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At 150 °C, with the basal poles initially parallel to the extrusion direction (ED), the sample failed during ECAP; however, it was successfully processed at the same temperature when the basal poles were perpendicular to the ED.
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Results are also compared to specimens produced using the conventional green compact design and processed at the same investigated temperatures.
The drying process was repeated at the same temperature at time intervals of 1 h until a constant weight was recorded for each of them.
A similar trend was observed in Fig. 2e, where DPPH radical scavenging activity was not affected by the solvent ratio if the extraction process was conducted at the same temperature (60 °C).
Chemical exchange/dynamic processes in the system in deuterium oxide are slower than the corresponding processes in methanol- d 4 at the same temperature (Fig. S2, ESI †), and at 25 °C in D2O, additional resonances are observed.
Compared with the T-STAR fixed-bed gas-stripping technology designed in the United States, the maximum liquid-removal efficiency of the catalyst particles in this new process is 44.9% greater at the same temperature, and the time required to realize 95% liquid-removal efficiency is decreased from 1956.5 s to 8.4 s.
The reaction material at 300.61 K is cooled down in two steps: first, the cooling process ends at point (D) which is at the same temperature as point (B); then, the second cooling process starts from point (D) and ends at point (E), which is at the same temperature as the feed material at point (A).
Compared to traditional method of catalytic decomposition of methane (CDM) reaction, where the reduction process and the decomposition of methane occurred at the same temperature (route I), the NiCuSiO2 catalysts exhibited superior catalytic performance at a reaction temperature of 750 °C using route II.
Uninjected control larvae, incubated at the same temperature and for the same durations, were processed in parallel from the same clutches.
The steam is thus a very effective medium for transferring heat as opposed to hot air at the same temperature (as seen in the baking process).
Water boils at the same temperature whether it is boiling fiercely or bubbling slowly -- the boiling process releases energy and keeps it from getting hotter.
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