A particle with positive charge q = 1.76 x 1018 C moves with a velocity v = (5i + 2j - K) m/s through a region where both a uniform magnetic field and a uniform electric field exist. (a) Calculate the total force on the moving particle, taking B = (5î + 5j + k) T and E = (5î - j - 2k) V/m. (Give your answers in N for each component.) F = N Fy = F, = N (b) What angle does the force vector make with the positive x-axis? (Give your answer in degrees counterclockwise from the +x-axis.) ° counterclockwise from the +x-axis (c) What If? For what vector electric field would the total force on the particle be zero? (Give your answers in V/m for each component.) E, = V/m E, = V/m V/m

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter22: Magnetic Forces And Magnetic Fields
Section: Chapter Questions
Problem 63P
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A particle with positive charge q = 1.76 x 10-18
C moves with a velocity v = (5î + 2ĵ – k) m/s through a region where both a uniform magnetic field and a uniform electric field exist.
%3D
(a) Calculate the total force on the moving particle, taking B =
(5î + 5j + K) T and E = (5î – ĵ – 2K) V/m. (Give your answers in N for each component.)
F,
N
%3D
Fy
N
%D
F2
N
(b) What angle does the force vector make with the positive x-axis? (Give your answer in degrees counterclockwise from the +x-axis.)
° counterclockwise from the +x-axis
(c) What If? For what vector electric field would the total force on the particle be zero? (Give your answers in V/m for each component.)
Ex
V/m
Ey
V/m
%3D
Ez
V/m
II
Transcribed Image Text:A particle with positive charge q = 1.76 x 10-18 C moves with a velocity v = (5î + 2ĵ – k) m/s through a region where both a uniform magnetic field and a uniform electric field exist. %3D (a) Calculate the total force on the moving particle, taking B = (5î + 5j + K) T and E = (5î – ĵ – 2K) V/m. (Give your answers in N for each component.) F, N %3D Fy N %D F2 N (b) What angle does the force vector make with the positive x-axis? (Give your answer in degrees counterclockwise from the +x-axis.) ° counterclockwise from the +x-axis (c) What If? For what vector electric field would the total force on the particle be zero? (Give your answers in V/m for each component.) Ex V/m Ey V/m %3D Ez V/m II
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