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The rule of mixtures was found to be applicable to predict the compression behaviors and the appropriate compacting pressures of titanium/carbamide powder mixtures.
In addition, this result can be applicable to predict the decomposition stages under clay loam based soil conditions of animal livestock.
Results of the experimental test and finite element analysis were compared with the theoretical values calculated based on the American Concrete Institute (ACI) design equation for a solid concrete wall and other empirical formulas developed by antecedent researchers which might be applicable to predict the ultimate load-bearing capacity of sandwich panels.
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Although our previous pilot result showed that changes of plasma phosphate, HB, urea, glucose and lactate levels in FHF patients were consistent with those of FHF mouse model, it is unknown whether the scoring system based on the five metabolites would be applicable to predicting the prognosis FHF seen in clinical practice.
The extended swelling prediction model is applicable to predict the swelling due to full hydration for mixtures within the full range of sand content, and is verified by the swelling tests on bentonite sand mixtures with various sand contents.
A previous study conducted by You et al. [20] shows that it is applicable to predict real-time crash with discrete ultrasonic detectors and it achieved a crash prediction accuracy of 61.9%.
Results indicate that the models are applicable to predict E∗ of asphalt mixture.
The present results are comparable to the experimental observations of Yaman et al. [4,23], indicating that the present approach is applicable to predict the effective mechanical properties of concrete in both dry and saturated states.
Their steel materials are applicable to predict ductile failures of full-scale pipes with pits, non-sharp notch-type corrosion defects and other metal losses which can be analyzed with spherical and spheroid shaped defects.
The presented method is less time consuming in comparison to the FEM and is applicable to predict the DTLs of a laminate family when the interlaminar shear strength is given.
It has been clarified from these studies that our proposed method is applicable to predict the tensile and flexural fatigue strengths for unidirectional CFRP using PAN-based carbon fiber and epoxy resin.
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