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Because the spatial extent of this region is very similar to the classically determined critical nucleus dimensions extracted from nucleation rate data, it is concluded that critical nuclei of Al3Sc are most likely of nonclassical design at high undercooling.
Further, we characterize two migration dynamics: a stepwise way, characterized by fluctuations in cell length, within channels smaller than nucleus dimensions and a smooth sliding (i.e., maintaining constant cell length) behavior within channels larger than the nuclear cluster.
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To allow for an easy extension of this simple double-tuned coil design to other frequencies (nuclei) and dimensions, we describe in detail the practical aspects of the workbench design and MRI testing using a phantom that mimics in vivo conditions.
Reported to the nucleus and cellular dimensions, the range of photoelectrons emitted by iodine atoms placed inside the DNA is then less critical for the highest energies studied.
The reduction in chromocenter number in crwn1 crwn2 and crwn4 mutants with smaller nuclei could reflect the aggregation of individual chromocenters in the limited confines of these nuclei, but a similar clustering does not occur in small wild-type nuclei, arguing that small nuclear dimensions alone are insufficient to cause clustering.
Surface energy requirements show that, at any degree of supersaturation, nuclei of certain dimensions are stable and can represent sites for further growth, as shown in Figure 3C.
The cells were typically only ∼1 µm thick (except at the nucleus), while the lateral dimensions were ∼20 µm.
A series of simulations of the growth of polycrystalline, faceted films from randomly oriented nuclei in two spatial dimensions was performed.
In both models, new grains will grow when the size of an initial grain nucleus exceeds the critical dimension N c which is expressed as [34 36]: Nc=frac{bs{in}^2}{{left zeeta right)}^2} (1).
Nuclei numbers and conidia dimensions of this species are thus within the description of E. planchoniana [ 24].
Therefore, relatively thick and stained histological 2D sections, as well as 3D projections of the nucleus into the second dimension in cytological smears, both with fractal properties, represent well the 3D optical organization [80].
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