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A computational method is presented for determining backbone curves of arbitrary geometry.
To this end, a computational method is presented which combines analytic knowledge of the solution singularities with finite element approximation of its smooth components.
A computational method is presented to track the evolution of regularized three-dimensional vortex sheets through an otherwise irrotational, inviscid, constant-density fluid.
A computational method is presented which describes the unsteady two-dimensional vortex generation and convection in stationary geometries with sharp edges.
A computational method is presented for predicting the unsteady aerodynamic response of a vibrating blade row that is part of a multistage turbomachine.
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A novel computational method is presented to inversely identify heat convection constants for complex engineering systems.
A new computational method is presented for the rapid estimation of polymer miscibility.
A novel computational method is presented for solving fluid dynamics equations in the multi-scale framework when the system size is an important parameter of the governing equations.
A new computational method is presented and successfully applied to the segmentation of the core shell nanoparticles, as one of the main problems in image analysis of the TEM micrographs.
In this paper a novel hybrid computational method is presented, combining the Discrete Particle Model (DPM) and the Immersed Boundary Method (IBM).
A new accurate and efficient computational method is presented for property calculation and phase equilibrium prediction of petroleum fluids using a minimum amount of input characterization data.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com