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The improved rate and timeliness of documentation with the new note template indicate that a short template with increased opportunity for free text may be more efficient and effective for capturing high-level or collaborative work.
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Moreover, we found that amplification failure of long alleles increased more than linearly with sample age, which is in accordance with DNA degradation and fragmentation being random processes, leading to an exponential decline in DNA template with increasing amplicon target size [ 14, 32].
Of note, the chaperone-mediated release of rH1 from the templates correlated with increased transcription factor/coactivator binding, an observation consistent with chromatin relaxation following H1 release.
Using homozygous genomic DNAs, we produced bi-allelic templates with increasing minor allele:major allele proportions (9 1, 8 2, 7 3, 6 4, 5 5, 4 6, 3 7, 2 8, 1 9).
Impregnating the polymer precursor template with acrylonitrile increased the carbon yield of the material from 19% to 46%.
The proportion of failed reads due to process-related problems are more abundant in traces with lower average read lengths while the opposite trend showing template-related failures increasing with increased average read length is true.
For instance, the nanopored nanostructures can make more advantageous templates for sensors and electrodes with increased surface areas, thereby enhancing the sensitivities and efficiencies.
Based on the QUARK models, structural templates with an increased TM-score were fished out by TM-align from the PDB.
With increased expenses inevitably come increased pressures.
Average grain size was calculated using Debye Scherrer formula and it was found to decrease from 13 to 8 nm with increasing template concentration.
Analysis of prominent diffraction peaks using Debye Scherer's equation showed that the average grain size decreased from 13 to 8 nm with increasing template concentration with cell parameters a = b = 3.7856 Å and c = 9.514 Å, which agrees very well with the anatase phase of the TiO2 nanoparticles.
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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