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The crystallization onset temperature of the matrix rises for about 5 °C when crystallizing from the quiescent melt.
When crystallizing from the melt, the longest crystallizable propylene sequences crystallized first at any supercooling, thus controlling the segmental mobility of other segments in the distribution.
The first consideration when crystallizing an RNA is the sequence, which may be varied in a rational way to enhance crystallizability or prevent formation of alternate structures.
When crystallizing membrane proteins there are many physicochemical parameters to be considered (e.g. different buffers and pH, precipitants, salts, additives and many others).
Considering the strong tendency of pentacene to form different polymorphic phases when crystallizing in thin films, it is notable that the chosen growth parameters clearly determine one distinct polymorphic phase as the most favorable.
For this reason when crystallizing in surfo, the choice of detergent is particularly important as the shape and size of the detergent micelle play a vital role in crystal formation.
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Even with a polymer weight fraction of 0.5, these molecular compounds form lamellar crystals when crystallized from the melt.
Neptunium, for example, with a density of 20.48 grams per cubic centimetre when crystallized into the orthorhombic crystal form at 25 °C (77 °F), is one of the densest metals known.
PVDF formed β-phase crystals in the presence of organically modified clay when crystallized from its melt; in contrast, α-crystals were formed in the absence of clay and with unmodified clay.
Three types of spherulites (labeled: Type-0, 1, and 2) are possible in PNT when crystallized at wide range of crystallization temperature (Tc); however, only two of the three types can co-exist in PNT at a given Tc.
Aragonite and vaterite nanocrystals were found to coexist in regularly shaped particle of micron size when crystallized in a magnetic field, whereas calcite crystals as large as submicron in size were suggested to be crystallized in the absence of a magnetic field [[16]].
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