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Different soil solution sampling techniques (tension-lysimeter and soil centrifugation) and soil extraction with either 10 mM phosphate buffer (pH 7.2) or 50 50 (v/v) 10 mM phosphate buffer:MeOH were compared.
The explants were distributed in five batches as follows: D0, no treatment, sampling on day 0; B, no treatment, sampling on day 9; P, treatment with C. asiatica 1% solution, sampling on day 9; MG, treatment with MG, sampling on day 9; and PMG, treatment with both C. asiatica 1% solution and MG, sampling on day 9.
The rate of metal precipitation was not quantified due to difficulties (lack of a sampling gun) associated with solution sampling at high pressure.
The convergence behavior of each simulation is different due to the heuristic nature of solution sampling in Differential Evolution, and the independent arbitrary initialization at each independent run.
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Furthermore, we analyzed soil solutions sampled with piezometer, porous cups, and at the drain outlet.
However, the optimized solution value is considerably better than any of the 1 million random solutions sampled.
Aromatic concentrations were similar over the four WAF solutions sampled.
The ADR-HSA NPs solutions sampled at different time points were tested by the florescent at wavelength ~480 nm.
Nine sampling ports located downstream were used to extract aqueous solution samples.
Simply divide the moles of solute in your solution by the volume of your solution sample ( not the volume of the larger source you took your sample from).
Gel scaffold regions were filled with gel solution samples using auxiliary channels.
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