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Both quantities are interrelated by the fractional bubble coverage.
Therefore, energy balancing services are needed to manage both quantities.
Both quantities seem to depend mostly on ionic species mobility.
Both quantities (total and recent average) are maintained for each user, host and team.
In reality however, both quantities would change through the depletion time interval.
Both quantities are found to be explicit functions of the frictional angle of the material.
Both quantities are useful information for the design and discovery of new polymers.
Two simple physically motivated relations are employed, which allow the non-delayed estimation of both quantities.
Both quantities scale linearly with the concentration of the total dissolved salt (TDS) concentration in the feed solution.
Both quantities exhibited the best agreement with the calculations including high temperature electron distributions and the liquid density of state, albeit the ambient DOS could not be excluded.
A significant rise of both quantities would enhance the thermal performance and lead to an increased tritium breeding ratio.
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