2) An electron is confined to a one-dimensional, infinitely deep potential energy well of width a = 100pm. a) What is the least energy (in eV) the electron can have? Answer b) Compute the energy level of the first excited state, of the second excited state. Draw the energy level diagram. Answer
2) An electron is confined to a one-dimensional, infinitely deep potential energy well of width a = 100pm. a) What is the least energy (in eV) the electron can have? Answer b) Compute the energy level of the first excited state, of the second excited state. Draw the energy level diagram. Answer
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Question
![2) An electron is confined to a one-dimensional, infinitely deep potential
energy well of width a = 100pm.
a) What is the least energy (in eV) the electron can have?
Answer
6
b) Compute the energy level of the first excited state, of the second excited
state. Draw the energy level diagram.
Answer](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0b52efcb-0414-455c-b902-f2f192ef41c4%2F7e36e4a5-1cc3-42a1-9e9e-a97c54be1f44%2Flj8e1d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2) An electron is confined to a one-dimensional, infinitely deep potential
energy well of width a = 100pm.
a) What is the least energy (in eV) the electron can have?
Answer
6
b) Compute the energy level of the first excited state, of the second excited
state. Draw the energy level diagram.
Answer
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