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A Lévy-flight diffusion model to predict transgenic pollen dispersal.How to avoid unbounded drug accumulation with fractional pharmacokinetics.Predicting the cumulative effect of multiple disturbances on seagrass connectivity.Spatial patterns of seagrass dispersal and settlementCapturing the bottom boundary layer in finite element ocean modelsDiscontinuous Galerkin modeling of the Columbia River’s coupled estuary-plume dynamicsUnstructured-mesh modeling of the Congo river-to-sea continuumConnectivity between submerged and near-sea-surface coral reefs: can submerged reef populations act as refuges?Numerical modelling and graph theory tools to study ecological connectivity in the Great Barrier ReefFront dynamics in fractional-order epidemic modelsA multi-scale model of the hydrodynamics of the whole Great Barrier ReefOn the mathematical stability of stratified flow models with local turbulence closure schemesAn adaptive finite element water column model using the Mellor–Yamada level 2.5 turbulence closure schemeErratum to “An adaptive finite element water column model using the Mellor–Yamada level 2.5 turbulence closure scheme” [Ocean Modelling 12 (2006) 205–223]High-resolution, unstructured meshes for hydrodynamic models of the Great Barrier Reef, AustraliaAn efficient Eulerian finite element method for the shallow water equationsAdvection schemes for unstructured grid ocean modellingA comparison of three finite elements to solve the linear shallow water equations
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P50
description
researcher ORCID ID = 0000-0002-8359-868X
@en
wetenschapper
@nl
name
Emmanuel Hanert
@ast
Emmanuel Hanert
@en
Emmanuel Hanert
@es
Emmanuel Hanert
@nl
type
label
Emmanuel Hanert
@ast
Emmanuel Hanert
@en
Emmanuel Hanert
@es
Emmanuel Hanert
@nl
prefLabel
Emmanuel Hanert
@ast
Emmanuel Hanert
@en
Emmanuel Hanert
@es
Emmanuel Hanert
@nl
P1153
10039346400
P31
P496
0000-0002-8359-868X