Open Journal of Modelling and Simulation

Open Journal of Modelling and Simulation

ISSN Print: 2327-4018
ISSN Online: 2327-4026
www.scirp.org/journal/ojmsi
E-mail: ojmsi@scirp.org
"A New Mathematical Modeling of the COVID-19 Pandemic Including the Vaccination Campaign"
written by Mehmet Yavuz, Fatma Özlem Coşar, Fatma Günay, Feyza Nur Özdemir,
published by Open Journal of Modelling and Simulation, Vol.9 No.3, 2021
has been cited by the following article(s):
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[4] Global Dynamics of a Two-Strain Disease Model with Amplification, Nonlinear Incidence and Treatment
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[7] A Compartmental Model for Assessing Effects of COVID-19 Vaccination in Thailand
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[9] A New Mathematical Model of COVID-19 with Quarantine and Vaccination
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[11] A novel modeling and analysis of fractional-order COVID-19 pandemic having a vaccination strategy
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[14] Applying a suitable approximate-simulation technique of an epidemic model with random parameters
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[15] A mathematical study of COVID-19 spread by vaccination status in Virginia
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[16] A model for COVID-19 and bacterial pneumonia coinfection with community-and hospital-acquired infections
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[17] Dynamics and simulations of discretized Caputo-conformable fractional-order Lotka–Volterra models
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[18] Mathematical modeling of corona virus (COVID-19) and stability analysis
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[19] A study on fractional tumour–immune–vitamins model for intervention of vitamins
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[20] Mathematical modeling to study optimal allocation of vaccines against covid-19 using an age-structured population
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[21] Modeling nosocomial infection of COVID-19 transmission dynamics
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[22] A patchy theoretical model for the transmission dynamics of SARS-Cov-2 with optimal control
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[23] The impact of a power law-induced memory effect on the SARS-CoV-2 transmission
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[24] Analysis of fractional-order vaccinated Hepatitis-B epidemic model with Mittag-Leffler kernels
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[25] Extinction and stationary distribution of a stochastic COVID-19 epidemic model with time-delay
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[26] Asymptotic behavior and semi-analytic solution of a novel compartmental biological model
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[27] On the analysis of Caputo fractional order dynamics of Middle East Lungs Coronavirus (MERS-CoV) model
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[28] A new study on two different vaccinated fractional-order COVID-19 models via numerical algorithms
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[29] A fractional modeling of tumor–immune system interaction related to lung cancer with real data
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[30] A multi-strain epidemic model for COVID-19 with infected and asymptomatic cases: Application to French data
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[31] Novel soliton solutions of four sets of generalized (2+ 1)-dimensional Boussinesq–Kadomtsev–Petviashvili-like equations
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[32] Fractional dynamics and stability analysis of COVID-19 pandemic model under the harmonic mean type incidence rate
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[33] A SARS-CoV-2 fractional-order mathematical model via the modified euler method
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[34] Toward an efficient approximate analytical solution for 4-compartment COVID-19 fractional mathematical model
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[35] Global dynamics and bifurcation analysis of a fractional‐order SEIR epidemic model with saturation incidence rate
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[37] Fractional modeling of plankton-oxygen dynamics under climate change by the application of a recent numerical algorithm
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[38] Mathematical modeling of COVID-19 transmission dynamics between healthcare workers and community
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[39] A computational approach for shallow water forced Korteweg–De Vries equation on critical flow over a hole with three fractional operators
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[41] Chaos of calcium diffusion in Parkinson's infectious disease model and treatment mechanism via Hilfer fractional derivative
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[42] Numerical Solutions of Fractional Covid-19 Model Using Spectral Collocation Method
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[43] Modeling the impact of early interventions on the transmission dynamics of coronavirus infection
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[44] Vaccination effect conjoint to fraction of avoided contacts for a Sars-Cov-2 mathematical model
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[45] Analysis the dynamics of SIHR model: Covid-19 case in Djibouti
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[46] Local Asymptotic Stability and Sensitivity Analysis of a New Mathematical Epidemic Model Without Immunity
[47] A SPECIAL TYPE OF MARKOV BRANCHING PROCESS MODEL FOR THE NOVEL CORONAVIRUS (COVID-19) OUTBREAK
[48] Análise comparativa entre três modelos matemáticos aplicados à COVID-19 no Município de São Paulo
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