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The dynamic variability exhibited in the experiments is explained on the basis of nonlinear flow relations in the input and output streams and its coupling.
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The results of all experiments are explained on the basis that although dislocations may act as initiating dissolution centers at very low undersaturations, these sources rapidly give way to two‐dimensional nucleation of randomly distributed dissolution sites as the undersaturation is increased.
The results observed in the experiments are explained using an S-matrix formulation based on Mindlin's theory for flexural waves.
Inherent mechanism for controversial issues in different experiments was explained.
Flocculation experiments were explained in Additional file 5: Figure S4.
This experiment is explained and interpreted using X-FEM simulations.
In this special case, so-called induction periods of constant potential preceding the quasi-linear potential rise in a galvanostatic experiment are explained by a semiconductor layer formation on the Sb electrode.
On arrival to the laboratory the experiment was explained and participants gave informed consent.
The experiment was explained by a docking study.
In "Experiment", a process of developing a handwriting application and an experiment are explained.
The irradiation experiment geometry is explained in Fig. 2.
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