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To assess the effects of the RPE-g-MAH on the high-temperature stability of modified asphalt mixture, we discussed dynamic stability (DS) and rutting depth (RD) of modified asphalt mixture by studying the influences of various experimental parameters such as MAH content, DCP content, mixing temperature, wet mixing times and gradation type of mixture.
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Although we discussed only binary combinations, the GCA method can handle more complex mixtures.
We discuss molecules, mixtures and compounds.
In this paper, we discuss in depth the mixture discrepancy as the uniformity measure for symmetric two-, three- and four-level balanced designs.
Finally, we discuss some of the effects of mixtures at a molecular level.
We discuss the design of optimum graphitic microstructures for selective adsorption from gaseous mixtures.
"We discuss".
The reliability of the thermodynamic model for predicting the chromatographic separation of a binary mixture is discussed briefly.
The development, testing and modeling of a "compressor" that is capable of increasing the concentration of the 3He component of a liquid superfluid 3He 4He mixture is discussed.
The characteristics of this mixture are discussed and a viable way of improving the stability of detectors working under these conditions, namely the addition of nitrogen into the mixture, is presented.
The detailed effects of deicing solutions on the tensile strength of micro- or nano- modified asphalt mixture are discussed in this paper.
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