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Prof. Dr. Thomas Götz

Mathematisches Institut, Universität Koblenz

Publikationen
Ergebnisse pro Seite:  25

WIjaya, Karunia Putra; Páez Chávez, Joseph; Götz, Thomas

A dengue epidemic model highlighting vertical–sexual transmission and impulsive control strategies

Applied Mathematical Modelling. Bd. 95. Amsterdam: Elsevier 2021 S. 279 - 296


Roy, Nityananda; Wijaya, Karunia Putra; Götz, Thomas et al.

A mathematical model governing the short-range transport of microplastic particles in a lid-driven cavity with an obstacle

Communications in Nonlinear Science and Numerical Simulation. Bd. 101. Amsterdam: Elsevier 2021 S. 105893


Ganegoda, Naleen; Götz, Thomas; Wijaya, Karunia Putra

An age-dependent model for dengue transmission: Analysis and comparison to field data

Applied Mathematics and Computation. Bd. 388. New York, NY: Elsevier 2021 S. 14


Bock, Wolfgang; Jayathunga, Yashika; Götz, Thomas et al.

Are the upper bounds for new SARS-CoV-2 infections in Germany useful?

Computational and Mathematical Biophysics. Bd. 9. H. 1. Berlin: De Gruyter 2021 S. 242 - 260


Götz, Thomas; Mohrmann, Silja; Rockenfeller, Robert et al.

Calculation of a local COVID-19 reproduction number for the northern Rhineland-PalatinateA

Arxiv. 2020


Götz, Thomas; Heidrich, Peter

Early stage COVID-19 disease dynamics in Germany: models and parameter identification

Journal of Mathematics in Industry. Bd. 10. Berlin: Springer 2020 S. 13


Rockenfeller, Robert; Günther, Michael; Stutzig, Norman et al.

Exhaustion of Skeletal Muscle Fibers Within Seconds: Incorporating Phosphate Kinetics Into a Hill-Type Model

Frontiers in Physiology. Bd. 11. Lausanne: Frontiers Research Foundation 2020 S. 306


Schäfer, Moritz; Götz, Thomas

Modelling Dengue Fever Epidemics in Jakarta

International Journal of Applied and Computational Mathematics. Bd. 6. Berlin: Springer 2020


Rockenfeller, Robert; Herold, J.L.; Götz, Thomas

Parameter estimation and experimental design for Hill-type muscles: Impulses from optimization-based modeling

Mathematical Biosciences. Bd. 327. New York, NY: Elsevier 2020 S. 108432 (12 pages)


Heidrich, Peter; Schäfer, Moritz; Nikouei, Mostafa et al.

The COVID-19 outbreak in Germany: Models and Parameter Estimation

Communication in Biomathematical Sciences. Bd. 3. H. 1. Bandung: Indonesian Biomathematical Society 2020 S. 37 - 59


Suandi, Dani; Wijaya, Karunia Putra; Apri, Mochamad et al.

A one-locus model describing the evolutionary dynamics of resistance against insecticide in Anopheles mosquitoes

Applied Mathematics and Computation. Bd. 359. New York, NY: Elsevier 2019 S. 90 - 106


Ganegoda, Naleen; Götz, Thomas; Wijaya, Karunia Putra

An Age-Dependent Model for Dengue Transmission: Analysis and Comparison to Field Data from Semarang, Indonesia

ArXiv e-prints. H. 1908.09256. 2019


Fakhruddin, Muhammad; Putra, Prama Setia; Wijaya, Karunia Putra et al.

Assessing the interplay between dengue incidence and weather in Jakarta via a clustering integrated multiple regression model

Ecological Complexity. Bd. 39. Amsterdam: Elsevier 2019 S. 100768


Heidrich, Peter; Götz, Thomas

Modelling Dengue with the SIR Model

István Faragó;Ferenc Izsák;Péter L. Simon (Hrsg). Progress in Industrial Mathematics at ECMI 2018. Bd. 30. Gorgan: Gorgan University of Agricultural Sciences and Natural Resources 2019 S. 175 - 182 (Mathematics in Industry)


Bock, Wolfgang; Götz, Thomas; Liyanage, Uditha Prabhath

Parameter estimation of fiber lay-down in nonwoven production: an occupation time approach

International Journal of Advances in Engineering Sciences and Applied Mathematics. Bd. 10. H. 1. New Delhi: Springer India 2018 S. 2 - 8


Sundar, S.; Goetz, Thomas

Preface for the special issue: modeling, optimization and simulation

International Journal of Advances in Engineering Sciences and Applied Mathematics. Bd. 10. H. 1. New Delhi: Springer India 2018 S. 1


Chávez, Joseph Páez; Götz, Thomas; Siegmund, Stefan et al.

An SIR-Dengue transmission model with seasonal effects and impulsive control

Mathematical Biosciences. Bd. 289. New York, NY: Elsevier 2017 S. 29 - 39


Rockenfeller, Robert; Guenther, Michael; Schmitt, Syn et al.

Corrigendum to “Comparative Sensitivity Analysis of Muscle Activation Dynamics”

Computational and Mathematical Methods in Medicine. Bd. 2017. New York, NY: Hindawi 2017 S. 2


Götz, Thomas; Altmeier, Nicole; Bock, Wolfgang et al.

Modeling dengue data from Semarang, Indonesia

Ecological Complexity. Bd. 30. Amsterdam: Elsevier 2017 S. 57 - 62


Wijaya, Karunia Putra; Sutimin, Sutimin; Soewono, Edy et al.

On the Existence of a Nontrivial Equilibrium in Relation to the Basic Reproductive Number

International Journal of Applied Mathematics and Computer Science. Bd. 27. H. 3. Zielona Góra: Technical University of Zielona Góra 2017 S. 623 - 636


Willems, David; Wijaya, Karunia Putra; Ruzika, Stefan et al.

A Sandwich Approximation Algorithm for Biobjective Optimal Control Problems

2016


Stollenwerk, Nico; Götz, Thomas; Mateus, Luis et al.

Modelling spatial connectivity in epidemiological systems, dengue fever in Thailand on networks from radiation models

Theodore Simos;Charalambos Tsitouras (Hrsg). International Conference of Numerical Analysis and Applied Mathematics 2015 ICNAAM 2015; Volume 1738 C: Rhodes, Greece; 22-28 September, 2015. Bd. 1738. Melville, NY: American Institute of Physics 2016


Wijaya, Karunia Putra; Götz, Thomas; Soewono, Edy

Advances in mosquito dynamics modeling

Mathematical Methods in the Applied Sciences. Bd. 39. H. 16. Chichester, West Sussex: Wiley 2015 S. 4750 - 4763


Rockenfeller, Robert; Götz, Thomas; Schmitt, Syn et al.

Comparative Sensitivity Analysis of Muscle Activation Dynamics

Computational and Mathematical Methods in Medicine. H. Article ID 585409. 2015 S. 16


Bracke, Martin; Götz, Thomas; Siller, Hans-Stefan

Mit Hilfe der Mathematik zum Gipfel

Der Mathematikunterricht. Bd. 61. H. 5. Hannover: Friedrich 2015 S. 7 - 12