Forschungsgruppe Numerik von PDEs

Organization Name (de) Name der Organisation (de)
E101-02-2 - Forschungsgruppe Numerik von PDEs
 
Code Kennzahl
E101-02-2
 
Type of Organization Organisationstyp
Research Group
Parent OrgUnit Übergeordnete Organisation
 
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Results 1-20 of 26 (Search time: 0.003 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Innerberger-2024-ESAIM-MATHEMATICAL MODELLING AND NUMERICAL ANALYSIS-vor.pdf.jpgInnerberger, Michael ; Miraçi, Ani ; Praetorius, Dirk ; Streitberger, Julian hp-robust multigrid solver on locally refined meshes for FEM discretizations of symmetric elliptic PDEsArticle Artikel Jan-2024
2Bringmann, Philipp Scaling-robust built-in a posteriori error estimation for discontinuous least-squares finite element methodsPresentation Vortrag16-Nov-2023
3Helml, Valentin ; Innerberger, Michael ; Praetorius, Dirk Plain convergence of goal-oriented adaptive FEMArticle Artikel 1-Oct-2023
4Bringmann, Philipp ; Carstensen, Carsten ; Streitberger, Julian Local parameter selection in the C⁰ interior penalty method for the biharmonic equationArticle Artikel 11-Sep-2023
5Streitberger, Julian ; Bringmann, Philipp ; Brunner, Maximilian ; Miraci, Ani ; Praetorius, Dirk Cost-optimal goal-oriented adaptive FEM for linear elliptic PDEsPresentation Vortrag4-Sep-2023
6Brunner, Maximilian ; Becker, Roland ; Innerberger, Michael ; Melenk, Jens Markus ; Praetorius, Dirk Rate-optimal goal-oriented adaptive FEM for semilinear elliptic PDEsPresentation Vortrag4-Sep-2023
7Bringmann, Philipp Least-squares finite element methods - An introductionPresentation Vortrag31-Aug-2023
8Becker, Roland ; Brunner, Maximilian ; Innerberger, Michael ; Melenk, Jens Markus ; Praetorius, Dirk Cost-optimal adaptive iterative linearized FEM for semilinear elliptic PDEsArticle Artikel Jul-2023
9Brunner, Maximilian ; Innerberger, Michael ; Miraçi, Ani ; Praetorius, Dirk ; Streitberger, Julian ; Heid, Pascal Adaptive FEM with quasi-optimal overall cost for nonsymmetric linear elliptic PDEsArticle Artikel 19-Jun-2023
10Praetorius, Dirk ; Brunner, Maximilian ; Heid, Pascal ; Innerberger, Michael ; Miraci, Ani ; Streitberger, Julian Adaptive FEM for linear elliptic PDEs: Optimal complexityPresentation Vortrag13-Jun-2023
11Melenk, Jens Markus ; Bahr, Björn ; Faustmann, Markus ; Parvizi, Maryam ; Praetorius, Dirk AFEM for the fractional LaplacianPresentation Vortrag12-Jun-2023
12Brunner, Maximilian ; Praetorius, Dirk ; Becker, Roland ; Innerberger, Michael ; Melenk, Jens Markus Goal-oriented adaptivity for semilinear elliptic PDEsPresentation Vortrag8-Jun-2023
13Bringmann, Philipp Discontinuous least-squares finite element methods with built-in a posteriori error estimationPresentation Vortrag3-May-2023
14Streitberger, Julian ; Brunner, Maximilian ; Heid, Pascal ; Innerberger, Michael ; Miraci, Ani ; Praetorius, Dirk Adaptive FEM for linear elliptic PDEs: optimal complexityPresentation Vortrag27-Apr-2023
15Innerberger-2023-Applied Mathematics and Computation-vor.pdf.jpgInnerberger, Michael ; Praetorius, Dirk MooAFEM: An object oriented Matlab code for higher-order adaptive FEM for (nonlinear) elliptic PDEsArticle Artikel Apr-2023
16Miraci, Ani ; Brunner, Maximilian ; Heid, Pascal ; Innerberger, Michael ; Praetorius, Dirk ; Streitberger, Julian Adaptive FEM for linear elliptic PDEs: Optimal complexityPresentation Vortrag22-Mar-2023
17Bringmann, Philipp How to prove optimal convergence rates for adaptive least-squares finite element methodsArticle Artikel 11-Mar-2023
18Di Fratta, Giovanni ; Jüngel, Ansgar ; Praetorius, Dirk ; Slastikov, Valeriy Spin-diffusion model for micromagnetics in the limit of long timesArticle Artikel 15-Jan-2023
19Becker-2023-Numerische Mathematik-vor.pdf.jpgBecker, Roland ; Gantner, Gregor ; Innerberger, Michael ; Praetorius, Dirk Goal-oriented adaptive finite element methods with optimal computational complexityArticle Artikel 2023
20Di Fratta-2023-Computational Methods in Applied Mathematics-vor.pdf.jpgDi Fratta, Giovanni ; Pfeiler, Carl-Martin ; Praetorius, Dirk ; Ruggeri, Michele The Mass-Lumped Midpoint Scheme for Computational Micromagnetics: Newton Linearization and Application to Magnetic Skyrmion DynamicsArtikel Article 2023