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Bifurcation Analysis of Chemostat System
Details
The study of population dynamics involving two interacting microbial species in a chemostat plays a crucial role so as to better understand the effects of biotic interactions between species. To address this problem, we employ an extended Lotka-Volterra model involving competition and mutualism, which describes a simplified chemostat system. In relation to previous studies, we demonstrate how the technique of numerical bifurcation analysis can be used to examine the dynamical behaviour of chemostat system. Saddle node, transcritical and Hopf bifurcations are discovered due to the interactions of distinct ecological parameters. It is also shown that the joint effects of competitive interaction and the growth process among two species lead to different dynamics e.g., coexistence of species, species extinction, bistability and also limit cycles. Our findings also demonstrate that the combined influences of competitive force and species growth rates can engender intriguing dynamical behaviour, which can mediate species coexistence outcomes.
Autorentext
Muhammad Shamsul Naim obtained his B.ed in Mathematics Education from Institute of Teacher Education Malaysia (ITEM). He received Msc (Mathematics) at University Sains Malaysia in the field of Mathematical Modelling. He has been serving in education sector for about seven years by teaching mathematics. He has also been involved in several modules.
Weitere Informationen
- Allgemeine Informationen
- Sprache Englisch
- Anzahl Seiten 116
- Herausgeber LAP LAMBERT Academic Publishing
- Gewicht 191g
- Untertitel Using an Extended Lotka Volterra Model
- Autor Muhammad Shamsul Naim Mohd Sukri
- Titel Bifurcation Analysis of Chemostat System
- Veröffentlichung 12.11.2021
- ISBN 6204718231
- Format Kartonierter Einband
- EAN 9786204718231
- Jahr 2021
- Größe H220mm x B150mm x T8mm
- GTIN 09786204718231