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 6000 V when the line charge density is 8.8 μC/m, find the value of the dielectric constant. (k = 1/4piE0 = 8.99 × 109 N · m2/C2)

Principles of Physics: A Calculus-Based Text
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Chapter20: Electric Potential And Capacitance
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Problem 17OQ: An electronics technician wishes to construct a parallel plate capacitor using rutile ( = 100) as...
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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 6000 V when the line charge density is 8.8 μC/m, find the
value of the dielectric constant. (k = 1/4piE0 = 8.99 × 109 N · m2/C2)

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