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Database: 365,228(8 Aug 2026)

after spectral analysis

after spectral analysis, Total:399 items.

The international standard classification for "after spectral analysis" includes: Chemical analysis , Physicochemical methods of analysis , Other standards related to analytical chemistry , Metalliferous minerals , Nickel, chromium and their alloys , Oxides , Cadmium, cobalt and their alloys , Sensory analysis , Chemical analysis of metals , Welding consumables , Copper and copper alloys , Chemical reagents , Products of non-ferrous metals in general , Lead, zinc, tin and their alloys , Refractories .

The Chinese standard classification for "after spectral analysis" includes: Basic standards and general methods , Electrochemical, thermochemistry and optical profile type analyzer , Iron ore , Steel and iron alloy analysis method , Heavy metals and their alloys analysis method , Rare metals and their alloys analysis method , Basic standards and general methods , Standardization and quality management , Basic standards and general methods , Chemical reagent in general , Precious metal ore , Electric locomotives , Fireproof material in general .


General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 32055-2015 Microbeam analysis―Electron probe microanalysis―Methods for elemental-mapping analysis using wavelengthdispersive spectroscopy
  • GB/T 6730.33-1986 Methods for chemical analysis of iron ores--The oscilloscopic polarography method for the determination of tin content
  • GB/T 25005-2010 Sensory analysis—Methods for sensory evaluation of instant noodles
  • GB/T 4324.1-1984 Methods for chemical analysis of tungsten - The square wave polarographic method for the successive determination of lead and cadmium contents
  • GB/T 12314-1990 Sensory analysis method--Guidelines for the preparation of samples for which direct sensory analysis is not feasible
  • GB/T 3260.10-1988 Tin--Determination of sulphur content--Distillation oscillopolarographic method
  • GB/T 6730.41-1986 Methods for chemical analysis of iron ores--The oscilloscopic polarography method for the determination of lead content
  • GB/T 6730.43-1986 Methods for chemical analysis of iron ores--The oscilloscopic polarography method for the determination of zinc content
  • GB/T 4325.1-1984 Methods for chemical analysis of molybdenum;The square wave polarographic method for the successive determination of lead and cadmium content
  • GB/T 10221-1998 Sensory analysis - Vocabulary
  • GB/T 12312-2012 Sensory analysis—Method of investigating sensitivity of taste
  • GB/T 4702.13-1987 Methods for chemical analysis of chromium metal--The oscilloplarographic method for the determination of lead content
  • GB/T 8647.8-1988 Nickel--Determination of sulfur content--Oscillopolarographic method after distillation
  • GB/T 13747.14-1992 and zirconium alloys - Determination of uranium content - Catalytic-oscillopolarographic method
  • GB 12314-1990 Sensory analysis method-Guidelines for the preparation of samples for which direct sensory analysis is not feasible
  • GB/T 30705-2014 Microbeam analysis―Electron probe microanalysis―Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • GB/T 21172-2022 Sensory analysis—Guidelines for sensory assessment of the colour of products
  • GB/T 10574.14-1989 Tin-lead solders-Determination of sulphur content-Oscillopolarographic method after distillation
  • GB/T 20725-2006 Electron probe microanalysis guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • GB/T 28634-2012 Microbeam analysis—Electron probe microanalysis—Quantitative point analysis for bulk specimen using wavelength dispersive X-ray spectroscopy
  • GB/T 10220-1988 Sensory analysis--Methodology--General guidance
  • GB/T 10221-2012 Sensory analysis—Vocabulary
  • GB/T 15244-2013 Microbeam analysis—Quantitative analysis of silicate glass by wavelength dispersive X-ray spectrometry and energy dispersive X-ray spectrometry
  • GB/T 29605-2013 Sensory analysis—Guide for food sensory quality control
  • GB/T 17359-2012 Microbeam analysis - Quantitative analysis using energy dispersive spectrometry
  • GB/T 10574.12-1989 Tin-lead solders-Determination of cadmium content-Catalytic oscillopolarographic method
  • GB/T 13868-2009 analysis - General guidance for the design of test rooms
  • GB/T 13747.13-1992 and zirconium alloys - Determination of lead content-Oscillopolarographic method
  • GB/T 13747.17-1992 and zirconium alloys - Determination of cadmium content-Oscillopolarographic method
  • GB/T 13293.1-1991 Higher purity copper cathode-Determination of selenium and tellurum contents-Catalytic oscillopolarographic method
  • GB/T 223.56-1987 Methods for chemical analysis of iron,steel and alloy--The sulfhydryl cotton fiber separation-oscillopolarographic method for the determination of tellurium content
  • GB/T 13868-1992 Sensory analysis-General guidance for the design of test rooms
  • GB/T 12689.6-2004 The methods for chemical analyisis of zinc and alloys—The determination of lead content—The oscillopolarographic method
  • GB/T 8220.9-1998 Methods for chemical analysis of bismuth--Determination of tellurium content--Coprecipitation with arsenic-oscillopolarographic method
  • GB 4103.10-1983 Methods for chemical analysis of lead-base alloys--The oscillopolarographic method for the determination of selenium and tellurium content
  • GB/T 7315.6-1987 Methods for chemical analysis of vanadium pentoxide--The oscillopolarographic method for the determination of sulphur content
  • GB/T 14195-1993 analysis - General guidance for the selection and training of selected assessors
  • GB/T 12312-1990 Sensory analysis--Determination of sensitivity of taste
  • GB/T 223.55-1987 Methods for chemical analysis of iron,steel and alloy--The direct oscillopolarographic method for the determination of tellurium content
  • GB/T 43396-2023 Sensory analysis—Guidance on substantiation for sensory and consumer product claims
  • GB/T 4702.12-1987 Methods for chemical analysis of chromium metal--The oscilloplarographic method for the determination of bismuth content

国家市场监督管理总局、中国国家标准化管理委员会

  • GB/T 41074-2021 Microbeam analysis―Method of specimen preparation for analysis of general powders using WDS and EDS
  • GB/T 10221-2021 Sensory analysis—Vocabulary
  • GB/T 7739.14-2019 Methods for chemical analysis of gold concentrates—Part 14:Determination of thallium content—Inductively coupled plasma atomic emission spectrometry and inductively coupled plasma mass spectrometry
  • GB/T 39486-2020 Chemical reagent—General rules for inductively coupled plasma mass spectrometry

Professional Standard - Education

  • JY/T 0568-2020 General rules for inductively coupled plasma-mass spectrometry
  • JY/T 0567-2020 General rules for inductively coupled plasma optical emission spectrometry
  • JY/T 0579-2020 General rules of analytical methods for eleetron paramagnetic resonance spectroscopy

Taiwan Provincial Standard of the People's Republic of China

National Metrological Technical Specifications of the People's Republic of China

Professional Standard - Non-ferrous Metal

  • YS/T 248.6-1985 Crude Lead Chemical Analysis Method Oscillopolarographic Determination of Copper Content
  • YS/T 281.13-1994 Cobalt - Determination of sulfur content - Oscillopolarographic method after distillation
  • YS/T 536.9-2006 Bismuth Chemical Analysis Method Arsenic Co-precipitation-Oscillographic Polarography Determination of Tellurium
  • YS/T 536.9-2009 Methods for chemical analysis of bismuth—Determination of tellurium content—Coprecipitation with arsenic-oscillopolarographic method
  • YS/T 483-2005 Methods for analysis of copper and copper alloys--X-Ray fluorescence spectrometric(wavelength dispersive)

Professional Standard - Electron

  • SJ/Z 3206.5-1989 Treatment methods for sensitized plate and film photograph for chemical analysis using spectrum

Professional Standard - Ferrous Metallurgy

  • YB/T 5333-2006 Methods for chemical analysis of vanadium pentoxide The oscillopolarographic method for the determination of sulphur content

Professional Standard - Agriculture

国家能源局

  • SY/T 6404-2018 Analytical method for metal elements in rock by ICP-AES and ICP-MS

工业和信息化部

  • YS/T 483-2022 Methods for analysis of copper and copper alloys-X-Ray fluorescence spectrometric(wavelength dispersive)

Professional Standard - Railway

  • TB/T 2521-1995 Calculation Method for Temperature Rise and Inductance Test after Loading of Electric Locomotive Smoothing Reactor

Henan Provincial Standard of the People's Republic of China

  • DB41/T 1189-2016 Analysis of Chemical Composition of Polymetallic Minerals by Inductively Coupled Plasma-Atomic Emission Spectrometry

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

  • GB/T 8152.13-2017 Methods for chemical analysis of lead concentrates - Part 13: Determination of thallium content - Inductively coupled plasma mass spectrometry and inductively coupled plasma-atomic emission spectrometry
  • GB/T 20899.14-2017 Methods for chemical analysis of gold ores - Part 14: Determination of thallium content - Inductively coupled plasma atomic emission spectrometry and inductively coupled plasma mass spectrometry
  • GB/T 8151.21-2017 Methods for chemical analysis of zinc concentrates - Part 21: Determination of thallium content - Inductively coupled plasma mass spectrometry and inductively coupled plasma-atomic emission spectrometry
  • GB/T 34333-2017 Refractory products--Determination by inductively coupled plasma atomic emission spectrometry(ICP-AES)

SCC

  • VDI/VDE 2631 BLATT 11-2020 Shape measurement technology - spectral analysis (Fourier analysis, harmonic analysis)
  • NS-EN 14242:2004 Aluminium and aluminium alloys — Chemical analysis — Inductively coupled plasma optical emission spectral analysis
  • NS-ENV 14029:2001 Lead and lead alloys — Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation of the lead matrix
  • NS-EN 14242:2023 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectrometric analysis
  • BS ISO 17470:2004 Microbeam analysis. Electron probe microanalysis. Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • DANSK DS/EN 14242:2004 Aluminium and aluminium alloys – Chemical analysis – Inductively coupled plasma optical emission spectral analysis
  • NS-ENV 14138:2001 Lead and lead alloys — Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation by co-precipitation
  • DIN EN 14242 E:2022 Draft Document - Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectral analysis; German and English version prEN 14242:2022
  • DANSK DS/EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments – Part 1: Optical spectrum analyzers
  • CEI EN 62129-1:2016 Calibration of wavelength/optical frequency measurement insturments Part 1: Optical spectrum analyzers
  • 10/30185165 DC BS ISO 11938. Microbeam analysis. Electron probe microanalysis. Methods of elemental area analysis using wavelength-dispersive spectroscopy
  • BS ISO 22489:2006 Microbeam analysis. Electron probe microanalysis. Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy
  • DANSK DS/ISO 16820:2004 Sensory analysis – Methodology – Sequential analysis
  • AWWA WQTC58858 Liquid Chromatography of Bromate and Bromoacetic Acids with Inductively Coupled Plasma Mass Spectrometry Detection
  • NS-ISO 5492:1992 Sensory analysis — Vocabulary
  • ETSI GR mWT 008-2018 millimetre Wave Transmission (mWT); Analysis of Spectrum, License Schemes and Network Scenarios in the D-band
  • AWWA JAW46154 Journal AWWA — Sensory GC Analysis of Decaying Vegetation and Septic Odors
  • DANSK DS/EN ISO 3815-2:2005 Zinc and zinc alloys - Part 2: Analysis by inductively coupled plasma optical emission spectrometry
  • BS EN 61290-1-1:1998 Optical spectrum analyzer
  • DANSK DS/EN 10355:2013 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [...
  • NS-EN 10355:2013 Chemical analysis of ferrous materials — Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels — Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [...
  • AENOR UNE-EN 10355:2014 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulfuric acids [...
  • BS ISO 8587:2006 Sensory analysis. Methodology. Ranking
  • SN-CEN/TR 10353:2011 Chemical analysis of ferrous materials — Analysis of ferro-silicon — Determination of Al, Ti and P by inductively coupled plasma optical emission spectrometry
  • AENOR UNE-ISO 8587/Amd 1:2017 Sensory analysis. Methodology. Ordination.
  • DANSK DS/ISO 11037:2011 Sensory analysis - Guidelines for sensory assessment of the colour of products
  • BS 6200-3.8.3:1990 Sampling and analysis of iron, steel and other ferrous metals. Methods of analysis. Determination of carbon-Steel and cast iron: infra-red absorption method after combustion in an induction furnace
  • BS PD CEN/TR 10353:2011 Chemical analysis of ferrous materials. Analysis of ferro-silicon. Determination of Al, Ti and P by inductively coupled plasma optical emission spectrometry

German Institute for Standardization

  • DIN V ENV 14029:2001 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation of the lead matrix; German version ENV 14029:2001
  • DIN V ENV 14138:2002 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation by co-precipitation; German version ENV 14138:2001
  • DIN EN 14242:2023-04 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectrometric analysis; German version EN 14242:2023
  • DIN EN 14242:2023 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectrometric analysis
  • DIN EN 14242:2004 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectral analysis; German version EN 14242:2004
  • DIN EN 14242 E:2022-01 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectral analysis
  • DIN ISO 16820:2021-01 Sensory analysis - Methodology - Sequential analysis (ISO 16820:2019)
  • DIN 51790-4:2011-02 Testing of liquid fuels - Determination of the vanadium and nickel content - Part 4: Determination by atomic absorption spectrometry (AAS) or by optical emission spectral analysis with inductively coupled plasma (ICP OES) after incineration
  • DIN EN ISO 5492:2009-12 Sensory analysis - Vocabulary (ISO 5492:2008); Multilingual version EN ISO 5492:2009 / Note: To be amended by DIN EN ISO 5492/A1 (2014-10).
  • DIN 10974:2008 Sensory analysis - Consumer sensory evaluation
  • DIN EN ISO 3815-2:2005-10 Zinc and zinc alloys - Part 2: Analysis by inductively coupled plasma optical emission spectrometry (ISO 3815-2:2005); German version EN ISO 3815-2:2005
  • DIN V ENV 13800:2000 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES) without separation of the lead matrix; German version ENV 13800:2000
  • DIN 10455:1989 Sensory analysis of butter
  • DIN 51440-1:1988 Testing of gasolines - Determination of phosphorus content - Part 1: Analysis by wavelength dispersive X-ray spectrometry (XRS)
  • DIN 51790-4:2011 Testing of liquid fuels - Determination of the vanadium and nickel content - Part 4: Determination by atomic absorption spectrometry (AAS) or by optical emission spectral analysis with inductively coupled plasma (ICP OES) after incineration
  • DIN 51440-1:2003 Testing of gasolines - Determination of phosphorus content - Part 1: Analysis by wavelength dispersive X-ray spectrometry (XRS)
  • DIN EN 10355:2013-11 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [...
  • DIN 10950:2020 Sensory analysis - Basic principles
  • DIN 10950:2020-09 Sensory analysis - Basic principles
  • DIN 10950 E:2020-01 Sensory analysis - Basic principles
  • DIN 10973:2013 Sensory analysis - In/out test
  • DIN ISO 8587:2010-08 Sensory analysis - Methodology - Ranking (ISO 8587:2006)
  • DIN 10950:2012 Sensory analysis - Basic principles
  • DIN EN 17851:2022-06 Analysis of Foodstuffs - Determination of Ag, As, Cd, Co, Cr, Cu, Mn, Mo, Ni, Pb, Se, Tl, U and Zn in foodstuffs by inductively coupled plasma mass spectrometry (ICP-MS) after pressure digestion; German and English version prEN 17851:2022 / Note: Date ...
  • DIN EN 27527:1992 Nickel, ferronickel and nickel alloys; determination of sulfur content; iodimetric titration method after induction furnace combustion (ISO 7527:1985); german version EN 27527:1991

KR-KS

  • KS Q ISO 13299-2022 Sensory analysis Methodology General guidance for establishing a sensory profile
  • KS D ISO 14594-2018 Microbeam analysis — Electron probe microanalysis — Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • KS D ISO 14594-2018(2023) Microbeam analysis — Electron probe microanalysis — Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • KS Q ISO 16820-2022 Sensory analysis Methodology Sequential analysis
  • KS D ISO 22489-2018(2023) Microbeam analysis — Electron probe microanalysis — Quantitative point analysis for bulk specimens using wavelength dispersive x-ray spectroscopy
  • KS D ISO 22489-2018 Microbeam analysis — Electron probe microanalysis — Quantitative point analysis for bulk specimens using wavelength dispersive x-ray spectroscopy
  • KS D 1674-2019(2024) Methods for inductively coupled plasma spectrometric analysis of trace elements in gold
  • KS I ISO 17294-2014 Water quality — Application of inductively coupled plasma mass spectrometry(ICP-MS)
  • KS D ISO 3815-2-2021 Zinc and zinc alloys — Part 2: Analysis by inductively coupled plasma optical emission spectrometry
  • KS Q ISO 11037-2013(2023) Sensory analysis ― Guidelines for sensory assessment of the colour of products
  • KS M 0025-2008(2023) General rules for mass spectrometric analysis

GSO

  • GSO ISO 11938:2015 Microbeam analysis -- Electron probe microanalysis -- Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • BH GSO ISO 17470:2017 Microbeam analysis -- Electron probe microanalysis -- Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • BH GSO ISO 14594:2017 Microbeam analysis -- Electron probe microanalysis -- Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • OS GSO ISO 11938:2015 Microbeam analysis -- Electron probe microanalysis -- Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • BH GSO ISO 11938:2017 Microbeam analysis -- Electron probe microanalysis -- Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • GSO ISO 17470:2015 Microbeam analysis -- Electron probe microanalysis -- Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • OS GSO ISO 16820:2014 Sensory analysis -- Methodology -- Sequential analysis
  • GSO ISO 5492:2015 Sensory analysis -- Vocabulary
  • BH GSO ISO 5492:2016 Sensory analysis -- Vocabulary
  • BH GSO ISO 22489:2017 Microbeam analysis -- Electron probe microanalysis -- Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy
  • BH GSO ISO 16820:2016 Sensory analysis -- Methodology -- Sequential analysis
  • GSO ISO 16820:2014 Sensory analysis -- Methodology -- Sequential analysis
  • OS GSO ISO 5492:2015 Sensory analysis -- Vocabulary
  • GSO ISO 14594:2015 Microbeam analysis -- Electron probe microanalysis -- Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • OS GSO ISO 3815-2:2013 Zinc and zinc alloys -- Part 2: Analysis by inductively coupled plasma optical emission spectrometry
  • GSO ISO 22308:2013 Cork stoppers -- Sensory analysis
  • GSO ISO 26845:2015 Chemical analysis of refractories -- General requirements for wet chemical analysis, atomic absorption spectrometry (AAS) and inductively coupled plasma atomic emission spectrometry (ICP-AES) methods
  • GSO ISO 3815-2:2013 Zinc and zinc alloys -- Part 2: Analysis by inductively coupled plasma optical emission spectrometry
  • OS GSO ISO 22308:2013 Cork stoppers -- Sensory analysis
  • BH GSO ISO 20613:2022 Sensory analysis — General guidance for the application of sensory analysis in quality control
  • BH GSO ISO 3815-2:2016 Zinc and zinc alloys -- Part 2: Analysis by inductively coupled plasma optical emission spectrometry
  • GSO ISO 22489:2015 Microbeam analysis -- Electron probe microanalysis -- Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy
  • BH GSO ISO 22308:2016 Cork stoppers -- Sensory analysis
  • GSO ISO 20613:2021 Sensory analysis — General guidance for the application of sensory analysis in quality control
  • GSO ISO 5497:2015 Sensory analysis -- Methodology -- Guidelines for the preparation of samples for which direct sensory analysis is not feasible
  • BH GSO ISO 5497:2016 Sensory analysis -- Methodology -- Guidelines for the preparation of samples for which direct sensory analysis is not feasible
  • BH GSO ISO 18794:2022 Coffee — Sensory analysis — Vocabulary
  • GSO ISO 18794:2021 Coffee — Sensory analysis — Vocabulary
  • OS GSO ISO 11037:2014 Sensory analysis -- Guidelines for sensory assessment of the colour of products
  • BH GSO ISO 11037:2016 Sensory analysis -- Guidelines for sensory assessment of the colour of products

Society of Automotive Engineers (SAE)

  • SAE J2556-2000 Radiated Emissions (RE) Narrowband Data Analysis Power Spectral Density (PSD)

British Standards Institution (BSI)

  • DD ENV 14029-2001 Lead and lead alloys. Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation of the lead matrix
  • BS ISO 11938:2012 Microbeam analysis. Electron probe microanalysis. Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • BS DD ENV 14029:2001 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation of the lead matrix
  • BS EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments. Optical spectrum analyzers
  • BS DD ENV 14138:2001 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emissions spectrometry (ICP-ES), after separation by co-precipitation
  • BS EN 14242:2023 Aluminium and aluminium alloys — Chemical analysis — Inductively coupled plasma optical emission spectrometric analysis
  • DD ENV 14138:2001 Lead and lead alloys. Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emissions spectrometry (ICP-ES), after separation by co-precipitation
  • DD ENV 14029:2001 Lead and lead alloys. Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation of the lead matrix
  • BS EN 14242:2004 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectral analysis
  • BS ISO 14594:2024 Microbeam analysis. Electron probe microanalysis. Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • BS ISO 11938:2013 Microbeam analysis. Electron probe microanalysis. Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • 22/30444828 DC BS EN 14242. Aluminium and aluminium alloys. Chemical analysis. Inductively coupled plasma optical emission spectral analysis
  • BS ISO 17470:2014 Microbeam analysis. Electron probe microanalysis. Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • BS ISO 16820:2019 Sensory analysis. Methodology. Sequential analysis
  • 23/30425940 DC BS ISO 14594. Microbeam analysis. Electron probe microanalysis. Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • BS ISO 16820:2004 Sensory analysis - Methodology - Sequential analysis
  • BS EN ISO 5492:2009+A1:2017 Sensory analysis. Vocabulary
  • DD ENV 13800-2000 Lead and lead alloys. Analysis by flame atomic absorption spectromerty (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), without separation of the lead matrix
  • BS ISO 20613:2019 Sensory analysis. General guidance for the application of sensory analysis in quality control
  • BS ISO 22489:2016 Microbeam analysis. Electron probe microanalysis. Quantitative point analysis for bulk specimens using wavelength dispersive X-ray spectroscopy
  • BS ISO 22489:2007 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy
  • BS PD ISO/TS 17951-1:2016 Water quality. Determination of fluoride using flow analysis (FIA and CFA). Method using flow injection analysis (FIA) and spectrometric detection after off-line distillation
  • BS DD ENV 13800:2000 Lead and lead alloys - Analysis by flame atomic absorption spectromerty (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), without separation of the lead matrix
  • BS ISO 14594:2003 Microbeam analysis - Electron probe microanalysis - Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • BS ISO 14594:2014 Microbeam analysis. Electron probe microanalysis. Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • BS ISO 22308:2005 Cork stoppers - Sensory analysis
  • BS EN ISO 5492:2009 Sensory analysis - Vocabulary
  • BS ISO 8587:2006+A1:2013 Sensory analysis. Methodology. Ranking
  • BS 5929-4:1986 Methods for sensory analysis of food. Flavour profile methods
  • BS ISO 18794:2018 Coffee. Sensory analysis. Vocabulary
  • BS EN ISO 3815-2:2005 Zinc and zinc alloys - Analysis by inductively coupled plasma optical emission spectrometry
  • BS ISO 11037:2011 Sensory analysis. Guidelines for sensory assessment of the colour of products
  • BS EN 10355:2013 Chemical analysis of ferrous materials. Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels. Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [Routi

Japanese Industrial Standards Committee (JISC)

  • JIS C 6183:1992 Test methods of fiber-optic spectrum analyzer
  • JIS K 0190:2010 Microbeam analysis -- Electron probe microanalysis -- Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • JIS Z 8144:1990 Sensory analysis -- Vocabulary
  • JIS Z 9080:2004 Sensory analysis -- Methodology
  • JIS Z 8144:2004 Sensory analysis -- Vocabulary
  • JIS H 1307:1993 Methods for inductively coupled plasma emission spectrometric analysis of aluminium and aluminium alloys
  • JIS K 0189:2013 Microbeam analysis.Electron probe microanalysis.Determination of experimental parameters for wavelength dispersive X-ray spectroscopy

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc.

  • ASHRAE 4150-1998 Voltage and Current Transducer Harmonic Sensitivity Analysis (RP-770)
  • ASHRAE 4151-1998 Wavelet Analysis of Electric Adjustable Speed Drive Waveforms

Spanish Association for Standardization (UNE)

  • UNE-EN 14242:2023 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectrometric analysis (Endorsed by Asociación Española de Normalización in April of 2023.)
  • UNE 87004:1979 SENSORY ANALYSIS. GUIDE FOR THE INSTALATION OF A CHAMBER FOR SENSORY ANALYSIS
  • UNE-EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers (Endorsed by AENOR in July of 2016.)
  • UNE-ISO 16820:2010 Sensory analysis. Methodology. Secuential analysis.
  • UNE 87001:1994 SENSORY ANALYSIS. VOCABULARY.
  • UNE 87-008-1992 Sensory analysis. Methology. General guidance
  • UNE-EN ISO 3815-2:2005 Zinc and zinc alloys - Part 2: Analysis by inductively coupled plasma optical emission spectrometry (ISO 3815-2:2005) (Endorsed by AENOR in October of 2005.)
  • UNE 56928:2004 Cork stoppers. Sensory analysis.
  • UNE 87-005-1992 Sensory analysis. Methodology. Paired comparison test
  • UNE-ISO 8587:2010 Sensory analysis. Methodology. Ranking.
  • UNE-ISO 8587:2010/Amd 1:2017 Sensory analysis. Methodology. Ranking.
  • UNE 87015:1986 SENSORY ANALYSIS. METHODOLOGY. GUIDELINES FOR THE PREPARATION OF SAMPLES FOR WHICH DIRECT SENSORY ANALYSIS IS NOT FEASIBLE
  • UNE-ISO 8587:2010/A1:2017 Sensory analysis. Methodology. Ranking.
  • UNE-ISO 11037:2013 Sensory analysis. Guidelines for sensory assessment of the colour of products.

Danish Standards Foundation

  • DS/ENV 14029:2001 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation of the lead matrix
  • DS/EN 14242:2004 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectral analysis
  • DS/ENV 14138:2002 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation by co-precipitation
  • DS/ISO 16820:2004 Sensory analysis - Methodology - Sequential analysis
  • DS/ISO 5492-1/4:1990 Sensory analysis. Vocabulary
  • DS/EN ISO 5492:2009 Sensory analysis - Vocabulary
  • DS/EN ISO 3815-2:2005 Zinc and zinc alloys - Part 2: Analysis by inductively coupled plasma optical emission spectrometry
  • DS/EN 10355:2013 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [Rou

Association Francaise de Normalisation

  • XP A06-422*XP ENV 14029:2001 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation of the lead matrix
  • XP A06-424*XP ENV 14138:2002 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), after separation by co-precipitation
  • NF X21-003:2006 Microbeam analysis - Electron probe microanalysis - Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry.
  • NF A06-012*NF EN 14242:2005 Aluminium and aluminium alloys - Chemical analysis - Inductive coupled plasma-optical emission spectrometric method
  • NF C93-846-1*NF EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1 : optical spectrum analyzers
  • NF EN 15605:2010 Copper and copper alloys - Analysis by optical emission spectrometry with high frequency induced plasma source
  • NF X21-013*NF ISO 11938:2012 Microbeam analysis - Electron probe microanalysis - Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy.
  • NF V09-024:2004 Sensory analysis - Methodology - Sequential analysis.
  • NF ISO 11938:2012 Microbeam analysis - Electron microprobe analysis (Castaing microprobe) - Elemental mapping analysis methods using wavelength dispersive spectrometry
  • NF V00-150:1992 Sensory analysis. Vocabulary.
  • NF EN ISO 5492:2009 Analyse sensorielle - Vocabulaire
  • NF X21-002:2007 Microbeam analysis - Electron probe microanalysis - Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy.
  • GA V09-027:2012 Sensory analysis - Application guide of the sensory analysis standards for cosmetics products
  • NF V00-150*NF EN ISO 5492:2009 Sensory analysis - Vocabulary
  • NF A06-726:1992 Analyse chimique du cuivre - Dosage du soufre - Méthode par absorption dans l'infrarouge après combustion dans un four à induction.
  • NF V09-016:1983 Sensory analysis. Methodology. Flavour profile methods.
  • NF B57-102:2005 Cork stoppers - Sensory analysis.
  • NF ISO 20613:2019 Sensory analysis - General guidelines for the application of sensory analysis in quality control
  • NF V09-030*NF ISO 20613:2019 Sensory analysis - General guidance for the application of sensory analysis in quality control
  • NF X21-006:2007 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy.
  • NF EN ISO 3815-2:2005 Zinc and zinc alloys - Part 2: analysis by optical emission spectrometry with inductively coupled plasma source
  • NF EN 62129-1:2016 Calibration of wavelength measuring devices/optical frequency measuring devices - Part 1: optical spectrum analyzers
  • NF V18-210*NF EN 16206:2012 Animal feeding stuffs - Determination of arsenic by hydride generation atomic absorption spectrometry (HGAAS) after microwave pressure digestion (digestion with 65% nitric acid and 30% hydrogen peroxide).
  • NF V09-005:2013 Sensory analysis - Methodology - Guidelines for the preparation of samples for which direct sensory analysis is not possible
  • NF EN 12441-7:2005 Zinc and zinc alloys - Chemical analysis - Part 7: determination of tin - Method by atomic absorption spectrometry in the flame after extraction
  • NF EN ISO 8586:2023 Analyse sensorielle - Sélection et entraînement des sujets sensoriels
  • NF V09-015*NF ISO 4121:2004 Sensory analysis - Guidelines for the use of quantitative response scales

Lithuanian Standards Office

  • LST EN 14242-2005 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectral analysis
  • LST ISO 5497:1998 Sensory analysis. Methodology. Guidelines for the preparation of samples for which direct sensory analysis is not fesible

European Committee for Standardization (CEN)

  • DD ENV 14138-2001 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES) after separation by co-precipitation
  • EN 14242:2004 Aluminium and aluminium alloys - Chemical analysis - Inductively coupled plasma optical emission spectral analysis
  • EN ISO 8589:2010 Sensory analysis - General guidance for the design of test rooms (Incorporates Amendment A1: 2014)
  • EN ISO 5492:2009 Sensory analysis - Vocabulary (ISO 5492:2008)
  • EN 10355:2013 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si@ Mn@ P@ Cu@ Ni@ Cr@ Mo and Sn@ following dissolution with nitric and sulphuric acids [Rou

International Electrotechnical Commission (IEC)

  • IEC 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers

International Organization for Standardization (ISO)

  • ISO 17470:2004 Microbeam analysis - Electron probe microanalysis - Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • ISO 11938:2012 Microbeam analysis - Electron probe microanalysis - Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • ISO/DIS 14594 Microbeam analysis — Electron probe microanalysis — Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • ISO 17470:2014 Microbeam analysis - Electron probe microanalysis - Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • ISO 16820:2019 Sensory analysis — Methodology — Sequential analysis
  • ISO 5492-2:1978 Sensory analysis — Vocabulary
  • ISO 22489:2006 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength-dispersive X-ray spectroscopy
  • ISO 5492-1:1977 Sensory analysis — Vocabulary
  • ISO 5492-3:1979 Sensory analysis — Vocabulary
  • ISO 5492-5:1983 Sensory analysis — Vocabulary
  • ISO 16820:2004 Sensory analysis - Methodology - Sequential analysis
  • ISO 5492:2008 Sensory analysis - Vocabulary
  • ISO 5492-6:1985 Sensory analysis — Vocabulary
  • ISO/AWI 5492 Sensory analysis — Vocabulary
  • ISO 22489:2016 Microbeam analysis - Electron probe microanalysis - Quantitative point analysis for bulk specimens using wavelength dispersive X-ray spectroscopy
  • ISO 20613:2019 Sensory analysis — General guidance for the application of sensory analysis in quality control
  • ISO 5492-4:1981 Sensory analysis — Vocabulary
  • ISO 6564:1985 Sensory analysis; Methodology; Flavour profile methods
  • ISO 22308:2005 Cork stoppers - Sensory analysis
  • ISO 14594:2003 Microbeam analysis - Electron microprobe analysis (Castaing Microprobe) - Guidelines for determining experimental parameters for wavelength dispersive spectrometry
  • ISO 14594:2014 Microbeam analysis - Electron probe microanalysis - Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • ISO 8587:2006 Sensory analysis - Methodology - Ranking
  • ISO 14594:2003/Cor 1:2009 Microbeam analysis - Electron probe microanalysis - Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy; Technical Corrigendum 1
  • ISO 18794:2018 Coffee — Sensory analysis — Vocabulary
  • ISO 11037:2011 Sensory analysis - Guidelines for sensory assessment of the colour of products

Standard Association of Australia (SAA)

  • ISO 14594:2024 Microbeam analysis - Electron probe microanalysis - Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • AS 4392.1:1996 Heavy mineral sands - Analysis by wavelength dispersive X-ray fluorescence spectrometry - Titaniferous mineral sands
  • AS 4392.1:1996/Amdt 1:1996 Analysis of titanium-containing ores by wavelength dispersive X-ray fluorescence spectrometry of heavy mineral sands
  • AS 4392.1:1996/Amdt 2:1999 Analysis of titanium-containing ores by wavelength dispersive X-ray fluorescence spectrometry of heavy mineral sands
  • AS 4392.2:1997 Heavy mineral sands - Analysis by wavelength dispersive X-ray fluorescence spectrometry - Zircon materials
  • AS 3641.2:1990 Recommended practice for atomic emission spectrometric analysis - Inductively coupled plasma excitation

American Society for Testing and Materials (ASTM)

  • ASTM RR-F02-1002 1984 F0874-Standard Test Method for Temperature Measurement and Profiling for Microwave Susceptors
  • ASTM RR-D03-2000 2023 D7941/D7941M-Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM D7941/D7941M-23 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM D7941/D7941M-14 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM E1621-13 Standard Guide for Elemental Analysis by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM RR-E01-1115 2011 E2823-Test Method for Analysis of Nickel Alloys by Inductively Coupled Plasma Mass Spectrometry
  • ASTM C1379-10 Standard Test Method for Analysis of Urine for Uranium-235 and Uranium-238 Isotopes by Inductively Coupled Plasma-Mass Spectrometry
  • ASTM D8438/D8438M-23 Standard Test Methods for Use of Hyperspectral Sensors for Soil Nutrient Analysis of Ground Based Samples
  • ASTM RR-E01-1061 2006 E0539-Test Method for Analysis of Titanium Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM G178-03 Standard Practice for Determining the Activation Spectrum of a Material (Wavelength Sensitivity to an Exposure Source) Using the Sharp Cut-On Filter or Spectrographic Technique
  • ASTM C1476-00 Standard Test Method for Analysis of Urin for Technetium-99 by Inductively Coupled Plasma-Mass Spectrometry
  • ASTM RR-E01-1114 2011 E0539-Test Method for Analysis of Titanium Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM G178-16(2023) Standard Practice for Determining the Activation Spectrum of a Material (Wavelength Sensitivity to an Exposure Source) Using the Sharp Cut-On Filter or Spectrographic Technique
  • ASTM E1621-22 Standard Guide for Elemental Analysis by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM G178-09 Standard Practice for Determining the Activation Spectrum of a Material (Wavelength Sensitivity to an Exposure Source) Using the Sharp Cut-On Filter or Spectrographic Technique
  • ASTM E1645-21 Standard Practice for Preparation of Dried Paint Samples by Hotplate or Microwave Digestion for Subsequent Lead Analysis
  • ASTM E2465-23 Standard Test Method for Analysis of Ni-Base Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM RR-E01-1060 2006 E2465-Test Method for Analysis of Ni-Base Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E1645-20a Standard Practice for the Preparation of Dried Paint Samples by Hotplate or Microwave Digestion for Subsequent Lead Analysis

AT-ON

  • ONORM M 6238 Teil.2-1986 Water analysis; determination ofnitrate; 4-fluorophenol spectrometric method after distillation
  • ONORM M 6623-1994 Water analysis - Determination of phenoxyalkyl carbonic acids by gas chromatography and mass-spectrometric detection after solid-liquid-extraction and derivatization
  • ONORM M 6279-1991 Water analysis — Determination oj 33 elements by inductively coupled plasma emission spectrometry (ICP-AES)

RO-ASRO

Korean Agency for Technology and Standards (KATS)

  • KS D ISO 14594-2023 Microbeam analysis — Electron probe microanalysis — Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • KS D 1673-2007 Methods for inductively coupled plasma emission spectrochemical analysis of steel
  • KS D ISO 14594:2018 Microbeam analysis — Electron probe microanalysis — Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • KS D 1673-2007(2022) Methods for inductively coupled plasma emission spectrochemical analysis of steel
  • KS Q ISO 5492:2003 Sensory analysis-Vocabulary
  • KS D ISO 22489:2012 Microbeam analysis-Electron probe microanalysis-Quantitative point analysis for bulk specimens using wavelength-dispersive x-ray spectroscopy
  • KS Q ISO 16820:2007 Sensory analysis-Methodology-Sequential analysis
  • KS Q ISO 16820-2007(2012) Sensory analysis-Methodology-Sequential analysis
  • KS A 7000-2006 Sensory analysis-Vocabulary
  • KS A 7000-2021 Sensory analysis — Vocabulary
  • KS Q ISO 5492-2003(2018) Sensory Testing - Terminology
  • KS A 7000-2006(2021) Sensory analysis — Vocabulary
  • KS A 7000-1982 Sensory analysis-Vocabulary
  • KS D ISO 22489:2018 Microbeam analysis — Electron probe microanalysis — Quantitative point analysis for bulk specimens using wavelength dispersive x-ray spectroscopy
  • KS D 1678-2012 Methods for inductively coupled plasma emission spectrometric analysis of aluminum and alumnium alloys
  • KS Q ISO 16820-2007(2021) Sensory analysis-Methodology-Sequential analysis
  • KS Q ISO 6564-2003(2008) Sensory analysis-Methodology-Flavour profile methods
  • KS D ISO 22489-2023 Microbeam analysis — Electron probe microanalysis — Quantitative point analysis for bulk specimens using wavelength dispersive x-ray spectroscopy
  • KS A 7000-2006(2016) Sensory analysis — Vocabulary
  • KS D 1674-2019 Methods for inductively coupled plasma spectrometric analysis of trace elements in gold
  • KS Q ISO 5492-2023 Sensory analysis — Vocabulary
  • KS Q ISO 6564:2003 Sensory analysis-Methodology-Flavour profile methods
  • KS D 1673-2007(2017) Methods for inductively coupled plasma emission spectrochemical analysis of steel
  • KS D 1678-2022 Methods for inductively coupled plasma emission spectrometric analysis of aluminum and aluminium alloys
  • KS D ISO 3815-2:2021 Zinc and zinc alloys — Part 2: Analysis by inductively coupled plasma optical emission spectrometry
  • KS D ISO 3815-2-2006(2016) Zinc and zinc alloys-Part 2:Analysis by inductively coupled plasma optical emission spectrometry
  • KS L ISO 26845-2012(2022) Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS L ISO 26845-2012(2017) Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS D ISO 14594:2012 Microbeam analysis-Electron probe microanalysis-Guidelines for the determination of experimental parameters for wavelength dispersive spectroscopy
  • KS L ISO 26845-2022 Chemical analysis of refractories-General requirements for wet chemical analysis, atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry methods
  • KS D ISO 3815-2:2006 Zinc and zinc alloys-Part 2:Analysis by inductively coupled plasma optical emission spectrometry
  • KS D 1939-2003(2013) Chemical analysis of zinc alloys by inductively coupled plasma emission spectrometric method
  • KS Q ISO 8587:2014 Sensory analysis — Methodology — Ranking
  • KS Q ISO 8587:2009 Sensory analysis-Methodology-Ranking
  • KS Q ISO 8587-2014(2019) Sensory analysis — Methodology — Ranking
  • KS Q ISO 6658-2009(2019) Sensory analysis-Methodology-General guidance
  • KS D 1682-2008 Methods for emission spectrochemical analysis of lead ingot
  • KS D ISO 7527-2012(2017) Nickel, ferronickel and nickel alloys-Determination of sulfur content-Iodimetric titration method after induction furnace combustion
  • KS Q ISO 11037:2003 Sensory analysis-General guidance and test method for assessment of the colour of foods
  • KS Q ISO 11037-2023 Sensory analysis ― Guidelines for sensory assessment of the colour of products
  • KS D 1681-2003 Method for emission spectrochemica1 analysis of aluminium ingot

European Committee for Electrotechnical Standardization(CENELEC)

  • EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers

South African Bureau of Standard

PT-IPQ

  • NP 4420-2002 Sensory analysis Green coffee Preparation of samples for use in sensory analysis

Australian/New Zealand Standard (AU-AS/NZS)

  • AS/NZS 1050.16:1994(R2017) Methods for the analysis of iron and steel - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace
  • AS/NZS 1050.16:1994 Methods for the analysis of iron and steel - Determination of sulfur content - Infrared absorption method after combustion in an induction furnace

RU-GOST R

PH-BPS

  • PNS ISO 16820:2021 Sensory analysis - Methodology - Sequential analysis
  • PNS ISO 20613:2021 Sensory analysis - General guidance for the application of sensory analysis in quality control

U.S. Air Force

ESDU - Engineering Sciences Data Unit

US-FCR

GB-REG

CZ-CSN

BR-ABNT

U.S. Environmental Protection Agency (U.S. EPA)