Electric potential; Electromagnetic analysis; Finite element analysis; Function approximation; Grounding; Numerical stability; Ogata-Sugihara rule; Partial differential equations

Each sheet in this document meticulously details the electrical parameters of the grounding networks. Among all these parameters, touch voltage stands out as the most critical factor to consider in each evaluated conductor configuration.

The determination of these physical configurations is based on meticulous measurement of the distances between conductors on one side of the grid. It's important to note that in this context, square grids are being employed for grounding, which implies a specific arrangement of conductors.

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This paper introduces a novel model for the electric current dissipation through a horizontally stratified multilayer soil, for any point source location and calculated for every coordinate in space. The soil characteristic functions, which describe the application of boundary conditions for each layer transition

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