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The depositional and erosional architecture of the system has been investigated in detail on the basis of SAR imagery and a set of cores using an interface corer collected repetitively from a dense group of sites.
We sequenced ends of cores using an Illumina HiSeq2500 sequencing platform to obtain 339 587 million 25-nt single-end reads for each tissue type, 66%% of which mapped to unique genomic positions, yielding 46-72-fold 46-72-fold 46-72-folde genome for eacoveragee type (Table 2), which was sufficient tofestheatentireeosome positioningenome
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In each plot, sediment samples were collected by randomly taking 5 soil cores using a sterile sampling device.
The overall objective of this study was to develop a new method of SRF identification and quantification from soil cores using a digital camera and image classification software.
We also separately prepared MNP cores using a spray pyrolysis process as shown in Figure 2d.
This algorithm exploits GPU cores using a parallelised front-based traversal method.
The formulation process coated theophylline matrix cores using a fluidized bed coater with different ethylcellulose:guar gum blends.
The experiment was performed on Ubuntu 10.04 OS with an Intel® Xeon® Processor E5310, 1.60 GHz, 4 cores, using a single core for the processing.
Figure 7 shows the resistance factor versus pressure gradient obtained using Eq. 3 for four different permeable cores using a single equimolar solution.
The flowing experiments were carried out by injecting oil into sand-packed cores using a constant infusion pump (ISCO pump), as shown in Fig. 1.
The magnetostrictive sample, ④, was mounted between the two electromagnetic cores using a custom made 3D printed ABS clamp as shown in Fig. 3.
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