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Ablation of metals under different ambient conditions and laser fluences, was investigated through series of experiments.
Protection of metals under different conditions in various environments remains the important issue for science and technology.
However, conventional experimental approaches used to determine forming limit diagrams (FLDs) of sheet metals under different linear strain paths are not applicable to hot stamping conditions due to the requirements of rapid heating and cooling processes prior to forming.
In this study, we conducted X-ray absorption spectroscopy on carbon-supported Pd/Au NPs to obtain information about the local atomic environment (i.e., oxidation states, coordination numbers, and bond distances) of the two metals under different treatment conditions.
Graphene oxide (GO) is a highly sorptive material for a variety of heavy metals under different ionic strength conditions over a wide pH range, making it a promising candidate for use in metal adsorption from contaminated sites or in filtration systems.
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Additionally, curves of the friction coefficients between the NMG and the sheet metal under different pressures were also obtained.
The growth and collapse of nanoscale voids are investigated for tantalum (a model body-centered cubic metal) under different stress states and strain rates by molecular dynamics (MD).
This will allow the mechanism of nucleophilic interaction with the metal centre under different local environments to be elucidated.
In these complexes, the ligands H2L1 and H2L2 can act as multidentate ligands when coordinating to the metal ions under different conditions, and three coordination modes for the tetrazolate rings have been observed in these complexes.
Six new coordination polymers, {[Zn(L 2]· DMF ·(H2O)}n (1), [Zn(L 2]n (2), [Cd2(L)4]n (3), {[Cd(L)(HL Cl]·(H2O)}n (4), {[Cd(L)(Cl)(DMF)]· DMF }n (5) and [Cd(L 2(H2O)2]n (6), where HL = 4-benzimidazole-1-yl-benzoic acid and DMF = N,N'-dimethylformamide, have been synthesized with d10 metal ions under different hydro/solvothermal conditions.
SEM pictures enabled us to characterize the graphite that coated ("with a fuzz") or covered ("with a fluff") the surface of the metal catalyst under different reduction conditions so that those characteristics could be correlated with the highest, most reliable, and stable nC+ current from the AMS.
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residuals under different
chemicals under different
metals under various
years under different
environment under different
metals under nuclear
metals under high
metals under constant
metals under Hydrogen-Assisted Fatigue
metals under biaxial
metals under mechanical
metals under operational
metals under quasi-static
metals under cathodic
metals under uniaxial
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