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The improved model has been validated using characterization data obtained in outdoor conditions tests of Solar Development Unit (UDES) site for three different PV module technologies: monocrystalline, amorphous and thin film silicon.
The improved model has been used for correlation and prediction of solid liquid equilibrium (SLE) of scaling minerals (CaSO4, CaSO4·2H2O, BaSO4 and SrSO4) at temperatures up to 300 °C and pressures up to 1000 bar.
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An improved staggered model has been developed for the predictions of stiffness and strength of nylon 6/MMT nanocomposites.
An improved stagewise model has been developed to represent more accurately the physical processes occurring in a liquid liquid extraction column.
This improved global model has been compared with Te data from Dynamic Explorer-2 (DE-2) and Hinotori satellites (both from solar maximum) at altitudes of 600km and 900km.
An improved noise prediction model has been used in re-analysis of interview results previously reported.
An improved shear-lag model has been proposed for assessing the interface characteristics of carbon nanotube (CNT) reinforced polymer matrix composites (PMCs).
Since the UTAUT is general and cannot address physicians' unique characteristics, this model has been improved to better explain physicians' IT adoption behavior in a hospital setting.
Besides, the model has been improved by experiments and simulations.
After many modifications, the forecasting accuracy of Hubbert's model has been improved significantly.
Since then, Mackey's model has been improved and studied by many authors (cf. [3, 5 10]).
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