More than one analyzer can be used in a setup like that in the drawing, each analyzer following the previous one. Suppose that the transmission axis of the first analyzer is rotated 23° relative to the transmission axis of the polarizer, and that the transmission axis of each additional analyzer is rotated 23° relative to the transmission axis of the previous one. What is the minimum number of analyzers needed for the light reaching the photocell to have an intensity that is reduced by at least a factor of 100 relative to that striking the first analyzer?

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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More than one analyzer can be used in a setup like that in the
drawing, each analyzer following the previous one. Suppose
that the transmission axis of the first analyzer is rotated 23°
relative to the transmission axis of the polarizer, and that the
transmission axis of each additional analyzer is rotated 23⁰
relative to the transmission axis of the previous one. What is
the minimum number of analyzers needed for the light
reaching the photocell to have an intensity that is reduced by
at least a factor of 100 relative to that striking the first
analyzer?
Unpolarized
light
Number
Units
Polarizer
E cos 0
<90⁰
0
E
Analyzer
E cos 0
Photocell
Transcribed Image Text:More than one analyzer can be used in a setup like that in the drawing, each analyzer following the previous one. Suppose that the transmission axis of the first analyzer is rotated 23° relative to the transmission axis of the polarizer, and that the transmission axis of each additional analyzer is rotated 23⁰ relative to the transmission axis of the previous one. What is the minimum number of analyzers needed for the light reaching the photocell to have an intensity that is reduced by at least a factor of 100 relative to that striking the first analyzer? Unpolarized light Number Units Polarizer E cos 0 <90⁰ 0 E Analyzer E cos 0 Photocell
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