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We demonstrated this approach on a 4-pentyl-4′-cyanobiphenyl (5CB) liquid crystal sample, achieving a resolution enhancement ranging from 30% to 60% for the resonances in the dipolar dimension.
All the carbon-doped Cu2Se samples exhibit weak temperature dependent zT higher than 1.0 over a broad temperature range from 600 to 900 K, with the 0.6 wt% Super P doped Cu2Se sample achieving a zT of 1.85 at 900 K.
Seroconversion against H5N1 virus was defined as detection of a >4-fold rise in microneutralization antibody titer between the initial serum sample and a paired second serum sample, with the second sample achieving a titer >40.
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75.0% of our sample achieved a score which was equal or less than 50.0% of the maximum achievable score (Table 1).
When the tip approach to the sample surface, the Fermi levels of the tip and the sample achieve a state of equilibrium.
Differential scanning calorimetry reveals that the latter sample achieves a conversion of 95%%, while crosslink densities for the DGEBA samples containing 5 wt % and 15 wt % are respectively 9.5 x 10-3 mol.
The G-LDH sample achieved a specific capacitance of 479.2 F g−1 at 1 A g−1 and 341.2 F g−1 at 10 A g−1, which were much higher than those of the pure LDH sample fabricated by the gas-liquid interfacial method and the LDH/graphene sample synthesized by the conventional hydrothermal method.
Students achieved an average score of 3.6 (SD 1.5) out of a maximum score of 8.0; 75.0% of our sample achieved a score of 4.0 or less (Q75 = 4.0).
Compared with the MMSE, where almost a quarter of the normative sample achieved the two highest scores (29 or 30), only 9% of the sample achieved a similar level on the extra items in the EMSE.
There was no criterion required in the training; each dog participated for a total of 5 min, during which over 95% of the sample achieved a minimum of 20 clicks and rewards.
This device, after the calibration with standard solutions, was tested in serum samples, achieving a linear range up to 12 UI/mL and a detection limit of 0.5 IU/mL.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com