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標題: Titlebook: Numerical Methods for Fractional Differentiation; Kolade M. Owolabi,Abdon Atangana Book 2019 Springer Nature Singapore Pte Ltd. 2019 Fract [打印本頁]

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書目名稱Numerical Methods for Fractional Differentiation影響因子(影響力)




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作者: CANON    時間: 2025-3-21 23:39

作者: CRANK    時間: 2025-3-22 04:14
Kolade M. Owolabi,Abdon Atanganathat only a finite number of ways of allocating a given total of emission rights between countries will lead to Pareto efficient outcomes. Distribution and efficiency are linked in competitive economies where one trades the right to produce privately-produced public goods (such as CO. emissions).
作者: isotope    時間: 2025-3-22 05:54
ughout his life he was inspired by geometry and poetry, and favored elegant succinct proofs. This little book, ?rst published in 1944,then in a secondexpanded edition in 1987, gives us a glimpse into his way of thinking. It is a series of vignettes, each crafted with elegance and economy. See, for e
作者: cogent    時間: 2025-3-22 09:52

作者: coltish    時間: 2025-3-22 15:14
Kolade M. Owolabi,Abdon Atanganahe average turbulent intensity is about 0.25. Until additional measurements of the basic properties of turbulent structure are available, it appears unlikely that the power-spectral-analysis techniques can replace the conventional steady-state procedure.
作者: 無底    時間: 2025-3-22 18:37
Kolade M. Owolabi,Abdon Atanganas. This little book, ?rst published in 1944,then in a secondexpanded edition in 1987, gives us a glimpse into his way of thinking. It is a series of vignettes, each crafted with elegance and economy. See, for e978-0-387-78130-3978-0-387-78131-0
作者: 變化    時間: 2025-3-22 23:42

作者: myelography    時間: 2025-3-23 03:58
0179-3632 of science, technology, and engineering, including epidemiology, chaos, solitons, fractals, diffusion, groundwater, and fluid mechanics. Given its scope, the book offers a valuable resource for graduate studen978-981-15-0100-5978-981-15-0098-5Series ISSN 0179-3632 Series E-ISSN 2198-3712
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作者: 減少    時間: 2025-3-23 14:18
,Numerical Approximation of Riemann–Liouville Differentiation,have realized from already published materials that some researchers used this operator in their model but employ the approximate numerical representation of the Caputo differential operator to get simulation and study the stability analysis.
作者: Agility    時間: 2025-3-23 18:06
Application to Partial Fractional Differential Equation,he literature. Due to their wider application in modelling complex real-world problems, several numerical schemes have been suggested. This chapter is devoted to the discussion underpinning the application of existing and newly established numerical schemes for solving partial fractional differential equations.
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https://doi.org/10.1007/978-981-15-0098-5Fractional differential equations; Fractional integral equation; Partial differential equations; Ordina
作者: Presbycusis    時間: 2025-3-24 09:09
Kolade M. Owolabi,Abdon AtanganaPresents numerical methods for solving partial differential and integral equations, as well as ordinary differential and integral equations.Discusses Caputo–Fabrizio differential and integral operator
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Numerical Methods for Fractional Differentiation978-981-15-0098-5Series ISSN 0179-3632 Series E-ISSN 2198-3712
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,Numerical Approximation of Atangana–Baleanu Differentiation,ith non-local behaviour. We have also seen an interest of these operators in the field of numerical analysis. Thus, to accommodate readers interesting in applying these derivatives to numerical analysis, we present in this chapter some numerical scheme in connection with the Atangana–Baleanu fractional differential operators.
作者: 兇兆    時間: 2025-3-25 14:35
,Numerical Approximation of Caputo–Fabrizio Differentiation,cular point requires knowledge of the function further out of the region close to that point. Accordingly, finite difference approximations of derivatives of fractional order engage a quantity of points that alters according to how faraway we are from the borderline.
作者: infarct    時間: 2025-3-25 17:02
0179-3632 Discusses Caputo–Fabrizio differential and integral operator.This book discusses numerical methods for solving partial differential and integral equations, as well as ordinary differential and integral equations, involving fractional differential and integral operators. Differential and integral ope
作者: 可卡    時間: 2025-3-25 23:55

作者: NATTY    時間: 2025-3-26 03:08
Finite Difference Approximations,fusion problems with a clear justification through examples, the supremacy between the second- and fourth-order schemes. As a consequence, methods for the solution of initial and boundary value PDEs, such as the method of lines (MOL), is of broad interest in science and engineering. This procedure b
作者: Presbyopia    時間: 2025-3-26 07:04

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,Numerical Approximation of Atangana–Baleanu Differentiation, The new kernel introduced is the well-known generalized Mittag–Leffler function and the properties of this function enable the new operators to have some interesting properties that are observed in real-world situation, for instance, the crossover of the mean square displacement and scaling variant
作者: 營養(yǎng)    時間: 2025-3-27 00:16

作者: 不確定    時間: 2025-3-27 01:56
Application to Partial Fractional Differential Equation,he literature. Due to their wider application in modelling complex real-world problems, several numerical schemes have been suggested. This chapter is devoted to the discussion underpinning the application of existing and newly established numerical schemes for solving partial fractional differentia
作者: Presbyopia    時間: 2025-3-27 08:30
ngen in 1924 and obtained his doctor’s degree from Leiden University in 1927. He spent his early years as a high school teacher and administrator. He published extensively, and as his ability became known, he was made professor at the Technical University of Delft in 1941, and later rector of thatun
作者: deactivate    時間: 2025-3-27 09:41

作者: hangdog    時間: 2025-3-27 16:18
Kolade M. Owolabi,Abdon Atanganaf topics in elementary plane Euclidean geometry.Translator hOene Bottema (1901–1992) may not be so well known abroad, but in his own country he is ”the great geometer”. He graduated from the University of Groningen in 1924 and obtained his doctor’s degree from Leiden University in 1927. He spent his
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