Results 201 to 210 of about 692,681 (370)
Solving a system of nonlinear fractional differential equations using Adomian decomposition
Hossein Jafari, Varsha Daftardar‐Gejji
openalex +1 more source
This study designs Ta–Mo–Cr–Ti–Al refractory high‐entropy alloys with a disordered body‐centered‐cubic A2 crystal structure aiming for improved ductility, lower density, and oxidation resistance. Four alloy compositions are identified by thermodynamic calculations.
Kateryna Khanchych +7 more
wiley +1 more source
Pitfalls in fast numerical solvers for fractional differential equations
Kai Diethelm +3 more
openalex +1 more source
Solving System of a Linear Fractional Differential Equations by Using Laplace Transformation [PDF]
Shaker Rashid, Yaseen T. Mustafa
openalex +1 more source
High‐performance nickel‐based superalloys are often not processible in additive manufacturing (AM) due to hot cracking. The findings in this manuscript propose an efficient method to mitigate cracking and enhance mechanical properties of these alloys by producing a metal matrix composite, contributing to the material and process perspective of the AM ...
Klaus Büßenschütt +3 more
wiley +1 more source
Physics-Informed Neural Network-Based Inverse Framework for Time-Fractional Differential Equations for Rheology. [PDF]
Thakur S, Mitra H, Ardekani AM.
europepmc +1 more source
The fused filament‐fabricated MAR‐M247 alloy without hot isostatic pressing shows the lowest porosity of 4%. Heat treatment at 1220 °C produces coarse precipitates and carbides. Specimens heat‐treated at 1220 °C exhibit higher tensile strength (683 MPa) and elongation (10%) at room temperature.
Haneen Daoud +7 more
wiley +1 more source
High performance adaptive step size fractional numerical scheme for solving fractional differential equations. [PDF]
Shams M, Alalyani A.
europepmc +1 more source
Data for numerical solution of Caputo's and Riemann-Liouville's fractional differential equations. [PDF]
Betancur-Herrera DE, Muñoz-Galeano N.
europepmc +1 more source

