Inherent RC Circuits in Cylindrical Geometries From the Fokker-Planck Equation
Publisher
IEEE
Journal
2023 IEEE/ACIS 8th International Conference on Big Data, Cloud Computing, and Data Science (BCD)
Additional Links
https://doi.org/10.1109/BCD57833.2023.10466295Abstract
The Fokker-Planck equation is used in a scenario of classical electrodynamics as a basic model for transporting charged electrically compounds along a general fluid. While this fluid is contained in a tubular geometry, the electrical properties can be extracted from a direct volumetric integration of Fokker-Planck equation. This paper demonstrates that once it is done term-by-term then a set of electric equations are derived with minimal approximations. Thus a RC circuit is identified. The possible capacitors would obey to drift forces whereas the resistance emerges as inherent to the pass of charges through the tubule. Finally, a generalization of Fokker-Planck would be consistent to the complexity of proteins and biochemical compounds interaction in human blood for example.
Type
info:eu-repo/semantics/article
Rights
info:eu-repo/semantics/restrictedAccess
Language
eng
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