Mathematical modelling and nonstandard schemes for the Corona virus pandemic / Sarah Marie Treibert.
2021
RA644.C67 T74 2021
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Details
Title
Mathematical modelling and nonstandard schemes for the Corona virus pandemic / Sarah Marie Treibert.
ISBN
9783658359324 (electronic bk.)
3658359323 (electronic bk.)
9783658359317
3658359315
3658359323 (electronic bk.)
9783658359317
3658359315
Published
Wiesbaden : Springer Spektrum, [2021]
Copyright
©2021
Language
English
Description
1 online resource : illustrations
Item Number
10.1007/978-3-658-35932-4 doi
Call Number
RA644.C67 T74 2021
Dewey Decimal Classification
362.1962/41401/5118
Summary
This book deals with the prediction of possible future scenarios concerning the COVID-19 pandemic. Based on the well-known SIR model by Kermack and McKendrick a compartment model is established. This model comprises its own assumptions, transition rates and transmission dynamics, as well as a corresponding system of ordinary differential equations. Making use of numerical methods and a nonstandard-finite-difference scheme, two submodels are implemented in Matlab in order to make parameter estimations and compare different scenarios with each other. About the author Sarah Marie Treibert is a research assistant at the Chair of Applied Mathematics / Numerical Analysis of the University of Wuppertal (Bergische Universität Wuppertal). Her focus is on Epidemic Modelling.
Bibliography, etc. Note
Includes bibliographical references.
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Source of Description
Online resource; title from PDF title page (SpringerLink, viewed December 20, 2021).
Series
BestMasters. 2625-3615
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Table of Contents
Introduction
The Severe Acute Respiratory Syndrome Corona Virus Type 2
The SIR Model in Epidemic Modelling
The SARS-CoV-2-fitted SEIR Model
Model Specifications
Parameter Estimation in MAT LAB
Markov Chain Epidemic Models
Rþesumþ.
The Severe Acute Respiratory Syndrome Corona Virus Type 2
The SIR Model in Epidemic Modelling
The SARS-CoV-2-fitted SEIR Model
Model Specifications
Parameter Estimation in MAT LAB
Markov Chain Epidemic Models
Rþesumþ.