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TiO2 nanoparticles were prepared by sol gel method starting from titanium tetraisopropoxide.
Tubular 0.5Li2MnO3·0.5Li4Mn5O12 has been synthesized by a facile self-templating method starting from tubular β-MnO2.
Preparation of RuOxHy/carbon black nanocomposite material was performed by the impregnation method starting from RuOxHy sol as a precursor.
The source sols of Zr and Zr Ti (with 1 1 molar ratio) were prepared by the ammonia addition method starting from ZrOCl2 and TiCl4 solutions.
The core was prepared from the thioxanthone (TX) and the polyamidoamine (PAMAM) by a divergent synthesis procedure using the reagent excess method starting from ethylenediamine (EDA).
The compounds were prepared by an original method starting from iminodiacetic acid, and assayed as inhibitors of three isozymes, hCA I, II (cytosolic), and IX (transmembrane).
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The proposed method starts from Fisher vector encoding which computes a sequence of local feature extraction, aggregation, and encoding.
This method starts from lower molecular weight compounds of a family of species and proceeds to higher molecular weight compounds.
The method starts from the modal model of the empty structure, i.e., natural frequencies, damping ratios and mode shapes.
The method starts from a general representation in the form of a temporal superstructure based on the similarity of between plug flow reactors and ideal batch reactors.
This analytic method starts from our previous single field limiting theory, extending to predict the MFFLRs's electric field and voltage distribution between multiple rings.
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