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The three major clay minerals that are expedient in aiding civil engineers to predict the effect of clay to the soil engineering properties are namely kaolinite, illite and montmorillonite.
The developed model may be helpful for process engineers to predict the plant behaviors under various configurations or operating strategies.
In addition, there is a good theoretical understanding of principles, which, with the help of computers, enables engineers to predict the microstructures and properties of steel when alloying, hot-rolling, heat-treating, and cold-forming in any way.
The results in this paper should be useful for engineers to predict the details of material failures due to plastic flow localization.
Reservoir scale simulation of hydrate dynamics are important investigations, which enable engineers to predict the production potential of a methane hydrate reservoir and propose efficient production scenarios.
Path loss models are often used by radio network engineers to predict signal coverage, optimize limited network resources, and perform interference feasibility studies.
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Combining the two concepts would enable the engineer to predict the reservoir future production performance as a function of time.
A sound knowledge of the fracture properties of a powder metallurgy (PM) component is essential for a design engineer to predict or prevent sudden fracture failure.
The method allows the engineer to predict the steady-state gain between the production rate and certain other key process variables for various choices of controlled variables.
This paper provides a series of simple equations that allow the structural engineer to predict the mechanical properties across the section of roller bent wide flange steel members: proportional limit, yield stress, ultimate tensile stress, strain at ultimate tensile stress and strain at rupture.
And it is conductive to drilling engineer to predict formation pressure which can provide the basis for the casing design and the selection of the drilling fluid density.
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