A competition un-stirred chemostat model with virus in an aquatic system
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Publication:5239087
DOI10.1080/00036811.2018.1460811zbMath1423.35209OpenAlexW2799719072WikidataQ129977948 ScholiaQ129977948MaRDI QIDQ5239087
Publication date: 21 October 2019
Published in: Applicable Analysis (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/00036811.2018.1460811
Asymptotic behavior of solutions to PDEs (35B40) Reaction-diffusion equations (35K57) Dynamical systems in biology (37N25) PDEs in connection with biology, chemistry and other natural sciences (35Q92) Bifurcations in context of PDEs (35B32) Initial-boundary value problems for second-order parabolic systems (35K51)
Cites Work
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- Bacteriophage and bacteria in a flow reactor
- Dynamics of a model of microbial competition with internal nutrient storage in a flowing habitat
- Competition in the presence of a virus in an aquatic system: an SIS model in the chemostat
- A competition model with dynamically allocated toxin production in the unstirred chemostat
- Well-posedness and dissipativity for a model of bacteriophage and bacteria in a flow reactor
- On a mathematical model arising from competition of phytoplankton species for a single nutrient with internal storage: steady state analysis
- Coexistence states for a diffusive one-prey and two-predators model with B-D functional response
- A competition model for two resources in un-stirred chemostat
- Asymptotic profiles of the steady states for an SIS epidemic reaction-diffusion model
- On global bifurcation for quasilinear elliptic systems on bounded domains
- Positive solutions of a competition model for two resources in the unstirred chemostat
- Convergence results and a Poincaré-Bendixson trichotomy for asymptotically autonomous differential equations
- On the fixed point index and multiple steady-state solutions of reaction- diffusion systems
- The asymptotic behavior of flow reactor models with two nutrients
- A model of microbial growth in a plug flow reactor with wall attachment
- Robust persistence for semidynamical systems.
- A parabolic system modeling microbial competition in an unmixed bio-reactor
- Bacteriophage-resistant and bacteriophage-sensitive bacteria in a chemostat
- Global bifurcation of coexistence state for the competition model in the chemostat
- Microbial growth in a plug flow reactor with wall adherence and cell motility
- Bifurcation, perturbation of simple eigenvalues, and linearized stability
- A food chain model for two resources in un-stirred chemostat
- A reaction-diffusion model of harmful algae and zooplankton in an ecosystem
- The analysis and regulation for the dynamics of a temperate bacteriophage model
- Coexistence solutions and their stability of an unstirred chemostat model with toxins
- Bifurcation from simple eigenvalues
- On a System of Reaction-Diffusion Equations Arising from Competition in an Unstirred Chemostat
- Abstract Functional Differential Equations and Reaction-Diffusion Systems
- Effects of Random Motility on Microbial Growth and Competition in a Flow Reactor
- The Theory of the Chemostat
- Basic Reproduction Numbers for Reaction-Diffusion Epidemic Models
- The Effect of Inhibitor on the Plasmid‐Bearing and Plasmid‐Free Model in the Unstirred Chemostat
- Global Attractors and Steady States for Uniformly Persistent Dynamical Systems
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