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For accurate large eddy simulation (LES) of complex turbulent flows around bluff bodies with various shapes, we have investigated the effects of the upwind scheme on wake structures and the problems in overset grid systems, which require interpolation of physical values between sub-domains.
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In summary, we present a strategy to overcome the cytotoxicity of genome targeting DSBs to make a platform for accurate large-scale bacterial genome manipulations.
Upwind schemes were judged inappropriate for performing accurate large eddy simulations of turbulent flow owing to the artificial dissipation that is present at high wavenumbers of the energy content.
Our computational predictions of the self-binding affinities of all possible Dscam1 isoforms demonstrated the potential machine learning methods have for the rapid extraction of key molecular features, as well as for the systematic prediction of biological effects, which is crucial for the accurate large-scale analysis of complex molecular and cellular systems.
Site-specific measurements and channel modeling have led to an empirical method for calculation of shadowing deviation based on obstacles meddling with the signal path [25], providing a novel approach for an accurate large-scale consideration of shadowing phenomena.
This allows for an accurate, large-scale representation of overall glucose trends, as compared with the isolated values offered by fingerstick SMBG (3– 5).
Several in vivo CH4 measurement techniques have been developed but are not suitable for precise and accurate large-scale measurements; hence, proxies for CH4 emissions in dairy cattle have been proposed, including the milk fatty acid (MFA) profile.
The exponentially increasing amount of sequence information has spurred the need for automated and accurate large-scale prediction and functional annotation of genes.
These spliceosensor flies have allowed the successful establishment of a Drosophila-based high-throughput screening (HTS) system, used here for rapid and accurate large-scale chemical testing in a DM1 model.
This technique allows for accurate reconstruction of large phases which can arise in applications such as open-loop compensation of atmospheric turbulence, aberrometers and metrology.
In addition, individual tables can serve as a valuable tool for accurate dissemination of large amounts of complex information on communication and participation to professionals as well as to members of the public.
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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