• Figure below shows three spherical shells located in free space at r = 3, 5, and 7 m. The first spherical shell, at r = 3 m carries uniform surface charge densities of 20 nC/m2. The middle spherical shell, atr = 5 m carries uniform surface charge densities of -4 nC/m?, and the outer spherical shell, r = 7 m carries uniform surface charge densities pso. Determine: ) Electric flux density, D at r = 1 m, r = 4 m and r = 6 m: Dr=1 = Dr=4 = a, nC/m2 Dr=6 = a, nC/m2 (ii) P:0 if at r = 10 m, D = 0: P:0 = C/m?

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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• Figure below shows three spherical shells located in free space at r = 3, 5, and 7 m. The first spherical shell, at r = 3 m carries uniform surface charge densities of 20 nC/m?. The middle spherical shell, at r = 5 m carries
uniform surface charge densities of -4 nC/m?, and the outer spherical shell, r = 7 m carries uniform surface charge densities pso.
Determine:
(i) Electric flux density, D at r = 1 m, r = 4 m and r = 6 m:
Dr=1 =
Dr=4 =
a, nC/m?
Dr=6 =
a, nC/m2
(ii) Ps0 if at r = 10 m, D = 0:
Ps0 = -
C/m²
Transcribed Image Text:• Figure below shows three spherical shells located in free space at r = 3, 5, and 7 m. The first spherical shell, at r = 3 m carries uniform surface charge densities of 20 nC/m?. The middle spherical shell, at r = 5 m carries uniform surface charge densities of -4 nC/m?, and the outer spherical shell, r = 7 m carries uniform surface charge densities pso. Determine: (i) Electric flux density, D at r = 1 m, r = 4 m and r = 6 m: Dr=1 = Dr=4 = a, nC/m? Dr=6 = a, nC/m2 (ii) Ps0 if at r = 10 m, D = 0: Ps0 = - C/m²
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