The speed at which the electrons hit the copper plate due to the accelerating voltage is .
Further Explanation:
The potential difference, through which the electron, provides the potential energy and this potential energy provided by the potential difference to the electron leads to the increase in the kinetic energy of the electron.
The charge on the electron is and the mass of the electron is .
The expression for the conservation of the energy of the electron in the potential difference is:
Substitute for and for in above expression.
Here, is the potential difference, is the mass of the ion, is the charge over the electron.
Substitute for , for and for in above expression.
Thus, the speed at which the electrons hit the copper plate due to the accelerating voltage is .
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Answer Details:
Grade: College
Chapter: Electrostatics
Subject: Physics
Keywords:
Potential energy, potential difference, accelerate, kinetic energy, speed, electron, charge, significant figures, hits, copper plate, non-relativistically.