Estimates of Population Size for Traveling Wave Solutions of Spatially Non-local Lotka-Volterra Competition System
Author:
Publisher
Springer Science and Business Media LLC
Subject
Analysis
Link
https://link.springer.com/content/pdf/10.1007/s10884-021-10109-y.pdf
Reference24 articles.
1. Chen, C.-C., Hsiao, T.-Y., Hung, L.-C.: Discrete n-barrier maximum principle for a lattice dynamical system arising in competition models. Discret. Contin. Dyn. Syst. 40(1), 153 (2020)
2. Chen, C.-C., Hung, L.-C.: A maximum principle for diffusive lotka-volterra systems of two competing species. J. Diff. Equ. 261(8), 4573–4592 (2016a)
3. Chen, C.-C., Hung, L.-C.: Nonexistence of traveling wave solutions, exact and semi-exact traveling wave solutions for diffusive lotka-volterra systems of three competing species. Comm. Pure. Appl. Anal. 15(4), 1451 (2016b)
4. Chen, C.-C., Hung, L.-C. (2018): An n-barrier maximum principle for elliptic systems arising from the study of traveling waves in reaction-diffusion systems. Discret. Contin. Dyn. Syst. - B.
5. Chen, C.-C., Hung, L.-C., Lai, C.-C.: An n-barrier maximum principle for autonomous systems of n species and its application to problems arising from population dynamics. Comm. Pure. Appl. Anal. 18(1), 33 (2019)
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