This paper reflects some research outcome denoting as to how Lotka–Volterra prey predator model has been solved by using the Runge–Kutta–Fehlberg method (RKF). A comparison between Runge–Kutta–Fehlberg method (RKF) and the Laplace Adomian Decomposition method (LADM) is carried out and exact solution is found out to verify the applicability, efficiency and accuracy of the method. The obtained approximate solution shows that the Runge–Kutta–Fehlberg method (RKF) is a more powerful numerical technique for solving a system of nonlinear differential equations
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
In this paper, a mathematical model of one-predator two-prey system is discussed. This model is deri...
AbstractThis paper reflects some research outcome denoting as to how Lotka–Volterra prey predator mo...
AbstractThis paper reflects some research outcome denoting as to how Lotka–Volterra prey predator mo...
A report in association with University Coll. Chester (GB)SIGLEAvailable from British Library Docume...
In this project, we study the Lotka-Volterra model, also known as the model describing the populatio...
In this project we study the Lotka-Volterra model, also known as the model describing the population...
In this paper, a new reliable algorithm based on an adaptation of the standard Adomian decomposition...
This article aims to introduce an efficient simulation to obtain the solution for a dynamical–biolog...
This paper develops approximate analytical solutions of the general form of Lotka – Volterra, Prey –...
Simulating Lotka-Volterra model using a numerical method requires the researcher to apply tiny mesh ...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
In this paper, a mathematical model of one-predator two-prey system is discussed. This model is deri...
AbstractThis paper reflects some research outcome denoting as to how Lotka–Volterra prey predator mo...
AbstractThis paper reflects some research outcome denoting as to how Lotka–Volterra prey predator mo...
A report in association with University Coll. Chester (GB)SIGLEAvailable from British Library Docume...
In this project, we study the Lotka-Volterra model, also known as the model describing the populatio...
In this project we study the Lotka-Volterra model, also known as the model describing the population...
In this paper, a new reliable algorithm based on an adaptation of the standard Adomian decomposition...
This article aims to introduce an efficient simulation to obtain the solution for a dynamical–biolog...
This paper develops approximate analytical solutions of the general form of Lotka – Volterra, Prey –...
Simulating Lotka-Volterra model using a numerical method requires the researcher to apply tiny mesh ...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
The two dimensional Poincare--Lindstedt method is used to obtain approximate solutions to the period...
In this paper, a mathematical model of one-predator two-prey system is discussed. This model is deri...