The problem of third order ordinary differential equations (ODEs) is solved directly by using the block backward differentiation formula. The block method is constructed by utilizing three back values and by differentiating the interpolating polynomial once, twice and thrice. Two approximated solutions are generated concurrently for each integration step. Numerical results indicate the efficiency of the direct method than the usual approach of transforming it into the first order ODEs
A multistep integration method based on Adams type formulae subject to varying step size is proposed...
The purpose of this paper is to present a four point direct block one-step method for solving direct...
Traditionally, higher order ordinary differential equations (ODEs) are solved by reducing them to a...
The purpose of this research is to discuss a direct two-point one step block method for solving gene...
The diversity of adopting different step by step approach when developing block methods of the formi...
In this paper, the block backward differentiation formulas with parameter α (BBDF-α) of order three ...
The block hybrid collocation method with two off-step points is proposed for the direct solution of ...
This paper derived four newly schemes which are combined in order to form an accurate and efficient ...
One-step block methods are presented in this research work to solve initial value problems (IVPs) of...
This paper derived four newly schemes which are combined in order to form an accurate and efficient ...
This paper focused mainly on deriving explicit and implicit 3-point block methods of constant step s...
Abstract: A linear multistep method for the direct solution of initial value problems of ordinary di...
In this study, a two point implicit block direct integration method is derived for solving directly ...
A block linear multistep method for solving special third order initial valueproblems of ordinary di...
This study focused mainly on the derivation of the 2 and 3-point block methods with constant coeffic...
A multistep integration method based on Adams type formulae subject to varying step size is proposed...
The purpose of this paper is to present a four point direct block one-step method for solving direct...
Traditionally, higher order ordinary differential equations (ODEs) are solved by reducing them to a...
The purpose of this research is to discuss a direct two-point one step block method for solving gene...
The diversity of adopting different step by step approach when developing block methods of the formi...
In this paper, the block backward differentiation formulas with parameter α (BBDF-α) of order three ...
The block hybrid collocation method with two off-step points is proposed for the direct solution of ...
This paper derived four newly schemes which are combined in order to form an accurate and efficient ...
One-step block methods are presented in this research work to solve initial value problems (IVPs) of...
This paper derived four newly schemes which are combined in order to form an accurate and efficient ...
This paper focused mainly on deriving explicit and implicit 3-point block methods of constant step s...
Abstract: A linear multistep method for the direct solution of initial value problems of ordinary di...
In this study, a two point implicit block direct integration method is derived for solving directly ...
A block linear multistep method for solving special third order initial valueproblems of ordinary di...
This study focused mainly on the derivation of the 2 and 3-point block methods with constant coeffic...
A multistep integration method based on Adams type formulae subject to varying step size is proposed...
The purpose of this paper is to present a four point direct block one-step method for solving direct...
Traditionally, higher order ordinary differential equations (ODEs) are solved by reducing them to a...