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This approach helps identify four different levels at which technology transfer may occur.
The charge and mass transfer may occur at this interface due to the local solid electrochemical reaction.
During a transient simulation, data transfer may occur many times, with the potential of error accumulation at each transfer.
Biofilms are unique multicellular constructions of bacteria from one or several species, in which horizontal genetic transfer may occur easily, thus facilitating crossbreeding of resistance genes.
In the direct-antioxidant process, proton (H+), one electron (e), or even hydrogen-atom (H) transfer may occur to fulfill radical-scavenging (especially OH-scavenging); in this aspect, epicatechin is superior to luteolin-7-O-β-D-glucoside due to the presence of more phenolic –OHs.
In ordinary circumstances, transduction, conjugation, and transformation involve transfer of DNA between individual bacteria of the same species, but occasionally transfer may occur between individuals of different bacterial species and this may have significant consequences, such as the transfer of antibiotic resistance.
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When the grid structure or running condition changes unexpectedly, the large load power flow transferring may occur in a large scale.
Of the two suggested modes by which horizontal gene transfers may occur – non-standard pollination and vector mediation – we cannot formally exclude the first possibility.
Horizontal transfers may occur more frequently in the pile-weave design characters, but the increased rate is extremely small and has little impact on the distribution of character states among the tribes.
Horizontal gene transfers between distantly related organisms, i.e., bacteria and multicellular eukaryotes was thought to occur rarely, but our results demonstrate that these transfers may occur more frequently if they are between species that share the same arthropod host, i.e., ticks or beetles.
Experimental results were obtained for both laminar and turbulent flow regimes and they showed that, depending on the combination of nozzle-to-heated surface distance and particle volume fraction, the use of a nanofluid can determine a heat transfer enhancement in some cases, but an adverse effect on the convective heat transfer coefficient may occur in other cases.
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