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dc.contributor.authorYavuz, Mehmet
dc.contributor.authorÖzdemir, Necati
dc.date.accessioned2021-12-07T11:59:14Z
dc.date.available2021-12-07T11:59:14Z
dc.date.issued2020en_US
dc.identifier.issn2147-6268
dc.identifier.urihttps://doi.org/10.36753/MATHENOT.691638
dc.identifier.urihttps://hdl.handle.net/20.500.12462/11796
dc.descriptionÖzdemir, Necati (Balikesir Author)en_US
dc.description.abstractMathematical modeling of infectious diseases has shown that combinations of isolation, quarantine,vaccine, and treatment are often necessary in order to eliminate most infectious diseases. Continuousmathematical models have been used to study the dynamics of infectious diseases within a humanhost and in the population. We have used in this study a SIR model that categorizes individuals in apopulation as susceptible (S), infected (I) and recovered (R). It also simulates the transmission dynamicsof diseases where individuals acquire permanent immunity. We have considered the SIR model using theCaputo-Fabrizio and we have obtained special solutions and numerical simulations using an iterativescheme with Laplace transform. Moreover, we have studied the uniqueness and existence of the solutions.en_US
dc.language.isoengen_US
dc.publisherMurat Tosunen_US
dc.relation.isversionof10.36753/MATHENOT.691638en_US
dc.rightsinfo:eu-repo/semantics/openAccessen_US
dc.subjectEpidemic Modelen_US
dc.subjectExponential Lawen_US
dc.subjectNumerical Simulationen_US
dc.subjectFractional Derivativeen_US
dc.subjectNon-Singularityen_US
dc.titleAnalysis of an epidemic spreading model with exponential decay lawen_US
dc.typeotheren_US
dc.relation.journalMathematical Sciences and Applications E-Notesen_US
dc.contributor.departmentFen Edebiyat Fakültesien_US
dc.contributor.authorID0000-0002-6339-1868en_US
dc.identifier.volume8en_US
dc.identifier.issue1en_US
dc.identifier.startpage142en_US
dc.identifier.endpage154en_US
dc.relation.publicationcategoryDiğeren_US


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