A horizontal 5.0 mW laser beam that is horizontally polarized is incident on a polarizing sheet that is oriented with its transmission axis vertical. Behind the first sheet is a second sheet that is oriented so that its transmission axis makes an angle of 30° with respect to vertical. What is the power of the beam transmitted through the second sheet? (Give your answer in mW.)

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In many transparent materials, dispersion causes different colors (wavelengths) of light to travel at different speeds. This can cause problems in fiber-optic communications systems where pulses of light must travel very long distanc
made of silicate crown glass, calculate the difference in travel times that two short pulses of light take to travel 15 km in the fiber if the first pulse has a wavelength of 700 nm and the second pulse has a wavelength of 500 nm. Give y
n
1.7
1.6
1.5
Violet
Silicate flint glass
Borate flint glass
Quartz
Silicate crown glass
Red
Transcribed Image Text:In many transparent materials, dispersion causes different colors (wavelengths) of light to travel at different speeds. This can cause problems in fiber-optic communications systems where pulses of light must travel very long distanc made of silicate crown glass, calculate the difference in travel times that two short pulses of light take to travel 15 km in the fiber if the first pulse has a wavelength of 700 nm and the second pulse has a wavelength of 500 nm. Give y n 1.7 1.6 1.5 Violet Silicate flint glass Borate flint glass Quartz Silicate crown glass Red
A horizontal 5.0 mW laser beam that is horizontally polarized is incident on a polarizing
sheet that is oriented with its transmission axis vertical. Behind the first sheet is a second
sheet that is oriented so that its transmission axis makes an angle of 30° with respect to
vertical. What is the power of the beam transmitted through the second sheet? (Give your
answer in mW.)
Transcribed Image Text:A horizontal 5.0 mW laser beam that is horizontally polarized is incident on a polarizing sheet that is oriented with its transmission axis vertical. Behind the first sheet is a second sheet that is oriented so that its transmission axis makes an angle of 30° with respect to vertical. What is the power of the beam transmitted through the second sheet? (Give your answer in mW.)
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