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Exact(8)
The problem arises when mechanical and strength characterization of pipe material systems is required.
Interfacial delamination, due to the presence of dissimilar material systems, is one of the primary concerns in electronic package design.
The access to defined protein-based material systems is a major challenge in bionanotechnology and regenerative medicine.
Theoretical prediction of effective properties for multiphase material systems is very important not only to analysis and optimization of material performance, but also to new material designs.
To this end, reversible buckling of slender, elastomeric beams serving as microscopic constituents of engineered material systems is shown to be effective to tune the mechanical properties.
It has been demonstrated that the morphology of imperfect material systems is well-described by an appropriate set of statistical descriptors.
Similar(52)
Several combinations of suitable material systems are considered.
δ-Doped In0.52Al0.48As/In0.53Ga0.47As/InP material systems are concentrated in this article.
Epoxy-bonded bilayer material systems are commonly used in various engineering applications.
The material systems were characterized by agarose gel electrophoresis, atomic force microscopy, and dynamic light scattering.
Heterogeneous material systems are inherently dielectric as determined by their complex morphology.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com