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Database: 365,228(8 Aug 2026)

nanogram analysis

nanogram analysis, Total:119 items.

The international standard classification for "nanogram analysis" includes: Physicochemical methods of analysis , Optical equipment , Carbon materials , Chemical analysis .

The Chinese standard classification for "nanogram analysis" includes: Basic standards and general methods , Electron optics and other physical optics instrument , Carbon material in general , Powder metallurgy in general .


Professional Standard - Chemical Industry

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

  • GB/T 18735-2014 Microbeam analysis-General guide for the specification of nanometer thin reference materials for analytical transmission electron microscope(AEM/EDS)
  • GB/T 29189-2012 Thermo gravimetric analysis(TGA)for determination of oxidation temperature and ash content of carbon nanotubes
  • GB/T 38531-2020 Microbeam analysis—Computed tomography (CT) method for micro- and nano-pore structure analysis in tight rock samples
  • GB/T 18735-2002 General specification of nanometer thin STANDARD specimen for analytical transmission electron microscopy (AEM/EDS)

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 36065-2018 Nanotechnologies—Analysis of amorphous carbon, ash and volatile of carbon nanotubes—Thermogravimetry
  • GB/T 34916-2017 Nanotechnologies―Multi-walled carbon nanotubes―Determination of amorphous carbon content by thermogravimetric analysis
  • GB/T 33498-2017 Surface chemical analysis―Characterization of nanostructured materials

Yunnan Provincial Standard of the People's Republic of China

  • DB53/T 210-2007 Technical Regulations for the Production of Narok African Setaria Species
  • DB53/T 212-2007 Technical Regulations for the Production of Narok African Setaria Species
  • DB53/T 211-2007 Technical Regulations for the Production of Fine Varieties of Narok African Setaria

Group Standards of the People's Republic of China

  • T/YNGA 007-2023 Group standard for quality seed production for Setaria sphacelata cv.Narok
  • T/CSTM 00537-2021 Phase transition temperature measurement of micro-nano thin film -Optical power analysis

Professional Standard - Commodity Inspection

  • SN/T 3503-2013 Rapid screen of ractopamine residues with nano magnetic particles-Immunechromatographic assay
  • SN/T 3502-2013 Rapid screen of clenbuterol residues with nano magnetic particles-Immunechromatographic assay

CZ-CSN

Korean Agency for Technology and Standards (KATS)

SCC

  • AWWA ACE71069 Oxnard GREAT Program
  • AWWA WQTC50524 Analysis of Nanofiltration Under the ICR
  • DIN EN 2759 E:1991 Draft Document - Aerospace series; steel FE-PL80; 1900 <kleiner => R<(Index)m> <kleiner => 2100 MPa; forging D<(Index)e> <kleiner => 75 mm
  • DIN EN 2762 E:1991 Draft Document - Aerospace series; steel FE-PL78; 1900 <kleiner => R<(Index)m> <kleiner => 2100 MPa; bar D<(Index)e> <kleiner => 75 mm
  • DANSK DS/ISO/TS 11308:2020 Nanotechnologies – Characterization of carbon nanotube samples using thermogravimetric analysis
  • DANSK DS/ISO/TS 21362:2020 Nanotechnologies – Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • BS PD ISO/TS 21362:2018 Nanotechnologies. Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • BS PD CEN ISO/TS 21362:2021 Nanotechnologies. Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • DIN EN 2450 E:2019 Draft Document - Aerospace series - Steel 31Ni10 - 1230 MPa <kleiner => R<(Index)m> <kleiner => 1420 MPa - Bars - D<(Index)e> <kleiner => 40 mm; German and English version EN 2450:2018
  • DIN EN 2438 E:2009 Draft Document - Aerospace series - Steel FE-PL2102 (35NiCr6) - 900 MPa <kleiner =>R<(Index)m> <kleiner => 1100 MPa - Bars - D<(Index)e> <kleiner => 40 mm; German and English version EN 2438:2008
  • DIN EN 2503 E:2019 Draft Document - Aerospace series - Steel FE-PM66 - 930 MPa <kleiner => R<(Index)m> <kleiner => 1080 MPa - Forgings - D<(Index)e> <kleiner => 150 mm; German and English version FprEN 2503:2018
  • DIN EN 2451 E:2019 Draft Document - Aerospace series - Steel FE-PL73 - 1230 MPa <kleiner => R<(Index)m> <kleiner => 1420 MPa - Forgings - D<(Index)e> <kleiner => 40 mm; German and English version FprEN 2451:2018
  • DIN EN 2476 E:2019 Draft Document - Aerospace series - Steel FE-PL74 - 1100 MPa <kleiner => R<(Index)m> <kleiner => 1300 MPa - Forgings - D<(Index)e> <kleiner => 100 mm; German and English version FprEN 2476:2018
  • DIN EN 2502 E:2019 Draft Document - Aerospace series - Steel FE-PM66 - 930 MPa <kleiner => R<(Index)m> <kleiner => 1080 MPa - Bars - D<(Index)e> <kleiner => 150 mm; German and English version FprEN 2502:2018
  • DIN EN 2446 E:2009 Draft Document - Aerospace series - Steel FE-PL1503 (35CrMo4) - 1100 MPa <kleiner => R<(Index)m> <kleiner => 1300 MPa - Bars - D<(Index)e> <kleiner => 25 mm; German and English version EN 2446:2008
  • DIN EN 2448 E:2009 Draft Document - Aerospace series - Steel FE-PL1503 (35CrMo4) - 900 MPa <kleiner => R<(Index)m> <kleiner => 1100 MPa - Bars - D<(Index)e> <kleiner => 40 mm; German and English version EN 2448:2008
  • DIN EN 2205 E:1980 Draft Document - Aerospace; steel FE-PL 43 S, 900 MPa <kleiner => R<(Index)m> <kleiner => 1100 MPa, bars D<(Index)e> <kleiner => 40 mm
  • DIN EN 2621 E:1990 Draft Document - Aerospace series; circular structural tubes seamless, in low alloy steel 4 <kleiner => D <kleiner => 100 mm, 0.5 <kleiner => a <kleiner => 10 mm; dimensions
  • AWWA SOURCES55612 An Analysis of Municipal Water Conservation Plans in Texas
  • DIN EN 3468 E:2018 Draft Document - Aerospace series - Steel FE-PA13 - Softened - 500 MPa <kleiner => R<(Index)m> <kleiner => 700 MPa - Forgings - D<(Index)e> <kleiner => 100 mm; German and English version FprEN 3468:2018
  • BS PD ISO/TS 23690:2023 Nanotechnologies. Multiwall carbon nanotubes. Determination of carbon impurity content by thermogravimetric analysis
  • DANSK DS/CEN ISO/TS 21362:2021 Nanotechnologies – Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)
  • BS PD ISO/TR 14187:2011 Surface chemical analysis. Characterization of nanostructured materials
  • SN-CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)
  • BS PD ISO/TR 14187:2020 Surface chemical analysis. Characterization of nanostructured materials
  • MIL MIL-DTL-43098/40-2019 MEDALLION, LIEUTENANT GENERAL ANDREW T. MCNAMARA ICON AWARD, DEFENSE LOGISTIC AGENCY
  • AWWA WQTC65725 Riverbank Filtration for SWTR Compliance: Kennewick, Washington

CU-NC

German Institute for Standardization

  • DIN EN 572-6:1995 Basic products made from soda lime glass
  • DIN CEN ISO/TS 21362:2021-07 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018); German version CEN ISO/TS 21362:2021

British Standards Institution (BSI)

  • BS PD ISO/TS 11308:2020 Nanotechnologies. Characterization of carbon nanotube samples using thermogravimetric analysis
  • PD ISO/TS 11308:2020 Nanotechnologies. Characterization of carbon nanotube samples using thermogravimetric analysis
  • BS DD ISO/TS 11308:2011 Nanotechnologies. Characterization of single-wall carbon nanotubes using thermogravimetric analysis
  • PD CEN ISO/TS 21362:2021 Nanotechnologies. Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • PD ISO/TS 23690:2023 Nanotechnologies. Multiwall carbon nanotubes. Determination of carbon impurity content by thermogravimetric analysis
  • BS PD CEN ISO/TS 12025:2015 Nanomaterials. Quantification of nano-object release from powders by generation of aerosols
  • 24/30483836 DC BS EN ISO 21362 Nanotechnologies - Analysis of nano-objects using asymmetrical flow and centrifugal field-flow fractionation
  • PD ISO/TR 14187:2020 Surface chemical analysis. Characterization of nanostructured materials
  • BS DD ISO/TS 11251:2010 Nanotechnologies. Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry

GOSTR

  • PNST 307-2018 Nanotechnologies. Single-wall carbon nanotubes. Characterization using thermogravimetric analysis
  • GOST 34445-2018 Nanomaterials. Nanostructured oxide magnesium. Technical requirements and test (analysis) methods
  • GOST 34444-2018 Nanomaterials. Nanostructured hydroxide magnesium. Technical requirements and test (analysis) methods

HU-MSZT

Spanish Association for Standardization (UNE)

Danish Standards Foundation

  • DS/ISO/TS 11308:2012 Nanotechnologies - Characterization of single-wall carbon nanotubes using thermogravimetric analysis
  • DS/ISO/TS 21362:2020 Nanotechnologies – Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • DS/CEN ISO/TS 21362:2021 Nanotechnologies – Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)

International Organization for Standardization (ISO)

  • ISO/TS 11308:2020 Nanotechnologies — Characterization of carbon nanotube samples using thermogravimetric analysis
  • ISO/TS 21362:2018 Nanotechnologies — Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • ISO/TS 11308:2011 Nanotechnologies - Characterization of single-wall carbon nanotubes using thermogravimetric analysis
  • ISO/TS 23690:2023 Nanotechnologies — Multiwall carbon nanotubes — Determination of carbon impurity content by thermogravimetric analysis
  • ISO/TR 14187:2011 Surface chemical analysis - Characterization of nanostructured materials
  • ISO/TR 14187:2020 Surface chemical analysis — Characterization of nanostructured materials
  • ISO/TS 11251:2010 Nanotechnologies - Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry

IT-UNI

  • UNI CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation

European Committee for Standardization (CEN)

  • EN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation
  • CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)

Japanese Industrial Standards Committee (JISC)

UY-UNIT

Association Francaise de Normalisation

PH-BPS

  • PNS ISO/TS 11308:2021 Nanotechnologies - Characterization of carbon nanotube samples using thermogravimetric analysis
  • PNS ISO 19007:2021 Nanotechnologies - In vitro MTS assay for measuring the cytotoxic effect of nanoparticles

IN-BIS

  • IS 10325-1982 Specification for 15 kg Vanaspati and Edible Oil Square Cans

GSO

  • GSO ISO/TS 11251:2013 Nanotechnologies -- Characterization of volatile components in single-wall carbon nanotube samples using evolved gas analysis/gas chromatograph-mass spectrometry
  • GSO ASTM D4195:2016 Standard Guide for Water Analysis for Reverse Osmosis and Nanofiltration Application
  • OS GSO ASTM D4195:2016 Standard Guide for Water Analysis for Reverse Osmosis and Nanofiltration Application
  • OS GSO ISO/TR 14187:2013 Surface chemical analysis -- Characterization of nanostructured materials
  • GSO ISO/TR 14187:2013 Surface chemical analysis -- Characterization of nanostructured materials

Lithuanian Standards Office

  • LST CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)

AT-ON

  • ONR CEN ISO/TS 21362:2021 Nanotechnologies - Analysis of nano-objects using asymmetrical-flow and centrifugal field-flow fractionation (ISO/TS 21362:2018)

Canadian Standards Association (CSA)

  • CSA C22.10-2010 Québec Construction Code, Chapter V — Electricity Canadian Electrical Code, Part I (Twenty-first Edition; Incorporating Québec Amendments)

American Society for Testing and Materials (ASTM)

  • ASTM E2834-12(2018) Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Nanoparticle Tracking Analysis (NTA)
  • ASTM E2834-12(2022) Standard Guide for Measurement of Particle Size Distribution of Nanomaterials in Suspension by Nanoparticle Tracking Analysis (NTA)