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These materials' internal architecture dominates the local stress concentrations, damage initiation and damage progression.
Many of them lead to the formation of reactive oxygen species (ROS), which at high concentrations damage cellular macromolecules.
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At high concentrations, damaging agents and p53 can induce cell death rather than senescence in serum-starved cells.
Due to the strain concentration, damage of the solder around the joint interface is serious and cannot release through recovery, inducing microcracks at the corner of the solder joint.
This guarantees that the input energy will dissipate and will prevent the concentration damage in a story.
Frictional forces, however, are highly context-dependent and can also lead to stress concentration, damage, and catastrophic failure.
Wealth concentration damages economies.
High chloride concentration damages metallic pipes and structure, as well as harms growing plants.
Lower concentrations can damage engines without having an immediate effect on how well they work.
The influence of these stress concentrations in damage initiation of bonded composite lap-shear joints is also discussed.
Low He solubility, local high concentrations, radiation damage and fluid discontinuities, among other phenomena, may yield the necessary conditions for He nucleation.
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CEO of Professional Science Editing for Scientists @ prosciediting.com