Photoelectrons with a maximum kinetic energy of 7.95 eV are emitted from a metal when it is illuminated by ultraviolet radiation with a wavelength of 1.25 × 10-7 m. (i) Calculate the energy of the incident photons in electronvolts. (ii) Calculate the wavelength of the radiation (in nanometres) corresponding to the lowest energy photons that can free electrons from the metal. (iii) How do you explain the fact that, when infrared radiation is shone on this metal, no photoelectrons are emitted?

University Physics Volume 3
17th Edition
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
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Chapter6: Photons And Matter Waves
Section: Chapter Questions
Problem 65P: Estimate the binding energy of electrons in magnesium, given that the wavelength of 337 nm is the...
Question
Photoelectrons with a maximum kinetic energy of 7.95 eV are emitted
from a metal when it is illuminated by ultraviolet radiation with a
wavelength of 1.25 × 10-7 m.
(i)
Calculate the energy of the incident photons in electronvolts.
(ii) Calculate the wavelength of the radiation (in nanometres)
corresponding to the lowest energy photons that can free electrons
from the metal.
(iii) How do you explain the fact that, when infrared radiation is shone
on this metal, no photoelectrons are emitted?
Transcribed Image Text:Photoelectrons with a maximum kinetic energy of 7.95 eV are emitted from a metal when it is illuminated by ultraviolet radiation with a wavelength of 1.25 × 10-7 m. (i) Calculate the energy of the incident photons in electronvolts. (ii) Calculate the wavelength of the radiation (in nanometres) corresponding to the lowest energy photons that can free electrons from the metal. (iii) How do you explain the fact that, when infrared radiation is shone on this metal, no photoelectrons are emitted?
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