A notorious problem in electric circuits occurs when hair-thin lengths of wire hold charge, functioning as lines of charge. This charge can generate electric fields on the other side of the circuit that sometimes

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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**Electric Circuits and Electric Fields Problem**

A notorious problem in electric circuits occurs when hair-thin lengths of wire hold charge, functioning as lines of charge. This charge can generate electric fields on the other side of the circuit that sometimes disrupt the circuit itself. Knowing the strength of the electric field helps you decide if it will be a problem or not. If one end of a very small section of wire of unknown length is 5 cm from the other side of a circuit and it stores 2.5 μC of charge, what is the magnitude of the electric field it generates there in MN/C? (Hint: Since the distance from the wire is much larger than the length of the wire, use the binomial approximation.)

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Transcribed Image Text:**Electric Circuits and Electric Fields Problem** A notorious problem in electric circuits occurs when hair-thin lengths of wire hold charge, functioning as lines of charge. This charge can generate electric fields on the other side of the circuit that sometimes disrupt the circuit itself. Knowing the strength of the electric field helps you decide if it will be a problem or not. If one end of a very small section of wire of unknown length is 5 cm from the other side of a circuit and it stores 2.5 μC of charge, what is the magnitude of the electric field it generates there in MN/C? (Hint: Since the distance from the wire is much larger than the length of the wire, use the binomial approximation.) **Answer:** [Input field for the answer]
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Physics homework question answer, step 1, image 1

Here, Q is the charge stored in the hair-thin length of wire, and r is the distance of small wire from the other side of the circuits.

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