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Consider the figure above in scenario A: It is conCan you do problem 4

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Answer #1

For a cylindrical geometry like a coaxial cable, the capacitance is usually stated as a capacitance per unit length. The charge resides on the outer surface of the inner conductor and the inner wall of the outer conductor. The capacitance expression is

In

a) C= L (2\pi \kappa \epsilon)/(ln(a+\delta)/a) = L(

C= L(2\pi \kappa \epsilon)/ln\delta

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