A conduction electron is confined to a metal wire of length (1.46x10^1) cm. By treating the conduction electron as a particle confined to a one-dimensional box of the same length, find the energy spacing between the ground state and the first excited state. Give your answer in eV. Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: x10 Answer
A conduction electron is confined to a metal wire of length (1.46x10^1) cm. By treating the conduction electron as a particle confined to a one-dimensional box of the same length, find the energy spacing between the ground state and the first excited state. Give your answer in eV. Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: x10 Answer
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treating the conduction electron as a particle confined to a one-dimensional box of
the same length, find the energy spacing between the ground state and the first
excited state. Give your answer in eV.
Note: Your answer is assumed to be reduced to the highest power
possible.
Your Answer:
x10
Answer"
Transcribed Image Text:A conduction electron is confined to a metal wire of length (1.46x10^1) cm. By
treating the conduction electron as a particle confined to a one-dimensional box of
the same length, find the energy spacing between the ground state and the first
excited state. Give your answer in eV.
Note: Your answer is assumed to be reduced to the highest power
possible.
Your Answer:
x10
Answer
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