Two conductors with concentric radii r1%39 m and r2%3D15 m are placed in such a way that their center is the origin. While there is a charge Q1=5,1 µC on the circle with radius r1, there is a charge Q2%3D6,7 µC. Accordingly, Find the amplitude of the electric field at point A(2, 23°, 53°) is given below. TT=3,1416

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter25: Gauss’s Law
Section: Chapter Questions
Problem 43PQ: The nonuniform charge density of a solid insulating sphere of radius R is given by = cr2 (r R),...
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Two conductors with concentric radii r1=9 m and r2=15 m are placed in such a way that their center is the
origin. While there is a charge Q1=5,1 µC on the circle with radius r1, there is a charge Q2%36,7
µC. Accordingly, Find the amplitude of the electric field at point A(2, 23°, 53°) is given below.
TT=3,1416
1
10-9
E=
36T
Q2
12
Q1
27°C Mc
Transcribed Image Text:Two conductors with concentric radii r1=9 m and r2=15 m are placed in such a way that their center is the origin. While there is a charge Q1=5,1 µC on the circle with radius r1, there is a charge Q2%36,7 µC. Accordingly, Find the amplitude of the electric field at point A(2, 23°, 53°) is given below. TT=3,1416 1 10-9 E= 36T Q2 12 Q1 27°C Mc
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