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The detector energy response function was found to be linear over the energy range 10 100 keV with an average rms non-linearity of 0.6%, consistent with statistics.
The analytical method was shown to be linear over the studied range of concentrations (5 100 μg/kg), exhibiting satisfactory repeatability and reaching limits of detection usually in the 0.6 4.6 μg/kg range on dry sediment basis.
Under the optimised experimental conditions, the response of a high performance liquid chromatographic system was found to be linear over the range studied and with correlation coefficients ranging between 0.9995 and 0.9999.
The analytical procedure was shown to be linear over the studied range of concentration (25 400 ng/l), exhibiting satisfactory repeatability and reaching limits of detection in the 1.3 11.2 ng/l range for all, quite different in nature, water types.
The regression proved to be linear over the entire range.
The calibration curve was found to be linear over the concentration range of 0.40 500 ng/mL.
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Under the optimum conditions the calibration graph was linear over the range 50 2000 μg L−1.
The PKs of PNU-159548 and PNU-169884 were linear over the dose range studied.
The calibration curves were linear over the working range (0.25 3.00 mg L−1).
Under optimised experimental conditions, the calibration graph was linear over the range of 0.6 200 mg L−1.
Second, the earlier study assumed that climate change was linear over the past century, which is unlikely since CO2 concentrations have had a non-linear increase.
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