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Now in crystallography there are only thirty-two possible classes of crystallattice construction.
2
We have no real control over the arrangement of atoms in a crystallattice.
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A crystallattice covering an island, and it hums when the moon is up.
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The body makes it by growing tiny mineral crystals in a highly regular crystallattice.
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These are explained by the relative sites of the doping atoms in the crystallattice.
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The additive species can also be incorporated within the crystallattice, leading for example to enhanced mechanical properties.
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Differentiation of molecular packing and the presence of guest molecules within the crystallattice were analyzed with solid state NMR.
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The atoms in the crystallattice of the tungsten appeared on the fluorescent screen as points of light, arranged in geometric pattern.
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Furthermore, the superstructure arises from interdigitated nitrile interactions in the crystallattice, and thus has electron-beam tolerance and very high thermal stability.
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The fracture mechanism and surface stabilization of IBU were investigated by computer simulation of the molecular interactions at the crystallattice level.
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The size of the unit cell and presence of pseudo-B-centering placed strong constraints on the allowed packing of the icosahedral particle in the crystallattice.
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So it put forth its will, and myriad crystallattices reshaped themselves.
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These layers contain semiconductor materials such as aluminium, arsenic and gallium, arranged in perfect crystallattices.
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Our results suggest that rare-earth intermetallics with highly symmetric crystallattices may ubiquitously host nanometric skyrmions of exotic origins.
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Stretches of genetic code that they had hidden away, in copy after copy, information buried for ages deep within crystallattices.
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We describe here the atomic structures of apo CuBD from three crystal forms and found they have identical Cu-binding sites despite the different crystallattices.