ZH

RU

ES

Energetic Particle Spectroscopy

Energetic Particle Spectroscopy, Total:273 items.

In the international standard classification, Energetic Particle Spectroscopy involves: Particle size analysis. Sieving, Water quality, Geology. Meteorology. Hydrology, Radiation measurements, Analytical chemistry, Non-ferrous metals, Nuclear energy engineering, Metrology and measurement in general, Optics and optical measurements, Non-destructive testing, Electronic components in general, Air quality, Test conditions and procedures in general, Information technology (IT) in general, Linear and angular measurements, Products of the chemical industry, Optical equipment, Milk and milk products, Vocabularies, Electricity. Magnetism. Electrical and magnetic measurements, Lubricants, industrial oils and related products, Ferroalloys, Non-metalliferous minerals, Fuels, Food products in general, Testing of metals, Ceramics, Ventilators. Fans. Air-conditioners, Plastics, General methods of tests and analysis for food products, Pulps, Thermodynamics and temperature measurements, Corrosion of metals, Ferrous metals, Fruits. Vegetables, Electrical and electronic testing, Iron and steel products, Meat, meat products and other animal produce, Cellular materials, Rubber and plastics products.


Japanese Industrial Standards Committee (JISC), Energetic Particle Spectroscopy

  • JIS Z 8826:2005 Particle size analysis -- Photon correlation spectroscopy
  • JIS K 0167:2011 Surface chemical analysis -- Auger electron spectroscopy and X-ray photoelectron spectroscopy -- Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • JIS K 0166:2011 Surface chemical analysis -- High-resolution Auger electron spectrometers -- Calibration of energy scales for elemental and chemical-state analysis

International Organization for Standardization (ISO), Energetic Particle Spectroscopy

  • ISO 13321:1996 Particle size analysis - Photon correlation spectroscopy
  • ISO 21501-1:2009 Determination of particle size distribution - Single particle light interaction methods - Part 1: Light scattering aerosol spectrometer
  • ISO 16129:2012 Surface chemical analysis - X-ray photoelectron spectroscopy - Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer
  • ISO 16129:2018 Surface chemical analysis — X-ray photoelectron spectroscopy — Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer
  • ISO 19830:2015 Surface chemical analysis - Electron spectroscopies - Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • ISO 21270:2004 Surface chemical analysis - X-ray photoelectron and Auger electron spectrometers - Linearity of intensity scale
  • ISO 9855:1993 Ambient air; determination of the particulate lead content of aerosols collected on filters; atomic absorption spectrometric method
  • ISO 11174:1996 Workplace air - Determination of particulate cadmium and cadmium compounds - Flame and electrothermal atomic absorption spectrometric method
  • ISO 8518:2001 Workplace air - Determination of particulate lead and lead compounds - Flame or electrothermal atomic absorption spectrometric method
  • ISO/TR 23173:2021 Surface chemical analysis - Electron spectroscopies - Measurement of the thickness and composition of nanoparticle coatings
  • ISO 10810:2019 Surface chemical analysis — X-ray photoelectron spectroscopy — Guidelines for analysis
  • ISO 14135-2:2014 Optics and photonics - Specifications for telescopic sights - Part 2: High-performance instruments
  • ISO 16014-4:2003 Plastics - Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography - Part 4: High-temperature method
  • ISO 16014-4:2012 Plastics - Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography - Part 4: High-temperature method
  • ISO 10810:2010 Surface chemical analysis - X-ray photoelectron spectroscopy - Guidelines for analysis
  • ISO 14135-2:2017 Optics and photonics — Specifications for telescopic sights — Part 2: High-performance instruments
  • ISO 14135-2:2021 Optics and photonics — Specifications for telescopic sights — Part 2: High-performance instruments
  • ISO 15470:2017 Surface chemical analysis - X-ray photoelectron spectroscopy - Description of selected instrumental performance parameters
  • ISO 17109:2022 Surface chemical analysis — Depth profiling — Method for sputter rate determination in X-ray photoelectron spectroscopy, Auger electron spectroscopy and secondary-ion mass spectrometry sputter depth p
  • ISO/TS 19620:2018 Water quality - Determination of arsenic(III) and arsenic(V) species - Method using high performance liquid chromatography (HPLC) with detection by inductively coupled plasma mass spectrometry (ICP-MS) or hydride generation atomic fluorescence spectrometr
  • ISO 22309:2006 Microbeam analysis - Quantitative analysis using energy-dispersive spectrometry (EDS)
  • ISO/CD TR 18392:2023 Surface chemical analysis — X-ray photoelectron spectroscopy — Procedures for determining backgrounds
  • ISO 9233:1991 Cheese and cheese rind; determination of natamycin content; method by molecular absorption spectrometry and by high-performance liquid chromatography
  • ISO 8518:1990 Workplace air; determination of particulate lead and lead compounds; flame atomic absorption spectrometric method
  • ISO 8518:2022 Workplace air — Determination of particulate lead and lead compounds — Flame and electrothermal atomic absorption spectrometric methods
  • ISO 17974:2002 Surface chemical analysis - High-resolution Auger electron spectrometers - Calibration of energy scales for elemental and chemical-state analysis
  • ISO 20903:2019 Surface chemical analysis — Auger electron spectroscopy and X-ray photoelectron spectroscopy — Methods used to determine peak intensities and information required when reporting results
  • ISO 15202-1:2012 Workplace air - Determination of metals and metalloids in airborne particulate matter by inductively coupled plasma atomic emission spectrometry - Part 1: Sampling
  • ISO 15202-1:2000 Workplace air - Determination of metals and metalloids in airborne particulate matter by inductively coupled plasma atomic emission spectrometry - Part 1: Sampling
  • ISO 11041:1996 Workplace air - Determination of particulate arsenic and arsenic compounds and arsenic trioxide vapour - Method by hydride generation and atomic absorption spectrometry
  • ISO 16014-3:2003 Plastics - Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography - Part 3: Low-temperature method
  • ISO 16014-3:2012 Plastics - Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography - Part 3: Low-temperature method
  • ISO 14701:2018 Surface chemical analysis — X-ray photoelectron spectroscopy — Measurement of silicon oxide thickness
  • ISO/PRF 11174 Workplace air — Determination of particulate cadmium and cadmium compounds — Flame and electrothermal atomic absorption spectrometric method
  • ISO 16740:2005 Workplace air - Determination of hexavalent chromium in airborne particulate matter - Method by ion chromatography and spectrophotometric measurement using diphenyl carbazide
  • ISO/DIS 18118:2023 Surface chemical analysis — Auger electron spectroscopy and X-ray photoelectron spectroscopy — Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • ISO/FDIS 18118:2023 Surface chemical analysis — Auger electron spectroscopy and X-ray photoelectron spectroscopy — Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • ISO 17109:2015 Surface chemical analysis - Depth profiling - Method for sputter rate determination in X-ray photoelectron spectroscopy, Auger electron spectroscopy and secondary-ion mass spectrometry sputter depth profiling using single and multi-layer thin films
  • ISO/TS 23366:2023 Nanotechnologies — Performance evaluation requirements for quantifying biomolecules using fluorescent nanoparticles in immunohistochemistry
  • ISO 16531:2013 Surface chemical analysis - Depth profiling - Methods for ion beam alignment and the associated measurement of current or current density for depth profiling in AES and XPS
  • ISO 11884-2:2007 Optics and photonics - Minimum requirements for stereomicroscopes - Part 2: High performance microscopes
  • ISO 11174:2023 Workplace air — Determination of particulate cadmium and cadmium compounds — Flame and electrothermal atomic absorption spectrometric method
  • ISO 14701:2011 Surface chemical analysis - X-ray photoelectron spectroscopy - Measurement of silicon oxide thickness
  • ISO 13424:2013 Surface chemical analysis — X-ray photoelectron spectroscopy — Reporting of results of thin-film analysis
  • ISO/TR 19319:2003 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Determination of lateral resolution, analysis area, and sample area viewed by the analyser

Standard Association of Australia (SAA), Energetic Particle Spectroscopy

  • AS 4549.1:1999 Particle size analysis - Photon correlation spectroscopy
  • AS 2134.1:1999 Recommended practice for chemical analysis by atomic absorption spectrometry - Flame atomic absorption spectrometry
  • AS ISO 15472:2006 Surface chemical analysis - X-ray photoelectron spectrometers - Calibration of energy scales
  • AS/NZS 3580.9.15:2014
  • AS 2800:1985 Ambient air - Determination of particulate lead - High volume sampler gravimetric collection - Flame atomic absorption spectrometric method
  • AS ISO 15470:2006 Surface chemical analysis - X-ray photoelectron spectroscopy - Description of selected instrumental performance parameters
  • AS ISO 19319:2006 Surface chemical analysis - Augur electron spectroscopy and X-ray photoelectron spectroscopy - Determination of lateral resolution, analysis area and sample area viewed by the analyser

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Energetic Particle Spectroscopy

  • GB/T 19627-2005 Particle size analysis-Photon correlation spectroscopy
  • GB/T 32266-2015 Method of performance testing for atomic fluorescence spectrometer
  • GB/T 25184-2010 Verification method for X-ray photoelectron spectrometers
  • GB/T 28632-2012 Surface chemical analysis.Auger electron spectroscopy and X-ray photoelectron spectroscopy.Determination of lateral resolution
  • GB/T 19500-2004 General rules for X-ray photoelectron spectroscopic analysis method
  • GB/T 21006-2007 Surface chemical analysis.X-ray photoelectron and Auger electron spectrometers.Linearity of intensity scale
  • GB/T 10725-1989 Chemical reagent--General rules for industively coupled plasma atomic emission spectrometry
  • GB/T 31470-2015 Standard practice for determination of the specimen area contributing to the detected signal in Auger electron spectrometers and some X-ray photoelectron spectrometers
  • GB/T 7731.2-2007 Ferrotungsten-Determination of manganese content-The periodate spectrophotometric method and the flame atomic absorption spectrometric method
  • GB/T 30704-2014 Surface chemical analysis.X-ray photoelectron spectroscopy.Guidelines for analysis
  • GB/T 22571-2008 Surface chemical analysis.X-ray photoelectron spectrometers.Calibration of energy scales
  • GB/T 8704.9-2009 Ferrovanadium.Determination of manganese content.The potassium periodate oxidation photometric method and flame atomic absorption spectrometric method
  • GB/T 23364.1-2009 Methods for chemical analysis of high purity indium oxide.Part 1:Determination of arsenic content.Atomic fluorescence spectrometry
  • GB/T 23364.3-2009 Methods for chemical analysis of high purity indium oxide.Part 3:Determination of antimony content.Atomic fluorescenece spectrometry
  • GB/T 28893-2012 Surface chemical analysis.Auger electron spectroscopy and X-ray photoelectron spectroscopy.Methods used to determine peak intensities and information required when reporting results
  • GB/T 28892-2012 Surface chemical analysis.X-ray photoelectron spectroscopy.Description of seleted instrumental performance parameters
  • GB/T 23362.1-2009 Methods for chemical analysis of high purity indium hydroxide.Part 1:Determination of arsenic content.Atomic fluorescence spectrometry
  • GB/T 23362.3-2009 Methods for chemical analysis of high purity indium hydroxide.Part 3:Determination of antimony content.Atomic fluorescene spectrometry
  • GB/Z 32490-2016 Procedure for determination of background by X-ray photoelectron spectroscopy for surface chemical analysis
  • GB/T 8704.9-1994 Methods for chemical analysis of ferrovanadium. The potassium periodate oxidation photometric method and flame atomic absorption spectrometric method for determination of manganese content
  • GB/T 29556-2013 Surface chemical analysis.Auger electron spectroscopy and X-ray photoelectron spectroscopy.Determination of lateral resolution,analysis area,and sample area viewed by the analyser
  • GB/T 13293.10-1991 Higher purity copper cathode.Determination of zinc content.Flame atomic absorption spectrometric method
  • GB/T 31472-2015 Standard guide to charge control and charge referencing techniques in X-ray photoelectron spectroscopy
  • GB/T 13293.2-1991 Higher purity copper cathode.Determination of bismuth content.Hydride generation-atomic fluorescence spectrometric method
  • GB/T 30702-2014 Surface chemical analysis.Auger electron spectroscopy and X-ray photoelectron spectroscopy.Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials

German Institute for Standardization, Energetic Particle Spectroscopy

  • DIN ISO 13321:2004 Particle size analysis - Photon correlation spectroscopy (ISO 13321:1996)
  • DIN ISO 16129:2020-11 Surface chemical analysis - X-ray photoelectron spectroscopy - Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer (ISO 16129:2018); Text in English
  • DIN ISO 16129:2020 Surface chemical analysis - X-ray photoelectron spectroscopy - Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer (ISO 16129:2018); Text in English
  • DIN ISO 15472:2020-05 Surface chemical analysis - X-ray photoelectron spectrometers - Calibration of energy scales (ISO 15472:2010); Text in English
  • DIN ISO 15472:2020 Surface chemical analysis - X-ray photoelectron spectrometers - Calibration of energy scales (ISO 15472:2010); Text in English
  • DIN 6800-2:2020-08 Procedures of dosimetry with probe-type detectors for photon and electron radiation - Part 2: Ionization chamber dosimetry of high energy photon and electron radiation

Association Francaise de Normalisation, Energetic Particle Spectroscopy

  • NF X11-672:1996 Particle size analysis. Photon correlation spectroscopy.
  • FD ISO 8518:2002 Air des lieux de travail - Dosage du plomb particulaire et des composés particulaires du plomb - Méthode par spectrométrie d'absorption atomique dans la flamme ou méthode par spectrométrie d'absorption avec atomisation électrothermique
  • NF ISO 23166:2019 Alliages de nickel - Détermination du tantale - Méthode par spectrométrie d'émission optique avec source à plasma induit par haute fréquence
  • NF V04-280:1991 Cheese and cheese rind. Determination of natamycin content. Method by molecular absorption spectrometry and by high performance liquid chromatography.
  • NF X43-026:1990 Air quality. Ambient air. Determination of lead in airborne particulate. Atomic absorption spectrometry.
  • NF EN 15605:2010 Cuivre et alliages de cuivre - Analyse par spectrométrie d'émission optique avec source à plasma induit par haute fréquence
  • NF T70-357:2007 Energetic materials for defence - Physico-chemical analysis and properties - Determination of metallic elements by atomic absorption spectrophotometry
  • NF EN ISO 26845:2008 Analyse chimique des matériaux réfractaires - Exigences générales pour les méthodes d'analyse chimique par voie humide, par spectrométrie d'absorption atomique (AAS) et par spectrométrie d'émission atomique avec plasma induit par haute fréq...
  • NF X21-071:2011 Surface Chemical Analysis - X-ray photoelectron Spectroscopy - Guidelines for analysis.
  • FD X43-102*FD ISO 8518:2002 Workplace air - Determination of particulate lead and lead compounds - Flame or electrothermal atomic absorption spectrometric method
  • NF EN 15111:2007 Produits alimentaires - Dosage des éléments traces - Dosage de l'iode par spectrométrie d'émission avec plasma induit par haute fréquence et spectromètre de masse (ICP-SM)
  • NF M07-081:1994 Liquid petroleum products. Determination of high lead concentrations in fuels. Method by atomic absorption spectrometry.
  • NF ISO 16740:2005 Air des lieux de travail - Détermination du chrome hexavalent dans les particules en suspension dans l'air - Méthode par chromatographie ionique et détection spectrophotométrique avec diphényl carbazide
  • NF X43-204*NF ISO 16740:2005 Workplace air - Determination of hexavalent chromium in airborne particulate matter - Method by ion chromatography and spectrophotometric measurement using diphenyl carbazide
  • NF X21-058:2006 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Methods used to determine peak intensities and information required when reporting results.
  • NF EN ISO 11885:2009 Qualité de l'eau - Dosage d'éléments choisis par spectroscopie d'émission optique avec plasma induit par haute fréquence (ICP-OES)

American Society for Testing and Materials (ASTM), Energetic Particle Spectroscopy

  • ASTM D3084-20 Standard Practice for Alpha-Particle Spectrometry of Water
  • ASTM D3084-96 Standard Practice for Alpha-Particle Spectrometry of Water
  • ASTM D3084-05(2012) Standard Practice for Alpha-Particle Spectrometry of Water
  • ASTM E995-16 Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-Ray Photoelectron Spectroscopy
  • ASTM E996-04 Standard Practice for Reporting Data in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E996-10 Standard Practice for Reporting Data in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E996-10(2018) Standard Practice for Reporting Data in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E996-19 Standard Practice for Reporting Data in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E996-94(1999) Standard Practice for Reporting Data in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E2490-08 Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Photon Correlation Spectroscopy (PCS)
  • ASTM E2490-09(2021) Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Photon Correlation Spectroscopy (PCS)
  • ASTM E995-11 Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-Ray Photoelectron Spectroscopy
  • ASTM E2108-16 Standard Practice for Calibration of the Electron Binding-Energy Scale of an X-Ray Photoelectron Spectrometer
  • ASTM D7417-17 Standard Test Method for Analysis of In-Service Lubricants Using Particular Four-Part Integrated Tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity, and Laser Particle Counter)
  • ASTM E2209-02(2006)e1 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E2209-02 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E2209-02(2006)e2 Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM F1471-93(2001) Standard Test Method for Air Cleaning Performance of a High-Efficiency Particulate Air- Filter System
  • ASTM E2490-09 Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Photon Correlation Spectroscopy (PCS)
  • ASTM E2490-09(2015) Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Photon Correlation Spectroscopy (PCS)
  • ASTM E2994-21 Standard Test Method for Analysis of Titanium and Titanium Alloys by Spark Atomic Emission Spectrometry and Glow Discharge Atomic Emission Spectrometry (Performance-Based Method)
  • ASTM E220-86(1996)e1 Standard Test Method for Calibration of Thermocouples By Comparison Techniques
  • ASTM E2209-02(2006) Standard Test Method for Analysis of High Manganese Steel Using Atomic Emission Spectrometry
  • ASTM E2209-21 Standard Test Method for Analysis of High Manganese Steel by Spark Atomic Emission Spectrometry
  • ASTM E2209-22 Standard Test Method for Analysis of High Manganese Steel by Spark Atomic Emission Spectrometry
  • ASTM D5296-05 Standard Test Method for Molecular Weight Averages and Molecular Weight Distribution of Polystyrene by High Performance Size-Exclusion Chromatography
  • ASTM E1217-11(2019) Standard Practice for Determination of the Specimen Area Contributing to the Detected Signal in Auger Electron Spectrometers and Some X-Ray Photoelectron Spectrometers
  • ASTM E2994-16 Standard Test Method for Analysis of Titanium and Titanium Alloys by Spark Atomic Emission Spectrometry and Glow Discharge Atomic Emission Spectrometry (Performance-Based Method)
  • ASTM E2209-13 Standard Test Method for Analysis of High Manganese Steel by Spark Atomic Emission Spectrometry
  • ASTM E2735-14(2020) Standard Guide for Selection of Calibrations Needed for X-ray Photoelectron Spectroscopy (XPS) Experiments
  • ASTM E902-94(1999) Standard Practice for Checking the Operating Characteristics of X-Ray Photoelectron Spectrometers
  • ASTM D7614-20 Standard Test Method for Determination of Total Suspended Particulate (TSP) Hexavalent Chromium in Ambient Air Analyzed by Ion Chromatography (IC) and Spectrophotometric Measurements
  • ASTM E1741-00 Standard Practice for Preparation of Airborne Particulate Lead Samples Collected During Abatement and Construction Activities for Subsequent Analysis by Atomic Spectrometry
  • ASTM D7417-10 Standard Test Method for Analysis of In-Service Lubricants Using Particular Four-Part Integrated Tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity, and Laser Particle Counter)

中国气象局, Energetic Particle Spectroscopy

  • QX/T 546-2020 Terminology for space high-energy particle radiation effects

RU-GOST R, Energetic Particle Spectroscopy

  • GOST R 25645.165-2001 Solar energetic particles. Probabilistic model for proton fluxes
  • GOST 27981.1-1988 Copper of high purity. Methods of atomic-spectral analysis
  • GOST 27981.1-2015 High purity copper. Method of atomic-spectral analysis
  • GOST R 51056-1997 Alloyed and high-alloyed steel. Atomic emission spectrometry method of determination of tungsten and molibdenum
  • GOST R 50517-1993 Polymer membranes. The method of determination of weight fraction of latex particles not permeated through microfiltration membranes

Korean Agency for Technology and Standards (KATS), Energetic Particle Spectroscopy

  • KS D 2518-2005 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D 2518-1982 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D ISO 21270:2005 Surface chemical analysis-X-ray photoelectron and Auger electron spectrometers-Linearity of intensity scale
  • KS D ISO 21270-2005(2020) Surface chemical analysis-X-ray photoelectron and Auger electron spectrometers-Linearity of intensity scale
  • KS I ISO 9855:2005 Ambient air-Determination of the particulate lead content of aerosols collected on filters(Atomic absorption spectrometric method)
  • KS I ISO 11174:2008 Workplace air-Determination of particulate cadmium and cadmium compounds-Flame and electrothermal atomic absorption spectromet method
  • KS I ISO 8518:2006 Workplace air-Determination of particulate lead and lead compounds(Flame electrothermal atomic absorption spectrometric method)
  • KS L 1627-2014(2019) Testing method of impurities in high purity cobalt ingot by inductively coupled plasma spectrometric
  • KS I ISO 16740-2007(2017) Workplace air-Determination of hexavalent chromium in airborne particulate matter-Method by ion chromatography and spectrophotometric measurement using diphenyl carbazide
  • KS D ISO 15470-2005(2020) Surface chemical analysis-X-ray photoelectron spectroscopy-Description of selected instrumental performance parameters
  • KS I ISO 11174:2019 Workplace air ― Determination of particulate cadmium and cadmium compounds ― Flame and electrothermal atomic absorption spectrometric method
  • KS I ISO 8518-2006(2017) Workplace air-Determination of particulate lead and lead compounds(Flame electrothermal atomic absorption spectrometric method)
  • KS D ISO 17974-2011(2021) Surface chemical analysis-High-resolution Auger electron spectrometers-Calibration of energy scales for elemental and chemical-state analysis
  • KS M ISO 1830:2006 Paper, board and pulps-Determination of acid-soluble manganese
  • KS M ISO 1830:2013 Paper, board and pulps-Determination of acid-soluble manganese
  • KS H ISO 9233-2006(2016) Cheese and cheese rind -- Determination of natamycin content -- Method by molecular absorption spectrometry and by high-performance liquid chromatography
  • KS D ISO 19319-2005(2020) Surface chemical analysis-Auger electron spectroscopy and X-ray photoelectron spectroscopy-Determination of lateral resolution, analysis area, and sample area viewed by the analyzer
  • KS L 1627-2014 Testing method of impurities in high purity cobalt ingot by inductively coupled plasma spectrometric
  • KS H ISO 9233:2006 Cheese and cheese rind-Determination of natamycin content-Method by molecular absorption spectrometry and by high-performance liquid chromatography
  • KS H ISO 9233:2021 Cheese and cheese rind — Determination of natamycin content —Method by molecular absorption spectrometry and by high-performance liquid chromatography
  • KS I ISO 9855-2005(2020) Ambient air-Determination of the particulate lead content of aerosols collected on filters(Atomic absorption spectrometric method)
  • KS D ISO 17974:2011 Surface chemical analysis-High-resolution Auger electron spectrometers-Calibration of energy scales for elemental and chemical-state analysis
  • KS D ISO 18118-2005(2020) Surface chemical analysis-Auger electron spectroscopy and X-ray photoelectron spectroscopy-Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of h
  • KS I ISO 15202-1:2006 Workplace air-Determination of metals and metalloids in airborne particulate matter by inductively coupled plasma atomic emission spectrometry-Part 1:Sampling
  • KS I ISO 11041:2008 Workplace air-Determination of particulate arsenic and arsenic compounds and arsenic trioxide vapour-Method by hydride generation and atomic absorption spectrometry
  • KS I ISO 15202-1:2014 Workplace air — Determination of metals and metalloids in Workplace air — Determination of metals and metalloids in emission spectrometry — Part 1: Sampling
  • KS B ISO 11884-2-2011(2016) Optics and photonics-Minimum requirements for stereomicroscope-Part 2:High performance microscopes
  • KS B ISO 11884-2-2011(2021) Optics and photonics-Minimum requirements for stereomicroscope-Part 2:High performance microscopes
  • KS I ISO 16740:2007 Workplace air-Determination of hexavalent chromium in airborne particulate matter-Method by ion chromatography and spectrophotometric measurement using diphenyl carbazide
  • KS B ISO 11884-2:2011 Optics and photonics-Minimum requirements for stereomicroscope-Part 2:High performance microscopes
  • KS I ISO 8518:2021 Workplace air — Determination of particulate lead and lead compounds — Flame or electrothermal atomic absorption spectrometric method
  • KS D ISO 19319:2005 Surface chemical analysis-Auger electron spectroscopy and X-ray photoelectron spectroscopy-Determination of lateral resolution, analysis area, and sample area viewed by the analyzer

国家市场监督管理总局、中国国家标准化管理委员会, Energetic Particle Spectroscopy

  • GB/T 41072-2021 Surface chemical analysis—Electron spectroscopies—Guidelines for ultraviolet photoelectron spectroscopy analysis
  • GB/T 35099-2018 Microbeam analysis—Scanning electron microscopy with energy dispersive X-ray spectrometry—Morphology and element analysis of single fine particles in ambient air
  • GB/T 41073-2021 Surface chemical analysis—Electron spectroscopies—Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • GB/T 36533-2018 Determination of the chemical state of micro-iron in silicate—Auger electron spectroscopy
  • GB/T 5195.11-2021 Fluorspar—Determination of manganese content—Periodate spectrophotometry and flame atomic absorption spectrometry
  • GB/T 41064-2021 Surface chemical analysis—Depth profiling—Method for sputter rate determination in X-ray photoelectron spectroscopy, Auger electron spectroscopy and secondary-ion mass spectrometry sputter depth profiling using single and multi-layer thin films
  • GB/T 36401-2018 Surface chemical analysis—X-ray photoelectron spectroscopy—Reporting of results of thin-film analysis
  • GB/T 37949-2019 Purity test method of small molecule materials applied in organic light emitting diode display (OLED)—High performance liquid chromatography (HPLC)

British Standards Institution (BSI), Energetic Particle Spectroscopy

  • BS ISO 16129:2012 Surface chemical analysis. X-ray photoelectron spectroscopy. Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer
  • BS 3406-8:1997 Methods for determination of particle size distribution. Photon correlation spectroscopy
  • BS ISO 16129:2018 Tracked Changes. Surface chemical analysis. X-ray photoelectron spectroscopy. Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer
  • BS ISO 16362:2005 Ambient air - Determination of particle-phase polycyclic aromatic hydrocarbons by high performance liquid chromatography
  • BS ISO 19830:2015 Surface chemical analysis. Electron spectroscopies. Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • BS ISO 21270:2004 Surface chemical analysis. X-ray photoelectron and Auger electron spectrometers. Linearity of intensity scale
  • PD ISO/TR 23173:2021 Surface chemical analysis. Electron spectroscopies. Measurement of the thickness and composition of nanoparticle coatings
  • BS ISO 14135-2:2014 Optics and photonics. Specifications for telescopic sights. High-performance instruments
  • BS ISO 14135-2:2017 Optics and photonics. Specifications for telescopic sights. High-performance instruments
  • BS ISO 14135-2:2021 Optics and photonics. Specifications for telescopic sights. High-performance instruments
  • BS PD ISO/TR 23173:2021 Surface chemical analysis. Electron spectroscopies. Measurement of the thickness and composition of nanoparticle coatings
  • BS ISO 15202-1:2012 Workplace air. Determination of metals and metalloids in airborne particulate matter by inductively coupled plasma atomic emission spectrometry. Sampling
  • BS ISO 16014-3:2012 Plastics. Determination of average molecular mass and molecular mass distribution of polymers using size-exclusion chromatography. Low-temperature method
  • BS ISO 10810:2010 Surface chemical analysis. X-ray photoelectron spectroscopy. Guidelines for analysis
  • BS ISO 11884-2:2007 Optics and photonics. Minimum requirements for stereomicroscopes. High performance microscopes
  • BS ISO 11174:2023 Workplace air. Determination of particulate cadmium and cadmium compounds. Flame and electrothermal atomic absorption spectrometric method
  • BS ISO 20998-1:2006 Measurement and characterization of particles by acoustic methods - Concepts and procedures in ultrasonic attenuation spectroscopy
  • BS IEC 62977-3-4:2023 Electronic displays - Evaluation of optical performances. High dynamic range displays
  • BS ISO 8518:2005 Workplace air - Determination of particulate lead and lead compounds - Flame or electrothermal atomic absorption spectrometric method
  • BS ISO 17974:2002 Surface chemical analysis - High-resolution Auger electron spectrometers - Calibration of energy scales for elemental and chemical-state analysis
  • BS ISO 10810:2019 Tracked Changes. Surface chemical analysis. X-ray photoelectron spectroscopy. Guidelines for analysis
  • BS ISO 17109:2015 Surface chemical analysis. Depth profiling. Method for sputter rate determination in X-ray photoelectron spectroscopy, Auger electron spectroscopy and secondary-ion mass spectrometry sputter depth profiling using single and multi-layer thin films
  • BS ISO 17109:2022 Surface chemical analysis. Depth profiling. Method for sputter rate determination in X-ray photoelectron spectroscopy, Auger electron spectroscopy and secondary-ion mass spectrometry sputter dept profiling using single and multi-layer thin…
  • 21/30433862 DC BS ISO 17109 AMD1. Surface chemical analysis. Depth profiling. Method for sputter rate determination in X-ray photoelectron spectroscopy, Auger electron spectroscopy and secondary-ion mass spectrometry sputter depth profiling using single and…
  • 22/30435294 DC BS ISO 11174. Workplace air. Determination of particulate cadmium and cadmium compounds. Flame and electrothermal atomic absorption spectrometric method
  • BS ISO 14701:2011 Surface chemical analysis. X-ray photoelectron spectroscopy. Measurement of silicon oxide thickness
  • 23/30461294 DC BS ISO 18118. Surface chemical analysis. Auger electron spectroscopy and X-ray photoelectron spectroscopy. Guide to the use of experimentally determined relative sensitivity factors for the quantitative analysis of homogeneous materials
  • BS ISO 15202-1:2020 Workplace air. Determination of metals and metalloids in airborne particulate matter by inductively coupled plasma atomic emission spectrometry - Sampling

US-FCR, Energetic Particle Spectroscopy

  • FCR NE-F-3-41T-1981 IN-PLACE TESTING OF HEPA FILTER SYSTEMS BY THE SINGLE-PARTICLE, PARTICLE-SIZE SPECTROMETER METHOD

Professional Standard - Building Materials, Energetic Particle Spectroscopy

  • JC/T 2018-2010 Thallium doped cesium iodide crystal for high-energy particles detection
  • JC/T 2027-2010 Determination of impurities in high purity quartz.Inductively coupled plasma atomic emission spectrometry
  • JC/T 2147-2012 Determination of trace metal elements in high purity alumina by inductively coupled plasma atomic emission spectrometry

Professional Standard - Nuclear Industry, Energetic Particle Spectroscopy

Group Standards of the People's Republic of China, Energetic Particle Spectroscopy

  • T/CAIA YQ004-2018 Performance testing method for liquid chromatograph coupled with atomic fluorescence spectrometer
  • T/CSTM 00964-2022 General rules for performance evaluation of atomic spectrometer
  • T/SDIOT 029-2022 Technical specification for hyperspectral intelligent monitoring water quality system
  • T/CSTM 00962-2022 Evaluation method for spectrometer performance of spark discharge atomic emission
  • T/SDIOT 030-2022 Technical specifications of hyperspectral intelligent monitoring system for wheat stripe rust
  • T/CHES 26-2019 Determination of water quality permanganate index gas phase molecular absorption spectrometry
  • T/ZSA 39-2020 Characterization of Graphene - Work function - Ultraviolet photoelectron spectroscopy (UPS) method
  • T/ZGIA 002-2020 Graphene Test Methods Determination of Work Function Ultraviolet Photoelectron Spectroscopy
  • T/NAIA 0211-2023 Determination of Sodium Chloride in High Salt Foods by Inductively Coupled Plasma Emission Spectrometry

Professional Standard - Electron, Energetic Particle Spectroscopy

  • SJ/T 10458-1993 Standard guide for specimen handling in auger electron spectroscopy and X-ray photoelectron spectroscopy
  • SJ/T 10714-1996 Standard practice for checking the operation characteristics of X-ray photoelectron spectrometers

Association of German Mechanical Engineers, Energetic Particle Spectroscopy

  • VDI 2268 Blatt 3-1988 Chemical analysis of particulate matter; determination of thallium in particulate emissions by atomic absorption spectrometry
  • VDI 2268 Blatt 1-1987 Chemical analysis of particulate matter; determination of Ba, Be, Cd, Co, Cr, Cu, Ni, Pb, Sr, V, Zn in particulate emissions by atomic spectrometric methods
  • VDI 2268 Blatt 4-1990 Chemical analysis of particulate matter; determination of arsenic, antimony and selenium in dust emissions by graphite-furnace atomic absorption spectrometry

Military Standard of the People's Republic of China-General Armament Department, Energetic Particle Spectroscopy

  • GJB 7367-2011 Methodology of measurement for high-energy laser beam quality factor β

National Metrological Technical Specifications of the People's Republic of China, Energetic Particle Spectroscopy

  • JJF 1026-1991 Absorbed Dose Determination in Photon and Electron Beams

未注明发布机构, Energetic Particle Spectroscopy

  • BS ISO 18516:2006(2010) Surface chemical analysis — Auger electron spectroscopy and X - ray photoelectron spectroscopy — Determination of lateral resolution
  • BS ISO 21270:2004(2010) Surface chemical analysis — X - ray photoelectron and Auger electron spectrometers — Linearity of intensity scale
  • BS ISO 11174:1996(1998) Workplace air — Determination of particulate cadmium and cadmium compounds — Flame and electro - thermal atomic absorption spectrometric method

Professional Standard - Commodity Inspection, Energetic Particle Spectroscopy

  • SN/T 2888-2011 Determination of antimony in high-density polyethylene, a food contact material for export, by atomic fluorescence spectrometry
  • SN/T 2259-2009 Determination of chemical components in high purity copper cathode.Inductively coupled plasma atomic emission spectrometry

GB-REG, Energetic Particle Spectroscopy

VN-TCVN, Energetic Particle Spectroscopy

  • TCVN 6152-1996 Ambient air.Determination of the particulate lead content of aerosols collected on filters.Atomic absorption spectrometric method

Professional Standard - Environmental Protection, Energetic Particle Spectroscopy

  • HJ 829-2017 Ambient air -Determination of inorganic elements in ambient particle matter- Energy dispersive X-ray fluorescence spectroscopy (ED-XRF) method
  • HJ 777-2015 Ambient air and waste gas from stationary sources emission -Determination of metal elements in ambient particle matter-Inductively coupled plasma optical emission spectrometry

Professional Standard - Agriculture, Energetic Particle Spectroscopy

  • GB 10725-1989 General rules for chemical reagent inductively coupled high frequency plasma atomic emission spectrometry
  • SN/T 5079-2018 Determination of four kinds of fluorescent whitening agents in food simulants of polymer materials in food contact materials by liquid chromatography-mass spectrometry/mass spectrometry
  • 空气和废气监测分析方法 3.2.13-2003 Part Three Air Quality Monitoring Chapter Two Particulate Matter and Its Elements Thirteen Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES)

YU-JUS, Energetic Particle Spectroscopy

  • JUS C.A1.627-1989 Copper and capper alloys. Deteruiuation of tellurium content (lotf contents). Flame atomic absorption spectrometrlc method
  • JUS C.A1.628-1989 Copper and copper alloys. Determinaticm of telluriun content (high contents). Flame atomic absorpticm spectrometrlc method

Professional Standard - Energy, Energetic Particle Spectroscopy

  • NB/SH/T 0940-2016 Test method for the analysis of in-use lubricants using a specific 4-in-1 tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity and Laser Particle Counter)

国家能源局, Energetic Particle Spectroscopy

  • SH/T 0940-2016 Test methods for analyzing in-service lubricants using specific four-in-one testers (atomic emission spectrometry, infrared spectroscopy, viscosity and laser particle counter)

中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会, Energetic Particle Spectroscopy

  • GB/T 22571-2017 Surface chemical analysis—X-ray photoelectron spectrometers—Calibration of energy scales

KR-KS, Energetic Particle Spectroscopy

  • KS D ISO 15472-2003(2023)
  • KS I ISO 11174-2019 Workplace air ― Determination of particulate cadmium and cadmium compounds ― Flame and electrothermal atomic absorption spectrometric method
  • KS I ISO 16740-2022 Workplace air Determination of hexavalent chromium in airborne particulate matter Method by ion chromatography and spectrophotometric measurement using diphenyl carbazide
  • KS B ISO 14135-2-2023 Optics and photonics — Specifications for telescopic sights — Part 2: High-performance instruments
  • KS H ISO 9233-2021 Cheese and cheese rind — Determination of natamycin content —Method by molecular absorption spectrometry and by high-performance liquid chromatography
  • KS I ISO 8518-2021 Workplace air — Determination of particulate lead and lead compounds — Flame or electrothermal atomic absorption spectrometric method

Anhui Provincial Standard of the People's Republic of China, Energetic Particle Spectroscopy

  • DB34/T 2432-2015 Determination of Photoinitiator Migration in Polymer Base Films, Bags by Liquid Chromatography-Tandem Mass Spectrometry

Jilin Provincial Standard of the People's Republic of China, Energetic Particle Spectroscopy

  • DB22/T 2361-2015 Determination of High Content Nickel in Magnesium Alloy by Flame Atomic Absorption Spectrometry

Professional Standard - Non-ferrous Metal, Energetic Particle Spectroscopy

  • YS/T 229.2-2013 Methods for chemical analysis of high pure lead.Part 2:Determination of arsenic content.Atomic fluorescence spectrometry
  • YS/T 229.3-2013 Methods for chemical analysis of high pure lead.Part 3:Determination of antimony content.Atomic fluorescence spectrometry
  • YS/T 252.3-2007 Methods for chemical analysis of nickel matte.Determination of cobalt content.Flame atomic absorption spectrometric method

Professional Standard - Ferrous Metallurgy, Energetic Particle Spectroscopy

  • YB/T 4462-2015 High purity ferrosilicon.Determination of boron content.Inductively coupled plasma atomic emission spectrometric method
  • YB/T 4461-2015 High purity ferrosilicon.Determination of zirconium and molybdenum content.Inductively coupled plasma atomic emission spectrometric method
  • YB/T 190.11-2014 Continuous casting powder.The determination of manganese oxide content.The sodium (potassium) periodate spectrophotometric method and the flame atomic absorption method

国家质量监督检验检疫总局, Energetic Particle Spectroscopy

  • SN/T 4887-2017 Determination of cadmium in high-salt foods for export by graphite furnace atomic absorption spectrometry
  • SN/T 4888-2017 Determination of lead in high-salt foods for export by graphite furnace atomic absorption spectrometry

AENOR, Energetic Particle Spectroscopy

  • UNE 81587:2017 Workplace exposure. Determination of metals and metalloids in airborne particles. Atomic Spectrometry method.
  • UNE 77230:1998 AMBIENT AIR. DETERMIANTION OF THE PARTICULATE LEAD CONTENT OF AEROSOLS COLLECTED ON FILTERS. ATOMIC ABSORPTION SPECTROMETRIC METHOD.

Hubei Provincial Food Standard of the People's Republic of China, Energetic Particle Spectroscopy

  • DBS42/ 003-2014 Determination of monomethyl arsenic, dimethyl arsenic, arsenate and arsenite in aquatic products by high performance liquid chromatography-atomic fluorescence spectrometry

Ningxia Provincial Standard of the People's Republic of China, Energetic Particle Spectroscopy

  • DB64/T 1577-2018 Determination of betaine content in wolfberry fruit by high performance liquid chromatography-evaporative light scattering method

Professional Standard - Aviation, Energetic Particle Spectroscopy

  • HB 5220.14-1995 Methods of Chemical Analysis of Superalloys - Determination of Manganese Content by Flame Atomic Absorption Spectrometry
  • HB 5220.28-1995 Methods of Chemical Analysis of Superalloys - Determination of Copper Content by Flame Atomic Absorption Spectrometry

工业和信息化部, Energetic Particle Spectroscopy

  • YS/T 1288.3-2018 Methods for chemical analysis of high-purity zinc Part 3: Determination of arsenic content Hydride generation-atomic fluorescence spectrometry

农业农村部, Energetic Particle Spectroscopy

  • NY/T 3947-2021 Determination of selenocystine, methylnitrocysteine and selenomethionine in livestock and poultry meat by high performance liquid chromatography-atomic fluorescence spectrometry

Guangxi Provincial Standard of the People's Republic of China, Energetic Particle Spectroscopy

  • DB45/T 2108-2019 Determination of Gallium Content in Target Materials for Copper Indium Gallium Selenium Solar Photovoltaic Cells by Inductively Coupled Plasma Atomic Emission Spectrometry




Copyright ©2007-2023 ANTPEDIA, All Rights Reserved