A beam of photons, with cross- sectional area of 2.0 square centimeter, carries 7.0 x 10^8 photons per second where the energy of each photon is 1.25 MeV. A flesh of thickness of 0.75 cm and density of 0.95 g per cubic centimeter received the beam where 5.0% of the beam's intensity was lost in the process. What then is the average dose received by the flesh per second? 0.35 rd/s. O 0.37 rd/s. 0.42 rd/s. O 0.49 rd/s. 0.51 rd/s.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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A beam of photons, with cross-
sectional area of 2.0 square
centimeter, carries 7.0 x 10^8
photons per second where the
energy of each photon is 1.25 MeV.
A flesh of thickness of 0.75 cm and
density of 0.95 g per cubic
centimeter received the beam
where 5.0% of the beam's intensity
was lost in the process. What then
is the average dose received by the
flesh per second?
0.35 rd/s.
O 0.37 rd/s.
0.42 rd/s.
O 0.49 rd/s.
0.51 rd/s.
Transcribed Image Text:A beam of photons, with cross- sectional area of 2.0 square centimeter, carries 7.0 x 10^8 photons per second where the energy of each photon is 1.25 MeV. A flesh of thickness of 0.75 cm and density of 0.95 g per cubic centimeter received the beam where 5.0% of the beam's intensity was lost in the process. What then is the average dose received by the flesh per second? 0.35 rd/s. O 0.37 rd/s. 0.42 rd/s. O 0.49 rd/s. 0.51 rd/s.
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