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The Ga droplet material coverage is 2.0 ML and the annealing time ta= 120 s.
Ga is the deposited for 2.5 s corresponding to a droplet material coverage θ= 2.0 ML.
There, the transition between uniform and bimodal holes was observed when the Al droplet material coverage exceeds a threshold value.
The depth of droplet etched nanoholes is controlled by the droplet material coverage and the process temperature, where a higher coverage or temperature yields deeper holes.
Previous experiments [23] for Al-LDE on AlGaAs yielded a contact angle of 66°, which neither depends on temperature nor on droplet material coverage.
The transition from uniform to non-uniform holes with increasing droplet material coverage was already reported previously [10] and attributed to a change of the surface reconstruction.
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Maiorana et al. [3] compared the healing of onlay block bone grafts with deproteinized bovine bone material (DBBM) coverage and the healing of grafts without such coverage, with the goal of clinically evaluating the ability of DBBM to reduce grafted bone resorption.
For samples with sufficient material, low coverage whole genome sequencing (mean 1× depth) was performed revealing that the BRAF amplification resulted from a chromosome 7 arm level gain in three of these specimens (SA-N101, SA-TL07, and SA-TL17, Supplementary Figure 1).
We further corroborated this interpretation by the analysis of nearly the entire sequence of the mtDNA of HepG2 cells (∼78%), reconstructed from the HepG2 DNAse-seq reads (supplementary fig. S5, Supplementary Material online, coverage of >1,000× in 12,892 mtDNA positions) and defined its mtDNA haplotype.
The marketing materials highlight coverage for relatively low-cost procedures.
Majorly, the surface area of electrode materials, biofilm coverage on the electrode surface, enrichment of electrochemically active electrode respiring bacteria and reduction reactions at cathode will aid in increasing the reaction kinetics towards the upscaling of microbial electrochemical technologies.
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