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For instance, at 70 °C this solution shows more stability of nanoparticle solution at high concentration.
The validation of this solution shows good results; however, the authors do not specify how the used values of the parameters (bandwidth, delay, jitter, packet loss) are obtained.
However, in the core flow experiment (Fig. 7) at 1.0 bar/m this solution shows an apparent viscosity of approximately 11 mPa s for a 4400 mD core.
This solution shows promise for a future system, but many changes would need to be made to local infrastructure to accommodate the system.
The UV-visible (UV-vis) absorption spectrum recorded from this solution shows the characteristic surface plasmon resonance band of AuNPs [12] centered at 546 nm (Figure 2).
This solution shows that attainable damping increases with the phase angle of the damper, and that improved damping efficiency thus follows from the ability of an active device to produce a force acting ahead of velocity.
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The resulting fibres of this solution showed a distribution of diameters between 0.6 and 2.8 μm.
Compared with MTR and the conventional MMSR method, this solution showed improved performance for a wide range of Gaussian mixture counts.
This solution showed a rather large reduction in cell recovery after freeze-drying.
However, this solution showed a low viability rate after freeze-drying (10% membrane integrity, see Figure 2).
This solution showed high stability, being invariant in a second factor analysis of the scores from the second occasion (the amount of explained variance was 83%).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com