Forschungsbereich Scientific Computing and Modelling

Organization Name (de) Name der Organisation (de)
E101-03 - Forschungsbereich Scientific Computing and Modelling
 
Code Kennzahl
E101-03
 
Type of Organization Organisationstyp
Research Division
Parent OrgUnit Übergeordnete Organisation
 
Active Aktiv
 


Results 81-100 of 1429 (Search time: 0.003 seconds).

PreviewAuthor(s)TitleTypeIssue Date
81Schobinger, Markus ; Tarek, Md Tawhid Bin ; Sozer, Yilmaz ; Tsukerman, Igor ; Hollaus, Karl Magnetic Microwire Materials Route Magnetic Flux in Screens and Cores of Electrical MachinesInproceedings Konferenzbeitrag 2022
82Hollaus, Karl ; Schobinger, Markus Multiscale Finite Element Formulations for 2D/1D ProblemsInproceedings Konferenzbeitrag 2022
83Schobinger, Markus ; Hollaus, Karl A Novel MSFEM Approach Based on the A-Formulation for Eddy Currents in Iron SheetsInproceedings Konferenzbeitrag2022
84Schobinger, Markus ; Hollaus, Karl A Computationally Cheap Error Estimator for the 3D Eddy Current Problem Using a MSFEM Approach Based on the A-FormulationInproceedings Konferenzbeitrag2022
85Fellner, Andreas ; Heshmat, Amirreza ; Werginz, Paul ; Rattay, Frank A finite element method framework to model extracellular neural stimulationArtikel Article 2022
86Winkler, Stefanie ; Körner, Andreas ; Breitenecker, Felix Modelling framework for artificial hybrid dynamical systemsArtikel Article Nov-2021
87Neunteufel, Michael ; Pechstein, Astrid S. ; Schöberl, Joachim Three-field mixed finite element methods for nonlinear elasticityArtikel Article 15-Aug-2021
88Sky-2021-Computational Mechanics-vor.pdf.jpgSky, Adam ; Neunteufel, Michael ; Münch, Ingo ; Schöberl, Joachim ; Neff, Patrizio A hybrid H¹ x H(curl) finite element formulation for a relaxed micromorphic continuum model of antiplane shearArticle Artikel Jul-2021
89Leumüller, Michael ; Auinger, Bernhard ; Schöberl, Joachim ; Hollaus, Karl Enhanced Technique for Metascreens Using the Generalized Finite Element MethodArtikel Article Jun-2021
90Melching, David ; Neunteufel, Michael ; Schöberl, Joachim ; Stefanelli, Ulisse A finite-strain model for incomplete damage in elastoplastic materialsArtikel Article 1-Feb-2021
91Neunteufel, Michael ; Schöberl, Joachim Avoiding membrane locking with Regge interpolationArticle Artikel 1-Jan-2021
92Pfeiffer, Ruth ; Kapla, Daniel Benjamin ; Bura, Efstathia Least squares and maximum likelihood estimation of sufficient reductions in regressions with matrix-valued predictorsArtikel Article Jan-2021
93Sajedi, Sogand ; Fellner, Andreas ; Werginz, Paul ; Rattay, Frank Block phenomena during electric micro-stimulation in pyramidal cells and retinal ganglion cellsArtikel Article 2021
94Hafner, Irene ; Popper, Niki An Overview of the State of the Art in Co-Simulation and Related MethodsArtikel Article 2021
15Hafner, Irene ; Popper, Niki Investigation on Stability Properties of Hierarchical Co-SimulationArtikel Article 2021
16Weibrecht, Nadine ; Rößler, Matthias ; Bicher, Martin ; Emrich, Štefan ; Zauner, Günther ; Popper, Niki How an election can be safely planned and conducted during a pandemic: Decision support based on a discrete event modelArtikel Article 2021
17Kraus, Johannes ; Lederer, Philip L. ; Lymbery, Maria ; Schöberl, Joachim Uniformly well-posed hybridized discontinuous Galerkin/hybrid mixed discretizations for Biot's consolidation modelArtikel Article 2021
18Fellner, Andreas Extracellular Stimulation of Nerve Cells in COMSOLPräsentation Presentation2021
19Modiz, Corinna ; Sipovac, Milena ; Körner, Andreas Angleichungskurs Mathematik und Studien VOR Phase an der TU WienPräsentation Presentation2021
20Sipovac, Milena ; Körner, Andreas ; Modiz, Corinna Advantages of Randomized Assignments in Online Exams in Mathematics Education for Engineering and Physics during the COVID-19 PandemicPräsentation Presentation2021