3. A. 279.7 kJ of energy are required to remove one mole of electrons from one mole of lithium atoms. What is the maximum wavelength of light that can remove one electron from one lithium atom? (h = 6.626 x 1034J-sec, c = 3.0 x 10* m/s)

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Chapter30: Atomic Physics
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3. A. 279.7 kJ of energy are required to remove one mole of electrons from one mole of lithium atoms. What
is the maximum wavelength of light that can remove one electron from one lithium atom?
(h = 6.626 x 1034J•sec, c = 3.0 x 10* m/s)
B. Assume that a hydrogen atom's electron has been excited to the n= 5 energy level. How many different
wavelengths of light can be emitted as this excited electron loses energy? Include a diagram to support your
answer.
Transcribed Image Text:3. A. 279.7 kJ of energy are required to remove one mole of electrons from one mole of lithium atoms. What is the maximum wavelength of light that can remove one electron from one lithium atom? (h = 6.626 x 1034J•sec, c = 3.0 x 10* m/s) B. Assume that a hydrogen atom's electron has been excited to the n= 5 energy level. How many different wavelengths of light can be emitted as this excited electron loses energy? Include a diagram to support your answer.
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