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Results: 94
Number of items: 94
  • Brandts, J. H., Grigorieff, R. D., & Sloan, I. H. (2000). Superapproximation and commutator properties of discrete orthogonal projections for continuous splines. Journal of Approximation Theory, 107(2), 244-267. https://doi.org/10.1006/jath.2000.3506
  • Brandts, J. H. (2000). Explanation of a phenomenon witnessed in pre-processed GMRES. In P. Neittaanmäki (Ed.), Numerical Mathematics and Advanced Applications: proceedings of the 3rd European Conference ;[...held from July 26 to July 30, 1999 at the University of Jyväskylä] ENUMATH'99 (pp. 440-448). World Scientific.
  • Brandts, J. H. (2000). Superconvergence for triangular order k=1 Raviart-Thomas mixed- and for triangular standard quadratic finite element methods. Applied Numerical Mathematics, 34(1), 39-58. https://doi.org/10.1016/S0168-9274(99)00034-3
  • Open Access
    Brandts, J. (2000). Projection methods for oversized linear algebra problems. Nieuw Archief voor Wiskunde, 5/1(3), 264-277. http://www.nieuwarchief.nl/serie5/toonnummer.php?deel=01&nummer=3&taal=0
  • Brandts, J. H. (1999). Improving the convergence of some boundary element methods. Mathematics and Computers in Simulation, 50(1-4), 145-152. https://doi.org/10.1016/S0378-4754(99)00067-1
  • Brandts, J. H. (1999). Superconvergence of mixed finite element semi-discretizations of two time-dependent problems. Applications of Mathematics, 44(1), 43-53.
  • Brandts, J. H. (1999). A posteriori error estimation and adaptivity in the mixed finite element method of lines. Applications of Mathematics, 44(6), 407-419.
  • Brandts, J. H. (1998). Superconvergence similarities in standard and mixed finite element methods. Lecture notes in pure and applied mathematics, 19-40.
  • Brandts, J. H. (1998). Theory and Practice of Superconvergence-based a Posteriori Error Estimation in Galerkin Boundary Element Methods. International series on advances in boundary elements, 333-347.
  • Brandts, J. H. (1996). NetCap: A software tool for the calculation of the net capillary drive from empirical soil water content values. In A. Bruens, P. van Steenhoven, & B. Vijsma (Eds.), Erosion modelling for a small catchment in Costa Rica (pp. ?-?). Department of Earth Sciences, Utrecht University.
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