Stable Singularity Formation for the Keller-Segel System in Three Dimensions. [PDF]
Glogić I, Schörkhuber B.
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Multistability bifurcation analysis and transmission pathways for the dynamics of the infectious disease-cholera model with microbial expansion inducing the Allee effect in terms of Guassian noise and crossover effects. [PDF]
Raza MA +4 more
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Mathematical modeling of allelopathic stimulatory phytoplankton species using fractal-fractional derivatives. [PDF]
Kumawat S +4 more
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Time-domain methods for quantifying dynamic cerebral blood flow autoregulation: Review and recommendations. A white paper from the Cerebrovascular Research Network (CARNet). [PDF]
Kostoglou K +16 more
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The analysis of a new fractional model to the Zika virus infection with mutant. [PDF]
Zafar ZUA +5 more
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Fractional-Order Epidemic Model for Measles Infection. [PDF]
Akuka PNA, Seidu B, Okyere E, Abagna S.
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On the best constants of Schur multipliers of second order divided difference functions. [PDF]
Caspers M, Reimann J.
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On a weakly singular Volterra integral equation
CALCOLO, 1981The need for providing reliable numerical methods for the solution of weakly singular Volterra integral equations of first kind stems from the fact that they are connected to important problems in the theory and applications of stochastic processes. In the first section the above problems and some peculiarities of such equations are briefly sketched ...
Favella, L. F., De Griffi, E. M.
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Singular perturbation analysis of a certain volterra integral equation
Zeitschrift für angewandte Mathematik und Physik ZAMP, 1972An investigation is made of the asymptotic behavior of the solutionu(t;e) to the Volterra integral equation $$\varepsilon u(t;\varepsilon ) = \pi ^{ - \tfrac{1}{2}} \int\limits_0^t {(t - s)^{ - \tfrac{1}{2}} [f(s) - u^n (s;\varepsilon )]} ds, t \geqslant 0, n \geqslant 1$
Olmstead, W. E., Handelsman, Richard A.
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