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The pyroelectric transition temperature of AlxGa1−xN alloy has been predicted for different x.
The fatigue limit has been predicted for different materials and a wide range of hole radii.
The fatigue hysteresis loops of unidirectional C/SiC composite have been predicted for different number of cycles.
The gasification performance inside the gasifier has been predicted for different air ratios as well as for different air and steam inlet temperatures.
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The temperature and entropy profiles are predicted for different Brinkman numbers and temperature difference across the annuli.
The optimal PTO dampings are predicted for different cases.
The bed expansion and pressure drop were predicted for different inlet gas velocities.
The resulting PSDs are predicted for different conditions where aggregation can be neglected.
Solution potential values and species concentrations are predicted for different dissolution current densities.
Furthermore, the most stable surface structures are predicted for different experimental conditions.
More than 60% reduction of fatigue life is predicted for different corrosion levels.
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