Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Continuous One Step Linear Multi-Step Hybrid Block Method for the Solution of First Order Linear and Nonlinear Initial Value Problem of Ordinary Differential Equations

View through CrossRef
In this paper, a collocation approach for solving initial value problem of ordinary differential equations (ODEs) of the first order is presented. This approach consists of reducing the problem to a set of linear multi-step algebraic equations by approximating the ODE with a shifted Legendre polynomial basis function to determine the unknown constants. The proposed method is simple and efficient; it approximates the solutions very closely to the closed form solutions. Some problems were considered using Maple Software to illustrate the simplicity, efficiency and accuracy of the method. The results obtained revealed that the hybrid method can be suitable candidate for all forms of first order initial value problems of ordinary differential equations.
Title: Continuous One Step Linear Multi-Step Hybrid Block Method for the Solution of First Order Linear and Nonlinear Initial Value Problem of Ordinary Differential Equations
Description:
In this paper, a collocation approach for solving initial value problem of ordinary differential equations (ODEs) of the first order is presented.
This approach consists of reducing the problem to a set of linear multi-step algebraic equations by approximating the ODE with a shifted Legendre polynomial basis function to determine the unknown constants.
The proposed method is simple and efficient; it approximates the solutions very closely to the closed form solutions.
Some problems were considered using Maple Software to illustrate the simplicity, efficiency and accuracy of the method.
The results obtained revealed that the hybrid method can be suitable candidate for all forms of first order initial value problems of ordinary differential equations.

Related Results

Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Nonlinear optimal control for robotic exoskeletons with electropneumatic actuators
Purpose To provide high torques needed to move a robot’s links, electric actuators are followed by a transmission system with a high transmission rate. For instance, gear ratios of...
Direct Solutions of Second-Order Ordinary Differential Equations Using Linear Multi-Step Method
Direct Solutions of Second-Order Ordinary Differential Equations Using Linear Multi-Step Method
The analytical solutions to second-order ODEs often prove elusive, necessitating the development of numerical methods for their approximation. However, solving second-order ordinar...
Mathematics in Chemical Engineering
Mathematics in Chemical Engineering
Abstract The article contains sections titled: ...
Nonlinear geometric multivariable control for unmanned aircraft flight system
Nonlinear geometric multivariable control for unmanned aircraft flight system
Purpose Due to the important role of unmanned aircraft in military and human’s normal practical application, this paper aims to extend the interesting research ...
Linear Hybrid Multistep Block Method for Direct Solution of Initial Value Problems of Third Order Ordinary Differential Equations
Linear Hybrid Multistep Block Method for Direct Solution of Initial Value Problems of Third Order Ordinary Differential Equations
In this article, we focus on linear hybrid multistep method for direct solution of initial value problems of third order ordinary differential equations without reduction to system...
On the derivation of the formula for the general solution of an ordinary linear differential equation with constant coefficients
On the derivation of the formula for the general solution of an ordinary linear differential equation with constant coefficients
Background. Linear differential equations with constant coefficients are often used to solve a number of physical, engineering, chemical and biological problems. They are also used...
Hybrid Integral Transform Techniques for the Solution of Third-Order Nonlinear Ordinary Differential Equations
Hybrid Integral Transform Techniques for the Solution of Third-Order Nonlinear Ordinary Differential Equations
Third-order nonlinear ordinary differential equations frequently arise in the mathematical modeling of complex engineering and physical phenomena; however, exact analytical solutio...

Back to Top