In this work, we developed and analyzed a mathematical model for the control of chickenpox with vaccination and treatment strategy. The model is a first order Ordinary Differential Equations, in which the human population is divided into five compartments namely; Susceptible individuals (S), Vaccinated individuals (V), Infected individuals (I), Treated individuals (T) and Removed individuals (R).The equilibrium states were obtained and their stabilities were analyzed. The result shows that the disease free equilibrium state is stable and the criteria for stability of the endemic equilibrium state are established
Meningitis is an infectious disease caused by bacteria, viruses, and protosoa and has the potential ...
Cholera is waterborne diseases caused by which can be transmitted directly from human to human or vi...
A mathematical deterministic model for the dynamics of Monkeypox disease is developed. Monkeypox is ...
Abstract In this paper, we propose a mathematical model for the transmission of typhoid which analyz...
We propose an equilibrium analysis of a dynamical model of yellow fever transmission in the presence...
Abstract: Despite the availability of measles vaccine since 1963, the infectious disease is still en...
In this paper, a five (5) compartmental model is presented to study the transmission dynamics of Mea...
Typhoid fever is a disease caused by a salmonella bacterium (Salmonella typhi) and transmitted by in...
A deterministic mathematical model was formulated using non-linear ordinary differential equations t...
Chickenpox (also called varicella) is a disease caused by virus known as varicella-zoster virus (VZV...
In this paper, we develop a mathematical model for the transmission dynamics of typhoid fever infect...
Abstract: Problem statement: In this study, we present the mathematical model of the transmission dy...
In this study, a mathematical model for the transmission dynamics and control of schistosomiasis is ...
This paper presents a mathematical model that describes the transmission dynamics of schistosomiasis...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
Meningitis is an infectious disease caused by bacteria, viruses, and protosoa and has the potential ...
Cholera is waterborne diseases caused by which can be transmitted directly from human to human or vi...
A mathematical deterministic model for the dynamics of Monkeypox disease is developed. Monkeypox is ...
Abstract In this paper, we propose a mathematical model for the transmission of typhoid which analyz...
We propose an equilibrium analysis of a dynamical model of yellow fever transmission in the presence...
Abstract: Despite the availability of measles vaccine since 1963, the infectious disease is still en...
In this paper, a five (5) compartmental model is presented to study the transmission dynamics of Mea...
Typhoid fever is a disease caused by a salmonella bacterium (Salmonella typhi) and transmitted by in...
A deterministic mathematical model was formulated using non-linear ordinary differential equations t...
Chickenpox (also called varicella) is a disease caused by virus known as varicella-zoster virus (VZV...
In this paper, we develop a mathematical model for the transmission dynamics of typhoid fever infect...
Abstract: Problem statement: In this study, we present the mathematical model of the transmission dy...
In this study, a mathematical model for the transmission dynamics and control of schistosomiasis is ...
This paper presents a mathematical model that describes the transmission dynamics of schistosomiasis...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
Meningitis is an infectious disease caused by bacteria, viruses, and protosoa and has the potential ...
Cholera is waterborne diseases caused by which can be transmitted directly from human to human or vi...
A mathematical deterministic model for the dynamics of Monkeypox disease is developed. Monkeypox is ...