A charge of uniform linear density -4.71 nC/m is distributed along a long, thin, nonconducting rod. The rod is coaxial with a long conducting cylindrical shell (inner radius = 9.00 cm, outer radius = 10.0 cm). The net charge contained within a Gaussian cylinder with the same axis of symmetry (see the figure below) is zero. Find the magnitude of the electric field at r = 5.00 cm from the axis of symmetry. Enter a positive number if the electric field is radially out and a negative number if radially in. N/C Gaussian cylinder Rod

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A charge of uniform linear density -4.71 nC/m is distributed along a long, thin, nonconducting rod. The rod is coaxial with a long
conducting cylindrical shell (inner radius = 9.00 cm, outer radius = 10.0 cm). The net charge contained within a Gaussian cylinder with
the same axis of symmetry (see the figure below) is zero.
Find the magnitude of the electric field at r = 5.00 cm from the axis of symmetry. Enter a positive number if the electric field is
radially out and a negative number if radially in.
i
N/C
Gaussian
cylinder
Shell
Rod-
Transcribed Image Text:A charge of uniform linear density -4.71 nC/m is distributed along a long, thin, nonconducting rod. The rod is coaxial with a long conducting cylindrical shell (inner radius = 9.00 cm, outer radius = 10.0 cm). The net charge contained within a Gaussian cylinder with the same axis of symmetry (see the figure below) is zero. Find the magnitude of the electric field at r = 5.00 cm from the axis of symmetry. Enter a positive number if the electric field is radially out and a negative number if radially in. i N/C Gaussian cylinder Shell Rod-
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