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The photoelectric effect is evidence for light's
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
Electron wavelengths are generally
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
The discrete orbits of electrons are best understood by considering the electron\'s
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
Compared to the innermost electrons of an uranium atom, the innermost electron of a hydrogen atom is
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
When an atomic electron goes from a hgih emergy ste to a low energy state, it
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
The energy of a photon is directly proportional to its
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
Helium is four times as masive as hydrogen. Compared to the size of hydrogen, helium is
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
The energy states available to an electron are
farther from the nucleus
frequency
emits a photon
smaller
quantized
both wave and particle nature
shorter than light wavelengths
wave properties
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