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Mathematical Methods in the Applied Sciences|November 11, 2014
A unified discontinuous Galerkin framework for time integrationShan Zhao, G W Wei
Mathematical Methods in the Applied Sciences|February 28, 2020
Corrector estimates in homogenization of a nonlinear transmission problem for diffusion equations in connected domainsVictor A Kovtunenko, Sina Reichelt, Anna V Zubkova
Mathematical Methods in the Applied Sciences|July 7, 2021
Modeling of fractional-order COVID-19 epidemic model with quarantine and social distancingMuhammad Farman, Muhammad Aslam, Ali Akgül, et al.
Mathematical Methods in the Applied Sciences|December 15, 2021
Analytical and qualitative investigation of COVID-19 mathematical model under fractional differential operatorKamal Shah, Muhammad Sher, Hussam Rabai'ah, et al.
Mathematical Methods in the Applied Sciences|August 9, 2022
Stability analysis of within-host SARS-CoV-2/HIV coinfection modelAfnan D Al Agha, Ahmed M Elaiw, Shaimaa A Azoz, et al.
Mathematical Methods in the Applied Sciences|October 17, 2022
A case study of 2019-nCoV in Russia using integer and fractional order derivativesM Vellappandi, Pushpendra Kumar, Venkatesan Govindaraj
Mathematical Methods in the Applied Sciences|December 28, 2020
A multiregional extension of the SIR model, with application to the COVID-19 spread in ItalyLuigi Brugnano, Felice Iavernaro, Paolo Zanzottera
Mathematical Methods in the Applied Sciences|November 24, 2020
The analysis of a time delay fractional COVID-19 model via Caputo type fractional derivativePushpendra Kumar, Vedat Suat Erturk
Mathematical Methods in the Applied Sciences|December 15, 2021
Mathematical analysis of the dynamics of COVID-19 in Africa under the influence of asymptomatic cases and re-infectionAbayomi Samuel Oke, Oluwafemi Isaac Bada, Ganiyu Rasaq, et al.
Mathematical Methods in the Applied Sciences|December 15, 2021
A fractional-order model of coronavirus disease 2019 (COVID-19) with governmental action and individual reactionJaouad Danane, Zakia Hammouch, Karam Allali, et al.
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