Consider an electron orbiting a proton and maintained in a fixed circular path of radius R = 5.29 x 10-11 m by the Coulomb force. Treat the orbiting particle as a current loop. Calculate the resulting torque when the electron–proton system is placed in a magnetic field of 0.400 T directed perpendicular to the magnetic moment of the loop.
Consider an electron orbiting a proton and maintained in a fixed circular path of radius R = 5.29 x 10-11 m by the Coulomb force. Treat the orbiting particle as a current loop. Calculate the resulting torque when the electron–proton system is placed in a magnetic field of 0.400 T directed perpendicular to the magnetic moment of the loop.
Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 91AP: Consider an electron rotating in a circular orbit of radius r. Show that the magnitudes of the...
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Consider an electron orbiting a proton and maintained in a fixed circular path of radius R = 5.29 x 10-11 m by the Coulomb force. Treat the orbiting particle as a current loop. Calculate the resulting torque when the electron–proton system is placed in a magnetic field of 0.400 T directed perpendicular to the magnetic moment of the loop.
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