Theory of nonlinear convolution with the Keller-Segel equation
Fecha
2020-12-30Autor(es)
Nieto Chaupis, Huber Amancio
Metadatos
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ABSTRACT
A theory of Keller-Segel equation by using nonlinear convolution is presented. Attention is paid to the case where bacteria contain ions in their composition so that one can derive electric relations in contrast to the Navier-Stokes coupled equations. The mathematical methodology presented in this paper is entirely based on integrals of convolution. In concrete the schemes of Wiener series and the Feynman propagator are used. Finally the resulting distributions of substrate and bacteria density would obey possible scenarios of electrical interactions because the ions in their compositions.
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Cita bibliográfica
Nieto, H. A. (2020). Theory of nonlinear convolution with the Keller-Segel equation. International Conference on Computing, Networking, Telecommunications and Engineering Sciences Applications, CoNTESA 2020, 27-30. https://doi.org/10.1109/CoNTESA50436.2020.9302853
Nota
El texto completo de este trabajo no está disponible en el Repositorio Académico UPN por restricciones de la casa editorial donde ha sido publicado.