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강연자 김진수
소속 포항공과대학교
date 2023-03-23

 

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.
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첨부 '1'
  1. Spectral Analysis for the Anomalous Localized Resonance by Plasmonic Structures

  2. Structural stability of meandering-hyperbolic group actions

  3. Structures of Formal Proofs

  4. 28Mar
    by 김수현
    in 수학강연회

    Study stochastic biochemical systems via their underlying network structures

  5. Subgroups of Mapping Class Groups

  6. Subword complexity, expansion of real numbers and irrationality exponents

  7. Sums of squares in quadratic number rings

  8. Symmetry Breaking in Quasi-1D Coulomb Systems

  9. Symplectic Geometry, Mirror symmetry and Holomorphic Curves

  10. Symplectic topology and mirror symmetry of partial flag manifolds

  11. The classification of fusion categories and operator algebras

  12. The Lagrange and Markov Spectra of Pythagorean triples

  13. The Mathematics of the Bose Gas and its Condensation

  14. The phase retrieval problem

  15. The process of mathematical modelling for complex and stochastic biological systems

  16. The Shape of Data

  17. The significance of dimensions in mathematics

  18. Theory and applications of partial differential equations

  19. Topological aspects in the theory of aperiodic solids and tiling spaces

  20. Topological surgery through singularity in mean curvature flow

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