Selected article for: "mathematical model and Wuhan model"

Author: Gao, Wei; Veeresha, P.; Prakasha, D. G.; Baskonus, Haci Mehmet
Title: Novel Dynamic Structures of 2019-nCoV with Nonlocal Operator via Powerful Computational Technique
  • Cord-id: cu9e1eet
  • Document date: 2020_5_21
  • ID: cu9e1eet
    Snippet: In this study, we investigate the infection system of the novel coronavirus (2019-nCoV) with a nonlocal operator defined in the Caputo sense. With the help of the fractional natural decomposition method (FNDM), which is based on the Adomian decomposition and natural transform methods, numerical results were obtained to better understand the dynamical structures of the physical behavior of 2019-nCoV. Such behaviors observe the general properties of the mathematical model of 2019-nCoV. This mathem
    Document: In this study, we investigate the infection system of the novel coronavirus (2019-nCoV) with a nonlocal operator defined in the Caputo sense. With the help of the fractional natural decomposition method (FNDM), which is based on the Adomian decomposition and natural transform methods, numerical results were obtained to better understand the dynamical structures of the physical behavior of 2019-nCoV. Such behaviors observe the general properties of the mathematical model of 2019-nCoV. This mathematical model is composed of data reported from the city of Wuhan, China.

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