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An additional flux transfer function (TF) of transport of hydrogen in elastic metals was analysed.
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Metals were analysed with Unicam Atomic Absorption Spectrophotometer.
Particulate exposure levels were measured using a gravimetric method and metals were analysed by plasma emission spectrometry.
Heavy metals were analysed using Inductively Coupled Plasma Mass Spectrometry and compared with the (WHO in Guidelines for drinking water quality, 2004) standards.
The metals were analysed for each of the extracts with Atomic Absorption Spectrometer (PerkinElmer AAnalyst 200) using three standards calibration method.
The BTCs of the metals were analysed using a two-site model, and transport parameters were derived using the CXTFIT curve-fitting program.
The cation metals were analysed using the 36-element Inductively Coupling Plasma Oxygen Emission Spectrometer (ICP-OES) analytical method at ACTLABS Laboratory, Canada while the major anions were analysed at the Federal Ministry of Water Resources Laboratory, Alagbaka Akure, Nigeria using Ion Chromatography method.
Sixteen heavy metals were analysed in groundwater and the order of dominance of these heavy metals was: chromium < zinc < copper < cadmium < cobalt < iron < aluminium < nickel < titanium < zirconium < boron < silver < manganese < lead < lithium < silicon.
The distribution of lithium in V2O5/V lower oxide duplex thin films prepared by thermal oxidation of V metal was analysed by XPS and ToF-SIMS after intercalation at 2.8 V versus Li/Li+ and de-intercalation at 3.8 V following cycling between 3.8 and 2.8 V in 1 M LiClO4-PC.
Metal content was analysed by ICP-AES (inductively coupled plasma atomic emission spectrometry)/ICP-MS (inductively coupled plasma MS) and was provided as a service by the School of Chemistry at the University of Edinburgh.
An impact of the projectile with the sharp nose on the metal matrix composite plate was analysed.
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