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College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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
Transcribed Image Text:Find the electric field at the center of the triangular configuration of charges in Figure
18.54, given that qą = +2.50 nC, qb = -8.00 nC, and qc = +1.50 nC. The angle in the
%3D
choices below is given clockwise from the +x axis or below the horizontal.
qa
Figure 18.54 Point charges
located at the corners of an
equilateral triangle 25.0 cm on a
side.
4.34 x 103 N/C, 54.9°
4.35 хx 103 N/C, 34.9°
4.35 х 103 N/С, 55.0°
4.36 х 103 N/С, 35.1°
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- a 2.8-uC point charge is places in an external uniform electrric field of 2.4E4 N/C. At what distance from the charge is the net electric field zeroarrow_forwardQuestion 1 A positively charged particle q= 12 µC is placed between two infinite charged sheets with surface charge density +a and-a as shown in the figure. If aj-3.54 µC/m², then the magnitude of the electric force (in N) on the particle is: 0.0 90 ON 48 0.00 0672arrow_forward6.arrow_forward
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