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Residual strain in metals is typically considered to be irreversible.
Twinning in body-centered cubic metals is typically attributed to glide of 1/6 < 111 > dislocations originated from material defects.
Substructure analysis on cyclically deformed metals is typically performed by time-consuming transmission electron microscopy probing, thus limiting such studies often to a single parameter.
Consequently, the restriction of template stripping to such metals is typically not an issue.
Overall, occupational exposures to metals is typically higher in terms of dose, but rarer, compared to dietary consumption at high levels from supplementation or other sources.
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Amorphous metallic fibers, based on amorphous metals, are typically thin and are believed to be highly corrosion resistant.
Most of the metals were typically found at very low total concentrations in pristine waters for this reason they often are referred to as trace metals.
However, metals are typically produced in batches rather than continuously, and it is generally more difficult to handle metals in bulk form than chemicals that flow.
Heavy metals are typically released by acidic pH.
High levels of heavy metals are typically associated with severe health effects.
Averagely, the detected trace metals are typically migrated ranging 0.6 60% (Tuzen et al. 2008).
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