The system comprises of a commensal (S1) common to two hosts S2 and S3 with mortality rate for the host (S3). Here all the three species posses limited resources. The model equations constitute a set of three first order non-linear simultaneous coupled differential equations. Criteria for the asymptotic stability of all the eight equilibrium states are established. Trajectories of the perturbations over the equilibrium states are illustrated. Further the global stability of the system is established with the aid of suitably constructed Liapunov’s function and the numerical solutions for the growth rate equations are computed using Runge-Kutta fourth order scheme
The present paper is devoted to an investigation on a Four Species (S1,S2, S3, S4) Syn Eco-System wi...
This paper proposes a multi species ecosystem with optimal harvesting of the prey (S1), and Super pr...
In this paper, the three species syn-ecosystem is comprised of a commensal (S1), two hosts S2 and S3...
Abstract In this paper, the system comprises of a commensal (S1) common to two hosts S2 and S3 with ...
Abstract The main objective of the present paper is to examine the stability of three species syn-ec...
The main objective of the present paper is to examine the stability of three species syn-eco-system....
The present paper is devoted to an investigation on a Four Species (S1, S2, S3, S4) Syn Eco-System w...
This paper deals with an investigation on a four Species Syn-Ecological System (Fully Washed out Sta...
Prey-Predator ecological system was presented by Lotka and Volterra in their classical model. Inspir...
This investigation deals with a mathematical model of a four species (S1, S2, S3 and S4) Syn-Ecologi...
In this paper we have studied the stability of three typical species syn-ecosystem. The system compr...
The paper consists some threshold results on a Mathematical Model of a Host-Mortal Commensal Ecologi...
The present paper deals with an analytical investigation on two species commensal-host ecological mo...
In this paper, A case in three species ecosystem is investigated numerically.This system is formed b...
The present paper deals with an analytical investigation of a model of two species mutually interact...
The present paper is devoted to an investigation on a Four Species (S1,S2, S3, S4) Syn Eco-System wi...
This paper proposes a multi species ecosystem with optimal harvesting of the prey (S1), and Super pr...
In this paper, the three species syn-ecosystem is comprised of a commensal (S1), two hosts S2 and S3...
Abstract In this paper, the system comprises of a commensal (S1) common to two hosts S2 and S3 with ...
Abstract The main objective of the present paper is to examine the stability of three species syn-ec...
The main objective of the present paper is to examine the stability of three species syn-eco-system....
The present paper is devoted to an investigation on a Four Species (S1, S2, S3, S4) Syn Eco-System w...
This paper deals with an investigation on a four Species Syn-Ecological System (Fully Washed out Sta...
Prey-Predator ecological system was presented by Lotka and Volterra in their classical model. Inspir...
This investigation deals with a mathematical model of a four species (S1, S2, S3 and S4) Syn-Ecologi...
In this paper we have studied the stability of three typical species syn-ecosystem. The system compr...
The paper consists some threshold results on a Mathematical Model of a Host-Mortal Commensal Ecologi...
The present paper deals with an analytical investigation on two species commensal-host ecological mo...
In this paper, A case in three species ecosystem is investigated numerically.This system is formed b...
The present paper deals with an analytical investigation of a model of two species mutually interact...
The present paper is devoted to an investigation on a Four Species (S1,S2, S3, S4) Syn Eco-System wi...
This paper proposes a multi species ecosystem with optimal harvesting of the prey (S1), and Super pr...
In this paper, the three species syn-ecosystem is comprised of a commensal (S1), two hosts S2 and S3...