Two very long line charge distributions have equal uniform charge density A but opposite in sign as shown in the figure below. If the constant separation distance is a, the electric field at point P is given by •P +y -A (A) E = 1 1. a² + d² -A 2n€o a2 + d² (B) E = 1. (C) E =- 2T€0 (V3d a+d, -A (D) Ē = 1 4T€0 a+d 1 (E) Ě = a+d 1.

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Chapter1: Units, Trigonometry. And Vectors
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Two very long line charge distributions have equal uniform charge
density A but opposite in sign as shown in the figure below. If the constant
separation distance is a, the electric field at point P is given by
•P
+y
d-
1
1
(A) Ê =
2TEO
a? + d?
V3d?
1
(B) Ể =
2T€0
a2 + d?
1
1
(C) E
3d a+d
-A
1
(D) Ẻ =
4T€0 (a +d
1
1
(E) Ë =
2T€0 (d
a +d
+
Transcribed Image Text:Two very long line charge distributions have equal uniform charge density A but opposite in sign as shown in the figure below. If the constant separation distance is a, the electric field at point P is given by •P +y d- 1 1 (A) Ê = 2TEO a? + d? V3d? 1 (B) Ể = 2T€0 a2 + d? 1 1 (C) E 3d a+d -A 1 (D) Ẻ = 4T€0 (a +d 1 1 (E) Ë = 2T€0 (d a +d +
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