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Database: 365,228(8 Aug 2026)

How to analyze the extinction spectrum

How to analyze the extinction spectrum, Total:200 items.

The international standard classification for "How to analyze the extinction spectrum" includes: Particle size analysis. sieving , Analytical chemistry in general , Nickel, chromium and their alloys , Chemical analysis , Testing of metals in general , Other non-ferrous metals and their alloys , Copper and copper alloys , Non-ferrous metals , Other iron and steel products .

The Chinese standard classification for "How to analyze the extinction spectrum" includes: chromatograph , Sieving, Sieve Plate and Sieve Screen , Electrochemical, thermochemistry and optical profile type analyzer , Heavy metals and their alloys analysis method , Basic standards and general methods , Light metals and their alloys analysis method , Rare metals and their alloys analysis method , Precious metals and their alloys , Technical Management , Beneficiation reagent .


Taiwan Provincial Standard of the People's Republic of China

  • CNS 12416-1988 Genenral Rules for Emission Spectroscopic Analysis
  • CNS 9705-1984 General Rules for Emission-Spectroscopic Analysis of Iron and Steel
  • CNS 10006-1984 Method for Photoelectric Emission Spectrochemical Analysis of Iron And Steel
  • CNS 10005-1984 General Rules for Photoelectric Emission Spectrochemical Analysis of Metallic Materials
  • CNS 12416-2006 General rules for atomic emission spectrometry
  • CNS 12126-1987 Method of Chemical Analysis by Atomic Absorption Spectrophotometry for Copper and Copper Alloys
  • CNS 14896.14-2005 Titanium - Method for atomic emission spectrometric analysis
  • CNS 10503-1984 Emission-Spectroscopic Analysis for Pig Iron and Cast Iron
  • CNS 14896-14-2005 Titanium - Method for atomic emission spectrometric analysis
  • CNS 13921-1997 Method of atomic emission spectrophotoelectric analysis for die casting zinc alloy
  • CNS 11071-1984 Emission-Spectroscopic Analysis for Carbon Steel and Low Alloy Steel
  • CNS 9706-1984 General Rules for Photoelectric Emission Spectrochemical Analysis of Iron and Steel
  • CNS 14341-1999 Optical spectrum analyzer

Professional Standard - Education

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

  • GB/T 19627-2005 Particle size analysis--Photon correlation spectroscopy
  • GB/T 25481-2010 On-line ultraviolet/visible spectrum analyzer
  • GB/T 16599-1996 Methods for emission spectrum analysis of molybdenum
  • GB/T 5123-1985 Nickel-Method of spectral analysis
  • GB/T 11170-1989 Method for photoelectric emission spectroscopic analysis of stainless steel
  • GB/T 42360-2023 Surface chemical analysis―Total reflection X-ray fluorescence analysis of water
  • GB/T 7999-2000 STANDARD method for direct reading spectrometric analysis of aluminum and its alloys

Professional Standard - Non-ferrous Metal

Professional Standard - Electron

National Metrological Verification Regulations of the People's Republic of China

Professional Standard - Commodity Inspection

  • SN/T 5566-2023 General rules of analytical method for laser micro-Raman spectrum
  • SN/T 2786-2011 Method for Analysis of Magnesium and Magnesium Alloys - Optical Emission Spectrometry
  • SN/T 2785-2011 Methods for Analysis of Zinc and Zinc Alloys - Optical Emission Spectrometry

Professional Standard - Ferrous Metallurgy

  • YB/T 4177-2008 Determination of chemical composition in slag by X-ray fluorescence spectrometry

Guangdong Provincial Standard of the People's Republic of China

  • DB44/T 1602-2015 Analysis Method of Stone Composition--X-ray Fluorescence Spectrometry

National Standardisation Body (ASRO)

U.S. Air Force

British Standards Institution (BSI)

South African Bureau of Standard

Associação Brasileira de Normas Técnicas

Kingdom of Bahrain Testing and Metrology Directorate

Korean Agency for Technology and Standards (KATS)

  • KS M 0028-2009(2019) General rules for light emission spectrochemical analysis
  • KS M 0028-2024 General rules for light emission spectrochemical analysis
  • KS C 6918-2020 Test methods of fiber-optic spectrum analyzer
  • KS C 6918-2024 Test methods of fiber-optic spectrum analyzer
  • KS M 0017-2010(2025) General rules for X-ray fluorescence spectrometric analysis
  • KS D 1653-1991 Method of spectrochemica analysis
  • KS D 1654-1993 General Rules for X-ray Fluorescence Spectrometric Analysis of Iron and Steel
  • KS D 1682-2008 Methods for emission spectrochemical analysis of lead ingot
  • KS D 1654-2003(2016) General rules for X-ray fluorescence spectrometric analysis of iron and steel
  • KS M 0028-2019 General rules for light emission spectrochemical analysis
  • KS D 1655-2008(2024) Method for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D 2710-2024 Methods for X-ray fluorescence spectrometric analysis of ferroniobium
  • KS C 6918-1995 Test methods of fiber-optic spectrum analyzer
  • KS D 1654-2021 General rules for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D 1898-2019 Copper alloys —Methods for X-ray fluorescence spectrometric analysis
  • KS D 1898-2024 Copper alloys — Methods for X-ray fluorescence spectrometric analysis
  • KS D 2518-2015 Methods for photoelectric emission spectrochemical analysis of cadmium metal
  • KS D 1655-2024 Method for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D 1684-2008 Methods for emission spectrographic analysis of magnesium ingot
  • KS M 0017-2025 General rules for X-ray fluorescence spectrometric analysis
  • KS D 2710-2019 Methods for X-ray fluorescence spectrometric analysis of ferroniobium
  • KS D 1682-2020 Method for photoelectric emission spectrochemical analysis of lead metal
  • KS D 1681-2003 Method for emission spectrochemica1 analysis of aluminium ingot
  • KS D 1655-1993 Method for X-Ray Fluorescence Spectrometric Analysis of Iron and Steel
  • KS D 1655-2019 Method for X-ray fluorescence spectrometric analysis of iron and steel
  • KS L 3316-1988 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-1998 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS M 0017-1995 General rules for X-ray fluorescence spectrometric analysis
  • KS D ISO 3815-2002(2006) Zinc and zinc alloys-Spectrographic analysis
  • KS L 3316-2014(2024) Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-2014(2019) Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS M 0017-2020 General rules for X-ray fluorescence spectrometric analysis
  • KS D ISO 3815-2011 Zinc and zinc alloys-Spectrographic analysis
  • 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 2086-2004 Method for atomic emission spectrometric analysis of titanium
  • KS D ISO 3815:2011 Zinc and zinc alloys-Spectrographic analysis

Gosstandart of Russia

GCC Standardization Organization

International Organization for Standardization (ISO)

European Committee for Standardization (CEN)

  • PREN 14726-2003 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • CEN EN 62129-2006 Calibration of optical spectrum analyzers
  • EN 14726:2019 Aluminium and aluminium alloys - Determination of the chemical composition of aluminium and aluminium alloys by spark optical emission spectrometry
  • EN 14726:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • CEN EN 62129-2006_ Calibration of optical spectrum analyzers
  • CEN EN 14726-2005 Aluminium and aluminium alloys — Chemical analysis — Guideline for spark optical emission spectrometric analysis

Association Francaise de Normalisation

  • NF C93-845:2006 Calibration of optical spectrum analyzers.
  • NF A06-590:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis.
  • NF X11-672:1996 Particle size analysis. Photon correlation spectroscopy.
  • NF A06-840:1998 Zinc and zinc alloys. Optical emission spectrometric analysis.

German Institute for Standardization

Japanese Industrial Standards Committee (JISC)

  • JIS G 1256:1997 Iron and steel -- Method for X-ray fluorescence spectrometric analysis
  • JSA JIS G 1256 AMD 1 Iron and Steel - X-ray Fluorescence Spectrometry
  • JIS C 6192:2008 Calibration of optical spectrum analyzers
  • JIS C 6183-2:2018 Optical spectrum analyzers -- Part 2: Calibration method
  • JSA JIS G 1256 X-ray fluorescence spectrometry of iron and steel
  • JIS H 1123:2021 Method for photoelectric emission spectrochemical analysis of lead metal
  • JIS R 2216:2005 Methods for X-ray fluorescence spectrometric analysis of refractory products
  • JIS M 8205:2000 Iron ores -- X-ray fluorescence spectrometric analysis
  • JIS G 1351:2006 Ferroalloys -- Method of X-ray fluorescence spectrometric analysis
  • JIS H 1123:1995 Method for photoelectric emission spectrochemical analysis of lead metal
  • JIS H 1305:2005 Method for optical emission spectrochemical analysis of aluminium and aluminium alloys
  • JIS H 1163:2024 Method for photoelectric emission spectrochemical analysis of cadmium metal
  • JIS G 1256:1997 AMD 1:2010 Iron and steel -- Method for X-ray fluorescence spectrometric analysis (Amendment 1)

Spanish Association for Standardization (UNE)

  • UNE-EN 12019:1998 ZINC AND ZINC ALLOYS. OPTICAL EMISSION SPECTROMETRIC ANALYSIS.
  • UNE-EN 14726:2006 Aluminum and aluminium alloys. Chemical analysis. Guideline for spark optical emission spectometric analysis

Standard Association of Australia (SAA)

  • AS 4549.1:1999 Particle size analysis - Photon correlation spectroscopy

Instituto Uruguayo de Normas Técnicas

  • UNIT-NM 296:2005 Clinical Analysis. Methods for verifying the calibration of photometers and spectrophotometers.

Ente Nazionale Italiano di Unificazione

  • UNI EN 12019:1999 Zinc and zinc alloys - Optical emission spectrometric analysis
  • UNI EN 14726:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • UNI 8467:1983 Spectral analysis of ferrous materials. Determination of tantalium in steels. Method by x-ray fluorescence spectrometry.
  • UNI 8775:1985 Spectral analysis of ferrous materials. Determination of antimony in steels. Method by rx fluorescence spectrometry.
  • UNI ENV 12908:1999 Lead and lead alloys - Analysis by Optical Emission Spectrometry (OES) with spark excitation
  • UNI 8466:1983 Spectral analysis of ferrous materials. Determination of niobium in steels. Method by x-ray fluorescence spectrometry

Swedish Institute for Standards

Comitato Elettrotecnico Italiano

Danish Standards Foundation

American Society for Testing and Materials (ASTM)

International Electrotechnical Commission (IEC)

Bureau of Indian Standards

Association of German Mechanical Engineers

Czech Standards Institute (UNMZ)

  • CSN 42 0600 Cast.3-1975 Antimony of high parity. Methods of chemical and spectral analysis. Delermmation of arsenic by photomotric metod