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This procedure is repeated until a path is found or no more ambiguous regions are left.
Second, once an important path is found, the nearby paths are explored as well, thus amortizing the expense of finding such paths over many samples.
With the proposed method, the crack path is found in the post-processing phase by means of a step-by-step procedure.
The lowest energy path is found in the core of the 60° dislocation, its activation energy being 60% of the activation energy in the bulk.
The presented approach, driven by bacterial foraging optimization (BFO) algorithm provides easy flexibility to change direction in the design space through tumble/swim actions if a search path is found ineffective.
While the first reaction path is found to be totally exothermic, it involves a barrier of 12.5 kcal/mol in the gas phase against the lowest value of about 32 kcal/mol reported in the literature.
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An orientation-dependent FCG rate and fracture path was found.
Eventually a path was found that involved releasing others as well as Gross and the Cuban spies.
However, the nature of the fracture path was found to be quite insensitive to the test rate.
The idealised tow path was found to provide some correlation between predicted and actual values particularly for integrated type structures.
The recrystallization microstructural path was found to be isokinetic, i.e. identical at all the annealing temperatures studied.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com