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In their optimal composition, these bimetallic composites were more active than Pd- or Pt-only DENs.
The PLGA/HA composites were more hydrophilic than control group.
However, the weight losses of all cases of treated composites were low (less than 2.5%), while PS filled composites were more susceptible to white-rot fungi.
The experimental results indicated that treated composites were more resistant to decay, with strength losses significantly lower than the untreated (control) sample.
The thermal conductivity of binary molten salts was enhanced by 4.9 6.9 times after impregnation with EG. SEM photographs showed that the prepared composites were more homogeneous in comparison to other salt/EG composites prepared by infiltration or compression.
The composites were more reflective than absorptive to electromagnetic radiation.
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In other words, composites are more brittle, lacking what engineers call ductility.
One disadvantage is the initial cost, as composites are more expensive than steel.
Use of composites is more challenging, since the materials are less predictable.
The interpretation of the mechanical data for nanotube/PMMA composites was more complex.
The chips formed when machining graphitic composites are more discontinuous which led to better surface finish than non graphitic composite.
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