The solar wind is a thin, ionized gas given off by the Sun. Suppose a charged SW particle traveling at 9x10 6 m/s encounters the Earth’s magnetic field at an altitude where the field has a magnitude of 1.2x10 -7 T. Assuming that the particle’s velocity is perpendicular to the magnetic field, find the radius of the circular path if the particle were: a) an electron b) a proton.

University Physics Volume 2
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Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 25P: A cosmic-ray electron moves at 7.5 × 106 m/sinches perpendicular to Earth’s magnetic field at an...
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The solar wind is a thin, ionized gas given off by the Sun. Suppose a charged
SW particle traveling at 9x10 6 m/s encounters the Earth’s magnetic field at an altitude where the field has a magnitude of 1.2x10 -7 T. Assuming that the
particle’s velocity is perpendicular to the magnetic field, find the radius of the
circular path if the particle were:
a) an electron
b) a proton.

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