1. Wave, light, and energy emission in atoms: Given the speed of sound as 343.2 m/s, calculate the frequency of a sound wave of wavelength 15 n a. b. The wavelength of emission from a sodium atom is 589.3 nm. What flame color would you expect for sodium? Explain. c. Mercury has an emission wavelength of 454 nm from the relaxation of an excited state to a lower energy state. Predict the color of this emission.

University Physics Volume 3
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Author:William Moebs, Jeff Sanny
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Chapter8: Atomic Structure
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Problem 76P: An X-ray tube accelerates an electron with an applied voltage of 50 kV toward a metal target, (a)...
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1. Wave, light, and energy emission in atoms:
Given the speed of sound as 343.2 m/s, calculate the frequency of a sound wave of wavelength 15 m.
a.
b. The wavelength of emission from a sodium atom is 589.3 nm. What flame color would you expect
for sodium? Explain.
c. Mercury has an emission wavelength of 454 nm from the relaxation of an excited state to a lower
energy state. Predict the color of this emission.
Transcribed Image Text:1. Wave, light, and energy emission in atoms: Given the speed of sound as 343.2 m/s, calculate the frequency of a sound wave of wavelength 15 m. a. b. The wavelength of emission from a sodium atom is 589.3 nm. What flame color would you expect for sodium? Explain. c. Mercury has an emission wavelength of 454 nm from the relaxation of an excited state to a lower energy state. Predict the color of this emission.
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