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New variations of factorial and mixture designs have expanded their capability.
In this study, new ECC mixture designs have been developed incorporating a type of lower-cost PVA fibers.
Two mixture designs have been applied to bioactive phosphosilicate glasses in the range 42 55% SiO2, 13.5 48% CaO, 0 35% Na2O and 0 5%P2O55 (mol%).
There are various mixture models available in the literature, and for the estimation of their parameters, many mixture designs have been proposed.
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In the whole, mixture design has been shown to be a successful and essential tool for bitumen formulation especially if the blends involve a large number of components.
A simplex centroid statistical mixture design has been used to study the effects of changing HNO3, HCl and H2O2 reagent proportions on the digestion of these samples.
Mixture design has been employed to present mathematical models for predicting first and second damping mode of new mentioned hybrid nanocomposite as function of physical factors and optimizing mentioned mechanical properties.
The quadratic polynomial model from the mixture design had a coefficient of determination (R2) of 0.9427 and the optimized mixtures were in the ratio of OFSMW BH CS = 30 0 0 and OFSMW BH CS = 15:15:0 with yields of 56.47 ml H2/g TVS and 41.16 ml H2/g TVS respectively.
Mixture design has been used to identify possible interactions between mutagens in a mixture.
Many mixture design methods have been proposed for self-compacting concrete (SCC).
A self-compacting concrete mixture, designed to have a characteristic cylindrical compressive strength (f_{ck}) equal to 50 MPa, was used to cast each specimen.
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