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There are three steps in the calculation of stability.
The calculation of stability domains of adsorbed hydroxyl and sulfur allows prediction of the electrocatalytic and corrosion behavior of Ag in water with sulfur species.
These results affect the calculation of stability of memorystates, yielding differences in the parameter ranges where bistability exists and producinglarge changes in the spontaneous transition times between states, which limit theirstability.
Spectral changes induced by increasing M3+ concentrations have allowed the calculation of stability constants associated with the coordination of one trivalent ion in each crown ether moiety, corresponding to the formation of 1 2 adducts (metal complex:M3+), with values of logβ21 in the range 8.2 9.5.
This suggests that if one considers the binding of GroEL with substrate protein candidates, it does so with the non-native form of the protein i.e. only one chain among two should be considered for the calculation of stability.
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Here, we present calculations of stability changes with the program FoldX, focusing on a recently published extensive data set of 145 singe-residue alanine mutants.
The method was created to allow both (1) automated hull form definitions when integrated to an existing computer system and (2) quick but detailed preliminary calculations of stability, lift and drag, volumes and internal space allocations, sea-keeping estimates, etc., all with very reasonable precision.
It is demonstrated that by considering fluctuations the observed differences in the stability behaviour of single- and polycrystals can be explained and discrepancies removed that arise at low strain rates between experimental observations and theoretical calculations of stability boundaries that are based on a linear stability analysis.
The calculation results of stability margin, current sharing temperature, temperature margin and distribution of conductor temperature are presented and discussed in this paper.
The first application is the calculation of the stability of a train in a high crosswind.
A detailed implementation is described for a pseudospectral calculation of the stability of Taylor vortices with respect to wavy vortices in the Couette-Taylor problem.
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