How does the answer to the previous question change if instead of a single jump from state n= 6 to n= 2, the electron in the hydrogen atom undergoes a transition from n= 6 to n=4 and then another transition from n= 4 ton= 2? A. The total change is the same (n= 6 to n= 2), so the wavelength of the emitted photon is the same. O B. The hydrogen atom emits two photons, both of which have shorter wavelengths than in the previous question. O C. The hydrogen atom emits two photons, both of which have longer wavelengths than in the previous question. D. There is not enough information provided to answer this question.
How does the answer to the previous question change if instead of a single jump from state n= 6 to n= 2, the electron in the hydrogen atom undergoes a transition from n= 6 to n=4 and then another transition from n= 4 ton= 2? A. The total change is the same (n= 6 to n= 2), so the wavelength of the emitted photon is the same. O B. The hydrogen atom emits two photons, both of which have shorter wavelengths than in the previous question. O C. The hydrogen atom emits two photons, both of which have longer wavelengths than in the previous question. D. There is not enough information provided to answer this question.
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Transcribed Image Text:Calculate the wavelength of a photon emitted by a hydrogen atom when its bound electron undergoes a transition from state n= 6 ton= 2.
Report your answer in nanometers (109 m) and provide 3 digits of precision (e.g. 567).
Provide numeric values only; do not include units in your answer.
The wavelength is
nm.

Transcribed Image Text:How does the answer to the previous question change if instead of a single jump from state n= 6 to n= 2, the electron in the hydrogen atom undergoes a transition
from n= 6 to n=4 and then another transition from n= 4 to n= 2?
O A. The total change is the same (n= 6 to n= 2), so the wavelength of the emitted photon is the same.
B. The hydrogen atom emits two photons, both of which have shorter wavelengths than in the previous question.
C. The hydrogen atom emits two photons, both of which have longer wavelengths than in the previous question.
D. There is not enough information provided to answer this question.
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