2021
DOI: 10.1088/1361-6404/ac3063
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Computational physics in action: the problem of a charged conducting toroid

Abstract: We present a comprehensive numerical analysis of the peculiarities of the electric field, equipotential surfaces, capacitance, and surface charge density at different thickness of a charged conducting ring. First, we review the filamentary ring case and prove that, unlike a sphere, there is a non-zero electric force inside it. We find that at relatively large values of the ring thickness the electric field has a local maximum inside the hole of the toroid. We also show the existence of a region of space, where… Show more

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