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The processing time of proposed method is estimated as 15 ms for each image.
The efficiency of the proposed method is estimated by an illustrative example, and the limitation of the method is discussed.
Note that, because of the power-scaling, diffused light will eventually wash out the tweezer potential and the maximally available tweezers in our method is estimated to be =100.
The numerical efficiency of the method is estimated, showing that it is preferable to choose N between 16 and 32 in practice.
Both within-day repeatability and among-day reproducibility tests of the ID-LC/MS method showed less than 1.0% of relative standard deviation, and the measurement uncertainty by this method is estimated to be less than 1.0%.
If a transportable design would not be necessary, the precision for the O2 measurements can be improved such that the ultimate detection limit of this method is estimated to be around 3 ppm, which would correspond to distances up to 500 m for a leak of 1000 ton CO2 year−1 (32 g s−1) provided favorable atmospheric conditions (wind direction and atmospheric stability) exist.
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Another method is estimating in units of time.
The precision of the method was estimated by analysing two test set samples for six times each.
The sensibility and the robustness of the method were estimated analyzing spiked samples and some commercial hazelnut-containing creams.
The ratio of the output to the input beam that was analyzed using the beam propagation method was estimated to be 99% for 1 mm coupler length.
The accuracy of the distance measurement method was estimated to be approximately ±10 cm.
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