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In this way, the reliability of the system was increased.
When the flask content turned milky, the temperature of the system was increased to 95 °C to start the distillation.
The recoveries of the analytes were between 88 and 120%, and the sample volume that could be injected into the system was increased up to 5000-fold.
The temperature of the system was increased under the flow of pure He (30 ml min−1) up to 800 °C with a ramp rate of 20 °C per min. An XRD-CT scan was collected and then the inlet gas mixture was switched to 20% H2/He (50 ml min−1).
After the 3D-XRD-CT measurement was performed at ambient conditions, the temperature of the system was increased to 800 °C (temperature ramp rate of 20 °C per min) under the flow of He (volumetric flow rate of 100 ml min−1).
Specifically, the temperature of the system was increased under the flow of He up to 800 °C (temperature ramp rate of 20 °C per min) and then the catalyst was activated under the flow of 20% H2/He (total flow rate of 100 ml min−1) to form the metallic Ni phase.
Similar(46)
The first reaction of the system was increasing the speed to 90 km/h.
Significant improvements have been achieved and COP of the system is increased from 3 to 4.8.
The attraction gets stronger as the size of the system is increased and, in the thermodynamic limit, determines the power law with which the susceptibility diverges.
However, the difference in stresses is reduced as the number of particle species in the system is increased.
The daily distillate output of the system is increased by lowering the temperature of the cover by water flowing over it.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com