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c QE for different concentrations of carbon dots/g-C3N4 catalysts in a fixed mass of composite catalyst.
The optimisation model minimises the mass of composite blades with multi-criteria constraints.
The anode capacity was restricted to 900 mAhg−1 based on the mass of composite.
The catalyst composition was optimized by measuring QE for different concentrations of carbon dots in a fixed mass of composite, as shown in Fig. 8c.
The energy absorption per unit mass of composite egg-box panels made of different types of material and stacking sequences was calculated and compared with.
Design charts representing the effects of the thickness of the facings and core on the mass of composite sandwich panel for a given value of the fundamental frequency are obtained.
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There is a relationship between the mass fraction of composite powders and microwave absorption ability of coating.
At a current density of 100 mA g−1, the composite shows a stable reversible capacity of about 990 mAh g−1(Calculated on the total mass of the composite) and the capacity retention is nearly 100% after 150 cycles.
The silicon/porous nitrogen-doped carbon composite with 88% Si delivers a high reversible capacity of 1730 mAh g−1 (based on the total mass of the composite) after 100 cycles at a current density of 1000 mA g−1 with a coulombic efficiency of approximately 100%.
Or, if particles are joined together, the mass of the composite is equal to the sum of the masses of the constituent particles.
The lightweight design optimization model aims to minimize the mass of the composite laminated structures with the fundamental frequency constraint.
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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