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Portable X-ray fluorescence (PXRF) spectrometry is an effective method for elemental analysis of soil, sediment, and other matrices.
Two micronebulizers, PFA-100 and Miramist, were evaluated using a method for elemental determination by Inductively Coupled Plasma Optical Emission Spectrometry (ICP OES) in lubricant and residual fuel oils diluted in xylene.
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Disposal methods for elemental Hg include landfill, incineration, stabilization/solidification, and permanent storage.
This review covers the application of multivariate designs and mathematical-statistical techniques to establish optimal conditions of the analytical methods for elemental analysis using inductively coupled plasma optical emission spectrometry (ICP OES) as a detection technique.
In the present paper, the application of other nondestructive X-ray spectroscopy methods for elemental analysis of the chromium selenospinels of the general formula M x N y CrzSe4 (where M2+ and N3+ are Zn2+, V3+, Ga3+, Cd2+, In3+, and Sb3+) is discussed.
EDX or EDS (Energy-Dispersive X-ray Spectroscopy) is an analytical method used for elemental analysis of a sample under test, in this case silver coins.
pXRF was used as a rapid, qualitative, and non-invasive method for identifying elemental composition of the surfaces of the fragments.
An analytical mass spectrometric method for the elemental analysis of nano-bioelectronic devices involved in bioengineering research was developed and applied for measurements of selected metals (Au, Ti, Pt, Cr, etc).
The methods used for elemental and bulk isotopic analyses are described by Takano et al. (2012).
A rapid method for in-situ elemental composition analysis of metal-laden water would be indispensable for studying polluted water.
A systematic computational method for obtaining accurate elemental standards efficiently for varying borehole conditions was developed based on Monte Carlo simulations, surrogate modeling, and data assimilation.
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