Electromagnetic radiation is emitted by accelerating charges. The rate at which energy is emitted from an accelerating charge that has charge q and acceleration a is given by = where c is Part A dt Grege the speed of light. If a proton with a kinetic energy of 6.4 MeV is traveling in a particle accelerator in a circular orbit with a radius of 0.700 m, what fraction of its energy does it radiate per second? (dE/dt)-1s Submit Request Answer • Part B Consider an electron orbiting with the same speed and radius. What fraction of its energy does it radiate per second? ? (dE/dt)-1s E Submit Request Answer

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I Review | Constants
Electromagnetic radiation is emitted by accelerating charges. The rate
at which energy is emitted from an accelerating charge that has
dE
charge q and acceleration a is given by 4 =
dt
where c is
Part A
the speed of light.
If a proton with a kinetic energy of 6.4 MeV is traveling in a particle accelerator in a circular orbit with a radius of 0.700 m, what fraction of its energy does it radiate per
second?
?
(dE/dt)-1 s
E
Submit
Request Answer
Part B
Consider an electron orbiting with the same speed and radius. What fraction of its energy does it radiate per second?
?
(dE/dt)-1 s
E
Submit
Request Answer
Transcribed Image Text:I Review | Constants Electromagnetic radiation is emitted by accelerating charges. The rate at which energy is emitted from an accelerating charge that has dE charge q and acceleration a is given by 4 = dt where c is Part A the speed of light. If a proton with a kinetic energy of 6.4 MeV is traveling in a particle accelerator in a circular orbit with a radius of 0.700 m, what fraction of its energy does it radiate per second? ? (dE/dt)-1 s E Submit Request Answer Part B Consider an electron orbiting with the same speed and radius. What fraction of its energy does it radiate per second? ? (dE/dt)-1 s E Submit Request Answer
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