The energy of the electron in the ground state of H-atom is -13.6 ev. Find the Rydberg's constant and the wavelength of the first line of paschen. series.
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![The energy of the electron in the ground state of
H-atom is -13.6 ev. Find the Rydberg's constant
and the wavelength of the first line of paschen
series.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fade0f7fb-e2a2-4f91-8a92-d306eab8c9c1%2F1049b999-aaa8-4a1d-8d4e-4a525ab8a8ac%2Frvmzhm4_processed.jpeg&w=3840&q=75)
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- An electron is in an f state. Can it undergo a quantum jump to an s state? A p state? A d state? Explain.A photon causes a hydrogen atom to transition from the ground state to the n = 4 state What is the frequency of this photon? Give your answer in THz.Ground state He + absorbs a photon to promote electron to excited state. This electron then relaxes to n=2 my emitting a photon with 121.61 nm wavelength. What is the original n-level of the electron?
- The lifetimes of the levels in a hydrogen atom are of the order of 10-8 s. Find the energy uncertainty of the first excited state and compare it with the energy of the state. 3 p ROClearly explain why the quantum oscillator is a good model for representing molecular vibrations.The transition from the first excited state to the ground state in potassium results in the emission of a photon with lambda= 770 nm. If potassium vapor is used in a Franck-Hertz experiment, at what voltage would you expect to see the first decrease in current?