000 01641nam a2200121Ia 4500
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245 0 _aPartial Differential Equations in Ecology
_b80 Years and Counting
546 _aEnglish[eng]
650 _across diffusion||Turing patterns||non-constant positive solution||animal movement||correlated random walk||movement ecology||population dynamics||taxis||telegrapher’s equation||invasive species||linear determinacy||population growth||mutation||spreading speeds||travelling waves||optimal control||partial differential equation||invasive species in a river||continuum models||partial differential equations||individual based models||plant populations||phenotypic plasticity||vegetation pattern formation||desertification||homoclinic snaking||front instabilities||Evolutionary dynamics||G-function||Quorum Sensing||Public Goods||semi-linear parabolic system of equations||generalist predator||pattern formation||Turing instability||Turing-Hopf bifurcation||bistability||regime shift||carrying capacity||spatial heterogeneity||Pearl-Verhulst logistic model||reaction-diffusion model||energy constraints||total realized asymptotic population abundance||chemostat model||social dynamics||wave of protests||long transients||ghost attractor||prey–predator||diffusion||nonlocal interaction||spatiotemporal pattern||Allen–Cahn model||Cahn–Hilliard model||spatial patterns||spatial fluctuation||dynamic behaviors||reaction-diffusion||spatial ecology||stage structure||dispersal
700 _aPetrovskii, Sergei
856 _uhttps://mdpi.com/books/pdfview/book/3501
942 _cEB
999 _c22761
_d22761