A solid insulating sphere of radius 0.07 m carries a total charge of 25uC. Concentric with this sphere is a conducting spherical shell of inner radius 0.12m and outer radius of 0.18m, and carrying a total charge of -54uC. Find (a) the charge distribution for the insulating sphere and the conducting spherical shell, and the magnitude of the electric field at the following distance from the center tf the two spheres and shells: (b) 0.05m, (c) 0.10m (d) 0.15m and (e) .25m

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Chapter1: Units, Trigonometry. And Vectors
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A solid insulating sphere of radius 0.07 m carries a total charge of 25uC. Concentric with this sphere is a conducting spherical shell of inner radius 0.12m and outer radius of 0.18m, and carrying a total charge of -54uC. Find (a) the charge distribution for the insulating sphere and the conducting spherical shell, and the magnitude of the electric field at the following distance from the center tf the two spheres and shells: (b) 0.05m, (c) 0.10m (d) 0.15m and (e) .25m

26
Proctice Exercises 1.9
1. A solid insulating sphere of radius 0.07 m carries a total charge of
25 pC. Concentric with this sphere is a conducting spherical shell of
inner radius 0.12 m and outer radius of 0.18 m, and carrying a total
charge of -54 µC. Find (a) the charge distribution for the insulating
sphere and the conducting spherical shell, and the magnitude of the
electric field at the following distances from the center of the two
spheres and shell: (b) 0.05 m, (c) 0.10 m, (d) 0.15 m, and (e) 0.25 m.
2. For the same cylinder in Sample Problems 1.9 item number 3, find the
electric field at a point inside the cylinder.
0.18 m
0.12m
0.07 m
Transcribed Image Text:26 Proctice Exercises 1.9 1. A solid insulating sphere of radius 0.07 m carries a total charge of 25 pC. Concentric with this sphere is a conducting spherical shell of inner radius 0.12 m and outer radius of 0.18 m, and carrying a total charge of -54 µC. Find (a) the charge distribution for the insulating sphere and the conducting spherical shell, and the magnitude of the electric field at the following distances from the center of the two spheres and shell: (b) 0.05 m, (c) 0.10 m, (d) 0.15 m, and (e) 0.25 m. 2. For the same cylinder in Sample Problems 1.9 item number 3, find the electric field at a point inside the cylinder. 0.18 m 0.12m 0.07 m
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