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The damping capacity of each wave component is obtained using the strain energy theory.
After its subtraction, a 'broad component' is obtained which represents the momentum distribution of electrons bound to molecules.
Two load representations are employed; the mean component is obtained following procedures from standards and is the same for both load models.
At higher frequency, a good agreement between simulation and experiment for the broadband noise component is obtained and a typical cardioid-like directivity is recovered.
Then the absolute molecular-weight distribution of each component is obtained from the response of a light-scattering detector in conjunction with universal calibration.
The dominant flow component is obtained with a general-purpose Computational Fluid Dynamics CFDD) code which uses a cell-centred finite volume method to solve the Reynolds-averaged Navier Stokes equations.
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The combined time schedule for each behavioral component was obtained.
Expressions for the associated frictional capacity component are obtained using the virtual work method.
The linear leak current (ILeak) component was obtained by subtracting the non-linear current from the total current.
The tumor (aberrant) component was obtained by adding aberrations to the two haplotypes.
After this, the resolved spectrum of each component was obtained by the least squares fit to the model peak.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com