A1.0 m long piece of coaxial cable has a wire with a radius of 1.1 mm and a concentric conductor with inner radius 1.3 mm. The area between the cable and the conductor is filled with a dielectric. If the voltage drop across the capacitor is 4000 V when the line charge density is 5.4 µC/m find the value of the dielectric constant. (k= 1/4mɛ, = 8.99 × 109 N - m²/c² ) View Available Hint(s) O 4.5 O 4.9 O 4.1

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Chapter20: Electric Potential And Capacitance
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A 1.0 m long piece of coaxial cable has a wire with a radius of 1.1 mm and a concentric conductor with inner radius 1.3 mm. The area between the cable and the conductor is filled with a dielectric. If the voltage drop across the capacitor is 4000
V when the line charge density is 5.4 µC/m find the value of the dielectric constant. (k= 1/4TTE, = 8.99 × 109 N · m²/C² )
> View Available Hint(s)
O 4.5
O 4.9
O 4.1
O 5.3
Transcribed Image Text:A 1.0 m long piece of coaxial cable has a wire with a radius of 1.1 mm and a concentric conductor with inner radius 1.3 mm. The area between the cable and the conductor is filled with a dielectric. If the voltage drop across the capacitor is 4000 V when the line charge density is 5.4 µC/m find the value of the dielectric constant. (k= 1/4TTE, = 8.99 × 109 N · m²/C² ) > View Available Hint(s) O 4.5 O 4.9 O 4.1 O 5.3
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