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Menampilkan 1–3 dari 3 artikel
Dynamical Analysis of the Spread of COVID-19 model and its Simulation with Vaccination and Social Distancing
Habibah, Ummu
; (Universitas Brawijaya)
; Sianturi, Angelina Renny Christin Octavia
; Brawijaya University
Telematika
Vol 16
, No 1
(2023)
The model's creation and dynamical analysis were covered in this paper, SEIRS on the effects of vaccination and social isolation on the transmission of COVID-19. The susceptible individual subpopulation (S), the exposed individual subpopulation (E), the infected individual subpopulation (I), and the recovered individual subpopulation (R) are the four subpopulations that make up the human population in this model. This concept is founded on the notion that someone who has recovered from the illne...
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Numerical Simulation of Cholera Epidemic Model with Quarantine
Trisilowati, Trisilowati
; UIN Walisongo Semarang
; Andari, Ari
; Brawijaya University
; Rois, Muhammad Abdurrahman
; Brawijaya University
; Muzaqi, Mohamad Hasyim
; Brawijaya University
Telematika
Vol 14
, No 1
(2021)
Cholera is an acute diarrheal disease that spread quickly in an unsanitary environment, and one of its control measures is employing quarantine. Therefore, this research aims to construct a model for the spread of SIRQB-type (susceptibles, infective, recovered, quarantine, bacteria) infectious diseases through a nonlinear differential equation approach. Furthermore, the equilibrium points condition and their stability were investigated using the standard dynamical analysis method. The results sh...
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Local Sensitivity Analysis of COVID-19 Epidemic with Quarantine and Isolation using Normalized Index
Rois, Muhammad Abdurrahman
; Brawijaya University
; Trisilowati, Trisilowati
; Brawijaya University
; Habibah, Ummu
; Brawijaya University
Telematika
Vol 14
, No 1
(2021)
This study discusses the sensitivity analysis of parameters, namely the COVID-19 model, by dividing the population into seven subpopulations: susceptible, exposed, symptomatic infection, asymptomatic infection, quarantine, isolation, and recovered. The solution to the ordinary differential equation for the COVID-19 model using the fourth-order Runge-Kutta numerical method explains that COVID-19 is endemic, as evidenced by the basic reproduction number (R0) of 7.5. It means 1 individual can infec...
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