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Duality of Shehu transform with other well known transforms and application to fractional order differential equations. [PDF]
Mlaiki N +4 more
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Analytic solutions for iterative functional differential equations
Pingping Zhang
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A Lattice Boltzmann BGK Model with an Amending Function for Two-Dimensional Second-Order Nonlinear Partial Differential Equations. [PDF]
Bi X, Lei J, Li D, Lai L, Lai H, Liu Z.
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Transfer learning of neural operators for partial differential equations based on sparse network λ-FNO. [PDF]
Xu J, Zhou Y, Liu Q, Li K, Yang H.
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High performance adaptive step size fractional numerical scheme for solving fractional differential equations. [PDF]
Shams M, Alalyani A.
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MODELING TRAJECTORIES USING FUNCTIONAL LINEAR DIFFERENTIAL EQUATIONS. [PDF]
Wrobel J +5 more
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Multivalued Differential Equations and Ordinary Differential Equations
SIAM Journal on Applied Mathematics, 1970(E) e F(x, t), where F is upper semicontinuous, from known results in the theory of ordinary differential equations. This will be accomplished by showing that, for any F upper semicontinuous and convex, it is always possible to "approximate" the multivalued differential equation (E) by appropriately chosen ordinary differential equations. This would be
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The Mathematical Gazette, 1945
1. We deal with the equation where ψ(ωt) is continuous, periodic in t with period 2π/ω a,
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1. We deal with the equation where ψ(ωt) is continuous, periodic in t with period 2π/ω a,
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