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The errors calculated for this study indicate the uncertainty that can exist in water quality estimation despite high resolution experimental design.
Comparisons are made against high resolution experimental data from particle image velocimetry (PIV), with special attention to the ability of the turbulence model to emulate the turbulence properties of the flow.
An understanding of the contribution of these fibers in providing resistance to crack propagation and controlling crack opening has been developed by combining fracture mechanics-based approaches with local information provided by the high resolution experimental techniques.
The absolute quality estimate of a model is expressed in terms of how well the model score agrees with the expected values from a representative set of high resolution experimental structures.
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Advances in higher resolution experimental techniques have shown that metallic materials can develop fatigue cracks under cyclic loading levels significantly below the yield stress.
With additional higher resolution experimental data, such as metabolic flux measurements [ 45, 46], these insights could be improved and expanded.
We present a high-resolution experimental setup to study solute dilution and transverse dispersion in three-dimensional porous media.
For example, during protein folding, many proteins collapse into transient kinetic intermediates on timescales too fast for high-resolution experimental techniques to detect, preventing structural characterization of these species.
However, no high-resolution experimental data has as yet been provided about how the entire T2SS secretin or its domains are organized in a cylindrical fashion.
We have carried out an extensive computer simulation of argon adsorption on graphite at temperatures in the range 40 K–100 K, using a new molecular model for graphite, and compared our simulation results with new high-resolution experimental data.
The elemental composition, chemical bonding state, phase structure, microstructure and mechanical properties of the coatings were studied by high-resolution experimental methods: SIMS, GDMS, XPS, XRD, HR-TEM and nano-indentation.
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