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Three Dimensional Electric Circuits with Multiple Capacitors and Resistors

DOI: 10.4236/ajcm.2023.133021, PP. 379-386

Keywords: 3D Electric Circuits, Capacitors, Multiple Resistors, Differential-Algebraic Equations, Computer Algebra System, Mathematica

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Abstract:

Two cubical 3D electric circuits with single and double capacitors and twelve ohmic resistors are considered. The resistors are the sides of the cube. The circuit is fed with a single internal emf. The charge on the capacitor(s) and the current distributions of all twelve sides of the circuit(s) vs. time are evaluated. The analysis requires solving twelve differential-algebraic intertwined symbolic equations. This is accomplished by applying a Computer Algebra System (CAS), specifically Mathematica. The needed codes are included. For a set of values assigned to the elements, the numeric results are depicted.

References

[1]  Sarafian, H. (2023) 3D_MultiResistor Electric Circuit. American Journal of Computational Mathematics, 13, 342-349.
https://doi.org/10.4236/ajcm.2023.132017
[2]  NI Multisim.
https://www.ni.com/en-us/support/downloads/software-products/download.multisim.html#452133
[3]  Bauer, W. and Westfall, G. (2011) University Physics with Modern Physics. McGraw Hill, New York.
[4]  Mathematica V13.2 (2022)
http://Wolfram.com
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[6]  Sarafian, H. (2019) Mathematica Graphics Examples. 2nd Edition, Scientific Research Publishing, Wuhan.
[7]  Sarafian, H. (2015) Mathematica Graphics Example Book for Beginners. Scientific Research Publishing, Wuhan.

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