Exact(1)
DSC and wide-angle X-ray experiments show that the crystallizations of the PEO blocks in these two confinement environments behave differently.
Similar(59)
The melting temperature and weight percent crystallinity of the PEO crystals in the soft confinement environment are higher than those in the hard confinement environment, indicating that the PEO crystals developed in the soft confinement environment possess higher thermodynamic stability than in the hard confinement environment.
The dense nanoparticle array provides a distinct and strong confinement environment where there are incomplete confinements in three spatial directions.
Furthermore, heating the PEO crystals in the soft confinement environment can continuously increase their thermodynamic stability through a crystal thickening process, by which the soft confinement environment is partially destroyed.
The crystallization of the PE block is strictly restricted within the microphase by the rigid silica matrix and takes place through homogeneous nucleation under the nanoscale confinement environment.
This was investigated by exposing the participants for three hours to a swine-confinement environment containing dust and endotoxin levels at the lower end of the exposure range for Danish and European farms.
Exposure to microbial agents in a swine-confinement environment is associated with an increased prevalence of respiratory symptoms, including bronchial hyperresponsiveness (BHR), accelerated lung function decline, and neutrophil-mediated inflammation, 2, 4 without IgE-mediated sensitization against swine and food allergens.
In particular, we applied plasma lithography for cellular confinement of neuroblastomas, myoblasts, endothelial cells, and mammary gland epithelial cells, and examined the motion of mouse embryonic fibroblasts in directionality-confined environments for studying the effect of confinements on migratory behavior.
Studies from other isolated and confined environments, such as Antarctic stations, demonstrate the importance of plants in confinement, and how much more salient fresh food becomes psychologically, when there is little stimuli around".
Stucky et al. [18] reported that in a physically confined environment, interfacial interactions, symmetry breaking, structural frustration, and confinement-induced entropy loss could play dominant roles in determining molecular organization.
Although we observed a rapid habituation response to novel tank test in all experimental groups, the confinement into bright environments altered the intra-session habituation response.
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