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We present a chemo-mechanical model to investigate the lithiation-induced phase transformation, morphological evolution, stress generation and fracture in crystalline silicon nanowires (c-SiNWs).
The results demonstrate that the enhancement of mechanical properties in ZrWN coatings can be achieved by carefully controlling the processing conditions, which in turn facilitate controlling the microstructure evolution, stress and mechanical properties.
Current models of miRNA evolution stress the importance of changes in target sites, whereas miRNA function remains highly conserved (Chen and Rajewsky 2007).
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Applications of these tensile rigs at our neutron diffractometers enable various investigations of structural changes under mechanical load, e.g. crystallographic texture evolution, stress-induced phase transformations or lattice expansion, and the anisotropy of mechanical response.
Moreover, the striking differences found in comparison with other dimorphic fungi revealed that dimorphism in these close relatives of plant-associated Sordariomycetes is a case of convergent evolution, stressing the importance of this morphogenetic change in fungal pathogenesis.
The results indicate that geometry influences the evolution of stress, which leads to stress-induced seismic anisotropy.
The results confirm that reservoir geometry influences the evolution of stress during production and subsequently stress-induced seismic anisotropy.
Two test structures (a) single crystal copper and (b) polycrystalline copper were created to study the impact of microstructure and Cu anisotropy on the evolution of stress levels with an applied thermal stress.
Focus was placed on the evolution of stress state, plastic deformation and ductile damage on both macro- and microscopic scales.
Focus was placed on the evolution of stress state, plastic deformation and local damage both on macro- and microscales under heat flux cycling.
Instead they have developed ways of mapping the evolution of stress patterns, identifying areas at risk and refining heuristics for hazard assessment.
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