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Conversely, merged confocal images shows fluconazole localized extracellularly and associated with the EPS matrix, indicating that the surrounding α-glucan might be impeding intracellular access.
Fibers bend, break and separate from the matrix, indicating that fibers carry partially the applied loading.
During annealing at 900 °C, the α″ martensite band transforms into the adjacent twin rather than into the matrix, indicating that {332} twin nucleates within α″ martensite.
Fiber oriented intercellular strains were significantly larger and compressive compared to in situ strains in other regions of the extracellular matrix indicating that the mechanical environment in this region may be unique.
In contrast, the 75/25 PA/PC blends with 5/15, 10/10 and 20/0 SEBS-gMA/SEBS showed dispersed PC macrodomains and SEBS/SEBS-gMA microdomains in the PA6 matrix, indicating that these blends are totally immiscible.
In precipitates with 1 3 stacking faults there was also substantial Ag in the surrounding fcc layers of the matrix, indicating that Ag strongly segregated to the broad, planar precipitate matrix interfaces.
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Thermal conductivity of this matrix indicated that higher crystallization temperatures improve the conductivity by removing impurities and increasing crystallite size.
The depth of the nitrogen-isotope signal relative to the depth of the climate change recorded in the ice matrix indicates that, during the Younger Dryas, the summit of Greenland was 15 ± 3 °C colder than today.
The association of members of the nuclear DAPC with the nuclear matrix indicates that they may work as scaffolding proteins involved in nuclear architecture.
Transmission electron microscopy (TEM) observations of the PEGylated silica nanoparticles inside the PCL matrix indicated that a homogeneous dispersion had been achieved.
Changing of the Ca/Si ratio, the Al/Si ratio, and the crystalline phase of the AASM matrix indicated that phase transformation occurred after heat exposure at 800 °C.
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