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This isn't the first time we've seen high-frequency sound used to transfer data, of course.
Here, we extend Fourier analysis to energy transfer data of another radiation type, a 14-MeV α-particle.
The present work for the first time provides systematic heat transfer data of impinging, turbulent, near- and supercritical water jets confined by a cylindrical wall.
The average heat transfer coefficient versus the Reynolds number for flow boiling of nanoemulsion fluids is shown in Fig. 10, in which the single-phase heat transfer data of pure PAO and nanoemulsion are also included for comparison purpose.
Fig. 6 Average Nusselt number versus Reynolds number (nanoemulsion and pure PAO). Figure 7 shows the comparison of heat transfer data of 8 wt% ethanol/PAO nanoemulsion with conventional heat transfer correlations for internal flow.
In this work bed height, bed size and fluidization conditions have been varied and a correlating equation: is suggested as applying over the range Comparison is made with mass transfer data of several other authors, revealing considerable variance.
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While I personally think USB 2.0 is reasonably fast way to transfer data, some of you are more impatient than I am.
It can transfer data at a rate of 11 megabits per second.
The amount of transferred data was of 633.30 Gb, the same amount used in the tests at 100 MHz and normal conditions.
In particular, we propose to transfer data of the same type to a node's near likely nodes.
Assume the collector node needs to transfer its data of size to the storage node within these seconds.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com