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The experimental requirements for a valid combinatorial test are analyzed using three-dimensional computational fracture mechanics.
Firstly, the cases that fail the DER dispatch test are analyzed and modification of the constraint set is proposed.
The solutions after the potentiostatic test are analyzed by inductively-coupled plasma atomic emission spectrometry (ICP-AES).
The results of the MOS test are analyzed by using the two different distortion measures: MOSERROR and Segmentation based MOS (SMOS).
This study proposes a multi-junction test method for the assessment of a geogrid's junction strength, and the results of this proposed test are analyzed and compared with those of the single-junction test.
The results from the tensile test are analyzed using a rigid-plastic finite element method combined with a perfect analysis model for a simple bar to provide the deformation information.
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Responses of the test were analyzed by coding qualitatively.
Before the study in Ag-Ga nanofluid, a grid independence test is analyzed.
The problem of quasi-static face-on (transverse) indentation test is analyzed as an example.
A mesh independency test is analyzed using the General Richardson Extrapolation technique.
The results of the test were analyzed in two ways: 1.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com