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The endmembers of the (Ba,Sr SO4 solid-solution series, barite (BaSO4) and celestine (SrSO4) are isostructural and crystallize in a barite type crystal structure, space group Pbnm (Jacobsen et al. 1998).
The exclusion of the BA units from the crystalline phase of the PHA type crystal was enhanced by elevating the crystallization temperature (Tc), depending on the content of comonomer units.
The inclusion of the BA units into the PHA type crystal was highly preferred in the isothermal crystallization at 25 °C.
In conclusion, the all-trans conformation of the BA units can also play a critical role in the isomorphic crystallization of the P HA-co-BA)s forming the P HA-co-BArystal.
(D) Superimposed wild type crystal structure (grey) with the G118V model (cyan) showing the conformational changes in the region.
X-ray diffraction was processed to a 4.0 Å resolution (first type crystal) and a 3.8 Å resolution (second type crystal).
Similar(32)
Structure characterization results showed that the films crystallize in a TiC B1 NaCl-type crystal structure in the carB1 NaCl-type
The X-ray result suggested that cold-crystallization at higher than 200°C (200∼250°C) produced only α-type crystal (or majority).
These weren't jewel stones, it's important to point out, nor your Waterford-type crystal, but proteins such as blood, dried out into crystallised form.
We have also restricted our attention to Taylor-type crystal plasticity models.
These conformations remained unchanged during immersion-precipitation to yield the α- and γ-type crystal structures.
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