Stochastic Population and Epidemic Models Stochastic Population and Epidemic Models

Stochastic Population and Epidemic Models

Persistence and Extinction

    • 32,99 €
    • 32,99 €

Beschreibung des Verlags

This monograph provides a summary of the basic theory of branching processes for single-type and multi-type processes. Classic examples of population and epidemic models illustrate the probability of population or epidemic extinction obtained from the theory of branching processes. The first chapter develops the branching process theory, while in the second chapter two applications to population and epidemic processes of single-type branching process theory are explored. The last two chapters present multi-type branching process applications to epidemic models, and then continuous-time and continuous-state branching processes with applications. In addition, several MATLAB programs for simulating stochastic sample paths  are provided in an Appendix.

These notes originated as part of a lecture series on Stochastics in Biological Systems at the Mathematical Biosciences Institute in Ohio, USA.

Professor Linda Allen is a Paul Whitfield Horn Professorof Mathematics in the Department of Mathematics and Statistics at Texas Tech University, USA.

GENRE
Wissenschaft und Natur
ERSCHIENEN
2015
20. August
SPRACHE
EN
Englisch
UMFANG
57
Seiten
VERLAG
Springer International Publishing
ANBIETERINFO
Springer Science & Business Media LLC
GRÖSSE
1,3
 MB
Predicting Pandemics in a Globally Connected World, Volume 1 Predicting Pandemics in a Globally Connected World, Volume 1
2022
Trends in Biomathematics: Modeling Cells, Flows, Epidemics, and the Environment Trends in Biomathematics: Modeling Cells, Flows, Epidemics, and the Environment
2020
Modeling and Differential Equations in Biology Modeling and Differential Equations in Biology
2017
Stochastic Processes, Multiscale Modeling, and Numerical Methods for Computational Cellular Biology Stochastic Processes, Multiscale Modeling, and Numerical Methods for Computational Cellular Biology
2017
Understanding Complex Biological Systems with Mathematics Understanding Complex Biological Systems with Mathematics
2018
The Basic Approach to Age-Structured Population Dynamics The Basic Approach to Age-Structured Population Dynamics
2017