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The actual torsion or shear loads exerted by the ground to the leaf spring eye extremely high, but the experimental proving ground methods are too expensive to perform load analysis.
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Specific analyses of shear strength of the soil and ground improvement methods are necessary to stabilize the ground more economically, prior to the early stage of construction especially if it is done in a reclamated land.
Conventional ground inventory methods are time consuming (expensive) and have lower data collection potentials than remote sensing.
Satellite- and ground-based methods are complementary in many respects (Booker and Smith 1970) and ground-based ionosondes provide valuable information of vertical ionospheric structure.
Grounded theory methods are based on symbolic interactionism.
Ground-based observation methods are widely used to assess rangeland degradation in Libya.
As discussed in many literatures including [3, 4, 7], although FEMs are the most accurate methods for computing grounding grid resistance, these methods are quiet complicated and time consuming for grounding system design purpose.
Our review concludes that measurements of soil moisture using the Time Domain Reflectometry (TDR) and Ground Penetrating Radar (GPR) methods are instantaneously obtained and accurate.
Make to Learn instructional methods are grounded in Project Based Learning (PBL).
These methods are grounded in the nested implicit Runge Kutta formulas of orders 4 and 6.
Grounded theory methods were used to analyze resulting transcripts.
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