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Experiments on high-dimensional microarray datasets were performed, and the best performance was obtained with our approaches compared with well-known feature selection methods for Support Vector Machines.
The promising analytical performance was obtained with developed method.
The catalytic performance was obtained with CO hydrogenation.
The best hatchling performance was obtained with embryos incubated at 22 °C.
Initially, near intrinsic kinetic performance was obtained with powder form catalyst.
When we compared the results obtained from both systems, a better performance was obtained with GPU computing.
The best performance was obtained with a cerium conversion coating, obtained in a two-step process, here named Ce1 coating.
Respectable performance was obtained with film thicknesses of 850 nm, well above the nanodimensions typically required to trigger electrochemical activity.
The best performance was obtained with membrane composition 30% poly vinyl chloride), 67% acetophenone, 3% ionophore and 2 mL tetrahydrofuran.
Satisfactory analytical performance was obtained with limits of detection (LODs) ranging from 0.2 to 2 μg L−1 for the target analytes.
The optimal optical performance was obtained with 4 nm gold nanoparticles that were immobilized as monolayers of low density (5.7 × 1011 particles cm−2) on glass surfaces.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com