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Department of Mathematics

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  2. Applied Mathematics 1
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  4. Dr. Jonas Knoch

Dr. Jonas Knoch

In page navigation: Applied Mathematics 1
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Dr. Jonas Knoch

Dr. Jonas Knoch was member of the research group AG Neuss-Radu.

Research interests:

  • Multi-scale modeling, analysis and simulation for transport processes in deformable biological tissue
  • Modeling, analysis and simulation of metabolic pathways
  • Parameter estimation and sensitivity analysis of mathematical models

Education

since 01/2020 Doctoral student
FAU Erlangen-Nürnberg
Chair for Applied Mathematics (Modeling and Numerics)
Thesis title: Investigation of micro-macro models for reactive transport in elastically deformable perforated media
Supervisor: Prof. Dr. Maria Neuss-Radu
10/2019–12/2019 Research Associate
FAU Erlangen-Nürnberg
Chair for Applied Mathematics (Scientific Computing)
Computational Fluid Dynamics
10/2017–09/2019 Master’s studies in Integrated Life Sciences
FAU Erlangen-Nürnberg
Mathematical modeling and systems biology
Bioimaging and biophysics
Master’s thesis: Modeling the cellular energy metabolism during hypoxia –
parameter identification, simulations and sensitivity analysis
10/2014–09/2017 Bachelor’s studies in Integrated Life Sciences
FAU Erlangen-Nürnberg
2014 Abitur at Arnold-Gymnasium Neustadt bei Coburg

Awards

Wiley Poster Prize, 2020 Annual Meeting of the Society for Mathematical Biology,
Poster: A mathematical model of HIF-1 regulated energy metabolism

Practicals

  • Tutorials for lecture “Engineering Mathematics” (SS 19)
  • Tutorials for lecture “Mathematik für Ingenieure E3” (WS 18/19)
  • Tutorials for lecture “Mathematik für Ingenieure E2” (SS 18)
  • Tutorials for lecture “Mathematik für Ingenieure E1” (WS 17/18)
  • Tutorials for lecture “Genomanalyse und Phylogenie” (WS 16/17)
  • Tutorials for lecture “Stochastische Modelle” (WS 16/17)

  • Knoch J., Gahn M., Neuss-Radu M.:
    GLOBAL WELL-POSEDNESS AND NUMERICAL JUSTIFICATION OF AN EFFECTIVE MICRO-MACRO MODEL FOR REACTIVE TRANSPORT IN ELASTIC PERFORATED MEDIA
    In: Multiscale Modeling & Simulation 23 (2025), p. 458-485
    ISSN: 1540-3459
    DOI: 10.1137/24M1644304
    BibTeX: Download

  • Knoch J., Gahn M., Neuss-Radu M., Neuß N.:
    Multi-Scale Modeling and Simulation of Transport Processes in an Elastically Deformable Perforated Medium
    In: Transport in Porous Media (2023)
    ISSN: 0169-3913
    DOI: 10.1007/s11242-022-01896-z
    BibTeX: Download

  • Bocharov G., Jäger W., Knoch J., Neuss-Radu M., Thiel M.:
    A Mathematical Model of HIF-1 Regulated Cellular Energy Metabolism
    In: Vietnam Journal of Mathematics (2020)
    ISSN: 0866-7179
    DOI: 10.1007/s10013-020-00426-y
    BibTeX: Download
Friedrich-Alexander-Universität
Department of Mathematics

Cauerstraße 11
91058 Erlangen
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