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Pathological examination of the resected specimen indicated a possibility of systemic connective tissue disease.
The results of the first specimen indicated a ductile failure with a concentration of inelastic deformation at steel web and thus exhibited desirable deformation and energy absorption capacities with minimum damages to the shear wall.
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The 're-immersed' specimen indicated an irregular intercalation of iodine stacked between hydrogen-bonded planes of nylon 6 in the complex.
Analyses of the resection specimen indicated an unfavorable prognosis for patients with low intratumoral TS expression in case of detected lymph node metastases (p = 0.04).
The multistage collapse of the 3-D printed ABS specimen indicates a potential for a novel energy absorption mechanism to be exploited at lower strain rates.
Differential scanning calorimetry measurement showed that both the critical temperature and the endothermic heat of the first reverse transformation of the deformed martensite were increased as compared to an undeformed specimen, indicating a stabilisation effect to the reoriented martensite.
The kappa abundance in samples analyzed by MS indicates overrepresentation of kappa light chains in the specimen, indicating a diagnosis of localized light amyloidosis of kappa type, alternatively a monoclonal gammopathy of kappa type with serum contamination of the specimens.
The experimental results of refurbished specimens indicated a significant amount of fatigue life after refurbishing for both grinding depths.
The similar genetic makeup of the fungal specimens indicated a single source of infection, Fisher and his colleagues report today in Current Biology.
In contrast, the damping factor comparison for these specimens indicated a reduction by an average of 12% signifying that presence of MWCNTs in PU composites reduces the dissipation capacity of the composite material.
Optical and scanning electron microscopy of selected specimens indicated a range of changes due to deep cryogenic treatment including graphite flake degradation and pearlite refinement in cast iron and low carbon steel that was previously unreported in the literature.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com