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Open image in new window Fig. 4 Experimental samplers: 700-ml liquid sample bottle (a) and 20,000-ml high-pressure gas sample cylinder (b).
The exploration on magnetic shield design shows the discrepancy of shielding performance occurs in the case of the paralleling external magnetic field to the sample cylinder.
In the friction experiments, all the pre-compacted samples were subjected to an initial slip velocity of 0.28 mm/s until ~170 mm of displacement (three rotations of the sample cylinder), during which time the friction value either increased or decreased to attain a roughly steady-state value.
The sample cylinder was dispensed and minced into small pieces with a scalpel.
At the beginning of each sample trial, the rat was placed in the pool at the same location (in the center of the south-east quadrant), facing the wall of the pool, and allowed to swim to the submerged platform under the sample cylinder.
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For the composition analysis, small sample cylinders of 2-cm diameter were placed into the synchrotron X-ray beam.
Sampling of the production separator fluids was done with 700-ml liquid sample bottles and 20,000-ml high-pressure gas sample cylinders (Fig. 4).
The mechanical properties of the modified HSC were measured by heating 150 × 300 mm sample cylinders of concrete to 400, 600 and 800 °C at a rate of 20°C/minn.
Additional file 1: Figure S2B shows that dimensions of the sample cylinders are just sufficient to ensure pervasive shear failure of the samples, so that boundary effects cannot be ruled out completely.
Pressurized gases can be sampled by means of a metal gas-sampling cylinder.
For each test trial, the platform was moved to another quadrant with the non-sample cylinder located directly above it.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com