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Maximum Entropy Method (MEM) is one of powerful tools for material science.
Applicable LPDs and typical length scales are then calculated by the maximum entropy method.
We analyzed simulated data using discrete choice, logistic-regression, and a maximum entropy method (Maxent).
The Soft Computing uses many disciplines as Bayesian inference and maximum entropy method.
In this paper, a novel bootstrap maximum entropy method (BMEM) is proposed, which combines the advantages of bootstrap method (BM) and maximum entropy method (MEM).
In terms of stability, QMOM and EQMOM performed far better than the Maximum Entropy method.
In addition, applying the maximum entropy method technique, bubble size probability density functions are also calculated.
fast Fourier transformation (FFT); maximum entropy method (MEM) and Lomb Scargle periodogram analysis method.
Using combined analyses of Rietveld refinement, maximum entropy method (MEM) and molecular dynamics (MD) simulations, we investigate the distribution of CO molecules in sII cages and their interaction with, and stabilization in, the host water framework.
We propose a minor modification of their maximum entropy method that significantly improves the quality of the estimate.
This work presents a new methodology, based on the maximum entropy method, to obtain bubble characteristics in fluidized beds.
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