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A robust, exponentially fitted higher-order numerical method for a two-parameter singularly perturbed boundary value problem
Published 2025-01-01“…This study constructs a robust higher-order fitted operator finite difference method for a two-parameter singularly perturbed boundary value problem. The derivatives in the governing ordinary differential equation are substituted by second-order central finite difference approximations, after which the fitting parameter is introduced and determined. …”
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323
A New Type of Distributed Parameter Control Systems: Two-Point Boundary Value Problems for Infinite-Dimensional Dynamical Systems
Published 2013-01-01“…This survey note describes a new type of distributed parameter control systems—the two-point boundary value problems for infinite-dimensional dynamical systems, particularly, for hyperbolic systems of partial differential equations of second order, some of the discoveries that have been done about it and some unresolved questions.…”
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324
Application of Topological Degree Method for Solutions of Coupled Systems of Multipoints Boundary Value Problems of Fractional Order Hybrid Differential Equations
Published 2017-01-01“…We established the theory to coupled systems of multipoints boundary value problems of fractional order hybrid differential equations with nonlinear perturbations of second type involving Caputo fractional derivative. …”
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325
Existence of Positive Solutions for Two-Point Boundary Value Problems of Nonlinear Finite Discrete Fractional Differential Equations and Its Application
Published 2016-01-01“…This paper is concerned with the two-point boundary value problems of nonlinear finite discrete fractional differential equations. …”
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326
A Study of <i>p</i>-Laplacian Nonlocal Boundary Value Problem Involving Generalized Fractional Derivatives in Banach Spaces
Published 2025-01-01“…The aim of this article is to introduce and study a new class of fractional integro nonlocal boundary value problems involving the <i>p</i>-Laplacian operator and generalized fractional derivatives. …”
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327
Hartman-Wintner-Type Inequality for a Fractional Boundary Value Problem via a Fractional Derivative with respect to Another Function
Published 2017-01-01“…We consider a fractional boundary value problem involving a fractional derivative with respect to a certain function g. …”
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328
Boundary value problem for r2d2f/dr2+f=f3 (I): existence and uniqueness
Published 2001-01-01Get full text
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329
BUCKLING OF BEAMS WITH A BOUNDARY ELEMENT TECHNIQUE
Published 2022-09-01Subjects: “…green function, fredholm integral equation, boundary value problem, buckling…”
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330
Existence of 2m-1 Positive Solutions for Sturm-Liouville Boundary Value Problems with Linear Functional Boundary Conditions on the Half-Line
Published 2012-01-01“…By using the Leggett-Williams fixed theorem, we establish the existence of multiple positive solutions for second-order nonhomogeneous Sturm-Liouville boundary value problems with linear functional boundary conditions. …”
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331
Solving Nonlinear Fourth-Order Boundary Value Problems Using a Numerical Approach: (m+1)th-Step Block Method
Published 2017-01-01“…Nonlinear boundary value problems (BVPs) are more tedious to solve than their linear counterparts. …”
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332
Some existence and uniqueness results for first-order boundary value problems for impulsive functional differential equations with infinite delay in Fréchet spaces
Published 2006-01-01“…A recent nonlinear alternative for contraction maps in Fréchet spaces due to Frigon and Granas is used to investigate the existence and uniqueness of solutions to first-order boundary value problems for impulsive functional differential equations with infinite delay. …”
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333
Multiple Positive Solutions to Multipoint Boundary Value Problem for a System of Second-Order Nonlinear Semipositone Differential Equations on Time Scales
Published 2013-01-01“…We derive an interval of λ such that any λ lying in this interval, the semipositone coupled boundary value problem has multiple positive solutions. The arguments are based upon fixed-point theorems in a cone.…”
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334
Green’s Function and Positive Solutions for a Second-Order Singular Boundary Value Problem with Integral Boundary Conditions and a Delayed Argument
Published 2014-01-01“…Our results cover a second-order boundary value problem without deviating arguments and are compared with some recent results.…”
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New Wavelets Collocation Method for Solving Second-Order Multipoint Boundary Value Problems Using Chebyshev Polynomials of Third and Fourth Kinds
Published 2013-01-01“…This paper is concerned with introducing two wavelets collocation algorithms for solving linear and nonlinear multipoint boundary value problems. The principal idea for obtaining spectral numerical solutions for such equations is employing third- and fourth-kind Chebyshev wavelets along with the spectral collocation method to transform the differential equation with its boundary conditions to a system of linear or nonlinear algebraic equations in the unknown expansion coefficients which can be efficiently solved. …”
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337
An Analytic Study on the Enhancement of Heat Transfer with Nanofluid
Published 2025-02-01Subjects: Get full text
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338
Twin Positive Solutions of a Nonlinear m-Point Boundary Value Problem for Third-Order p-Laplacian Dynamic Equations on Time Scales
Published 2008-01-01“…Several existence theorems of twin positive solutions are established for a nonlinear m-point boundary value problem of third-order p-Laplacian dynamic equations on time scales by using a fixed point theorem. …”
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339
General Linear Boundary Value Problem for the Second-Order Integro-Differential Loaded Equation with Boundary Conditions Containing Both Nonlocal and Global Terms
Published 2010-01-01“…Here, the boundary conditions corresponding with the boundary value problem contain both nonlocal and global terms.…”
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Existence and Uniqueness Results for a Class of Singular Fractional Boundary Value Problems with the p-Laplacian Operator via the Upper and Lower Solutions Approach
Published 2020-01-01“…In this paper, we study the existence and uniqueness of positive solutions to a class of multipoint boundary value problems for singular fractional differential equations with the p-Laplacian operator. …”
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