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Chemical interactions were investigated in three selected model formulations of drug and excipients regarding the formation of ester and amide reaction products.
The three selected model additives are two phenolic antioxidants (Irganox 1076 and Irganox 1010) and the hindered amine stabiliser (HALS) Tinuvin 770.
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The three selected models provided expected values for the growth parameters and fitted data properly, as shown by the statistics analysed, even in the case of the three-phase linear model, which was the one to provide worse goodness of fit, that is, lowest r and highest RMSE values.
The model's simplicity notwithstanding, a set of six selected model parameters could not be fully identified from existing observations at one station.
The results revealed that MWCNTs/Fe3O4@PPy nanocomposite has higher extraction efficiency for five selected model analytes (4-nitrophenol, 3-nitroaniline, 2,4-dichloroaniline, 3,4-dichloroaniline and 1-amino-2-naphthol).
BLASTp was carried out against the reference sequences of five selected model organisms— Saccharomyces cerevisiae (taxid: 4932), Caenorhabditis elegans (6239), Arabidopsis thaliana (3702), Drosophila melanogaster (7227), Homo sapiens (9606) and Trypanosoma cruzi (5693) using the following parameters: word size-3; Blosum 62 substitution matrix, gap opening 11 and extension 1.
A summary of the eight selected models is presented in Table 6 using a consistent set of parameters which may vary from the original model parameters.
Kinetic study of the release behavior of 2,4-D was further elucidated by fitting the data to four selected models: zeroth [41], first [42], pseudo-second order kinetics [43] and parabolic diffusion [44].
In the following sections, we briefly discuss the five selected models: Friedlander and Johnstone (1957), Beal (1970), Cleaver and Yates (1975), Escobedo and Mansoori (1995), and Jamialahmadi et al. (2009).
Maximum likelihood trees were derived using the two selected models.
Only four out of the eight selected models were chosen by more than 10 orthologous genes.
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