Objectives: A modified variable step block backward differentiation formulae (MVS-BBDF) method is introduced in this paper as another alternative way for solving ordinary differential equations (ODEs). Methods: We demonstrated the detailed formulation of the corrector formulae for MVS-BBDF method which is carried out using Maple software. Then, to validate the performance of the introduced method, we applied it to stiff ODEs problem. Findings: The performance of the method in terms of maximum error and number of total steps taken during the computation are compared with the performance of ode15s and ode23s solver in MATLAB. Consequently, the efficiency of MVS-BBDF shows that it is able to outperform both Matlab’s ODE solver since it produce...
In this paper, a new fifth order Direct Block Backward Differentiation Formula (5-DBBDF) for solving...
This research demonstrates an alternative method for solving stiff ordinary differential equations ...
We derive a variable step of the implicit block methods based on the backward differentiation formul...
An advanced method using block backward differentiation formula (BBDF) is introduced with efficient ...
This paper derives a new variable step 3-point block method based on Backward Differentiation Formul...
Block Backward Differentiation Formulae (BBDF) method with variable step variable order approach (VS...
A superclass of block backward differentiation formula (BBDF) suitable for solving stiff ordinary di...
A fixed step-size multistep block method for stiff Ordinary Differential Equations (ODEs) using the ...
The new method derived is called the fifth order two-point Block Backward Differentiation Formulas (...
A new family of block methods, namely block backward differentiation alpha-formulas (BBDF-) are deve...
This thesis compiles four new numerical methods that are successfully derived and presented based o...
This thesis focuses on solving higher order Ordinary Differential Equations (ODEs) directly using th...
In this paper, we consider the numerical solution of first order stiff ordinary differential equatio...
This paper focuses on derivation of a 2-point block extended backward differentiation formula (BEBDF...
In this paper, a class of Block Backward Differentiation Formulas (BBDFs) are developed using fixed ...
In this paper, a new fifth order Direct Block Backward Differentiation Formula (5-DBBDF) for solving...
This research demonstrates an alternative method for solving stiff ordinary differential equations ...
We derive a variable step of the implicit block methods based on the backward differentiation formul...
An advanced method using block backward differentiation formula (BBDF) is introduced with efficient ...
This paper derives a new variable step 3-point block method based on Backward Differentiation Formul...
Block Backward Differentiation Formulae (BBDF) method with variable step variable order approach (VS...
A superclass of block backward differentiation formula (BBDF) suitable for solving stiff ordinary di...
A fixed step-size multistep block method for stiff Ordinary Differential Equations (ODEs) using the ...
The new method derived is called the fifth order two-point Block Backward Differentiation Formulas (...
A new family of block methods, namely block backward differentiation alpha-formulas (BBDF-) are deve...
This thesis compiles four new numerical methods that are successfully derived and presented based o...
This thesis focuses on solving higher order Ordinary Differential Equations (ODEs) directly using th...
In this paper, we consider the numerical solution of first order stiff ordinary differential equatio...
This paper focuses on derivation of a 2-point block extended backward differentiation formula (BEBDF...
In this paper, a class of Block Backward Differentiation Formulas (BBDFs) are developed using fixed ...
In this paper, a new fifth order Direct Block Backward Differentiation Formula (5-DBBDF) for solving...
This research demonstrates an alternative method for solving stiff ordinary differential equations ...
We derive a variable step of the implicit block methods based on the backward differentiation formul...