A mercury atom emits light at many wavelengths, two of which are at (1) 404.7 nm and (2) 435.8 nm. Both of these transitions are to the same final state. Determine the energy of each emitted wavelength (in J). A E1 = 5.908 x 1019 J and E2 = 5.558 x10-1º J B E1 = 4.628 x 1019 J and E2 = 4.968 x10-19 J E1 = 7.908 x 10-19 J and E2 = 6.558 x10-19 J E1 = 4.908 x 1019 J and E2 = 4.558 x10-19J

Chemistry for Engineering Students
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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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A mercury atom emits light at many wavelengths, two of which are at (1) 404.7 nm and (2) 435.8 nm. Both of these transitions are
to the same final state. Determine the energy of each emitted wavelength (in J).
A E1 = 5.908 x 10-19 J and E2 = 5.558 x10-19 J
B E1 = 4.628 x 10-19 J and E2 = 4.968 x10-19 J
(C E1 = 7.908 x 10-19 J and E2 = 6.558 x10-19 )
D) E1 = 4.908 x 10-19 J and E2 = 4.558 x10-19J
Transcribed Image Text:A mercury atom emits light at many wavelengths, two of which are at (1) 404.7 nm and (2) 435.8 nm. Both of these transitions are to the same final state. Determine the energy of each emitted wavelength (in J). A E1 = 5.908 x 10-19 J and E2 = 5.558 x10-19 J B E1 = 4.628 x 10-19 J and E2 = 4.968 x10-19 J (C E1 = 7.908 x 10-19 J and E2 = 6.558 x10-19 ) D) E1 = 4.908 x 10-19 J and E2 = 4.558 x10-19J
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