A method of cancer treatment known as gamma knife radio- therapy uses multiple beams of gamma rays to attack a tumor while leaving nearby tissue relatively unaffected. The source of the gamma rays is radioactive cobalt, which reliably produces photons with E : interacts with a valence electron in the tumor, which causes 1.17 MeV. Suppose one of these photons the photon to scatter at an angle of o initial direction of motion. What will be the photon's energy 70° relative to its E' after the scattering event (in the units MeV)? Draw a be- fore/after diagram for the photon-electron collision, and make sure that your sketch conveys the idea that momentum is con- served. (Hint: if you plug the electron's mass into E then you get m.c? when performing calculations. Also, review textbook section 27.5 if needed for this problem.) mc 0.511 MeV, which can be quite useful

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Chapter1: Units, Trigonometry. And Vectors
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A method of cancer treatment known as gamma knife radio-
therapy uses multiple beams of gamma rays to attack a tumor
while leaving nearby tissue relatively unaffected. The source of
gamma rays is radioactive cobalt, which reliably produces
photons with E
the
1.17 MeV. Suppose one of these photons
interacts with a valence electron in the tumor, which causes
the photon to scatter at an angle of o
initial direction of motion. What will be the photon's energy
E' after the scattering event (in the units MeV)? Draw a be-
fore/after diagram for the photon-electron collision, and make
sure that your sketch conveys the idea that momentum is con-
served. (Hint: if you plug the electron's mass into E
then you get mec = 0.511 MeV, which can be quite useful
when performing calculations. Also, review textbook section
27.5 if needed for this problem.)
70° relative to its
mc?
Transcribed Image Text:A method of cancer treatment known as gamma knife radio- therapy uses multiple beams of gamma rays to attack a tumor while leaving nearby tissue relatively unaffected. The source of gamma rays is radioactive cobalt, which reliably produces photons with E the 1.17 MeV. Suppose one of these photons interacts with a valence electron in the tumor, which causes the photon to scatter at an angle of o initial direction of motion. What will be the photon's energy E' after the scattering event (in the units MeV)? Draw a be- fore/after diagram for the photon-electron collision, and make sure that your sketch conveys the idea that momentum is con- served. (Hint: if you plug the electron's mass into E then you get mec = 0.511 MeV, which can be quite useful when performing calculations. Also, review textbook section 27.5 if needed for this problem.) 70° relative to its mc?
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