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Exercise:
The retina of the human eye can easily see visible light if the photon rate is about nO. At what distance from a PO light bulb is this the photon rate entering the pupil diameter dO? You may ase that percO of the light is in the visible range average wavelength laO and that no photons are absorbed by the atmosphere.

Solution:
The photon rate emitted by the light bulb in the visible range is dot n fracsscPvishf fraceta Phf fraceta P lambdahc with etapercO. The rate of photons entering the eye is given by fra n'dot n fracsscApupArfracpi d/^pi r^ fracd^ r^ Longrightarrow dot n'dot n fracd^ r^ fraceta P lambdahcfracd^ r^ Solving for the distance r yields r rF sqrtfracperc times P times lanch times ncc times ntimes fracd r resultrP
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Exercise:
The retina of the human eye can easily see visible light if the photon rate is about nO. At what distance from a PO light bulb is this the photon rate entering the pupil diameter dO? You may ase that percO of the light is in the visible range average wavelength laO and that no photons are absorbed by the atmosphere.

Solution:
The photon rate emitted by the light bulb in the visible range is dot n fracsscPvishf fraceta Phf fraceta P lambdahc with etapercO. The rate of photons entering the eye is given by fra n'dot n fracsscApupArfracpi d/^pi r^ fracd^ r^ Longrightarrow dot n'dot n fracd^ r^ fraceta P lambdahcfracd^ r^ Solving for the distance r yields r rF sqrtfracperc times P times lanch times ncc times ntimes fracd r resultrP
Contained in these collections:
  1. Photons by by
    10 | 10

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quantum physics
Tags
photon, photon rate
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(3, default)
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Language
ENG (English)
Type
Calculative / Quantity
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