The cross section of a long coaxial cable is shown in the figure, with radii as given. The linear charge density on the inner conductor is -50 nC/m and the linear charge density on the outer conductor is -30 nC/m. The inner and outer cylindrical surfaces are respectively denoted by A, B, C, and D, as shown. (= 8.85 x 10-12 C²/N m²) The magnitude of the electric field at a point that is 64 mm from the axis is closest to D 28 mm 2.3x104 N/C. 3.0x104 N/C. 1.6x104 N/C. 3.7x104 N/C. O 9200 N/C. A I 130 mm I I 49 mm 51 mm

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Chapter1: Units, Trigonometry. And Vectors
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The cross section of a long coaxial cable is shown in the figure, with radii as given. The linear charge density on the inner
conductor is -50 nC/m and the linear charge density on the outer conductor is -30 nC/m. The inner and outer cylindrical surfaces
are respectively denoted by A, B, C, and D, as shown. (= 8.85 x 10-12 C²/N m²) The magnitude of the electric field at a
point that is 64 mm from the axis is closest to
D
28 mm
2.3x104 N/C.
3.0x104 N/C.
1.6x104 N/C.
3.7x104 N/C.
O 9200 N/C.
A
I
130 mm
I
I
49 mm
51 mm
Transcribed Image Text:The cross section of a long coaxial cable is shown in the figure, with radii as given. The linear charge density on the inner conductor is -50 nC/m and the linear charge density on the outer conductor is -30 nC/m. The inner and outer cylindrical surfaces are respectively denoted by A, B, C, and D, as shown. (= 8.85 x 10-12 C²/N m²) The magnitude of the electric field at a point that is 64 mm from the axis is closest to D 28 mm 2.3x104 N/C. 3.0x104 N/C. 1.6x104 N/C. 3.7x104 N/C. O 9200 N/C. A I 130 mm I I 49 mm 51 mm
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