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The standard calibration curve equation was Y = 42.95X − 341.77 with high linearity in the range of 62.5 750.0 mg/L (linear relative coefficients up to 0.9999), where Y is the peak area and X is the concentration of standard TL1-1 (mg/L) (data not shown and detailed data in Additional file 1: Figure S2).
First, characteristics of the LOS motion are analyzed by a simplified linear relative motion model.
It was also noted that the linear relative permeability curve is not applicable for well-connected fractured system.
The proposed FIA results in a linear, relative metric, i.e., assessments depend on a use case and context.
The linear relative permeability model (analytical) proposed by Romm (1966) has been used in fluid flow simulation in fractured reservoirs.
Figure 3 Linear relative elongation of fluoroplastic MCNT nanocomposite material samples at different temperatures (heating rate, 10°C/min).
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Use of this symmetrized frame permits treatment of asymmetric vehicle shape, non-linear relative motion and time varying error covariance.
The model accounts for matrix diffusion, equilibrium sorption and non-linear relative transmissivity effects that influence groundwater flow within fractures as the DNAPL disappears.
The second parameter is that of a potentially higher chain entanglement for the linear systems relative to the branched analogs.
The standard curve covering the concentration range 5 160 ng/ml was linear (r2=0.9992), relative errors were within ±10% and the CV% ranged from 1.34 to 11.82.
Measurements of posterior cranial fossa (PCF) area and linear dimensions relative to hindbrain area based on T1 weighted MRI, compared to published data from cough headache patients with apparently normal MRI (CH) and asymptomatic controls.
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