In this paper, we develop algebraic order conditions for two-point block hybrid method up to order five using the approach of B-series. Based on the order conditions, we derive fifth order two-point block explicit hybrid method for solving special second order ordinary differential equations (ODEs), where the existing explicit hybrid method of order five is used to be the method at the first point. The method is then trigonometrically fitted so that it can be suitable for solving highly oscillatory problems arising from special second order ODEs. The new trigonometrically-fitted block method is tested using a set of oscillatory problems over a very large interval. Numerical results clearly showed the superiority of the method in terms of ac...
This paper proposes a new hybrid block method of order five for solving second-order ordinary differ...
In some cases, high-order methods are known to provide greater accuracy with larger step-sizes than ...
This thesis is focused mainly on developing methods for solving special second order ordinary differ...
In this paper, we develop algebraic order conditions for two-point block hybrid method up to order f...
In this paper, we present the absolute stability of the existing 2-point implicit block multistep st...
In this paper, we derived a semi-implicit hybrid method (SIHM) which is a two-step method to solve s...
Two explicit hybrid methods with algebraic order seven for the numerical integration of second-order...
At the beginning of the thesis, we trigonometrically fitted the first point of the existing block ...
Some of the real-life problems that can be expressed as initial value or boundary value problems of ...
In this paper, we present the absolute stability of the existing 2-point implicit block multistep st...
Block method is adopted in this paper for the direct solution of second order ordinary differential...
In this paper, an improved trigonometrically fitted zero-dissipative explicit two-step hybrid method...
Two fifth-order explicit hybrid methods are developed. Based on these methods, phase fitted and ...
It is a known fact that in most cases, to integrate an oscillatory problem, higher order A-stable me...
A ninth order block hybrid collocation method is proposed for solving general second order ordinary ...
This paper proposes a new hybrid block method of order five for solving second-order ordinary differ...
In some cases, high-order methods are known to provide greater accuracy with larger step-sizes than ...
This thesis is focused mainly on developing methods for solving special second order ordinary differ...
In this paper, we develop algebraic order conditions for two-point block hybrid method up to order f...
In this paper, we present the absolute stability of the existing 2-point implicit block multistep st...
In this paper, we derived a semi-implicit hybrid method (SIHM) which is a two-step method to solve s...
Two explicit hybrid methods with algebraic order seven for the numerical integration of second-order...
At the beginning of the thesis, we trigonometrically fitted the first point of the existing block ...
Some of the real-life problems that can be expressed as initial value or boundary value problems of ...
In this paper, we present the absolute stability of the existing 2-point implicit block multistep st...
Block method is adopted in this paper for the direct solution of second order ordinary differential...
In this paper, an improved trigonometrically fitted zero-dissipative explicit two-step hybrid method...
Two fifth-order explicit hybrid methods are developed. Based on these methods, phase fitted and ...
It is a known fact that in most cases, to integrate an oscillatory problem, higher order A-stable me...
A ninth order block hybrid collocation method is proposed for solving general second order ordinary ...
This paper proposes a new hybrid block method of order five for solving second-order ordinary differ...
In some cases, high-order methods are known to provide greater accuracy with larger step-sizes than ...
This thesis is focused mainly on developing methods for solving special second order ordinary differ...