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In this paper the simulation is performed using the lattice Botlzmann model giving a fast and efficient numerical technique.
The results show that all four models have achieved a drastic improvement in fatigue analysis, with the MAFT model giving a slightly better performance.
This reduced structural model was integrated in the cutting process model giving a tool adapted for the purpose of simulating different control laws.
The performance of the Markov chain model was similar to the performance of the Grompertz model, giving a good basis for further modeling studies.
The experimental results were used to examine the accuracy of the established computer model, giving a derivation scale ranging from 1.1% to 6.1% which is an acceptable error level for general engineering simulation.
The release behaviour of tenofovir in simulated vaginal fluid (SVF) demonstrated high delivery efficiency of 85%99%% over 30 days and could be described effectively by a first-order kinetics model giving a mean value of 0.126 day-1 for the release constant (k1).
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The logistic model gave a correct prediction in 73%to83%3%.
The model gave a coefficient of determination (R2) of 0.87.
This model gives a process transfer function (Laplace domain).
The model gives a natural explanation of the ratio of radio-quiet to radio-loud quasars.
The model gives a good prediction of the paraffin distribution.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com