Solveeit Logo

Question

Question: The work function of the metal is X \(eV\)When the light energy 2X \(eV\) is made to be incident on ...

The work function of the metal is X eVeVWhen the light energy 2X eVeV is made to be incident on it then the maximum kinetic energy of the emitted photoelectron will be
A. 2 eVeV
B. 2X eVeV
C. X eVeV
D. 3X eVeV

Explanation

Solution

According to the photoelectric equation, the maximum kinetic energy of the emitted Photoelectron is given by the Einstein Photoelectric equation i.e. Emax = hνϕh\nu - \phi . By using this formula we will get the required solution.

Complete step by step answer:

As we all know that in the photoelectric effect when light strikes the metal, the electron in the metal get highly energetic to move and it leads to the conduction of the electricity in the circuit
So on taking this into the consideration Einstein gives the equation i.e.
The Einstein Photoelectric equation i.e.
Emax = hνϕh\nu - \phi hνϕh\nu - \phi ……. (1)
Here
Emax = It represent the maximum energy of the photo electron
hh = It represents the Planck constant
ν\nu = It represents the frequency of the incident light
And
ϕ\phi = It gives the value of the work function
It is given that
hνh\nu = 2X
ϕ\phi = X
Hence putting the value in the equation (1)
So,
Emax = 2X – X
Hence the maximum energy of the photo electron is given by
Emax = X eVeV
So the correct answer is given is option (c)
Emax = X eVeV

Note: For the working on the Photoelectric effect, Einstein was honored with the Nobel Prize. The value of the Planck constant heVheV hh = 6.62607015 × 1034{10}^{-34} joule second. The SI unit of the Energy in the case of the Photoelectric effect is electron volt eVeV. Don’t forget to write the units after finding the result.