A proton travels through uniform magnetic and electric fields. The magnetic field is in the negative x direction and has a magnitude of 2.84 mT. At one instant the velocity of the proton is in the positive y direction and has a magnitude of 1630 m/s. At that instant, what is the magnitude of the net force acting on the proton if the electric field is (a) in the positive z direction and has a magnitude of 4.83 V/m, (b) in the negative z direction and has a magnitude of 4.83 V/m, and (c) in the positive x direction and has a magnitude of 4.83 V/m?

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
Publisher:OpenStax
Chapter11: Magnetic Forces And Fields
Section: Chapter Questions
Problem 72AP: A particle moving downward at a speed of 6.0106 m/s enters a uniform magnetic field that is...
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A proton travels through uniform magnetic and electric fields. The
magnetic field is in the negative x direction and has a magnitude of 2.84
mT. At one instant the velocity of the proton is in the positive y direction
and has a magnitude of 1630 m/s. At that instant, what is the magnitude
of the net force acting on the proton if the electric field is (a) in the
positive z direction and has a magnitude of 4.83 V/m, (b) in the negative
z direction and has a magnitude of 4.83 V/m, and (c) in the positive x
direction and has a magnitude of 4.83 V/m?
Transcribed Image Text:A proton travels through uniform magnetic and electric fields. The magnetic field is in the negative x direction and has a magnitude of 2.84 mT. At one instant the velocity of the proton is in the positive y direction and has a magnitude of 1630 m/s. At that instant, what is the magnitude of the net force acting on the proton if the electric field is (a) in the positive z direction and has a magnitude of 4.83 V/m, (b) in the negative z direction and has a magnitude of 4.83 V/m, and (c) in the positive x direction and has a magnitude of 4.83 V/m?
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