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Lecturer 김진수
Dept. 포항공과대학교
date Mar 23, 2023

 

When a biological system is modeled using a mathematical process, the following step is normally to estimate the system parameters. Despite the numerous computational and statistical techniques, estimating parameters for complex systems can be a difficult task. As a result, one can think of revealing parameter-independent dynamical properties of a system. More precisely, rather than estimating parameters, one can focus on the underlying structure of a biochemical system to derive the qualitative behavior of the associated mathematical process. In this talk, we will discuss study of qualitative behaviors of stochastic biochemical systems using reaction networks. A reaction network is a graphical configuration of a biochemical system. One of the key problems in this field is to relate dynamical properties and the underlying reaction network structure. The goal of this talk is to 1. walk you through the basic modeling aspect of the stochastically modeled reaction networks, and 2. to show how to derive stability (ergodicity) of the associated stochastic process solely based on the underlying network structure.
Atachment
Attachment '1'
List of Articles
Category Subject Dept. Lecturer
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Classification of simple amenable operator algebras file Lakehead University Grazia Viola
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Math Colloquia Partial differential equations with applications to biology file POSTECH 황형주
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BK21 FOUR Rookies Pitch 2021-1 Rookies Pitch: Representation Theory (최승일) file QSMS 최승일
BK21 FOUR Rookies Pitch 2021-2 Rookies Pitch: Low Demensional Topology (이동수) file QSMS 이동수
BK21 FOUR Rookies Pitch 2021-2 Rookies Pitch: Representation Theory(김영훈) file QSMS 김영훈
BK21 FOUR Rookies Pitch 2022-1 Rookies Pitch: Number Theory (이석형) file QSMS 이석형
BK21 FOUR Rookies Pitch 2022-1 Rookies Pitch: Integrable Systems (Sylvain Carpentier) file QSMS Sylvain Carpentier
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