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The recent theoretical and experimental studies indicate that a strong size effect of strain hardening exists in small-sized metallic pillars.
Veinot et al. showed a strong size dependence of hydrosilylation efficiency for silicon nanoparticles.
For bi-layers, no such effect was present, suggesting strong size effect in light-matter interaction.
A strong size effect on the compressive stress strain curve was observed.
A pronounced hardening and a very strong size effect was observed.
The critical disclination strength demonstrates a strong size effect at all temperatures.
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The silica nanoparticles displayed strong size-oriented adaptability to the lubricating conditions.
Investigation results of Si NW optical absorption have demonstrated the strong size-dependent effects [10 12].
Particle size also affected PAHs compositions, as shown via strong size-composition within small regions.
First, coated polymer particles used for electrical conduction in ACAs have a very strong size-dependent behavior.
The apparent size-dependent nonuniform nanotube generation was due to the strong size-dependent thermodynamic behavior of ZNWs.
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