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The solution proceeds as follows.
At the end of a load increment, and before the solution proceeds to the next step, the reinforcement is checked whether it has yielded or not.
The solution proceeds in two steps: first, for the homogenous problem, a projective transformation is constructed based on a symplectic matrix and second, the effects of the external loading are taken into account by augmenting this projection.
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The search for the optimal solution proceeds in iterations.
Bulk deposition from the chloride-containing solution proceeds via a quasi layer-by-layer fashion.
The ORR in acid solution proceeds by an approximately four-electron pathway, through which molecular oxygen is directly reduced to water.
The following reaction oxidation of arsenite, (AsO3 3− in aqueous solution proceeds only in the presence of sodium hydrogen carbonate, which acts as a buffer: In acidic solution, arsenate, (AsO4 3−, is reduced to arsenite, whereas, in strongly alkaline solution, iodine is unstable, and the reverse reaction occurs.
This is obviously a linearisable equation since its solution proceeds through the solution of a linearisable equation and a linear one, in cascade.
This high concentration reaction in free aqueous solution proceeds at ∼1/10th the rate of G-C cross-linking reaction in DNA with relatively little hydrolysis to generate 1- 2-hydroxyethyl guanosine.
The ORR catalysed by Ag-Cu catalyst in alkaline solution proceeds through a four-electron pathway.
Nevertheless, the observed high current densities as compared to that in PBS suggest that glucose oxidation in alkaline solution proceeds more rapidly than in neutral solution, due to the high concentration of OH- ions which are believed to be directly involved in the reaction intermediates oxidation [6].
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CEO of Professional Science Editing for Scientists @ prosciediting.com