4.35 For the electric dipole shown in Fig. 4-13, d = 1 cm and |E| = 4 (mV/m) at R = 1 m and = 0º. Find E at R = 2 m and 0 = 90°.
4.35 For the electric dipole shown in Fig. 4-13, d = 1 cm and |E| = 4 (mV/m) at R = 1 m and = 0º. Find E at R = 2 m and 0 = 90°.
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Question 4.35 please I added the picture of the diagram 4-13. Please do not post chegg solutions

Transcribed Image Text:X
+9
Z
Figure 4-13
(Example 4-7).
R₁
R
d cos 0
R₂
(a) Electric dipole
E
P = (R, 0, 0)
∙y
(b) Electric-field pattern
Electric dipole with dipole moment p = qd

Transcribed Image Text:density pe and of length 7. The line charge is coincident with
the z axis and extends from z = -1/2 to z = 1/2.
4.35 For the electric dipole shown in Fig. 4-13, d = 1 cm and
|E| = 4 (mV/m) at R = 1 m and 0 = 0º. Find E at R = 2 m
and 0 = 90°.
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