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The triboelectric charge is evaluated by non-contact 2-D mapping of the electric potential at the surface of the samples at the end of the frictional process.
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The compensation of P o-ASA) charge was evaluated using electrochemical quartz crystal microbalance combined with cyclic voltammetry, which showed that the electroneutralization P o-ASA mainly involves charges.
The diffusion charger was evaluated with two parameters.
The charger was evaluated using two parameters: particle loss and charging characteristics which were the product of penetration (p) and average number of charges (np).
The average particle charge and wall loss of the charger were evaluated with monodispersed NaCl aerosol particles with diameters of 15 80 nm.
Each feasible toll-charge function is evaluated by a probit-based SUE (Stochastic User Equilibrium) problem with elastic demand, asymmetric link travel time functions, and continuously distributed VOT, solved by a convergent Cost Averaging (CA) method.
Also, the capacity of the harvester to charge a Lithium battery is evaluated.
Finally detector reconstruction efficiency for charged particle emission profile is evaluated using a Monte Carlo simulation considering a quasi-realistic case of a non-homogenous phantom.
The ability of acetylated dendrimers to complex with siRNA as a function of polymer/siRNA charge ratio was evaluated.
CS levels were reported as μg of hexuronic acid per mL of plasma (μgUA/mL), and CS charge density was evaluated as ratio between 4-sulfated Δ-disaccharides (ΔDi-4S) and total unsaturated disaccharides (ΔDi-4S + ΔDi-nonS).
The influences of the thermal conductivity of PCM, the steam flow rate and the diameter ratio on the charging performance were evaluated.
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