Home
Class 11
CHEMISTRY
Dual behaviour of matter proposed by de ...

Dual behaviour of matter proposed by de Brolie led to the discovery of electron microscope often used for the highly magnified images of biological molecules and other type of material. If the velocity of the electron’ in this microscope is `1.6 xx 10^6 ms^-1`, calculate de Broglie wavelength associated with the neutron.

Promotional Banner

Similar Questions

Explore conceptually related problems

If the velocity of the electron in Bohr's first orbit is 2.19 xx 10^6 ms^-1 , calculate the de Broglie wavelength associated with it.

An electron is moving with a velocity of 0.25 c and rest mass is 9.1 xx 10^-31 kg . Calculate the de Broglie wavelength linked with the electron.

Calculate the wavelength of an electron moving with a velocity of 2.05 xx 10^7 ms^-1 .

Calculate the de Broglie wavelength associated with an electron moving with a speed of 6xx10^5 m//s

What is the de-Broglie wavelength associated with an electron moving with speed of 5.4 xx 10^6 m/s ?

Calculate the frequency of revolution of the electron in the first Bohr orbit of H-atom, if the radius of the 1st Bohr orbit is 0.50 A^@ and the velocity of electron in the first orbit = 2.24 xx 10^6 m//s .

Similar to electron diffraction, neutron diffraction microscope is also used for the determination of the structure of molecules. If the wavelength used here is 800 pm, calculate the characteristic velocity associated with this electron.

The de Broglie wavelength of an electron moving with a velocity of 1.5×10 8 m/s is equal to that of a photon. Find the ratio of the kinetic energy of the photon to that of the electron.

For what kinetic energy of a neutron will the associated de Broglie wavelength be 1.40 xx 10^-10 m ?

If the photon of the wavelength 150 pm strikes an atom and one of its inner bound electrons is ejected out with a velocity of 1.5 xx 10^7 ms^-1 , calculate the energy with which it is bound to the nucleus.