On (2+1)-Dimensional Physical Models Endowed With Decoupled Spatial and Temporal Memory Indices<sup>☆</Sup>
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2019
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Springer Heidelberg
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Abstract
.The current work concerns the development of an analytical scheme to handle (2 + 1) -dimensional partial differential equations endowed with decoupled spatial and temporal fractional derivatives (abbreviated by (alpha,beta) -models). For this purpose, a new bivariate fractional power series expansion has been integrated with the differential transform scheme. The mechanism of the submitted scheme depends mainly on converting the (alpha,beta) -model to a recurrence-differential equation that can be easily solved by virtue of an iterative procedure. This, in turn, reduces the computational cost of the Taylor power series method and consequently introduces a significant refinement for solving such hybrid models. To elucidate the novelty and efficiency of the proposed scheme, several (alpha,beta) -models are solved and the presence of remnant memory, due to the fractional derivatives, is graphically illustrated.
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Yousef, Feras/0000-0003-2740-7081; Alquran, Marwan/0000-0003-3901-9270; Jaradat, Imad/0000-0002-5880-1121
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Jaradat, Imad;...et.al. (2019). "On (2 + 1)-dimensional physical models endowed with decoupled spatial and temporal memory indices⋆", European Physical Journal Plus, Vol.134, No.7.
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14
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134
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7
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Scopus : 17
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2
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