1. While the wavelength of light decreases (the frequency of light increases), what happened to the speed of the ejected electrons? The speed of electrons represents the energy of light. What conclusion can you draw about the relationship of the energy of light and the frequency of light? Is your conclusion consistent with Planck equation: E = hv?E is energy of light, v is frequency of light.

Chemistry for Engineering Students
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ISBN:9781337398909
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Chapter6: The Periodic Table And Atomic Structure
Section: Chapter Questions
Problem 6.29PAE: 6.29 A mercury atom emits light at many wavelengths, two of which are at 435.8 and 546.1 nm. Both of...
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1. While the wavelength of light decreases (the frequency of light increases), what happened to
the speed of the ejected electrons? The speed of electrons represents the energy of light. What
conclusion can you draw about the relationship of the energy of light and the frequency of light?
Is your conclusion consistent with Planck equation: E = hv? E is energy of light, v is frequency
of light.
Transcribed Image Text:1. While the wavelength of light decreases (the frequency of light increases), what happened to the speed of the ejected electrons? The speed of electrons represents the energy of light. What conclusion can you draw about the relationship of the energy of light and the frequency of light? Is your conclusion consistent with Planck equation: E = hv? E is energy of light, v is frequency of light.
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