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Several authors have tried to explain p-n junction formation in n-type HgCdTe by defects' generation, based on a model of defect formation related to interstitial mercury diffusion[24].
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The data are used in kinetic Monte Carlo modeling of defect diffusion at different temperatures.
To distinguish between different models of defect formation and mechanisms of stress accommodation in Nd-containing manganites, a number of additional studies and calculations are necessary, but such activities go beyond the scope of this work.
Two different polarizations located in grain boundaries and grains respectively are responsible for the CP behavior and the models of defect charge compensation achieved by niobium doping are proposed to explain the phenomenon of abnormal variation of dielectric constant.
It is also important to mention that both models of defect design – chondral and osteochondral – are relevant for equines [ 43],[ 44] as well as for other species [ 32],[ 41], and the choice to use one or the other must be made judiciously.
We present a coupled atomistic continuum method for the modeling of defects and interface dynamics in crystalline materials.
We have developed a Green's function (GF) based multiscale modeling of defects in a semi-infinite silicon substrate.
Unfortunately, such materials often show a poor ductility, and thus enhancing formability is nowadays one of the most relevant research focus, as well as the development of effective and reliable predictive models of defects insurgence during forming processes.
Several models of defects and surfaces have been studied and compared with previously proposed traps, i.e. the zig zag edge of dislocation loops and reconstructed surfaces of graphite crystallites.
24 Animal models of defects in SEC24D involve characteristic skeletal malformations, whereas its complete disruption results in early-embryonic lethality.
Second, a spalling processor is designed to detect distress attributes, thereby providing 3D visualization model of the defect.
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