A proton, a deuteron (q = +e, m = 2.0 u), and an alpha particle (q = 2e, m = 4.0 u) are accelerated through the same potential difference and then enter the same region of uniform magnetic field B,moving perpendicular to B .(a) What is the ratio of the proton's kinetic energy Kp to the alpha particle's kinetic energy Kg? (b) What is the ratio of deuteron's kinetic energy Ka to Ka? Assume that the radius of the proton's circular path is 11.5 cm. (c) What is the radius of the deuteron's path? (d) What is the radius of the alpha particle's path? (a) Number i Units (b) Number i Units (c) Number i Units

Physics for Scientists and Engineers with Modern Physics
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Author:Raymond A. Serway, John W. Jewett
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Chapter28: Magnetic Fields
Section: Chapter Questions
Problem 9P: A proton (charge + e, mass mp), a deuteron (charge + e, mass 2mp), and an alpha particle (charge...
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A proton, a deuteron (q = +e, m = 2.0 u), and an alpha particle (q = 2e, m = 4.0 u) are accelerated through the same potential
%3D
%3D
difference and then enter the same region of uniform magnetic field B , moving perpendicular to B .(a) What is the ratio of the
proton's kinetic energy Kp to the alpha particle's kinetic energy Ka? (b) What is the ratio of deuteron's kinetic energy Ka to Ka?
Assume that the radius of the proton's circular path is 11.5 cm. (c) What is the radius of the deuteron's path? (d) What is the radius of
the alpha particle's path?
(a) Number
Units
(b) Number
i
Units
(c) Number
Units
(d) Number
i
Units
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Transcribed Image Text:A proton, a deuteron (q = +e, m = 2.0 u), and an alpha particle (q = 2e, m = 4.0 u) are accelerated through the same potential %3D %3D difference and then enter the same region of uniform magnetic field B , moving perpendicular to B .(a) What is the ratio of the proton's kinetic energy Kp to the alpha particle's kinetic energy Ka? (b) What is the ratio of deuteron's kinetic energy Ka to Ka? Assume that the radius of the proton's circular path is 11.5 cm. (c) What is the radius of the deuteron's path? (d) What is the radius of the alpha particle's path? (a) Number Units (b) Number i Units (c) Number Units (d) Number i Units <> <> >
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