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We use molecular statics simulations with the embedded atom method potential to delineate yielding (material instability) and buckling (structural instability) in gold nanowires deformed axially in compression.
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While many simplifications were made in the application of the inference method presented here, the method has potential to be extended in several directions.
This method utilizes the multi-body embedded-atom method (EAM) potential to characterize the interactions of metal atoms and adatoms.
Besides that, this method promises potential to be used for fast screening and monitoring of potentially polluted sites.
One example often cited by those who press for more stem cell research is the method's potential to treat diabetes.
Moreover, the method has potential to be improved with more data accumulation and more case histories.
In essence, the Delphi method has potential to provide both rigor and relevance to AIS researchers.
Our method shows potential to clarify the mechanism of sepsis from the point of view of mitochondrial function.
This new method has potential to measure energy flow carried by higher order circumferential modes (n⩾3).
These findings were confirmed via clone sequencing (Figure 2C) and thus further illustrate the presented method's potential to quantify levels of DNA methylation.
This method has potential to be applied to other model systems, such as fruit fly.
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CEO of Professional Science Editing for Scientists @ prosciediting.com