An electron is excited from the n = 1 ground state to the n = =D3 state in a hydrogen atom. Which of the following statements are true? Correct the false statements to make them true. les a. It takes møre energy to ionize (completely remove) the electron from n = 3 than from the ground state. E b. The electron is farther from the nucleus on average in the 1 state. T n= 3 state than in the n c. The wavelength of light emitted if the electron drops from = 3 to n = 2 will be shorter than the wavelength of light emitted if the electron falls from n = 3 to n= 1. d. The wavelength of light emitted when the electron returns to the ground state from n = wavelength of light absorbed to go from n = 1 to n = 31€ + 3 will be the same as the e. For n = 3, the electron is in the first excited state.

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54. An electron is excited from the n
state in a hydrogen atom. Which of the following statements
are true? Correct the false statements to make them true.
1 ground state to the n =
les
a. It takes møre energy to ionize (completely remove) the
electron from n = 3 than from the ground state. E
b. The electron is farther from the nucleus on average in the
n = 3 state than in the n
1 state. T
c. The wavelength of light emitted if the electron drops from
n = 3 to n = 2 will be shorter than the wavelength of
light emitted if the electron falls from n
3 to n
1.
d. The wavelength of light emitted when the electron returns
to the ground state from n
wavelength of light absorbed to go from n = 1 to n = 3.1E
3 will be the same as the
e. For n = 3, the electron is in the first excited state.
Transcribed Image Text:3 54. An electron is excited from the n state in a hydrogen atom. Which of the following statements are true? Correct the false statements to make them true. 1 ground state to the n = les a. It takes møre energy to ionize (completely remove) the electron from n = 3 than from the ground state. E b. The electron is farther from the nucleus on average in the n = 3 state than in the n 1 state. T c. The wavelength of light emitted if the electron drops from n = 3 to n = 2 will be shorter than the wavelength of light emitted if the electron falls from n 3 to n 1. d. The wavelength of light emitted when the electron returns to the ground state from n wavelength of light absorbed to go from n = 1 to n = 3.1E 3 will be the same as the e. For n = 3, the electron is in the first excited state.
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