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Efficient Solution of Fokker–Planck Equations in Two Dimensions
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Selecting the Number of Clusters in Mixture Multigroup Structural Equation Modeling
Published 2025-03-01“…MMG-SEM requires the user to select the optimal number of clusters for the data at hand. …”
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An Efficient and Accurate Adaptive Time-Stepping Method for the Landau–Lifshitz Equation
Published 2024-12-01“…This article presents an efficient and accurate adaptive time-stepping finite difference method (FDM) for solving the Landau–Lifshitz (LL) equation, which is an important mathematical model in understanding magnetic materials and processes. …”
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Efficient simulation of plasma physics' time fractional modified Korteweg-de Vries equations.
Published 2025-01-01“…In many science and engineering fields, integer-order differential equations are unable to provide a satisfactory explanation for a wide range of phenomena when compared to fractional-order differential equations. …”
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An Analysis of Transportation Mode Choice in Bitung City Using Structural Equation Modeling
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Effects of supplier selection and supplier monitoring on public procurement efficiency in Tanzania: a cost-reduction perspective
Published 2024-03-01“…Purpose – This study aims to examine the role of supplier selection and supplier monitoring in public procurement efficiency in terms of cost reduction in Tanzania. …”
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Optimizing linear/non-linear Volterra-type integro-differential equations with Runge–Kutta 2 and 4 for time efficiency
Published 2024-12-01“…A novel non-adaptative time-efficient (TE) numerical scheme based on the Runge–Kutta (RK) algorithm is devised for solving linear and non-linear Volterra-type integro-differential equations (VTIDE) characterized by a specific class of convolution memory, K(t,s)=aκ(t−s), where a,κ∈R. …”
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Efficient Calculation of Propagation Coefficients in Anisotropic Media Through Transfer Matrix Method Based on Eigenvalue Analysis
Published 2025-01-01“…Starting from the anisotropic Maxwell’s equations, the governing equation in matrix form is constructed from constitutive relations of the electromagnetic field. …”
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Comparative analysis of selective gas adsorption on metal-organic frameworks: Cu–(abtc) vs. Cu–(hbtc)
Published 2025-01-01“…Model parameters were used to calculate the enthalpies of adsorption, and the Ideal Adsorbed Solution Theory was employed to predict the selectivity of binary mixtures. CO2 selectivity over N2 increased significantly with pressure, with higher CO2 selectivity observed for Cu–hbtc compared to Cu–abtc due to the stronger affinity of the functional group and framework–adsorbate interactions. …”
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Methods and effective algorithms for solving multidimensional integral equations
Published 2022-12-01“…Corresponding SLAEs describing the considered classes of problems are set up. Efficient solution algorithms using fast Fourier transforms are proposed for solving systems of equations obtained using a uniform grid.Conclusions. …”
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Bernoulli Polynomials Method for Solving Integral Equations with Singular Kernel
Published 2024-12-01“…In this study, integral equations with singular or weakly singular kernels are solved using the Bernoulli polynomial approach. …”
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Numerical Methods for Solving Fredholm Integral Equations of Second Kind
Published 2013-01-01“…In this paper, we review different numerical methods for solving both linear and nonlinear Fredholm integral equations of second kind. The goal is to categorize the selected methods and assess their accuracy and efficiency. …”
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Selection Theory of Dendritic Growth with Anisotropic Diffusion
Published 2015-01-01“…A simple spatial rescaling is used to reduce the bulk equation in 2D to the case of isotropic diffusion. …”
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Radiographic detection of welding defects based on neural ordinary differential equations
Published 2025-05-01“…Aiming at the problems of strong subjectivity, high work load, repetitive tasks, and low efficiency in defects evaluation in the process of radiographic testing (RT), a neural memory ordinary differential equations based residual network model was proposed in this paper, for the objective, accurate, and intelligent classification of weld defects. …”
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