In this paper, Adapative Order of Block Backward Differentiation Formulas (ABBDFs) are formulated using uniform step size for the numerical solution of stiff ordinary differential equations (ODEs). These ABBDF methods are of order four, five and six. The benefit of the ABBDF methods is the computation time in the computation of solutions. Numerical results are presented to demonstrate the advantage of implementing adaptive order selection in a single code
In this research, a six-order, fully implicit Block Backward Differentiation Formula with two off-st...
Objectives: A modified variable step block backward differentiation formulae (MVS-BBDF) method is in...
A superclass of block backward differentiation formula (BBDF) suitable for solving stiff ordinary di...
In this paper, a class of Block Backward Differentiation Formulas (BBDFs) are developed using fixed ...
Block Backward Differentiation Formulae (BBDF) method with variable step variable order approach (VS...
This thesis focuses on solving higher order Ordinary Differential Equations (ODEs) directly using th...
An advanced method using block backward differentiation formula (BBDF) is introduced with efficient ...
Variable order block backward differentiation formulae (VOHOBBDF) method is employed for treating nu...
In this paper, a new fifth order Direct Block Backward Differentiation Formula (5-DBBDF) for solving...
This thesis compiles four new numerical methods that are successfully derived and presented based o...
The new method derived is called the fifth order two-point Block Backward Differentiation Formulas (...
A fixed step-size multistep block method for stiff Ordinary Differential Equations (ODEs) using the ...
This paper describes the development of a two-point implicit code in the form of fifth order Block B...
A new family of block methods, namely block backward differentiation alpha-formulas (BBDF-) are deve...
This paper derives a new variable step 3-point block method based on Backward Differentiation Formul...
In this research, a six-order, fully implicit Block Backward Differentiation Formula with two off-st...
Objectives: A modified variable step block backward differentiation formulae (MVS-BBDF) method is in...
A superclass of block backward differentiation formula (BBDF) suitable for solving stiff ordinary di...
In this paper, a class of Block Backward Differentiation Formulas (BBDFs) are developed using fixed ...
Block Backward Differentiation Formulae (BBDF) method with variable step variable order approach (VS...
This thesis focuses on solving higher order Ordinary Differential Equations (ODEs) directly using th...
An advanced method using block backward differentiation formula (BBDF) is introduced with efficient ...
Variable order block backward differentiation formulae (VOHOBBDF) method is employed for treating nu...
In this paper, a new fifth order Direct Block Backward Differentiation Formula (5-DBBDF) for solving...
This thesis compiles four new numerical methods that are successfully derived and presented based o...
The new method derived is called the fifth order two-point Block Backward Differentiation Formulas (...
A fixed step-size multistep block method for stiff Ordinary Differential Equations (ODEs) using the ...
This paper describes the development of a two-point implicit code in the form of fifth order Block B...
A new family of block methods, namely block backward differentiation alpha-formulas (BBDF-) are deve...
This paper derives a new variable step 3-point block method based on Backward Differentiation Formul...
In this research, a six-order, fully implicit Block Backward Differentiation Formula with two off-st...
Objectives: A modified variable step block backward differentiation formulae (MVS-BBDF) method is in...
A superclass of block backward differentiation formula (BBDF) suitable for solving stiff ordinary di...