wxya
wxya, Total:39 items.
The international standard classification for "wxya" includes: .
The Chinese standard classification for "wxya" includes: .
Professional Standard - Nuclear Industry
- EJ/T 20161-2018 Mixed KED/XRF method for determination of uranium and plutonium in spent fuel reprocessing solution
British Standards Institution (BSI)
- PD ISO/TR 18336:2016 Guidelines for good XRF laboratory practice for the iron ore industry
- BS EN ISO 12677:2011(2014) Chemical analysis of refractory products by X - ray fluorescence (XRF) — Fused cast - bead method
- BS EN 10315:2006(2010) Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near by technique
- BS ISO 16169:2018 Preparation of silicon carbide and similar materials for analysis by ISO 12677 X-ray fluorescence (XRF). Fused cast-bead method
International Organization for Standardization (ISO)
- ISO/TR 18336:2016 Guidelines for good XRF laboratory practice for the iron ore industry
- ISO 12677:2003 Chemical analysis of refractory products by XRF - Fused cast bead method
- ISO 12677:2011 Chemical analysis of refractory products by X-ray fluorescence (XRF) - Fused cast-bead method
- ISO 16169:2018 Preparation of silicon carbide and similar materials for analysis by ISO 12677 X-ray fluorescence (XRF) - Fused cast-bead method
- ISO 17054:2010 Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near-by technique
German Institute for Standardization
- DIN 51001 Bb.1:2003 Testing of oxidic raw materials and basic materials - General bases of work for X-ray fluorescence method (XRF) - General survey on disintegration methods referred to groups of materials for the determination of test specimens for XRF
- DIN 51001 Beiblatt 1:2003-08 Testing of oxidic raw materials and basic materials - General bases of work for X-Ray fluorescence method (XRF) - General survey on disintegration methods referred to groups of materials for the determination of test specimens for XRF
- DIN EN 10315:2006 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique; German version EN 10315:2006
- DIN EN 10315:2006-10 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique; German version EN 10315:2006
- DIN EN 13723:2002-10 Petroleum products - Determination of low lead contents in gasolines - Wavelength-dispersive X-ray fluorescence spectrometry (XRF); German version EN 13723:2002
European Committee for Standardization (CEN)
- EN ISO 12677:2011 Chemical analysis of refractory products by X-ray fluorescence (XRF) - Fused cast-bead method (ISO 12677:2011)
- EN 10315:2006 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique
American Society for Testing and Materials (ASTM)
- ASTM D5381-93(2021) Standard Guide for X-Ray Fluorescence (XRF) Spectroscopy of Pigments and Extenders
- ASTM E3295-22 Standard Guide for Using Micro X-Ray Fluorescence (μ-XRF) in Forensic Polymer Examinations
- ASTM C1118-07 Standard Guide for Selecting Components for Wavelength-Dispersive X-Ray Fluorescence (XRF) Systems
- ASTM E3295-23 Standard Guide for Using Micro X-Ray Fluorescence (μ-XRF) in Forensic Polymer Examinations
- ASTM F2980-13 Standard Test Method for Analysis of Heavy Metals in Glass by Field Portable X-Ray Fluorescence (XRF)
- ASTM F2980-13(2017) Standard Test Method for Analysis of Heavy Metals in Glass by Field Portable X-Ray Fluorescence (XRF)
- ASTM RR-F40-1002 2013 F2980-Test Method for Analysis of Heavy Metals in Glass by Field Portable X-Ray Fluorescence (XRF)
- ASTM C1296-95(2007) Standard Test Method for Determination of Sulfur in Uranium Oxides and Uranyl Nitrate Solutions by X-Ray Fluorescence (XRF)
- ASTM E2926-13 Standard Test Method for Forensic Comparison of Glass Using Micro X-ray Fluorescence lpar;micro;-XRFrpar; Spectrometry
- ASTM D7085-04(2018) Standard Guide for Determination of Chemical Elements in Fluid Catalytic Cracking Catalysts by X-ray Fluorescence Spectrometry (XRF)
- ASTM C1456-08 Standard Test Method for the Determination of Uranium or Gadolinium, or Both, in Gadolinium Oxide-Uranium Oxide Pellets or by X-Ray Fluorescence (XRF)
- ASTM C1456-13(2018) Standard Test Method for Determination of Uranium or Gadolinium (or both) in Gadolinium Oxide-Uranium Oxide Pellets or by X-Ray Fluorescence (XRF)
- ASTM C1508-18 Standard Test Method for Determination of Bromine and Chlorine in UF
6 and Uranyl Nitrate by X-Ray Fluorescence (XRF) Spectroscopy - ASTM D7085-04e1 Standard Guide for Determination of Chemical Elements in Fluid Catalytic Cracking Catalysts by X-ray Fluorescence Spectrometry (XRF)
- ASTM D7085-04(2010)e1 Standard Guide for Determination of Chemical Elements in Fluid Catalytic Cracking Catalysts by X-ray Fluorescence Spectrometry (XRF)
- ASTM C1456-13 Standard Test Method for Determination of Uranium or Gadolinium (or both) in Gadolinium Oxide-Uranium Oxide Pellets or by X-Ray Fluorescence (XRF)
The American Road & Transportation Builders Association
- AASHTO T 392-2021 Standard Method of Test for Determination of Heavy Metal Content of Glass Beads Using X-Ray Fluorescence (XRF)
- AASHTO TP 106-2020 Standard Method of Test for Determination of Heavy Metal Content of Glass Beads Using X-Ray Fluorescence (XRF)
- AASHTO T 375M/T 375-2017 Standard Method of Test for Identification of Iron-Based Alloy Steel Bars for Concrete Reinforcement or Dowels by Handheld X-Ray Fluorescence (XRF) Spectrometer
Association Francaise de Normalisation
- NF B42-001-4*NF EN 725-4:2006 Advanced technical ceramics - Methods of test for ceramic powders - Part 4 : determination of oxygen content in aluminium nitride by XRF analysis.
- NF A06-377*NF EN 10315:2006 Routine method for analysis of high alloy steel by X-ray fluorescence spectrometry (XRF) by using a near by technique.
Spanish Association for Standardization (UNE)
- UNE-EN 10315:2007 Routine method for analysis of high alloy steel by X-ray Fluorescence Spectrometry (XRF) by using a near by technique
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