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The software parameters are validated by optical microscopy measurements.
The radial horn is designed using finite element analysis and the predicted modal parameters are validated using experimental modal analysis.
The structural parameters are validated for the active control model and an equivalent load coefficient method is presented for identifying the wind and wave disturbances.
The true stress strain curves based on the estimated parameters are validated in the low strain region by comparison with curves from standard tension tests.
Next, the parameters are validated using the triaxial test results with confining pressures of 35 and 50 kPa.
The resulting constitutive parameters are validated by comparing global spatial stress and strain patterns to those derived from a direct implementation of a Cosserat continuum for compressive and shear loadings of finite samples.
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The optimal estimated model parameters were validated using experimental data.
The calibrated geochemical parameters were validated using an independent dataset.
Finally, the estimated parameters were validated and the pH effect on the inhibition coefficient was evaluated.
The model with its estimated parameters is validated using test v−i characteristic data.
Temperature functions for all kinetic and inactivation parameters were validated for chitin-immobilized yeast lactase (CIL).
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