Coinvasion–coexistence travelling wave solutions of an integro-difference competition system
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Publication:2941703
DOI10.1080/10236198.2013.862239zbMath1319.92048arXiv1310.8036OpenAlexW2030316223MaRDI QIDQ2941703
Publication date: 24 August 2015
Published in: Journal of Difference Equations and Applications (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1310.8036
Integro-ordinary differential equations (45J05) Population dynamics (general) (92D25) Ecology (92D40)
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The existence of traveling wave solutions in an integro-difference competition–cooperation system ⋮ Propagation thresholds of competitive integrodifference systems
Cites Work
- Spreading speeds and traveling waves for non-cooperative integro-difference systems
- Propagation of second order integrodifference equations with local monotonicity
- Spreading speeds and traveling waves in competitive recursion systems
- Asymptotic behavior and uniqueness of traveling wave solutions in Ricker competition system
- Traveling wave solutions of a competitive recursion
- Some remarks on traveling wave solutions in competition models
- Existence of traveling waves for integral recursions with nonmonotone growth functions
- Spreading speeds and traveling wavefronts for second order integrodifference equations
- Discrete time models for two-species competition
- Mathematical biology. Vol. 1: An introduction.
- Spreading speed and linear determinacy for two-species competition models
- Analysis of linear determinacy for spread in cooperative models
- Unimodal dynamical systems: comparison principles, spreading speeds and travelling waves
- Traveling wave solutions for integro-difference systems
- Travelling wave solutions in integro-difference competition system
- Long-Time Behavior of a Class of Biological Models
- Asymptotic speeds of spread and traveling waves for monotone semiflows with applications
- An extended discrete Ricker population model with Allee effects
- Spreading Speeds and Traveling Waves for Nonmonotone Integrodifference Equations
- Some Discrete Competition Models and the Competitive Exclusion Principle†