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In this work, design, fabrication and performance of the LTCC-based gas discharge chamber is presented.
In this paper a thermodynamic model of an ascending flow ripening chamber is presented.
A computation route that simulates the neutron-induced charge spectrum and pulse shape of a fission chamber is presented.
A preliminary experimental study of the influence of the HC (R600a) on rolling wear of the silicon nitride (Si3N4 /steel elements using the pressurised chamber is presented.
A diagnostic chamber is presented that permits characterization of the debris fields present, exposure of optical samples, and evaluation of debris mitigation techniques.
A detailed discussion of propagation of back-pressure waves in the air plenum chamber is presented and tube-to-tube interactions are quantitatively evaluated.
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The results from the test chamber are presented.
The temporal variations in salinity outside the chamber are presented with the wind velocity data (Fig. 8d).
Correlations between oxidizing and reducing conditions and gas species concentrations in three locations in the combustion chamber are presented.
Polarization patterns and return loss characteristics of the designed antenna that have been measured in anechoic chamber, are presented.
In addition, fundamental imaging measurements and estimates of ion recombination that were performed on a proof-of-principle test chamber are presented.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com