Penerapan Fisika Komputasi dengan MATLAB/Simulink pada Pemodelan Infeksi Wabah COVID-19 di Indonesia melalui Modifikasi Persamaan Differensial Bernoulli

Valentinus Galih Vidia Putra, Andrian Wijayono, J. N. Mohamad, I. Irwan, Cahaya Rosyidan
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Abstract

The application of physics, in particular, the topic of differential equations is commonly used in mathematics, physics, engineering, and various other sciences to explain a phenomenon in a system, to produce a form of simulation and prediction of a fairly good mathematical equation is needed. This paper examines the use of MATLAB / Simulink to assist in modeling the solution of the differential equation problems by providing a case of mathematical modeling in the analysis of the COVID-19 plague in Indonesia in 2020 with the modification of the Bernoulli equation. In this study, it can be concluded that MATLAB / Simulink can be used to solve differential equation problems with Bernoulli's modification in the case of COVID-19 plague modeling quite accurately.
应用物理学的MATLAB / Simulink建模计算在印尼感染瘟疫COVID-19通过修改Differensial伯努利方程
物理学的应用,特别是微分方程的主题,常用于数学、物理、工程和其他各种科学中,用以解释一个系统中的一种现象,产生一种形式的模拟和预测是需要一个相当好的数学方程的。本文通过对2020年印度尼西亚2019冠状病毒病(COVID-19)鼠疫进行数学建模,并对伯努利方程进行修正,探讨了如何利用MATLAB / Simulink辅助建模求解微分方程问题。在本研究中可以得出结论,在COVID-19鼠疫建模的情况下,MATLAB / Simulink可以较准确地求解带有伯努利修正的微分方程问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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