33 Figure 24-34 shows a thin plas- tic rod of length L=20.0 cm and uniform positive charge Q = 33.2 fC lying on an x axis. With V-0 at infinity, find the electric potential at point P₁ on the axis, at distance d=2.50 cm from the rod. 34 The thin plastic rod of length P₁ P₂ d Figure 24-34 Problems 33 I

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33 Figure 24-34 shows a thin plas-
tic rod of length L=20.0 cm and
uniform positive charge Q = 33.2 fC
lying on an x axis. With V-0 at
infinity, find the electric potential
at point P₁ on the axis, at distance
d=2.50 cm from the rod.
P₁
P₂
d
I
Figure 24-34 Problems 33,
34, and 51.
34 The thin plastic rod of length
L=8.50 cm in Fig. 24-34 has a
nonuniform linear charge density
λ = cx, where c = 32.6 pC/m². (a) With V= 0 at infinity, find the
electric potential at point P₂ on the y axis at y = D = 3.56 cm. (b)
Find the electric field component E, at P₂. (c) Why cannot the field
component E, at P₂ be found using the result of (a)?
Transcribed Image Text:33 Figure 24-34 shows a thin plas- tic rod of length L=20.0 cm and uniform positive charge Q = 33.2 fC lying on an x axis. With V-0 at infinity, find the electric potential at point P₁ on the axis, at distance d=2.50 cm from the rod. P₁ P₂ d I Figure 24-34 Problems 33, 34, and 51. 34 The thin plastic rod of length L=8.50 cm in Fig. 24-34 has a nonuniform linear charge density λ = cx, where c = 32.6 pC/m². (a) With V= 0 at infinity, find the electric potential at point P₂ on the y axis at y = D = 3.56 cm. (b) Find the electric field component E, at P₂. (c) Why cannot the field component E, at P₂ be found using the result of (a)?
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