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The experimental methodology involves simple mechanical extension, spectroscopic and thermal methods (FTIR, XRD, DSC, TGA) and equilibrium swelling test to quantify relevant microstructural parameters and electrokinetic properties of this polyampholyte-polypeptide hydrogel, for a well defined range of crosslinker to gelatin mass ratios.
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An experimental methodology involving simple mechanical extension and compression and equilibrium swelling tests is developed to estimate relevant microstructural parameters and electrokinetic properties of this type of hydrogel, for different cross-linker to gelatin mass ratios.
Our methodology involves a very simple learning stage and the use of an ℓ1-minimization solver first proposed in [ 8].
While simple to implement, the methodology involves many factors, and these are discussed, explained and justified throughout the paper.
This, however, is obviously not the proper methodology for mathematics; the proper methodology involves mathematical proof, not empirical psychology.
(Its methodology involves 1,500 song streams equaling one album).
Summing up, this methodology involves, first, the estimation of Eqs.
The methodology involves a two-phase process.
The methodology involves several distinct steps.
The methodology involves a number of steps.
A simple methodology involving characterization by XRD, SEM, EDX, FTIR and ICP was designed in order to investigate the causes of the rapid degradation in a humid environment of Al/SiCp composites produced with RHA and aluminum cans.
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