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The interactions of the tunnel support systems with the rock mass were analyzed through finite element analysis.
By comparison of the calculated and measured data of pore water pressure and displacement, the deformation behaviors of the rock mass were analyzed.
Their bone density and soft tissue body composition and anthropometric parameters (skinfolds, girths, limb lengths, bone breadths, height, and body mass) were analyzed, and their body composition was assessed by underwater weighing (UWW).
Total and free cholesterol mass were analyzed by gas chromatography and determined cholesteryl ester mass by substraction of free cholesterol from total cholesterol.
The trophectoderm and inner cell mass were analyzed separately.
Body weight, fat mass and fat-free mass were analyzed by repeated measures two-way ANOVA.
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Body composition (fat and lean mass) was analyzed using a magnetic resonance whole-body composition analyzer (EchoMRI, Houston, TX).
The impulse response of a ring-stiffened cylindrical shell, with an attached concentrated mass, is analyzed.
The particle motion and the mixing are monitored through image analysis and the discharged particle mass is analyzed.
The static deformation and resonance frequencies of these surface-enhanced sensors with the simultaneous effects of the eigenstrain, the surface stress and the adsorption mass are analyzed.
The pressure-relief principle of the underlying coal-rock mass was analyzed while varying the mining height of the upper protective seam.
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