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Each region of interest is assigned a probability of crack initiation as a function of fatigue cycles, based on a probabilistic strain life analysis using the predicted notch factor.
The main goal of this paper is to present the methodology on how to obtain an optimal cruciform specimen geometry, with thickness reduction in the gauge area, appropriate for fatigue crack initiation, as a function of the base material sheet thickness used to build the specimen.
Therefore we plotted the rate of initiation as a function of as t/tend, where tend is the time at which the DNA is fully replicated (ftotal = 1).
We plotted the rate of initiation as a function of t/tend, where tend is the time at which the DNA is fully replicated (ftotal = 1).
Because the absolute length of S phase was not specified in this study, we plotted the extracted rate of initiation as a function of the relative time in S phase, (t/tend), where tend is the time at which DNA is fully replicated.
Second, we construct a propensity-score modeling the probability of medication initiation as a function of measured covariates and estimated pre-treatment cholesterol value.
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It can be applied to rank bond initiation toughness as a function of processing parameters, and also used to design reliable bonds.
The effective diffusion coefficients (Deff) for each microstructure were calculated and then integrated into a critical strain model to predict crack initiation strain as a function of exposure time.
The shapes of the modeled distribution of mating initiation success as a function of MCG/FTG ratio and the respective distribution observed in the laboratory were similar with respect to the slight skeweness: the left-most MCG/FTG ratios (and the correlated F/M TTL) have higher male mating initiation success than the right-most MCG/FTG ratios.
As a consequence, the Brouwer et al. (2002) plot of actual running-initiation times as a function of velocity-ratio threshold times would look different.
We used this model to understand damage initiation and propagation as a function of the cross-link density between tropocollagen molecules.
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