1) A particle with positive charge q = 1.6 x 10-19c moves with a velocity of v = 2.Z k m/s through a region where both a uniform magnetic field of B = (4î + 2ĵ + 3k)T and a uniform electric field of E = (2î + 3ĵ + 4k)V /m exist. %3D %3D (a) Calculate the magnitude of magnetic force acted on the particle. (b) Calculate the magnitude of total force acted on the particle.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Z = 5
1) A particle with positive charge q = 1.6 x 10-19C moves with a velocity of
v = 2. Z k m/s through a region where both a uniform magnetic field of
B = (4î + 2j + 3k)T and a uniform electric field of E = (2î + 3ĵ + 4k)V/m exist.
%3D
(a) Calculate the magnitude of magnetic force acted on the particle.
(b) Calculate the magnitude of total force acted on the particle.
Transcribed Image Text:1) A particle with positive charge q = 1.6 x 10-19C moves with a velocity of v = 2. Z k m/s through a region where both a uniform magnetic field of B = (4î + 2j + 3k)T and a uniform electric field of E = (2î + 3ĵ + 4k)V/m exist. %3D (a) Calculate the magnitude of magnetic force acted on the particle. (b) Calculate the magnitude of total force acted on the particle.
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