An electron is trapped in an infinitely deep one dimensional well of width 0.285 nm. Initially, the electron occupies the n = 4 state. (a) Suppose the electron jumps to the ground state with the accompanying emission of a photon. Calculate the energy of the photon. (b). Find the all the energies of the other photons that might be emitted if the electron takes different paths between n = 4 state and the ground state.
An electron is trapped in an infinitely deep one dimensional well of width 0.285 nm. Initially, the electron occupies the n = 4 state. (a) Suppose the electron jumps to the ground state with the accompanying emission of a photon. Calculate the energy of the photon. (b). Find the all the energies of the other photons that might be emitted if the electron takes different paths between n = 4 state and the ground state.
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![JC-35) Electron in an Infinite Well
An electron is trapped in an infinitely deep one dimensional well of width 0.285 nm. Initially,
the electron occupies the n =
(a) Suppose the electron jumps to the ground state with the accompanying emission
of a photon. Calculate the energy of the photon.
(b). Find the all the energies of the other photons that might be emitted if the electron
takes different paths between n = 4 state and the ground state.
4 state.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdb6e49c2-d01d-4438-a99a-92f670cec770%2F587b6afe-1605-4db0-8afc-e9d46289232a%2Fwnef61a_processed.png&w=3840&q=75)
Transcribed Image Text:JC-35) Electron in an Infinite Well
An electron is trapped in an infinitely deep one dimensional well of width 0.285 nm. Initially,
the electron occupies the n =
(a) Suppose the electron jumps to the ground state with the accompanying emission
of a photon. Calculate the energy of the photon.
(b). Find the all the energies of the other photons that might be emitted if the electron
takes different paths between n = 4 state and the ground state.
4 state.
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