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Total capacity values remained almost the same after three sorption elution regeneration cycles.
However, these capacity values do not account for technical feasibility, economic costs and social acceptability, which indicates the actual storage capacity is likely to be lower.
In the tangential and longitudinal directions, average specific heat capacity values exhibited a non-uniform trend.
The best electrode exhibited capacity values of 625 Ah kg−1 over more than 100 cycles.
This resulted in the low butane working capacity values for both activated carbons.
The adsorption capacity values of Siral 30 calculated from Freundlich and DR equation was greater than that of Pural.
These two compounds have similar heat capacity values over the experimental temperature range because of their analogous structures.
By fitting the experimental heat capacity values, the thermodynamic functions, magnetic heat capacities, and magnetic entropies have been determined.
The capacity values are calculated and presented versus rated wind speeds at different wind classes and Weibull parameters.
Finally, the capacity values were obtained in condition of different mainline design speeds and different acceleration lane lengths.
Calculation of wind power capacity values for risk assessment of power system adequacy has attracted great attention in the literature.
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