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Finally it is concluded that APK polymer is the most suitable engineering polymer for use in electrical contact breakers components.
The influences of applied load on the sliding wear behaviour of polymers were studied to decide the most suitable engineering polymer for contact breakers component in the electrical industry.
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These challenges include rapid appraisals of how to distinguish from among multiple coevally formed dams that are most hazardous; suitable engineering solutions for stabilizing landslide dams; management of massive sediment pulses and their risks—in the wake of landslide-dam failures; and the paleoseismological interpretation of clusters of coeval landslide dams.
The overall results show that composites with f-MWCNT content between 0.1 w/v% and 0.5 w/v% are the most suitable for bone tissue engineering application.
Magnetic levitation systems have recently become the focus of many research interests not only because they are most suitable for high-precision engineering applications but also because of the fact that they represent a difficult challenge to control engineers.
In addition, there is a great need to identify most suitable target genes for engineering stress tolerance in crop plants like rice.
However, subtle differences in the metabolic response between animal and human hepatocytes are known to limit the performance of a tissue-engineered construct based on animal cells [29], suggesting that the most suitable cell source for hepatic engineering would clearly come from a human-derived source of hepatocytes.
In this context, software component libraries, possibly located on a local computer, on the intranet of an organization, or on the Internet, have to be searched to find the most suitable components for a particular engineering task at hand to be integrated into the engineers' computing environment.
Calcium phosphates (CaP) based materials are widely recognized as the most suitable matrix for bone tissue engineering.
Stem cells or osteogenic precursor cells isolated from bone marrow, trabecular tissues in bone, cartilage, muscle, and fat are the most suitable source for bone tissue engineering.
This paper aims at demonstrating the biocompatibility of recently developed 3D hydrogel scaffolds containing the same amount of collagen (COLL) and variable concentrations of sericin (SS) in order to find the most suitable formula for adipose tissue engineering (ATE) applications.
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