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The calculated curve shows the temperature of the middle diameter of the tubes.
The nozzles have a rectangular cross section, the longitudinal axis of the accelerating section is straight, and its projection onto the plane of the nozzle is placed at a tangent to thecircle formed by the middle diameter of the turbine.
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The crystalline ZnSe nano-needles with the middle diameters of about 20 80 nm, and the lengths ranging from 100 to 600 nm can be grown densely on 300 400 °C substrates.
Quantitative image analysis software (MultiScanBase 18.03 software, Computer Scanning System II, Warsaw, Poland) was used to measure the length of the STSL, as well as its proximal and distal width, as well as the maximal depth, superior and middle transverse diameters of the SSN, as described by Polguj et al. [ 6].
The morphology of single nanoneedles prepared at a substrate temperature of 400°C is straight with the average middle diameter and length of 50 and 800 nm, respectively, as shown in Figure 2a.
It can be seen that the absorption peak of nanowires with small diameter appeared at 525 nm, the peak of the nanowires with middle diameter appeared at 551 nm and the peak of nanowires with large diameter appeared at 559 nm.
In the cases with completely ossified superior transverse scapular ligament, the following measurements were performed: proximal and distal width of the bony bridge, middle transverse and vertical diameter of the suprascapular foramen, and area of the suprascapular foramen.
With an unchanged rCBF it can be estimated that 5-ISMN caused a 10% increase in the diameter of the middle cerebral artery (MCA).
Although the Doppler technique does not allow direct measurements of the diameter of the middle cerebral artery (MCA), the relative change in diameter can be estimated from the relation: regional cerebral blood flow (rCBF) = mean velocity × cross sectional area of the artery [21, 30].
Although the Doppler technique does not allow direct measurements of the diameter of the middle cerebral artery (MCA), the relative diameter change can be estimated from the relation: regional cerebral blood flow (rCBF) = mean velocity × cross sectional area of the artery [21].
The end-tidal carbon dioxide level does not influence the mean diameter of the middle cerebral arteries [ 61].
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