a. Draw an energy level diagram (doesn't have to be to scale) indicating the transitions that produce the wavelengths A,,Ag,hc, 2p b. What are the energy levels for the electron in the well, i.e. what are the values of E, ,E‚,E,,E,?

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8.
An electron in a finite, one dimensional energy well (not necessarily a square well) has an
energy level diagram with only four bound, discrete energy levels: E, E,E,,E̟. At, and
above, E, = 29.50 eV the energy of the electron is not quantized. The electron well shows
absorption lines from the ground state at wavelengths of 14 = 413.7nm, 1z = 130.6nm , and
1c = 53.91 nm and it absorbs photons at all wavelengths less than or equal to î, = 44.29nm .
Assuming that a 1d electron well can absorb photons:
a. Draw an energy level diagram (doesn't have to be to scale) indicating the transitions that
produce the wavelengths 1,, Ag, Ac,1,
b. What are the energy levels for the electron in the well, i.e. what are the values of
E, E2, E,, E, ?
3>
Transcribed Image Text:8. An electron in a finite, one dimensional energy well (not necessarily a square well) has an energy level diagram with only four bound, discrete energy levels: E, E,E,,E̟. At, and above, E, = 29.50 eV the energy of the electron is not quantized. The electron well shows absorption lines from the ground state at wavelengths of 14 = 413.7nm, 1z = 130.6nm , and 1c = 53.91 nm and it absorbs photons at all wavelengths less than or equal to î, = 44.29nm . Assuming that a 1d electron well can absorb photons: a. Draw an energy level diagram (doesn't have to be to scale) indicating the transitions that produce the wavelengths 1,, Ag, Ac,1, b. What are the energy levels for the electron in the well, i.e. what are the values of E, E2, E,, E, ? 3>
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