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The diffraction pattern indexed to a monoclinic unit cell (omitting an impurity peak at 20.8° 2θ arising from a suspected decomposition product) and the space group was determined to be P21/ a based on a statistical assessment of systematic absences, 26) as implemented in the DASH structure solution package.
The diffraction pattern indexed to a tetragonal unit cell using the first twenty peaks with DICVOL04 and the space group was determined to be P42/ n based on a statistical assessment of systematic absences, as implemented in the DASH structure solution package.
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We show that this offers the possibility to form InAs quantum dots with a low surface density, in contrast to the most commonly formed quantum dash structures.
Highly elongated quantum dash like structures are typically favoured in this material system, due to very anisotropic migration lengths along the [1 −1 0] and [1 1 0] directions.
Open image in new window Fig. 4 Calculated transmittance T and reflectance R of the glass/ITO/CdS (solid line) and glass/SnO2/CdS (dashed line) structures considering only reflections from all interfaces.
Open image in new window Fig. 5 Transmission of the glass/ITO/CdS (solid lines) and glass/SnO2/CdS (dashed lines) structures calculated a at dCdS = 100 nm and different thickness of ITO and SnO2 F and b at dITO = dSnO = 200 nm and different thickness of the CdS layer.
On the other hand, the cutoff frequency of DLH-LDDS-CNTFET (solid line) is more than the LDDS-CNTFET (dash-dot line) in the wide range of the VGS from 0 to 0.47 V, In that event the cutoff frequency of single halo structure (dash line) is more than the LDDS-CNTFET in the VGS regions of 0 0.15 V and 0.22 0.42 V.
Below 1,300-km 1,300-kmata are insensitive to condepthvity structure (dataed line).
Solid lines: the (8,8) carbon nanotube with the Kekule structure; dashed lines: the (8,8) carbon nanotube with the structure of metallic phase.
In addition, proton magnetic resonance spectroscopy and morphological analysis of cortical neurons in HIV-infected NSG/CD34+ mice showed abnormalities in neuronal structures (Dash et al., 2011).
The core of this structure (dashed circle) formed shortly after seeding and grew in size before the two branching outgrowths formed.
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