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The security mechanism, modeled as security aspect, is composed with the primary model to obtain the security-treated model.
We analyse ICESat-1 laser altimetry observations, corrected by a firn compaction model, to obtain spatial patterns of thickness change.
The Sips isotherm model was coupled with the transport model to obtain the governing equation.
The attack aspect is composed with the primary model to obtain the misuse model.
The cases are then entered into the corresponding prediction model to obtain the final output.
It was then combined with the global finite element model to obtain residual strength predictions.
Experimental vibration tests are performed on a hydro elastic physical platform model to obtain dynamic characteristics.
A Monte Carlo simulation is then formulated for the reliability model to obtain a reference solution.
We utilize an analytical throughput model to obtain the optimal parameter settings for both mechanisms.
Only binary equilibrium thermodynamic information is used in the model to obtain local compositions.
The integral equations are solved for a Fischer-Tropsch kinetic model to obtain effectiveness factors.
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