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Corresponding time-dependent interfacial parameters were evaluated using a multiscale model by applying a special loading on the model.
The role of notches in the fracture strength of metal foams has been studied using a multiscale model based on a two-dimensional Voronoi representation of the cellular architecture.
The experimental data is compared to finite element (FE) calculations for the crack tip strain fields and a prediction of the size of the twinned region using a multiscale model based on combining an FE approach with an elastoplastic self-consistent polycrystalline plasticity model.
We build on prior work of our group on maximum parsimony inference using a multiscale model of genomic copy number variation (Chowdhury et al., 2014) by replacing an unweighted formulation of the problem with a weighted version for which we can then infer rate parameters.
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This work describes a computational model to design bi-material composite laminates, with the objective of optimally design the structure and its material, using a multiscale topology optimization model.
Mode I delamination of a five harness satin weave carbon fibre composite and the corresponding toughening mechanisms are studied using a multiscale finite element model of delamination growth in a double cantilever beam (DCB) specimen.
A deeper investigation is made to find out potentials and challenges using a multiscale approach to model solid oxide fuel cells (SOFCs) and combine the accuracy at microscale with the calculation speed at macroscale to design SOFCs, based on a clear understanding of transport phenomena, chemical reactions and functional requirements.
Our simulation study provides new insights into the combined effect of ICaL and IKr blocks on human ventricular activity using a multiscale computational human torso model.
In this study, we aim at using a multiscale computational human torso model to investigate and quantify the combined effect of ICaL and IKr block on human ventricular activity from the ionic to the ECG level.
In this work, droplet-droplet interaction is modelled using a multiscale approach which couples multiphase flow simulation using a volume-of-fluid method to a surface thin-film model operating on the sub-grid scale.
We investigated this connection using a multiscale fibril reinforced hyperelastoplastic (MFRHEP) model that accounts for the structural architecture of the soft tissue, starting from tropocollagen molecules that form fibrils, and moving to the complete soft tissue.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com