Question
Question: An electron is accelerated from rest, between two points A and B at which the potentials are 20V and...
An electron is accelerated from rest, between two points A and B at which the potentials are 20V and 40V respectively. The de Broglie wavelength associated with the electron at B will be:
& \text{A) 0}\text{.75}A{}^\circ \\\ & \text{B) 7}\text{.5}A{}^\circ \\\ & \text{C) 2}\text{.75}A{}^\circ \\\ & \text{D) 2}\text{.75}m \\\ \end{aligned}$$Explanation
Solution
De Broglie wavelength is the wavelength associated with a moving particle. de Broglie wavelength is given by the ratio of Planck’s constant and momentum of a particle, as the particle is in motion it will have momentum. Here we will solve the de Broglie relation for an electron to get the de Broglie wavelength associated with the electron.
Formula used: