An infinite number of charges each equal to 1nC are placed along the x-axis at x-1, x=2, x=4, x=8,.... And so on. The distances are in m. The electric field at the point x-D0 due to this set of charges if alternate charges have opposite sign is (1) 7.2V/m (2) 12V/m (3) 15V/m (4) 45V/m An infinite number of charges each equal to 1nC are placed along the x-axis at x-1, x-2, x=4, x=8,.... And so on. The distances are in m. The electric field at the point x-0 due to this set of charges is (1) 6V/m (2) 12V/m (3) 15V/m (4) 45V/m

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter15: Electric Forces And Electric Fields
Section: Chapter Questions
Problem 24P: (a) Find the magnitude and direction of the electric field at the position of the 2.00 C charge in...
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An infinite number of charges each equal to 1nC are placed along the x-axis at x-1,
X=2, x=4, x=8,.... And so on. The distances are in m. The electric field at the point x-0
due to this set of charges if aiternate charges have opposite sign is
(1) 7.2V/m
(2) 12V/m
(3) 15V/m
(4) 45V/m
An infinite number of charges each equal to 1nC are placed along the x-axis at x-1,
x-2, x=4, x=8,.... And so on. The distances are in m. The electric field at the point x-D0
due to this set of charges is
(1) 6V/m
(2) 12V/m
(3) 15V/m
(4) 45V/m
Transcribed Image Text:An infinite number of charges each equal to 1nC are placed along the x-axis at x-1, X=2, x=4, x=8,.... And so on. The distances are in m. The electric field at the point x-0 due to this set of charges if aiternate charges have opposite sign is (1) 7.2V/m (2) 12V/m (3) 15V/m (4) 45V/m An infinite number of charges each equal to 1nC are placed along the x-axis at x-1, x-2, x=4, x=8,.... And so on. The distances are in m. The electric field at the point x-D0 due to this set of charges is (1) 6V/m (2) 12V/m (3) 15V/m (4) 45V/m
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