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The Damköhler numbers, quantifying the ratio of chemical reaction rate to heat conduction rate for each reaction, are found to be the most important parameters of the study.
To investigate the mechanisms of their formation, two α/β hydrolases, FlsH and Lom6, which are thought to be responsible for converting intermediates in the fluostatin biosynthetic pathways to precursors for the dimerization reaction, are found instead to be acyl hydrolases of acyl FSTs.
Calculated transport rates for the volatilization of Pt in oxidizing environments and the rearrangement of this metal during the ammonia oxidation reaction are found to agree well with experimental data.
From the Scherrer equation the average crystallite size of Ag-NPs for 36, 48 and 72 h times of reaction are found to be around 3 8 nm, which are also in line with the observation of the TEM results discussed later.
A key for the abbreviations and the details of each enzymatic reaction are found in Appendix 2 and Figure 2 source data 1.
The nontoxic, copper free nature has raised this strain-promoted azide alkyne cycloaddition (SPAAC) as one of the top choices of bioorthogonal reactions, in addition to the fact that none of the reactive functionalities of this cycloaddition reaction are found in or reactive toward biological systems.
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The same reaction is found in humans.
The reaction was found to be temperature dependent.
The reaction is found to occur rapidly even at liquid air temperatures.
Indications for a slow neutral hydrolysis reaction were found.
The reaction was found to be kinetically controlled with apparent activation energy of 63.6 kJ/mol.
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