We constructed three two-step semi-implicit hybrid methods (SIHMs) for solving oscillatory second order ordinary differential equations (ODEs). The first two methods are three-stage fourth-order and three-stage fifth-order with dispersion order six and zero dissipation. The third is a four-stage fifth-order method with dispersion order eight and dissipation order five. Numerical results show that SIHMs are more accurate as compared to the existing hybrid methods, Runge-Kutta Nyström (RKN) and Runge-Kutta (RK) methods of the same order and Diagonally Implicit Runge-Kutta Nyström (DIRKN) method of the same stage. The intervals of absolute stability or periodicity of SIHM for ODE are also presented
In this paper, a singly diagonally implicit Runge-Kutta-Nyström (RKN) method is constructed for solv...
Two fifth-order explicit hybrid methods are developed. Based on these methods, phase fitted and ...
Traditionally, higher order ordinary differential equations (ODEs) are solved by reducing them to a...
We constructed three two-step semi-implicit hybrid methods (SIHMs) for solving oscillatory second or...
We constructed three two-step semi-implicit hybrid methods (SIHMs) for solving oscillatory second or...
In this paper, two-step fourth order semi implicit hybrid method (SIHM) with dispersion of order six...
In this paper, we derived a semi-implicit hybrid method for solving special second order ordinary di...
In this paper, a new semi-implicit two-step hybrid method with fifth algebraic order is derived for ...
In this paper, we derived a semi-implicit hybrid method (SIHM) which is a two-step method to solve s...
This thesis is focused mainly on developing methods for solving special second order ordinary differ...
We derived in this thesis new highly dispersive and highly dissipative two-step explicit hybrid meth...
An explicit Runge-Kutta-Nyström (RKN) method with high order dispersion (phase-lag) and dissipation ...
The first part of the thesis focuses on adapting existing methods for solving first and second order...
We derived a two-step, four-stage, and fifth-order semi-implicit hybrid method which can be used for...
We derived a two-step, four-stage, and fifth-order semi-implicit hybrid method which can be used for...
In this paper, a singly diagonally implicit Runge-Kutta-Nyström (RKN) method is constructed for solv...
Two fifth-order explicit hybrid methods are developed. Based on these methods, phase fitted and ...
Traditionally, higher order ordinary differential equations (ODEs) are solved by reducing them to a...
We constructed three two-step semi-implicit hybrid methods (SIHMs) for solving oscillatory second or...
We constructed three two-step semi-implicit hybrid methods (SIHMs) for solving oscillatory second or...
In this paper, two-step fourth order semi implicit hybrid method (SIHM) with dispersion of order six...
In this paper, we derived a semi-implicit hybrid method for solving special second order ordinary di...
In this paper, a new semi-implicit two-step hybrid method with fifth algebraic order is derived for ...
In this paper, we derived a semi-implicit hybrid method (SIHM) which is a two-step method to solve s...
This thesis is focused mainly on developing methods for solving special second order ordinary differ...
We derived in this thesis new highly dispersive and highly dissipative two-step explicit hybrid meth...
An explicit Runge-Kutta-Nyström (RKN) method with high order dispersion (phase-lag) and dissipation ...
The first part of the thesis focuses on adapting existing methods for solving first and second order...
We derived a two-step, four-stage, and fifth-order semi-implicit hybrid method which can be used for...
We derived a two-step, four-stage, and fifth-order semi-implicit hybrid method which can be used for...
In this paper, a singly diagonally implicit Runge-Kutta-Nyström (RKN) method is constructed for solv...
Two fifth-order explicit hybrid methods are developed. Based on these methods, phase fitted and ...
Traditionally, higher order ordinary differential equations (ODEs) are solved by reducing them to a...