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The material properties measured on micro specimen are compared to large scale standard tensile test results.
Based on the test results, the damage behavior, lateral strength, displacement ductility ratio, stiffness degradation, and energy dissipation of the specimen are compared.
The results of fatigue loading on the new specimen are compared with the results of fatigue loading in a cylindrical pressure vessel and a standard specimen.
Stresses from FEA at the crack front on different planes of the specimen are compared with those determined by the J A2 three-term solution.
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Hardness and wear resistance of different areas in thixoforged specimen were compared with conventional specimen.
Yield load and ultimate load for each specimen were compared in Fig. 8.
Consequently, the susceptibility to hydrogen embrittlement of each specimen was compared with the results for 4-h immersion.
The results of the tracer tests with this acrylic specimen were compared with those with complex pore structure fractures that had the same permeation cross section area as the 4.0-mm-diameter circular hole.
The specimen was compared to 38 specimens of modern Castor (both C. canadensis and C. fiber) as well as fossil specimens of C. fiber (Pleistocene), C. californicus (Pliocene) and the early castorids Steneofiber eseri (early Miocene).
Also, the serially cut specimens (20 slides altogether per specimen) were compared with their corresponding MR images.
Lewis phenotypes using various types of specimen were compared with the Lewis phenotype predicted from Lewis and Secretor genotypes.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com