QUESTION 3 Find the ratio of q/Q for the E-field to be zero at a distance of z = 3.52R for the charge distribution and geometry of problem 22.30 of the text. q is the charge on the LARGER ring. Q is the charge on the SMALLER ring.

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Find the ratio of q/Q for the E-field to be zero at a
distance of z = 3.52R for the charge distribution
and geometry of problem #30 of the text. a is
the charge on the LARGER ring. Q is the charge
on the SMALLER ring.

QUESTION 3
Find the ratio of q/Q for the E-field to be zero at a
distance of z = 3.52R for the charge distribution
and geometry of problem 22.30 of the text. q is
the charge on the LARGER ring. Q is the charge
on the SMALLER ring.
Transcribed Image Text:QUESTION 3 Find the ratio of q/Q for the E-field to be zero at a distance of z = 3.52R for the charge distribution and geometry of problem 22.30 of the text. q is the charge on the LARGER ring. Q is the charge on the SMALLER ring.
30 GO Figure 22-53 shows two
concentric rings, of radii R and
R' = 3.00R, that lie on the same
plane. Point P lies on the central z
axis, at distance D = 2.00R from the
center of the rings. The smaller ring
has uniformly distributed charge
+Q. In terms of Q, what is the uni-
formly distributed charge on the
larger ring if the net electric field at
Pis zero?
21 SSM
IM
WI In Fig 22 51
R
Z
D
R'
Figure 22-53 Problem 30.
Transcribed Image Text:30 GO Figure 22-53 shows two concentric rings, of radii R and R' = 3.00R, that lie on the same plane. Point P lies on the central z axis, at distance D = 2.00R from the center of the rings. The smaller ring has uniformly distributed charge +Q. In terms of Q, what is the uni- formly distributed charge on the larger ring if the net electric field at Pis zero? 21 SSM IM WI In Fig 22 51 R Z D R' Figure 22-53 Problem 30.
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