An electron is bound to a region of space by a springlike force with natural frequency 04.082 x 10¹5 rad/s. a) Find the ground state energy of this electron. Give your answer in units of eV. b) Suppose the electron absorbs a photon and jumps from the ground state to the first excited state. What is the wavelength of the photon? Give your answer in units of nm.
An electron is bound to a region of space by a springlike force with natural frequency 04.082 x 10¹5 rad/s. a) Find the ground state energy of this electron. Give your answer in units of eV. b) Suppose the electron absorbs a photon and jumps from the ground state to the first excited state. What is the wavelength of the photon? Give your answer in units of nm.
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
Transcribed Image Text:An electron is bound to a region of space by a springlike force with natural
frequency 04.082 x 10¹5 rad/s.
a) Find the ground state energy of this electron. Give your answer in units of
eV.
b) Suppose the electron absorbs a photon and jumps from the ground state to
the first excited state. What is the wavelength of the photon? Give your
answer in units of nm.
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