Part III: What determines if the photoelectric effect occurs? Complete each of the following sentences: 1. What is the relationship between the energy of the incident photons and the kinetic energy of the ejected electrons? An increase in the energy of the photons causes... 2. What is the relationship between the intensity of the incident light and the average kinetic energy of the ejected electrons? An increase in intensity... 3. What is the relationship between the intensity of the incident light and the number of the ejected electrons? An increase in intensity causes... Conclusions In your own words, what conclusions can you draw from this demo?

World of Chemistry, 3rd edition
3rd Edition
ISBN:9781133109655
Author:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan L. Zumdahl, Donald J. DeCoste
Chapter11: Modern Atomic Theory
Section: Chapter Questions
Problem 61A
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Part III: What determines if the photoelectric effect occurs?
Complete each of the following sentences:
1. What is the relationship between the energy of the incident photons and the kinetic energy of
the ejected electrons? An increase in the energy of the photons causes...
2. What is the relationship between the intensity of the incident light and the average kinetic energy
of the ejected electrons? An increase in intensity...
3. What is the relationship between the intensity of the incident light and the number of the ejected
electrons? An increase in intensity causes...
Conclusions
In your own words, what conclusions can you draw from this demo?
Transcribed Image Text:Part III: What determines if the photoelectric effect occurs? Complete each of the following sentences: 1. What is the relationship between the energy of the incident photons and the kinetic energy of the ejected electrons? An increase in the energy of the photons causes... 2. What is the relationship between the intensity of the incident light and the average kinetic energy of the ejected electrons? An increase in intensity... 3. What is the relationship between the intensity of the incident light and the number of the ejected electrons? An increase in intensity causes... Conclusions In your own words, what conclusions can you draw from this demo?
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