Consider a particle that has a charge to mass ratio of m/q-5.9x108 kg/C. The particle enters a uniform magnetic field of B-0.9 T and makes a quarter-circular path before it exits the field, as shown in the figure. Find the time (in ns) during which the particle stays in the field.

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Chapter19: Magnetism
Section: Chapter Questions
Problem 20P: A proton (charge +e, mass mp), a deuteron (charge +e, mass 2mp), and an alpha particle (charge +2e,...
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Consider Use them k=9.00×10^9 N.m^2/C^2 ε0= 8.85×10^-12 C^2/N.m^2 µ0=4π×10^-7 T.m/A mp=1.67×10^-27 kg me=9.11×10^-31 kg e=1.6×10^-19 C g=10.0 m/s^2
Consider a particle that has a charge to mass ratio of |m/q\=5.9×108 kg/C. The particle enters a uniform magnetic field of B-0.9 T and makes a quarter-circular path
before it exits the field, as shown in the figure. Find the time (in ns) during which the particle stays in the field.
Transcribed Image Text:Consider a particle that has a charge to mass ratio of |m/q\=5.9×108 kg/C. The particle enters a uniform magnetic field of B-0.9 T and makes a quarter-circular path before it exits the field, as shown in the figure. Find the time (in ns) during which the particle stays in the field.
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