Exact(1)
It will be demonstrated here that advances over the past 50 years in component design, materials, and fabrication techniques allow both of these goals to be met with a less complex design.
Similar(58)
It is demonstrated here that simple geometric- and arithmetic-mean closures are needed for simple model fluids.
It is demonstrated here that these lightweight materials have a high air flow resistivity, which depends on the density of the foam.
It has been demonstrated here that the accuracy and efficiency of the Bayesian quantification algorithm increases if damage localization is carried out a-priori.
It is demonstrated here that the local mechanical properties of carbonaceous materials with various complex microstructures and even following neutron irradiation can be successfully evaluated.
It has been demonstrated here that emission properties may be systematically tailored by control of layer thickness in ultrathin multilayered structures.
It is demonstrated here that for nanosystems such oscillations can result from the interplay of free energy landscape and structural fluctuations.
It has also been demonstrated here that it is possible to study the conduction and valence band shifts of materials by employing the powerful XPS and UV-visible spectroscopic methods together.
Although this method may have application to stationary flows, it is demonstrated here that it is misleading to apply extreme-value methods to full-scale wind-load measurements where the flow is intrinsically non-stationary.
It is demonstrated here that this phenomenon is not associated with the early onset of a necking instability, and that a large amount of the plastic strain beyond the peak stress is uniform.
It is demonstrated here that, when compared to other methodologies, the proposed method is more effective in finding multiple solutions for the history matching problem while maintaining solution diversity.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com