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The aim of this study is to compare, on the basis of sound quality ratings, three different test procedures based on paired comparison and exhibiting procedural differences.
The evaluation of the influence of these parameters and predicting this influence is a complex task and the research has proposed different test procedures and approaches.
Different test procedures are proposed which induce severe acid stratification within 48 h and lead to significantly different degrees of acid stratification.
Despite the different test procedures, and the lower quality of the MEMS transducers, it is shown that an array of low cost MEMS transducers can determine results comparable with those obtained using high performance transducers.
Their finite sample properties are investigated and compared with the different test procedures already available (J. Econometrics 44 (1991) 215; 62 (1994) 415; 85 (1998) 269) and those introduced in the first part of the paper.
We applied three different test procedures: (i) nitrogen transformation using the complex organic nitrogen source lucerne meal (OECD TG 216), (ii) nitrogen transformation using the inorganic nitrogen source (NH4 2SO4 (following OECD TG 216), and (iii) ammonium oxidation (ISO 15685).
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As the first step in the development of a new such tester, this paper presents an overview of the effects of changes in different test procedure variables on the measured failure loci and derived failure function and compares these differences with repeatability.
The CAFE figures, by contrast, are derived from different testing procedures and have various exemptions and credits built into them.
Such insights allow geotechnical practitioners to inspect the quality of information from different testing procedures (including test results and transformation models adopted to interpret them) and to identify the most informative test procedure.
The proposed BSU approach is shown to perform satisfactorily and provide insights into evolution of the statistics of geotechnical parameters as more results of different testing procedures are used.
With these tests it was possible: (i) to collect more data to improve the knowledge of the mechanical behavior of adobe; (ii) to determine correlations between results obtained with different testing procedures; and (iii) to perform a rigorous characterization of the deformations suffered by adobe under compression, by measuring deformations directly on test specimens.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com