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A large number of interfaces were tested in dry and wet conditions, these tests enabled us to verify the influence of water on GLS stability.
The analysis of the results from the two tests enabled us to identify general statistical patterns as well as particular features in the eye movement that are related with the irregularity and complexity of the image adopted in the eye-tracking experiments.
The unique information of repeated tests enabled us to study the fluctuation of anti-EBV sero-markers before the onset of NPC, which have not been reported by previous studies.
These tests enabled us to study the nature of reporting errors, rather than only their frequency.
This result may explain why the use of a challenging peg-board test instead of simple grasp and lift tests enabled us to detect changes in performance after CA. Furthermore, we found a stronger improvement after CA for the demanding version of the peg-board test as compared to the standard version.
None of the tests enabled us to reject the null hypothesis of clonal evolution in the mitochondrial genome, whereas all tests consistently rejected the null hypothesis in the chloroplast (table 2), with the exception of the LD |D′ | test, where the relationship of linkage disequilibrium with distance is negative, as expected under recombination, but not significant (P value = 0.16).
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These tests enable us to understand the mechanism of UP silicate nanocomposite formation.
Strain-rate controlled cyclic compression tests enable us to explore the softening behaviour and the elastic stiffness evolution with increasing plastic straining of concrete in uniaxial compression.
Furthermore, our formulation of the tests enables us to localize disease genes to small genomic regions, an extremely desirable feature that the traditional LOD method lacks.
The XRD tensile tests enable us to measure the Poisson's ratio, as well as the Young's modulus of Ti Ni films with various film compositions.
A detailed analysis of the formation and breakage of chemical bonds between the carbon, oxygen, and nickel atoms during the tensile tests enables us to elucidate the roles of the nanoparticle on the failure mechanisms.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com