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The method was valid to 18 structures of gemini surfactants belonging to two different structural families.
Results obtained in a previous study [ 11] indicated that the method was valid for this investigation.
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Together, these validations showed that the method is valid for the quantitation of human sera samples using calibration curves in serum, as well as using calibration curves in plasma (Tandem Labs 1999, 2001a, 2001b).
First, many of the assumptions have been directly tested and shown to hold, at least sufficiently to mean that the method is valid.
It shows that the method is valid, and the 3D trajectories of bubbles can be reconstructed with high precision.
The method is valid for any values of hydraulic conductivity; there are no limitations of the contrast for the method to be valid.
The results of the method are valid for ideal and non-ideal systems of any number of components.
In addition, the method is valid for any parent distribution including the most common normal and Weibull models.
The results show that the method is valid for slabs and beams and that the conversion formulas yield good results.
The method is valid for both self-adjoint and non-self-adjoint systems, and is convenient for computer coding.
Two sets of devices with different active layer thickness are included that show that the method is valid for different active layer thicknesses.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com