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This case study is based on the TI EZ430[7] solar energy harvesting platform equipped with 2.25in × 2.25in solar panel and a 100 μ Ah Li-Ion battery.
Note the similarities between Site 1149 Factor 2 and Site 52 Factor 4 as well as Site 1149 Factor 3 and Site 52 Factor 2. Based on the TI results, the dispersed ash mass accumulation rate (MAR, g/cm2/ky) at Site 1149 can be calculated and compared to the MAR of a series of ash layer parameters.
Districts in each state were ranked into quartiles based on the TI intensity.
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A mean ESR age estimate of 1276 ± 104 ka based on the Ti-centre provides the oldest numerical age obtained for a Quaternary terrace in the Iberian Peninsula.
Multiple modification of SBA-15 in its electrostatic and geometric properties was simultaneously performed by titanium substitution in the framework of mesoporous silica, in order to fabricate versatile drug releaser based on the Ti-SBA-15 with subtle "critical state".
The results showed proper electronic conductivity for both electrocatalysts and superior electrocatalytic activity of the catalyst based on the Ti-suboxides prepared in-house compared to the commercial support.
In situ cyclic voltammetry and ac-impedance analyses showed larger voltammetric charge and double layer capacitance for the catalyst based on the Ti-suboxides prepared in-house with respect to the catalyst supported on Ebonex®.
Based on the derived Ti, the nucleating ability of electrospun fibers toward iPP followed the order PBT > PET ∼ PTT.
Mass calculations are based on the most abundant Ti isotope (Ti-isotope).
Thus, a new catalytic SERS quantitative analysis method was developed for trace titanium, based on the catalysis of Ti(IV) on the ST-BrO3− reaction as in Figure 1. Figure 1 Principle for SERS detection of Ti, based on its catalysis of KBrO 3 -ST reaction.
Using the BAgNP sol as substrate and based on the catalysis of Ti(IV) on the BrO3− oxidizing safranine T (ST) molecular probe with a strong SERS peak at 1,535 cm−1, a new catalytic SERS quantitative method was developed for the determination of 1.0 to 100 ng/mL Ti, with a detection limit of 0.4 ng/mL.
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