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Hence, the factor of safety (FS) was calculated as the soil shear ratio that is necessary to maintain the critical state equilibrium on a potential sliding surface.
The factor of safety (Fs) was calculated using the equation: F s = c ' + γl cos 2 θ − u i tan φ ' γl cos θ sin θ + k h γl cos θ (29).
Fractional shortening (FS) was calculated as [EDD-ESD]/EDD x 100.
Fractional shortening (FS) was calculated as (EDD ESD)/EDD×100.
Fractional shortening (FS) was calculated by the following equation: FS = [(EDD − ESD)/EDD × 100].
For function parameters, fractional shortening (FS) was calculated as: FS = LVIDD − LVISD/LVIDD.
Similar(36)
The response variable, namely, the factor of safety (Fs), is calculated using a 3D rigorous limit equilibrium method (3D RLEM).
Tajima's [ 30] D, Fu and Li's [ 31] F* and D*, and Fu's [ 32] Fs were calculated for haplotype data using DNASP v. 4.10 [ 33].
F was calculated by [AUC0 ∞] of the test drug divided by [AUC0 ∞] of the reference drug.
Fold change relative to vehicle (F) was calculated as the ratio between the biomarker concentration of compound treated (R1) and non-treated (R2) microtissues where F = (R1/R2) − 1.
The composition of plasmas containing Mg, O, H, and F was calculated in the temperature range up to 12000 K.
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