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Motivated by several papers on smoothness [ 26, 28, 30, 31] in BSS models, we attempt to further improve the EM-NMF algorithm by enforcing local smoothness both in the frequency and temporal profiles of the NMF factors.
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By incorporating theoretical studies and looking at the underlying factors that favor or undermine certain governance models, we attempted to reduce the problem of overgeneralization from a limited empirical basis.
Informed by our studies suggesting that MCs augment DENV-induced vascular leakage in animal models, we attempted to block this vascular leakage using a panel of these drugs.
From the analysis of the literature and with reference to the more widely accepted theoretical models we attempted a description of the categories of impact more frequently measured, focusing on the indicators and metrics for each category.
Finally, using the random-effects meta-regression models, we attempted to predict risk levels based on study attributes, including the years in which the study was performed, as well as PM2.5 and temperature levels.
In this dynamic model, we attempt to resolve the problem of integrated family (part/machine cell) formation as well as the operators' assignment to the cells.
Fourth, by comparing the results of the single-level model and the multi level model, we attempt to make a theoretical contribution by determining the most appropriate way of modelling the effect of prenatal care on birth weight.
In this article, in addition to introducing the model, we attempt to answer the following questions: (1) To what extent the model can improve retention and prolong activity compared with much used flipped classroom approach?
Using a newly-developed microsimulation model, we attempt to distinguish between mechanisms causing heterogeneity in leprosy susceptibility.
Based on our results and inferences from niche modeling, we attempt to explain our genetic data on leopard cats through vicariance.
Given the poor results obtained with the Markov chain model, we attempt to incorporate more plausible biology, but still within the context of a non-spatial model; namely, we reexamine assumption 3. Cells in proliferating epithelia do not divide in synchronized generations, but rather, at a given time, a few widely dispersed cells will be undergoing division.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com