Analytical method Duplicate well
Analytical method Duplicate well, Total:192 items.
The international standard classification for "Analytical method Duplicate well" includes: Solid fuels , Other materials , Aerospace engines and propulsion systems , Chemical elements , Cadmium, cobalt and their alloys , Reinforced plastics , Other standards related to analytical chemistry , Lead, zinc, tin and their alloys , Textiles in general , Chemical analysis , Particle size analysis. sieving , Copper and copper alloys , Coals , Other non-ferrous metals and their alloys , Aluminium and aluminium alloys , Refractories , Materials for aerospace construction .
The Chinese standard classification for "Analytical method Duplicate well" includes: Petroleum development , Composite materials and solid fuels , Spacecraft power system , Semimetal and semiconductor material analysis method , Heavy metals and their alloys analysis method , Fibre reinforced composites , Basic standards and general methods , Basic standards and general methods , Inorganic chemicals in general , Sieving, Sieve Plate and Sieve Screen , Light metal ore , Metal physical property test method , Fireproof material in general , Technical Management .
Professional Standard - Petroleum
- SY/T 6103-2004 Measurement of rock pore structure Method of image analysis
- SY/T 6824-2011 General Requirements and Testing Method of Combined Perforator for Oil and Gas Well
- SY/T 7310-2016 Methods for analysis and identification of foraminiferal fossils
- SY/T 6312-1997 Measurement of sandstone grain size and pore character -Method of image analysis
- SY/T 6103-2019 Measurement of rock pore structure Method of image analysis
- SY/T 7773-2024 Laser confocal analysis method for rock pore structure
Professional Standard - Aerospace
- QJ 1210-1987 Method of Analysis for Printed Board Hole Metallization Solution
- QJ 1491.2-1988 固体发动机
- QJ 914.2-1985 Analysis Method for Ammonium Perchlorate Content in Composite Solid Propellant (Carboxyl System)
- QJ 2755-1995 Compressive Test Method for Multihole Low-density Compound Materials
- QJ 913.6-1985 Composite solid propellant (polyether system) analysis method for ferric oxide content
- QJ 914.4-1985 Composite solid propellant (butylene carboxyl system) - Analysis method for moisture content
- QJ 1591.2-1989 Composite solid propellant (butylated hydroxyl system) tert-butyl ferrocene content analysis method
- QJ 1591.1-1989 Composite solid propellant (butylated hydroxyl system) Iron oxide content analysis method
- QJ 913.3-1985 Composite solid propellant (polyether system) - Analysis method for copper chromite content
- QJ 914.5-1985 Composite solid propellant (butylene carboxyl system) - Analytical method for residual styrene
- QJ 913.7-1985 Composite solid propellant (polyether system) Calcium carbonate content analysis method
- QJ 480-1979 test method for porosity of metallic coatings
- QJ 913A-1995 Analysis Method for Aluminum Powder Content in Composite Solid Propellant
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 21650.3-2011 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption—Part 3:Analysis of micropores by gas adsorption
- GB/T 3260.5-2013 Methods for Chemical Analysis of Tin - Part 5: Determination of Antimony Content - the Malachite Green Photometric Method
- GB/T 21650.2-2008 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Part 2: Analysis of mesopores and macropores by gas adsorption
- GB/T 5059.2-1985 Methods for chemical analysis of ferromolybdenum - The malachite green spectrophotometric method for the determination of antimony content
- GB/T 33347-2016 Reciprocating internal combustion gas generating set- Classification and constituent analysis of gas fuels
- GB/T 4325.4-1984 Methods for chemical analysis of molybdenum;The malachite green photometric method for the determination of antimony content
- GB/T 4373.2-1984 Methods for chemical analysis of arsenic;The malachite green photometric method for the determination of antimony content
- GB/T 32496-2016 Test method for vo1ume fraction of reinforcement in metal matrix composites--Image analysis method
- GB/T 30968.4-2014 Test method for open-hole/loaded-hole of polymer matrix composite laminates―Part 4:Test method of open-hole compressive strength
- GB/T 23274.5-2009 Methods for chemical analysis of stannic oxide - Part 5: Determination of antimony content - Malachite green photometric method
- GB/T 40275-2021 Textiles—Quantitative analysis of bicomponent fiber—Melting microscopy method
- GB/T 3260.6-2013 Methods for Chemical Analysis of Tin - Part 6: Determination of Arsenic Contents - Malachite Green Arsenic Molybdenum Heteropoly Acid Photometric Method
- GB/T 8220.3-1998 Methods for chemical analysis of bismuth--Determination of antimony content--Melachite green photometric method
- GB/T 33948.1-2017 Method for chemical analysis of copper-steel composite metal. Part 1: Determination of copper content. Iodine titration method
- GB/T 45468-2025 Microbeam analysis—FIB-SEM imaging and analysis method for 3D micro-pore structure of rock sample
- GB/T 3260.5-1982 Chemical analysis of tin--The malachite green photometric method for determination of antimony
- GB/T 10574.2-1989 Tin-lead solders--Determination of antimony content--Malachite green spectrophotometric method
- GB/T 23278.5-2009 Methods for chemical analysis of sodium stannate - Part 5: Determination of antimony content - Malachite green photometric method
- GB/T 38531-2020 Microbeam analysis—Computed tomography (CT) method for micro- and nano-pore structure analysis in tight rock samples
- GB/T 33948.2-2017 Method for chemical analysis of copper-steel composite metal. Part 2: Determination of zinc content. Na2EDTA titration method
- GB/T 30968.1-2014 Test method for open-hole/loaded-hole of polymer matrix composite laminates—Part 1:Test method of bearing response
- GB/T 4324.4-1984 Methods for chemical analysis of tungsten - The malachite green photometric method for the determination of antimony content
- GB/T 30968.3-2014 Test method for open-hole/loaded-hole of polymer matrix composite laminates―Part 3:Test method of open-hole tensile strength
- GB/T 1819.6-2004 Methods for chemical analysis of tin concentrates - Determination of antimony content - The malachite green spectrometric method and the flame atomic absorption spectrometric method
- GB/T 30968.2-2014 Test method for open-hole/loaded-hole of polymer matrix composite laminates―Part 2:Test method of filled-hole tension and compression
- GB/T 8151.11-1987 Methods for chemical analysis of zinc concentrates--The malachite green spectrophotometric method for the determination of antimony content
Professional Standard - Non-ferrous Metal
- YS/T 536.3-2006 Bismuth Chemical Analysis Method Malachite Green Spectrophotometry Determination of Antimony
- YS/T 536.3-2009 Methods for chemical analysis of bismuth—Determination of antimony content—Melachite green photometric method
- YS/T 1161.3-2016 Chemical analysis methods of pseudoboehmite—Part 3:Determination of pore volume and specific surface area—Bynitrogen adsorption
- YS/T 36.2-1992 Determination of Antimony Content by Malachite Green Spectrophotometric Method for Chemical Analysis of High Purity Tin
- YS/T 519.2-2009 Methods for chemical analysis of arsenic Part 2: Determination of antimony content-Malachite green spectrophotometric method
- YS/T 519.2-2006 Methods for chemical analysis of arsenic The malachite green photometric method for the determination of antimony content
- YS/T 36.2-2011 Methods for chemical analysis of high-purity Tin Part 2:Determination of antimony content-Malachite green spectrophotometry
- YS/T 34.1-1992 High Purity Arsenic Chemical Analysis Method Malachite Green Spectrophotometric Determination of Antimony
Group Standards of the People's Republic of China
- T/QGCML 4080-2024 Complex system flexibility performance analysis method and system
Professional Standard - Ferrous Metallurgy
- YB/T 5046-1993 Chemical analysis of lump molybdenum oxide The determination of antimony by the photometric method of malachite green
- YB/T 4928-2021 Microlithofacies analysis method of pore structure of coke and raw coal
- YB/T 118-1997 Test method for pore size distribution of refractory
- YB/T 118-2020 Refractory products-Determination of pore size distribution
Military Standard of the People's Republic of China-General Armament Department
- GJB 2710-1996 Failure analysis method of polymer matrix composite parts
Professional Standard - Electron
- SJ/T 11014-1996 Methods of analysis for pure silver brazing for electronic devices - Determination of antimony (spectrophotometric-malichite green method)
Professional Standard - Aviation
- HB 6740-1993 Opening Tensile Test for Carbon Fibre Composite Laminated Wood
- HB 7615-1998 Constituent and Pre-curing Degree of Composite Material Resin Matrix - Analysis Method of High Performance Liquid Chromatography
- HB 6741-1993 Opening Compression Test for Carbon Fibre Composite Laminated Wood
Professional Standard - Education
- JY/T 0580-2020 General rules of analytical methods for elemental analyzer
Gosstandart of Russia
- GOST R 70753-2023 Concrete. Method of microscopic quantitative analysis of the structure of air pores
- GOST R 56788-2015 Polymer composites. Test method open-hole compressive strength of polymer matrix composite laminates
- GOST R 57569-2017 Polymer composites. Test method for fatigue of samples with open hole
- GOST R 57735-2017 Ceramic composites. Test method for open-hole tension testing of specimens at normal temperature
- GOST 16274.0-1977 Bismuth. General requirements for methods of analysis
- GOST 33377-2015 Polymer composites. Test method for filled-hole tension testing of specimens
- GOST R 53372-2009 Gold. Methods of analysis
- GOST 12226-1980 Platinum. Methods of analysis
- GOST R 56788-2023 Polymer composites. Method for determination of compressive strength of polymer matrix composites (laminates) with open hole
- GOST 33375-2015 Polymer composites. Test method for open-hole tension testing of specimens
- GOST 12225-1980 Palladium. Methods of analysis
- GOST 31382-2009 Copper. Methods of analysis
- GOST ISO 16820-2015 Sensory analysis. Methodology. Sequential analysis
- GOST R 57697-2017 Polymer composites. Method for determination of curing properties of pultrusion resins by thermal analysis
IPC - Association Connecting Electronics Industries
- IPC 7721 3.3.2-1998 Hole Repair@ Transplant Method
- IPC 7721 3.3.1-1998 Hole Repair@ Epoxy Method
- IPC 7721 5.2-1998 Plated Hole Repair@ Double Wall Method
American Society for Testing and Materials (ASTM)
- ASTM STP 521-1973 Test Methods for Analyzing High Modulus Fibers and Composites
- ASTM D3768-22 Standard Test Method for Microcellular Urethanes—Flexural Recovery
- ASTM D3768-96 Standard Test Method for Microcellular Urethanes--Flexural Recovery
- ASTM D3768-96(2000) Standard Test Method for Microcellular Urethanes--Flexural Recovery
- ASTM D3768-16 Standard Test Method for Microcellular Urethanes&x2014Flexural Recovery
- ASTM D5461-06(2021) Standard Test Method for Rubber Compounding Materials—Wet Sieve Analysis of Powdered Rubber Compounding Materials
- ASTM D5461-93(1998) Standard Test Method for Rubber Additives-Wet Sieve Analysis of Powdered Rubber Chemicals
- ASTM D5461-06(2017) Standard Test Method for Rubber Compounding Materials&x2014Wet Sieve Analysis of Powdered Rubber Compounding Materials
- ASTM UOP874-88 Pore Size Distribution of Porous Substances by Nitrogen Adsoprtion Using a Quantachrome Analyzer
- ASTM D3768-11 Standard Test Method for Microcellular Urethanesmdash;Flexural Recovery
- ASTM D3768-06 Standard Test Method for Microcellular Urethanes-Flexural Recovery
- ASTM C1500-02 Standard Test Method for Nondestructive Assay of Plutonium by Passive Neutron Multiplicity Counting
- ASTM C809-94(2000) Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Aluminum Oxide and Aluminum Oxide-Boron Carbide Composite Pellets
German Institute for Standardization
- DIN 66139:2022-12 Pore size analysis - Representation of pore size distributions / Note: Date of issue 2022-11-18*Intended as replacement for DIN 66139 (2012-03).
- DIN 66139 E:2010-02 Pore size analysis - Representation of pore size distributions
- DIN 66139:2012-03 Pore size analysis - Representation of pore size distributions / Note: To be replaced by DIN 66139 (2022-12).
- DIN 66139:2012 Pore size analysis - Representation of pore size distributions
- DIN 66139 E:2022-12 Draft Document - Pore size analysis - Representation of pore size distributions
- DIN 66139 E:2010 Draft Document - Pore size analysis - Representation of pore size distributions
- DIN 66135-4:2004 Particle size analysis - Micropore analysis by gas adsorption - Part 4: Determination of pore distribution according to Horvath-Kawazoe and Saito-Foley
- DIN ISO 16820 E:2020-07 Sensory analysis - Methodology - Sequential analysis
- DIN ISO 16820:2021-01 Sensory analysis - Methodology - Sequential analysis (ISO 16820:2019)
- DIN 66135-4:2004-09 Particle size analysis - Micropore analysis by gas adsorption - Part 4: Determination of pore distribution according to Horvath-Kawazoe and Saito-Foley
- DIN ISO 16820:2009 Sensory analysis - Methodology - Sequential analysis (ISO 16820:2004)
- DIN ISO 16820:2021 Sensory analysis - Methodology - Sequential analysis (ISO 16820:2019)
British Standards Institution (BSI)
- BS ISO 15901-2:2006 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption-Analysis of mesopores and macropores by gas adsorption
- BS ISO 15901-2:2007 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Analysis of mesopores and macropores by gas adsorption
- BS ISO 15901-2:2006(2007) Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Analysis of mesopores and macropores by gas adsorption
- BS ISO 15901-3:2007 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption. Analysis of micropores by gas adsorption
- BS ISO 13322-2:2021 Particle size analysis. Image analysis methods. Dynamic image analysis methods
- BS ISO 13322-1:2014 Particle size analysis. Image analysis methods. Static image analysis methods
- BS ISO 13322-1:2005 Particle size analysis - Image analysis methods - Static image analysis methods
- BS 5929-4:1986 Methods for sensory analysis of food. Flavour profile methods
- BS ISO 15901-2:2022 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Analysis of nanopores by gas adsorption
- BS ISO 16820:2019 Sensory analysis. Methodology. Sequential analysis
- BS PD ISO/TS 22176:2020 Cosmetics. Analytical methods. Development of a global approach for validation of quantitative analytical methods
- BS 6200-3.0:2002 Sampling and analysis of iron, steel and other ferrous metals - Methods of analysis - Reference methods of analysis - Summary of methods
- BS ISO 16820:2004 Sensory analysis - Methodology - Sequential analysis
- 05/30132409 DC ISO 15901-3. Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption. Part 3. Analysis of micro-pores by gas adsorption
- 04/30116586 DC ISO 15901-2. Pore size distribution and porosimetry of materials. Evaluation by mercury posimetry and gas adsorption. Part 2. Analysis of meso-pores and macro-pores by gas adsorption
- 20/30365224 DC BS ISO 13322-2. Particle size analysis. Image analysis methods. Part 2. Dynamic image analysis methods
- 11/30232144 DC BS ISO 13322-1. Particle size analysis. Image analysis methods. Part 1. Static image analysis methods
- PD ISO/TS 22176:2020 Cosmetics. Analytical methods. Development of a global approach for validation of quantitative analytical methods
- BS 5929-1:1986 Methods for sensory analysis of food - General guide to methodology
Kingdom of Bahrain Testing and Metrology Directorate
- BH GSO ISO 15901-2:2016 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption -- Part 2: Analysis of mesopores and macropores by gas adsorption
- BH GSO ISO 15901-3:2016 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption -- Part 3: Analysis of micropores by gas adsorption
- BH GSO ISO 13322-1:2016 Particle size analysis -- Image analysis methods -- Part 1: Static image analysis methods
- BH GSO ISO 13322-2:2016 Particle size analysis -- Image analysis methods -- Part 2: Dynamic image analysis methods
- BH GSO ISO 22176:2023 Cosmetics — Analytical methods — Development of a global approach for validation of quantitative analytical methods
- BH GSO ISO 16820:2016 Sensory analysis -- Methodology -- Sequential analysis
Japanese Industrial Standards Committee (JISC)
- JIS Z 8831-2:2010 Pore size distribution and porosity of solid materials -- Part 2: Analysis of mesopores and macropores by gas adsorption
- JIS Z 8831-3:2010 Pore size distribution and porosity of solid materials -- Part 3: Analysis of micropores by gas adsorption
Danish Standards Foundation
- DANSK DS/ISO 13322-1:2014 Particle size analysis - Image analysis methods - Static image analysis methods
- DANSK DS/ISO 13322-2:2021 Particle size analysis – Image analysis methods – Part 2: Dynamic image analysis methods
- DANSK DS/ISO 15901-2:2022 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption – Part 2: Analysis of nanopores by gas adsorption
- DS/ISO 16820:2004 Sensory analysis - Methodology - Sequential analysis
- DANSK DS/ISO 16820:2004 Sensory analysis – Methodology – Sequential analysis
- DANSK DS/EN 1767:1999 Products and systems for the protection and repair of concrete structures - Test methods - Infrared analysis
International Organization for Standardization (ISO)
- ISO 15901-3:2007 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Part 3: Analysis of micropores by gas adsorption
- ISO 15901-2:2006 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Part 2: Analysis of mesopores and macropores by gas adsorption
- ISO 6564:1985 Sensory analysis; Methodology; Flavour profile methods
- ISO 13322-2:2021 Particle size analysis — Image analysis methods — Part 2: Dynamic image analysis methods
- ISO 15901-2:2006/cor 1:2007 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption - Part 2: Analysis of mesopores and macropores by gas adsorption; Technical Corrigendum 1
- ISO 15901-2:2022 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption — Part 2: Analysis of nanopores by gas adsorption
- ISO 16820:2019 Sensory analysis — Methodology — Sequential analysis
- ISO 16820:2004 Sensory analysis - Methodology - Sequential analysis
RO-ASRO
- SR 110-1-1944 Sugar. Methods of analysis. Sensorial analysis
- STAS SR 13300-1-1994 Starches. Methods of analysis.Sensory analysis
- STAS SR 13355-1-1997 Beer. Analysis methods. Senzorial analysis
- STAS 110-1978 SUGAR Analysis methods
- STAS SR 13359-1-1997 Glucose. Methods of analysis. Sensory analysis
- STAS 756/3-1985 FLOUR PASTES Analysis methods
Bureau of Indian Standards
- IS 15315-2003 Sensory Analysis - Methodology - Flavour Profile Methods
GCC Standardization Organization
- GSO ISO 13322-2:2013 Particle size analysis -- Image analysis methods -- Part 2: Dynamic image analysis methods
- GSO ISO 13322-1:2013 Particle size analysis -- Image analysis methods -- Part 1: Static image analysis methods
- GSO ISO 22176:2022 Cosmetics — Analytical methods — Development of a global approach for validation of quantitative analytical methods
- GSO ISO 16820:2014 Sensory analysis -- Methodology -- Sequential analysis
Korean Agency for Technology and Standards (KATS)
- KS Q ISO 6564-2003(2008) Sensory analysis-Methodology-Flavour profile methods
- KS A ISO 15901-2-2024 Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption — Part 2: Analysis of nanopores by gas adsorption
- KS Q ISO 6564:2003 Sensory analysis-Methodology-Flavour profile methods
- KS Q ISO 16820-2022 Sensory analysis Methodology Sequential analysis
- KS L 1629-1-2023 Methods for chemical analysis of lithium composite oxides — Part 1: Lithium nickel manganese cobalt oxide(NMC)
- KS D 1837-2002(2011) Methods for chemical analysis of Spiegeleisen
- KS D 1837-1987 Methods for chemical analysis of Spiegeleisen
- KS Q ISO 16820:2007 Sensory analysis-Methodology-Sequential analysis
- KS Q ISO 16820-2007(2012) Sensory analysis-Methodology-Sequential analysis
- KS Q ISO 16820-2007(2021) Sensory analysis-Methodology-Sequential analysis
Association Francaise de Normalisation
- NF V09-016:1983 Sensory analysis. Methodology. Flavour profile methods.
- NF V09-024:2004 Sensory analysis - Methodology - Sequential analysis.
The Directorate General of Specifications and Metrology (DGSM)
- OS GSO ISO 13322-2:2013 Particle size analysis -- Image analysis methods -- Part 2: Dynamic image analysis methods
- OS GSO ISO 13322-1:2013 Particle size analysis -- Image analysis methods -- Part 1: Static image analysis methods
- OS GSO ISO 16820:2014 Sensory analysis -- Methodology -- Sequential analysis
SSPC - The Society for Protective Coatings
- GUIDE 15-2005 Field Methods for Retrieval and Analysis of Soluble Salts on Steel and Other Nonporous Substrates
- GUIDE 15-2013 Field Methods for Extraction and Analysis of Soluble Salts on Steel and Other Nonporous Substrates
The Society for Protective Coatings (SSPC)
- SSPC GUIDE 15-2013 Field Methods for Extraction and Analysis of Soluble Salts on Steel and Other Nonporous Substrates
SE-SIS
- SIS MNC 1710-1972 Methods for analysis ofzinc
Spanish Association for Standardization (UNE)
- UNE-ISO 16820:2010 Sensory analysis. Methodology. Secuential analysis.
CH-SNV
- SNV 41103-1954 lead. Analytical method
- SNV 81058-1958 Zinc. Analytical method
- SN 058 251-1978 Zinc. Analytical method
PL-PKN
- PN J02500-1991 Unsealed radioactive sources. Estimation of repeatability of analytical methods
Society of Automotive Engineers (SAE)
- SAE AS1390A-2023 Level of Repair Analysis (LORA)
- SAE AS1390 Level of Repair Analysis (LORA)
- SAE AS1390A Level of Repair Analysis (LORA)
International Electrotechnical Commission (IEC)
- IEC 61335:1997 Nuclear instrumentation - Bore-hole apparatus for X-ray fluorescence analysis
CZ-CSN
- CSN 42 0890 Cast.3-1972 Screen analysis of metal powders
PT-IPQ
- E E 16-1971 Thermal analysis method. Expansion analysis. Relevant quantitative analysis
PH-BPS
- PNS ISO 16820:2021 Sensory analysis - Methodology - Sequential analysis
Ente Nazionale Italiano di Unificazione
- UNI EN 1767:2001 Products and systems for the protection and repair of concrete structures - Test methods - Infrared analysis
- UNI 11189:2006 Cultural heritage - Historical and repair mortars - Test methods for chemical characterization of a mortar - Chemical analysis
Swedish Institute for Standards
- SS-EN 1767:1999 Products and systems for protection and repair of concrete structures - Test methods - Infrared analysis