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To provide a theoretically sound but reasonably complex and comprehensive approach for description and research of IS a hypergraph-based method is proposed (Table 1).
Related experimental results from in-line and laboratory experiments and a model approach for description of shear-induced properties are presented.
The main goal of our work is to develop a physically based multi-scale approach for description of the viscoelastic properties of reinforced elastomers.
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Models containing fractional derivatives are among the most promising new approaches for description of turbulent flows.
Usually, kinetics and thermodynamics are treated separately as two different, though complementary approaches for description of chemically reacting systems.
The methodol- ogy provides a correct by design approach for the description of multi-scale architectures.
The model used a simple segregated, unstructured approach for the description of the virus replication.
The framework adopts a modeling approach for the description and execution of business processes.
The fractional advection-diffusion equation is presented as a useful approach for the description of transport dynamics in complex systems.
This work is devoted to the new approach for the description of voltammograms with overlapped peaks of individual analytes.
This paper presents a new theoretical approach for the description of multidimensional objects for which 3D and 4D are particular cases.
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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