2. If a plane charge of 12 µC/m2 lies on x = -6, determine electric flux density D at W(4, -9, -3). 3. If a line charge of 30 milliC/m is at y = -1 m and z = 4 m, find the vector force on a 40 pC charge at R(5, -15, 8). 4. Find the divergence of the vector: D = ρ2 cosΦaρ at (1, 30deg, -5)
2. If a plane charge of 12 µC/m2 lies on x = -6, determine electric flux density D at W(4, -9, -3). 3. If a line charge of 30 milliC/m is at y = -1 m and z = 4 m, find the vector force on a 40 pC charge at R(5, -15, 8). 4. Find the divergence of the vector: D = ρ2 cosΦaρ at (1, 30deg, -5)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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2. If a plane charge of 12 µC/m2 lies on x = -6, determine electric flux density D at W(4, -9, -3).
3. If a line charge of 30 milliC/m is at y = -1 m and z = 4 m, find the vector force on a 40 pC charge at R(5,
-15, 8).
4. Find the divergence of the vector: D = ρ2 cosΦaρ at (1, 30deg, -5)
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