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All of the tested surfactants showed a sharp inflection point in the curves that enabled sensitive determination of their CMC values.
A sharp inflection is observed at the relative pressure of p/p o = 0.6 0.8 corresponding to capillary condensation within uniform mesopores.
A sharp inflection in P/P 0 range from 0.6 to 0.8 is found both in isotherms of SBA-15 and DA/SBA-15, providing further proof on the maintaining of mesoporous structure after grafting [28, 29].
First, the temperature logs exhibit a sharp inflection point at around 960 m, with a near isothermal gradient of 4.5 °C above 935 950 m and a conductive gradient of 72 75 °C below 970 980 m.
The isotherm of the mesoporous molecular sieve exhibits a sharp inflection characteristic of capillary condensation within uniform pores, where the P/P0 position of the inflection point is related to the diameter of the pore.
The sharp inflection in the capillary condensation step at which the gas uptake suddenly occurs over a narrow relative pressure ranges from 3.2 to 3.8 specifying that the MCM-41 nanoparticles have a very narrow pore size distribution.
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Typical plots of dynamic foam height versus solution surfactant concentration yield sharp inflections.
The end-points obtained from the sharp inflections in the titration curves provide definite evidence for the formation of lead ortho-3PbO·V2O5, pyro-2PbO·V2O5 and meta-PbO·V2O5 vanadates in the vicinity of pH 8.2, 6.5 and 5.6, respectively.
However, there are no sharp inflections in performance abilities corresponding to specific visual acuity.
One way to test the competitive exclusion and relict population hypotheses would be to densely sample populations along the salinity cline to test for sharp inflections (indicating competitive exclusion) or gradual transitions (indicating introgression) in allele frequencies across the ecological boundary between fresh water and slightly brackish habitats.
(iii) The TG-DSC thermogram of the perchlorato- complex (1) showed a sharp sudden inflection at 218°C with a mass loss; 94.13% via a very strong endothermic process (ΔH = 830.2 J/g); a phenomenon related to ClO4‾ complexes [16] (Table 3).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com