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A π-mode structure (PIMS) is investigated for an application in a high duty cycle, high intensity proton Linac.
However, the assumption of the non-pressure gradient in boundary layer limits its application in a high-speed flow.
ZrO2 micro plugs isolate the openings of micro-machined cavities to produce a gas-tight seal fit for application in a high temperature environment.
This study investigates several commercial selective catalytic reduction (SCR) catalysts (A E) for application in a high-temperature (approximately 525 °C) and high-concentration (5000 ppm NO) system in combination with CO2 capture.
Further important characteristic of the tin carbon nanostructure reported here is the very high rate capability, extending up to 2 A g−1, that finally allows to its application in a high voltage, high rate lithium ion cell using the LiNi0.5Mn1.5O4 spinel cathode.
According to the self-diffusion approach of the free-volume theory in ternary systems and its application in a high-conversion polymerization system, a model of forming the graded index is established, and a quadratic refractive index (RI) distribution on the cross-section of the preform is obtained.
In this work, a laboratory study was conducted to develop and evaluate a foam-based conformance control technology for application in a high-salinity and high-temperature carbonate.
The new extraction procedure is also well suited to application in a high-throughput context.
In our hands, the chosen luciferase-based determination of tumor cell death correlated well with classical cytotoxicity tests and was suitable for application in a high-throughput format.
We have reported here the steps undertaken to develop a valid and reliable assessment tool for application in a high stakes clinical environment.
Additionally, the excess of carbon nanotubes shall ensure an advanced high rate performance of the commercial LFP particles with respect to the targeted application in a high power lithium-ion full-cell.
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