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The objective of this paper is to present the development process of a repeated load axial permanent deformation test protocol and models using a standard South African hot-mix asphalt material.
This would allow comparing results from different cell types and models using a common systematic threshold; and (B) discriminate significant vs. non-significant relative likelihood scores.
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Year round chiller data are analyzed and modeled using a modified Gordon Ng model.
The experimental results were analyzed and modeled using a central composite design (CCD) of response surface methodology (RS M.
ELPI stage data speciated by TD/GC/MS were inverted and modeled using a log normal distribution function.
A circular and a rectangular flow cell and corresponding sensor electrodes were studied experimentally and modelled using a coupled Navier Stokes and convection diffusion model.
Data were then high-pass filtered and modeled using a boxcar regressor to estimate the hemodynamic responses for each condition (Belief, Photo; Invalid, Valid, Cue, Noise).
Location errors were log transformed and modeled using a linear mixed effects model (SAS 9.1) with individual animal as a random effects subject term and species and location quality as fixed effects.
Injury rate ratios (IRR) were calculated and modelled using a Poisson regression.
Importantly, the factorization given by eq. (1) allows complex systems to be analyzed and modeled using a limited number of local relationships as building blocks.
Rate heterogeneity at different positions in the alignment was assumed and modelled using a gamma distribution consisting of 8 categories [ 74].
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