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The classical Nambu mechanics is generalized to involve fractional derivatives using two different methods.
NRPS enzymes are capable of synthesizing many peptide derivatives using just one enzyme complex.
Recently, Lakestani et al.[25] constructed the operational matrix of fractional derivatives using B-spline functions.
Furthermore, size control, amorphization, and polymerization were achieved in preparing POSS derivatives using a superacid catalyst.
Here, we characterized a panel of new ubistatin derivatives using functional and binding assays.
QSAR studies were done for these imidazole derivatives using a combination of various physicochemical descriptors.
Here, we describe a focused screening of adenosine derivatives using X-ray crystallography.
Table 3 shows the influence of dynamic features (first and second order derivatives) using the clean corpus (BDSON).
Recently, Safaei-Ghomi et al. have synthesized a variety of structurally diverse xanthene derivatives using ZnO-nanoparticles as catalyst.
Herein, we disclose hydroamination of phenylacetylene with aniline derivatives using above high reactive catalytic system (Scheme 3).
Further, Jung et al. obtained various pigment derivatives using 20 amino acids as side chain precursors (Jung et al. 2003).
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