The work function for platinum is 6.35 eV. Ultraviolet light of wavelength 150 nm is incident on the clean sur- face of a platinum sample. We wish to predict the stop- ping voltage we will need for electrons ejected from the surface. (a) What is the photon energy of the ultravio- let light? (b) How do you know that these photons will eject electrons from platinum? (c) What is the maxi- mum kinetic energy of the ejected photoelectrons? (d) What stopping voltage would be required to arrest the current of photoelectrons?

University Physics Volume 3
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Chapter6: Photons And Matter Waves
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Problem 66P: The work function for potassium is 2.26 eV. What is the cutoff frequency when this metal is used as...
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The work function for platinum is 6.35 eV. Ultraviolet light of wavelength 150 nm is incident on the clean sur- face of a platinum sample. We wish to predict the stop- ping voltage we will need for electrons ejected from the surface. (a) What is the photon energy of the ultravio- let light? (b) How do you know that these photons will eject electrons from platinum? (c) What is the maxi- mum kinetic energy of the ejected photoelectrons? (d) What stopping voltage would be required to arrest the current of photoelectrons?

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