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Charge trap centroid.
The charge trap centroid of TiAlO was evaluated using the constant current stress (CCS) method [24].
The charge trap centroid (X cent) was extracted by using the CCS measurement method [24], Fig. 6 (Color online) a Charge-trapping characteristics of the Au/TiAlO/SiO2/Si structure under constant current stress of 1 μA/cm2.
b A schematic diagram of the charge trap centroid (X cent) of the TiAlO film {X}_{mathrm{cent}}=frac{t_{mathrm{stack}}}{left[1-left varDelta {V}{left[1-left varDeltaght)right]}, (7)where X cent is measured from the metal gate/oxide interface and ( varDelta {V}_g^/varDeltavarDelta {V}_g^righte the negative and positive gate voltage shifts, rightctively.
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MS/MS-spectra were acquired in the linear ion trap in centroid mode.
10 data-dependent collision-induced dissociation (CID) ion trap scans (centroid mode) were automatically acquired simultaneously with one high resolution (60,000 FWHM resolution) full scan (profile mode) mass spectra.
MS/MS spectra were acquired in the positive ion mode using the linear ion trap, in centroid format, with the following parameters: isolation width 3 m/z units, normalized collision energy 40%, and default charge state 1+.
The 91 pair-wise distances were then calculated using trap locale centroids for comparison.
A Geographical Information System (GIS; ArcView 9.2; Esri, Redlands, CA) was developed for each neighborhood with the following geo-spatial layers: polygons showing house boundaries (Tax Revenue Agency, San Juan, Puerto Rico), points showing house centroids, lines representing streets, and house centroids representing trap locations.
Pair-wise distance calculations were also made based on the centroid of each individual's trap locales.
This was done for both distances between centroids and distances between mode trap locales.
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