An electron is launched at a speed of v at an angle of north of east into a region with a uniform nagnetic field. The magnitude of the magnetic field is B and the field is pointing due east. a) Find the radius of curvature of the trajectory. b) Find the pitch (the distance traveled during one revolution, perpendicular to the plane of circular motion) of the trajectory.
An electron is launched at a speed of v at an angle of north of east into a region with a uniform nagnetic field. The magnitude of the magnetic field is B and the field is pointing due east. a) Find the radius of curvature of the trajectory. b) Find the pitch (the distance traveled during one revolution, perpendicular to the plane of circular motion) of the trajectory.
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
Transcribed Image Text:An electron is launched at a speed of v at an angle of 0 north of east into a region with a uniform
magnetic field. The magnitude of the magnetic field is B and the field is pointing due east.
a) Find the radius of curvature of the trajectory.
b)
Find the pitch (the distance traveled during one revolution, perpendicular to the plane of circular
motion) of the trajectory.
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