For hydrogen-like species, the Rydberg formula gives the wavelength of the emitted radiation when the electron makes a transition between two quantum levels ₁ and n₂. It is given as { = R2² (²1/12 - 11/1), answer where R is the Rydberg constant and Z is the atomic number. (NOTE: Wherever applicable, give your an in terms of the Rydberg constant R without using numerical values.) 1. What is the meaning of Hr? Write the formula for the frequency of radiation for this atom. 2. What does CVI mean? Is this a hydrogen-like system? Find the frequency of transition from level 3 to 1. 3. What about Bell: is this a hydrogen-like system?

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Rydberg formula

For hydrogen-like species, the Rydberg formula gives the wavelength of the emitted radiation when
the electron makes a transition between two quantum levels n₁ and n₂. It is given as
|| = RZ²² (1
(-),
n²
where R is the Rydberg constant and Z is the atomic number. (NOTE: Wherever applicable, give your answers
in terms of the Rydberg constant R without using numerical values.)
1. What is the meaning of HI? Write the formula for the frequency of radiation for this atom.
2. What does CVI mean? Is this a hydrogen-like system? Find the frequency of transition from level 3 to 1.
3. What about Bell: is this a hydrogen-like system?
Transcribed Image Text:For hydrogen-like species, the Rydberg formula gives the wavelength of the emitted radiation when the electron makes a transition between two quantum levels n₁ and n₂. It is given as || = RZ²² (1 (-), n² where R is the Rydberg constant and Z is the atomic number. (NOTE: Wherever applicable, give your answers in terms of the Rydberg constant R without using numerical values.) 1. What is the meaning of HI? Write the formula for the frequency of radiation for this atom. 2. What does CVI mean? Is this a hydrogen-like system? Find the frequency of transition from level 3 to 1. 3. What about Bell: is this a hydrogen-like system?
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