Solutions for food chain ecoepidemic model with considering infection using Adomian decomposition and differential transformation methods
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Publication:1788305
DOI10.1007/s40819-016-0179-2zbMath1397.92717OpenAlexW2483522093MaRDI QIDQ1788305
Publication date: 8 October 2018
Published in: International Journal of Applied and Computational Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s40819-016-0179-2
differential transformation methodinfectionfood chain ecoepidemicLaplace Adomian decomposition method
Epidemiology (92D30) Ecology (92D40) Computational methods for problems pertaining to biology (92-08)
Cites Work
- Unnamed Item
- Investigation of rotating MHD viscous flow and heat transfer between stretching and porous surfaces using analytical method
- Application of homotopy perturbation method for systems of Volterra integral equations of the first kind
- A new homotopy perturbation method for solving systems of partial differential equations
- He's homotopy perturbation method for systems of integro-differential equations
- Dynamical analysis of a prey-predator model with Beddington-DeAngelis type function response incorporating a prey refuge
- Permanence of some ecological systems with several predator and one prey species
- Periodic solutions of an \(n\)-species Lotka--Volterra type food-chain model with time delays
- Adomian decomposition approach to a SIR epidemic model with constant vaccination strategy
- Frequency analysis of strongly nonlinear generalized Duffing oscillators using he's frequency-amplitude formulation and He's energy balance method
- Persistence in food webs - I. Lotka-Volterra food chains
- Persistence in food webs: Holling-type food chains
- Environmental effects on the linear stability of a three species food chain model
- The influence of diseases on Lotka-Volterra systems
- On the homotopy analysis method for nonlinear problems.
- Four predator prey models with infectious diseases
- Nanofluid flow and heat transfer between parallel plates considering Brownian motion using DTM
- A predator-prey model with diseases in both prey and predator
- Global stability of partially closed food-chains with resources
- Analytical investigation of Jeffery-Hamel flow with high magnetic field and nanoparticle by adomian decomposition method
- Approximate periodic solutions for the Helmholtz-Duffing equation
- Solution of the epidemic model by Adomian decomposition method
- Solutions to the problem of prey and predator and the epidemic model via differential transform method
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