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The numerical robustness is further illustrated by applying the method to highly deformed mesh elements.
Other modifications allow application of the method to highly chemically reactive metals and decrease the sample preparation time.
This paper proposes an extension of this method to highly anisotropic materials with orthotropic or higher symmetry via measurement of one or more samples, which are cut out of the material in different directions.
A novel steady-state shifting technique, which overcomes the limitation of slow molecular diffusion, has been used to extend the applicability of the potentiometric method to highly concentrated and especially supersaturated solutions.
Herein, we extend the cross-correlated relaxation method to highly crowded NMR spectra typically encountered for IDPs.
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These methods are ranged from very simple empirical methods to highly complex finite element methods.
We first derive Filon-type asymptotic methods for highly oscillatory linear systems and then extend the methods to highly oscillatory nonlinear systems.
Photocatalysis with the aid of molecular imprinted photocatalysts provide a highly selective method to remove highly toxic organic pollutants (HTOPs).
Recovery studies showed the method to be highly accurate and suitable for intended use.
They also proposed a method to get highly crystalline MWCNTs at high-density graphite electrode.
A novel method to synthesize highly crosslinked bacterial cellulose (BC) is reported.
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