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The main objectives of this work are to evaluate strategies for tethering spin-labeled proteins to a Sepharose matrix with respect to retention of solution-like structure, dynamics, and conformational equilibria and to determine if the potential advantages of tethering for SDSL can be realized.
Therefore, the rheological behaviour and retention of polymer solutions are important in explaining important observation when these solutions are subjected to flow.
A result would be retention of U in solution, despite successful reduction of U VI) to U IV) by the bacteria.
The pronounced decrease in the Cu II) retention in solutions of pH < 5 is due to the possible protonation of carrier ligand in acid solution.
This provides several advantages, such as a low concentration of the bulk solution for deposition (i.e., 0.5 1% w/v), rapid curing of the encapsulant as opposed to extended annealing times and retention of the existing solution-state optical properties with minimal effects from annealing or other morphological changes.
The same magnitude of "n" values suggests that the retention of fluoride from the solution takes place by ionic interactions.
Multinuclear NMR studies unambiguously confirm the retention of heterometallic cluster in solution as well as the absence of ligand redistribution between the anion and cation.
Consequently, the retention of an amorphous Ag Cu solution required kinetic trapping using ultrahigh quenching rates achievable only under stringent vapor deposition conditions or in MD simulations.
Preocular retention studies revealed that the retention of cubosomes was significantly longer than that of solution and carbopol gel, with AUC0→180 min of Rh B cubosomes being 2 3-fold higher than that of the other two formulations.
The influence of the pH of test solutions on the retention of 10 μg Cu II) in 100-mL solutions was studied at a pH range of 2.0 to 8.0.
Some decline in fluoride retention was observed with increasing ionic strength of solution.
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