49 In Fig. 23-54, a solid sphere of radius a = 2.00 cm is concentric with a spherical conducting shell of inner ra- dius b = 2.00a and outer radius c= 2.40a. The sphere has a net uniform charge q = +5.00 fC; the shell has a net charge q2 = -q1. What is the mag- nitude of the electric field at radial distances (a) r = 0, (b) r = al2.00, (c) T= a, (d) r = 1.50a, (e) r = 2.30a, and (f) r = 3.50a? What is the net charge on the (g) inner and (h) outer surface of the shell? Figure 23-54 Problem 49.

Physics for Scientists and Engineers: Foundations and Connections
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Chapter25: Gauss’s Law
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49 In Fig. 23-54, a solid sphere of
radius a = 2.00 cm is concentric with a
spherical conducting shell of inner ra-
dius b = 2.00a and outer radius c=
2.40a. The sphere has a net uniform
charge q = +5.00 fC; the shell has a
net charge q2 = -q1. What is the mag-
nitude of the electric field at radial
distances (a) r = 0, (b) r = al2.00, (c)
T= a, (d) r = 1.50a, (e) r = 2.30a, and
(f) r = 3.50a? What is the net charge
on the (g) inner and (h) outer surface
of the shell?
Figure 23-54 Problem 49.
Transcribed Image Text:49 In Fig. 23-54, a solid sphere of radius a = 2.00 cm is concentric with a spherical conducting shell of inner ra- dius b = 2.00a and outer radius c= 2.40a. The sphere has a net uniform charge q = +5.00 fC; the shell has a net charge q2 = -q1. What is the mag- nitude of the electric field at radial distances (a) r = 0, (b) r = al2.00, (c) T= a, (d) r = 1.50a, (e) r = 2.30a, and (f) r = 3.50a? What is the net charge on the (g) inner and (h) outer surface of the shell? Figure 23-54 Problem 49.
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