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Transmission Electron Microscopy Parameters

Transmission Electron Microscopy Parameters, Total:112 items.

In the international standard classification, Transmission Electron Microscopy Parameters involves: Optics and optical measurements, Metrology and measurement in general, Analytical chemistry, Optical equipment, Education, Testing of metals, Optoelectronics. Laser equipment, Technical drawings, Surface treatment and coating, Materials for the reinforcement of composites, Air quality, Physics. Chemistry, Linear and angular measurements, Protection against crime, Protection against dangerous goods.


Professional Standard - Machinery, Transmission Electron Microscopy Parameters

  • JB/T 5586-1991 Classification and basic parameter of transmission electron microscope
  • JB/T 9352-1999 Test method for the transmission electron microscope
  • JB/T 5383-1991 Specification for transmission electron microscope
  • JB/T 5584-1991 Test method of transmission electron microscope amplification
  • JB/T 5585-1991 Test method of transmission electron microscope resolution

Group Standards of the People's Republic of China, Transmission Electron Microscopy Parameters

National Metrological Verification Regulations of the People's Republic of China, Transmission Electron Microscopy Parameters

Professional Standard - Education, Transmission Electron Microscopy Parameters

  • JY/T 011-1996 General Principles of Transmission Electron Microscopy
  • JY/T 0581-2020 General Rules for Analysis Methods of Transmission Electron Microscopy

International Organization for Standardization (ISO), Transmission Electron Microscopy Parameters

  • ISO/CD 25498:2023 Microbeam analysis — Analytical electron microscopy — Selected area electron diffraction analysis using a transmission electron microscope
  • ISO/CD 19214:2023 Microbeam analysis — Analytical electron microscopy — Method of determination for apparent growth direction of wirelike crystals by transmission electron microscopy
  • ISO 25498:2010 Microbeam analysis - Analytical electron microscopy - Selected-area electron diffraction analysis using a transmission electron microscope
  • ISO 25498:2018 Microbeam analysis - Analytical electron microscopy - Selected area electron diffraction analysis using a transmission electron microscope
  • ISO 19214:2017 Microbeam analysis - Analytical electron microscopy - Method of determination for apparent growth direction of wirelike crystals by transmission electron microscopy
  • ISO 21363:2020 Nanotechnologies — Measurements of particle size and shape distributions by transmission electron microscopy
  • ISO 13794:2019 Ambient air — Determination of asbestos fibres — Indirect-transfer transmission electron microscopy method
  • ISO 10312:2019 Ambient air — Determination of asbestos fibres — Direct transfer transmission electron microscopy method
  • ISO/TS 22292:2021 Nanotechnologies — 3D image reconstruction of rod-supported nano-objects using transmission electron microscopy
  • ISO/TS 10797:2012 Nanotechnologies - Characterization of single-wall carbon nanotubes using transmission electron microscopy
  • ISO 20263:2017 Microbeam analysis — Analytical electron microscopy — Method for the determination of interface position in the cross-sectional image of the layered materials
  • ISO 29301:2010 Microbeam analysis - Analytical transmission electron microscopy - Methods for calibrating image magnification by using reference materials having periodic structures

国家市场监督管理总局、中国国家标准化管理委员会, Transmission Electron Microscopy Parameters

  • GB/T 35098-2018 Microbeam analysis—Transmission electron microscopy—Morphological identification method of plant viruses by transmission electron microscopy

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Transmission Electron Microscopy Parameters

  • GB/T 18907-2002 Method of selected area electron diffraction for transmission electron microscopes
  • GB/T 18907-2013 Microbeam analysis.Analytical electron microscopy.Selected-area electron diffraction analysis using a transmission electron microscope
  • GB/T 21637-2008 Method of morphological identification of coronavirus by using transmission electron microscopy
  • GB/T 18873-2002 General specification of transmission electron microscope(TEM)--X-ray energy dispersive spectrum(EDS) quantitative microanalysis for thin biological specimens
  • GB/T 18873-2008 General guide of transmission electron microscope (TEM)-X-ray energy dispersive spectrometry (EDS) quantitative microanalysis for thin biological specimens
  • GB/T 28044-2011 General guide of detection method for nanomaterial biological effect by transmission electron microscope (TEM)
  • GB/T 17507-2008 General specification of thin biological standards for X-ray EDS microanalysis in transmission electron microscope
  • GB/Z 21738-2008 Fundamental structures of one dimensional nano-materials.High resolution transmission electron microscopy characterization
  • GB/T 30543-2014 Nanotechnologies.Characterization of single-wall carbon nanotubes using transmission electron microscopy
  • GB/T 20726-2015 Microbeam analysis.Selected instrumental performance parameters for the specification and checking of energy dispersive X-ray spectrometers for use in electron probe microanalysis

British Standards Institution (BSI), Transmission Electron Microscopy Parameters

  • BS ISO 25498:2018 Tracked Changes. Microbeam analysis. Analytical electron microscopy. Selected area electron diffraction analysis using a transmission electron microscope
  • BS ISO 25498:2010 Microbeam analysis - Analytical electron microscopy - Selected-area electron diffraction analysis using a transmission electron microscope
  • PD ISO/TS 10797:2012 Nanotechnologies. Characterization of single-wall carbon nanotubes using transmission electron microscopy
  • 15/30292710 DC BS ISO 19214. Guidelines for growth direction determination of wirelike crystals by transmission electron microscopy
  • BS ISO 10312:2019 Ambient air. Determination of asbestos fibres. Direct transfer transmission electron microscopy method
  • BS ISO 13794:2019 Ambient air. Determination of asbestos fibres. Indirect-transfer transmission electron microscopy method
  • PD ISO/TS 22292:2021 Nanotechnologies. 3D image reconstruction of rod-supported nano-objects using transmission electron microscopy
  • BS EN ISO 21363:2022 Nanotechnologies. Measurements of particle size and shape distributions by transmission electron microscopy
  • BS ISO 21363:2020 Nanotechnologies. Measurements of particle size and shape distributions by transmission electron microscopy
  • BS PD ISO/TS 22292:2021 Nanotechnologies. 3D image reconstruction of rod-supported nano-objects using transmission electron microscopy
  • 18/30351714 DC BS ISO 21363. Nanotechnologies. Measurements of particle size and shape distributions by transmission electron microscopy
  • 19/30394914 DC BS ISO 15632. Microbeam analysis. Selected instrumental performance parameters for the specification and checking of energydispersive X-ray spectrometers for use in electron probe microscope or an electron probe microanalyser (EPMA)
  • BS ISO 29301:2010 Microbeam analysis - Analytical transmission electron microscopy - Methods for calibrating image magnification by using reference materials having periodic structures

Korean Agency for Technology and Standards (KATS), Transmission Electron Microscopy Parameters

  • KS D 2716-2008(2018) Measurement of nanoparticle diameter-Transmission electron microscope
  • KS D 2716-2008 Measurement of nanoparticle diameter-Transmission electron microscope
  • KS D 8544-2006 Metallic coating-Measurement of coating thickness-Transmission electron microscopy method
  • KS D 8544-2016(2021) Metallic coating-Measurement of coating thickness-Transmission electron microscopy method
  • KS I ISO 10312-2008(2018) Ambient air-Determination of asbestos fibers-Direct-transfer transmission electron microscopy method
  • KS D ISO TR 17270:2007 Microbeam analysis-Analytical transmission electron microscopy-Technical report on the determination of the experimental parameters for electron energy loss spectroscopy
  • KS I ISO 13794-2008(2018) Ambient air-Determination of asbestos fibres-Indirect-transfer transmission electron microscopy method

KR-KS, Transmission Electron Microscopy Parameters

  • KS D 2716-2023 Measurement of nanoparticle diameter — Transmission electron microscope
  • KS D ISO TR 17270-2007 Microbeam analysis-Analytical transmission electron microscopy-Technical report on the determination of the experimental parameters for electron energy loss spectroscopy
  • KS C ISO 21363-2023 Nanotechnologies — Measurements of particle size and shape distributions by transmission electron microscopy

工业和信息化部, Transmission Electron Microscopy Parameters

  • YB/T 4676-2018 Analysis of Precipitated Phases in Steel by Transmission Electron Microscopy

Shanghai Provincial Standard of the People's Republic of China, Transmission Electron Microscopy Parameters

  • DB31/T 315-2004 Calibration method of magnification of transmission electron microscope

American Society for Testing and Materials (ASTM), Transmission Electron Microscopy Parameters

  • ASTM E3143-18a Standard Practice for Performing Cryo-Transmission Electron Microscopy of Liposomes
  • ASTM E3143-18 Standard Practice for Performing Cryo-Transmission Electron Microscopy of Liposomes
  • ASTM E3143-18b Standard Practice for Performing Cryo-Transmission Electron Microscopy of Liposomes
  • ASTM E3143-18b(2023) Standard Practice for Performing Cryo-Transmission Electron Microscopy of Liposomes
  • ASTM E766-98(2003) Standard Practice for Calibrating the Magnification of a Scanning Electron Microscope
  • ASTM E766-98 Standard Practice for Calibrating the Magnification of a Scanning Electron Microscope
  • ASTM D7201-06(2020) Standard Practice for Sampling and Counting Airborne Fibers, Including Asbestos Fibers, in the Workplace, by Phase Contrast Microscopy (with an Option of Transmission Electron Microscopy)
  • ASTM D7201-06(2011) Standard Practice for Sampling and Counting Airborne Fibers, Including Asbestos Fibers, in the Workplace, by Phase Contrast Microscopy (with an Option of Transmission Electron Microscopy)
  • ASTM E766-98(2008)e1 Standard Practice for Calibrating the Magnification of a Scanning Electron Microscope
  • ASTM E2090-00 Standard Test Method for Size-Differentiated Counting of Particles and Fibers Released from Clean Room Wipers Using Optical and Scanning Electron Microscopy
  • ASTM E2090-12 Standard Test Method for Size-Differentiated Counting of Particles and Fibers Released from Cleanroom Wipers Using Optical and Scanning Electron Microscopy
  • ASTM D5756-02 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Mass Concentration
  • ASTM D5756-95 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Mass Concentration
  • ASTM D6056-96(2011) Standard Test Method for Determining Concentration of Airborne Single-Crystal Ceramic Whiskers in the Workplace Environment by Transmission Electron Microscopy
  • ASTM E766-14(2019) Standard Practice for Calibrating the Magnification of a Scanning Electron Microscope
  • ASTM D5755-95 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Structure Number Concentrations
  • ASTM D5755-02 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Structure Number Concentrations
  • ASTM D5756-02(2008) Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Mass Surface Loading
  • ASTM D5755-03 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Structure Number Surface Loading
  • ASTM D5755-09 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Structure Number Surface Loading
  • ASTM D5755-09(2014)e1 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Structure Number Surface Loading
  • ASTM E766-14e1 Standard Practice for Calibrating the Magnification of a Scanning Electron Microscope
  • ASTM D6480-05 Standard Test Method for Wipe Sampling of Surfaces, Indirect Preparation, and Analysis for Asbestos Structure Number Concentration by Transmission Electron Microscopy

German Institute for Standardization, Transmission Electron Microscopy Parameters

  • DIN SPEC 52407:2015-03 Nanotechnologies - Methods for preparation and assessment for particle measurements with atomic force microscopy (AFM) and transmission scanning electron microscopy (TSEM)
  • DIN EN ISO 21363:2022-03 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy (ISO 21363:2020); German version EN ISO 21363:2022

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, Transmission Electron Microscopy Parameters

  • GB/T 34331-2017 Test method of Cucumber green mottle mosaic virus by transmission electron microscopy
  • GB/T 34168-2017 Test method of gold and silver nanoparticle materials biological effect by transmission electron microscope
  • GB/T 33839-2017 Methods of transmission electron microscope for biological specimen containing carbon nanomaterials involving biological effect

European Committee for Standardization (CEN), Transmission Electron Microscopy Parameters

  • EN ISO 21363:2022 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy (ISO 21363:2020)
  • prEN ISO 21363:2021 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy (ISO 21363:2020)

IX-IX-IEC, Transmission Electron Microscopy Parameters

  • IEC TS 62607-6-17:2023 Nanomanufacturing - Key control characteristics - Part 6-17: Graphene-based material - Order parameter: X-ray diffraction and transmission electron microscopy

PH-BPS, Transmission Electron Microscopy Parameters

  • PNS ISO 21363:2021 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy

Danish Standards Foundation, Transmission Electron Microscopy Parameters

  • DS/ISO/TS 10797:2012 Nanotechnologies - Characterization of single-wall carbon nanotubes using transmission electron microscopy
  • DS/ISO/TS 22292:2021 Nanotechnologies – 3D image reconstruction of rod-supported nano-objects using transmission electron microscopy

Association Francaise de Normalisation, Transmission Electron Microscopy Parameters

  • FD T16-209:2012 Nanotechnologies - Characterization of single-wall carbon nanotubes using transmission electron microscopy
  • NF ISO 10312:2020 Air ambiant - Dosage des fibres d'amiante - Méthode par microscopie électronique à transmission par transfert direct
  • NF T16-404:2020 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy
  • NF T16-404*NF EN ISO 21363:2022 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy
  • NF ISO 13794:2020 Air ambiant - Dosage des fibres d'amiante - Méthode par microscopie électronique à transmission par transfert indirect
  • NF X43-050:2021 Air quality - Determination of the asbestos fiber concentration by transmission electron microscopy - Indirect method
  • NF EN ISO 21363:2022 Nanotechnologies - Détermination de la distribution de taille et de forme des particules par microscopie électronique à transmission

AENOR, Transmission Electron Microscopy Parameters

  • UNE 77236:1999 AMBIENT AIR. DETERMINATION OF ASBESTOS FIBRES. DIRECT-TRANSFER TRANSMISSION ELECTRON MICROSCOPY METHOD.

Japanese Industrial Standards Committee (JISC), Transmission Electron Microscopy Parameters

  • JIS K 3850-3:2000 Measuring method for airborne fibrous particles -- Part 3: Indirect-transfer transmission electron microscopy method
  • JIS K 3850-2:2000 Measuring method for airborne fibrous particles -- Part 2: Direct-transfer transmission electron microscopy method
  • JIS K 0189:2013 Microbeam analysis.Electron probe microanalysis.Determination of experimental parameters for wavelength dispersive X-ray spectroscopy

ES-UNE, Transmission Electron Microscopy Parameters

  • UNE-EN ISO 21363:2022 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy (ISO 21363:2020) (Endorsed by Asociación Española de Normalización in February of 2022.)

AT-ON, Transmission Electron Microscopy Parameters

  • OENORM EN ISO 21363:2021 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy (ISO 21363:2020)

未注明发布机构, Transmission Electron Microscopy Parameters

  • DIN EN ISO 21363:2022 Nanotechnologies – measurements of particle size and particle shape distributions using transmission electron microscopy

RU-GOST R, Transmission Electron Microscopy Parameters

  • GOST R 8.697-2010 State system for ensuring the uniformity of measurements. Interpenar spacings in crystals. Method for measurement by means of a transmission electron microscope

GOSTR, Transmission Electron Microscopy Parameters

  • PNST 507-2020 Nanotechnologies. Single-wall carbon nanotubes. Characterization by using transmission electron microscopy and energy dispersive X-ray spectrometry

VN-TCVN, Transmission Electron Microscopy Parameters

  • TCVN 6502-1999 Ambient air.Determination of asbestos bibres.Direct-transfer transmission electron microscopy method

International Electrotechnical Commission (IEC), Transmission Electron Microscopy Parameters

  • IEC TS 62607-6-2:2023 Nanomanufacturing - Key control characteristics - Part 6-2: Graphene - Number of layers: atomic force microscopy, optical transmission, Raman spectroscopy

Professional Standard - Public Safety Standards, Transmission Electron Microscopy Parameters

  • GA/T 909-2010 Collecting and packaging method for trace evidence-Gunshot residue(SEM/EDS examination)




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