V has de-Broglie wavelength lambda . The de-Broglie wavelength associated with a proton of mass M accelerated through the same potential difference will be: