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44 results on '"van der Zee, Kristoffer G."'

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1. Learning quantities of interest from parametric PDEs: An efficient neural-weighted Minimal Residual approach

2. Neural Control of Discrete Weak Formulations: Galerkin, Least-Squares and Minimal-Residual Methods with Quasi-Optimal Weights

3. Linearisation of the Travel Time Functional in Porous Media Flows

7. Data-Driven Finite Elements Methods: Machine Learning Acceleration of Goal-Oriented Computations

8. Gibbs Phenomena for $L^q$-Best Approximation in Finite Element Spaces -- Some Examples

9. Eliminating Gibbs Phenomena: A Non-linear Petrov-Galerkin Method for the Convection-Diffusion-Reaction Equation

10. The Discrete-Dual Minimal-Residual Method (DDMRes) for Weak Advection-Reaction Problems in Banach spaces

11. Massively parallel-in-space-time, adaptive finite element framework for non-linear parabolic equations

12. Diffuse-Interface Two-Phase Flow Models with Different Densities: A New Quasi-Incompressible Form and a Linear Energy-Stable Method

13. Discretization of Linear Problems in Banach Spaces: Residual Minimization, Nonlinear Petrov-Galerkin, and Monotone Mixed Methods

14. An abstract analysis of optimal goal-oriented adaptivity

20. A machine-learning minimal-residual (ML-MRes) framework for goal-oriented finite element discretizations

21. Linearization of the Travel Time Functional in Porous Media Flows

22. Gibbs phenomena for Lq-best approximation in finite element spaces

23. Investigating the Role of Hypoxia-Induced Migration in Glioblastoma Growth Rates

24. Gibbs phenomena for Lq-best approximation in finite element spaces.

35. Learning quantities of interest from parametric PDEs: An efficient neural-weighted Minimal Residual approach

36. Adaptive Quasi-Monte Carlo Finite Element Methods for Parametric Elliptic PDEs.

37. Neural Control of Discrete Weak Formulations: Galerkin, Least-Squares and Minimal-Residual Methods with Quasi-Optimal Weights

39. Linearisation of the Travel Time Functional in Porous Media Flows

40. Data-Driven Finite Elements Methods: Machine Learning Acceleration of Goal-Oriented Computations

41. Gibbs Phenomena for $L^q$-Best Approximation in Finite Element Spaces -- Some Examples

42. Eliminating Gibbs Phenomena: A Non-linear Petrov-Galerkin Method for the Convection-Diffusion-Reaction Equation

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