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The porous structures form after hydrolysis of the PCL domains; we characterized them using a variety of techniques, including FT-IR spectroscopy, DSC, TGA, FE-SEM, and DEA.
In this work we prepared coatings of fluoropolymers on PDMS and we characterized them by Quartz Crystal Microbalance, Atomic Force Microscopy, and contact angle.
To determine the surface chemistry and elemental composition of the substrates, we characterized them by X-ray photoelectron spectroscopy, and the results of this study were used to explain the effect of chemistry on surface energy.
We characterized them by nuclear magnetic resonance, X-ray diffraction, electron microscopy, and/or high performance liquid chromatography, and detected them in cell lysates by liquid chromatography coupled to mass spectrometry.
We characterized them empirically and in terms of quantitative estimates of the equilibrium dissociation constant (KD).
We characterized them as follows: (i) N-terminal inconsistency: only the first ATG site was inconsistent.
Similar(46)
Do phase transitions exist in such systems, and if so how do we characterize them?
We characterize them in correspondence with the specification of the atomic model behavior.
We characterize them in terms of a new object, the resonant Wigner distribution, which describes high-frequency effects associated to the fraction of the energy of the sequence of initial data that concentrates around the set of resonant frequencies in phase-space T∗Td.
We characterize them roughly in Table 1.
We characterize them in the following section.
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