The nucleus of an atom is on the order of 10-14 m in diameter. For an electron to be confined to a nucleus, its de Broglie wavelength would have to be on this order of magnitude or smaller. What would be the kinetic energy of an electron confined to this region?
The nucleus of an atom is on the order of 10-14 m in diameter. For an electron to be confined to a nucleus, its de Broglie wavelength would have to be on this order of magnitude or smaller. What would be the kinetic energy of an electron confined to this region?
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![The nucleus of an atom is on the order of 10-14 m in diameter. For an electron to be confined to a nucleus,
its de Broglie wavelength would have to be on this order of magnitude or smaller. What would be the kinetic
energy of an electron confined to this region?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbdf4ad1c-8d6e-4c6e-ab0d-20fae6a9f061%2Fe872da34-acd4-4360-a209-92ea43154ba4%2Fwq6pt2_processed.png&w=3840&q=75)
Transcribed Image Text:The nucleus of an atom is on the order of 10-14 m in diameter. For an electron to be confined to a nucleus,
its de Broglie wavelength would have to be on this order of magnitude or smaller. What would be the kinetic
energy of an electron confined to this region?
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