10.41 What is the ionization energy of a hydrogen atom in the 3P state?
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Do 10.41
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The Bohr analysis that yields the eigenenergies -R/n² assumes circular orbits.
Circular orbits do not exist in the Schrödinger theory. Quantization of the action.
f p de, in the Bohr theory gives L=nh. In the Schrödinger theory, the maximum
value of L is hnin + 1), which is less than the value that L assumes (nh) in the
Bohr theory.
10.41 What is the ionization energy of a hydrogen atom in the 3P state?
10.42 Sho'th"
Transcribed Image Text:Answer
The Bohr analysis that yields the eigenenergies -R/n² assumes circular orbits.
Circular orbits do not exist in the Schrödinger theory. Quantization of the action.
f p de, in the Bohr theory gives L=nh. In the Schrödinger theory, the maximum
value of L is hnin + 1), which is less than the value that L assumes (nh) in the
Bohr theory.
10.41 What is the ionization energy of a hydrogen atom in the 3P state?
10.42 Sho'th
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