(BM-1) An electron in a hydrogen atom is initially in the ground state. It gets kicked into an excited state by absorbing a 94.97 nm photon. (a) Calculate the energy of the excited state (in eV), using the Bohr model of the hydrogen atom. (b) What is the quantum number (n) of the excited state? (c) Now suppose the electron drops down from the excited state mentioned previously to the n=2 state. What is the wavelength of the emitted photon?

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(BM-1) An electron in a hydrogen atom is initially in the ground state. It gets kicked into an
excited state by absorbing a 94.97 nm photon.
(a) Calculate the energy of the excited state (in eV), using the Bohr model of the
hydrogen atom.
(b) What is the quantum number (n) of the excited state?
(c) Now suppose the electron drops down from the excited state mentioned previously to
the n=2 state. What is the wavelength of the emitted photon?
Transcribed Image Text:(BM-1) An electron in a hydrogen atom is initially in the ground state. It gets kicked into an excited state by absorbing a 94.97 nm photon. (a) Calculate the energy of the excited state (in eV), using the Bohr model of the hydrogen atom. (b) What is the quantum number (n) of the excited state? (c) Now suppose the electron drops down from the excited state mentioned previously to the n=2 state. What is the wavelength of the emitted photon?
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