Sign In |Help & Support
ALL SECTORS
  • ALL SECTORS
  • GB(National Standard)
  • CB(Shipping)
  • CECS(Engineering Construction)
  • CJ(Urban Construction)
  • CY(News and Publication)
  • DB(Provincial Standard)
  • DL(Electricity & Power)
  • DZ(Geology & Mineralogy)
  • FZ(Spinning & Textile)
  • GA(Public Security)
  • HB(Aviation)
  • HG(Chemical Industry)
  • HJ(Environmental Protection)
  • JB(Machinery)
  • JC(Building Materials)
  • JG(Building & Construction)
  • JJ(Metering)
  • JT(Highway & Transportation)
  • LY(Forestry)
  • MT(Coal)
  • NB(Energy)
  • NY(Agriculture)
  • QB(Light Industry)
  • QC(Automobile & Vehicle)
  • QJ(Aerospace)
  • SH(Petrochemical)
  • SJ(Electronics)
  • SL(Water Resources)
  • SN(Commodity Inspection)
  • SY(Oil & Gas)
  • TB(Railway & Train)
  • YB(Ferrous Metallurgy)
  • YC(Tobacco)
  • YD(Telecommunication)
  • YY(Medical Device)
Database: 365,228(8 Aug 2026)

How to determine the concentration range of the standard curve

How to determine the concentration range of the standard curve, Total:82 items.

The international standard classification for "How to determine the concentration range of the standard curve" includes: Measuring instruments .

The Chinese standard classification for "How to determine the concentration range of the standard curve" includes: Nuclear material, nuclear fuel and their analytical test method , Basic standards and general methods , Length Measurement .


未注明发布机构

  • DIN EN 1911 E:2008-11 Stationary source emissions - Determination of mass concentration of gaseous chlorides expressed as HCl - Standard reference method

Professional Standard - Petroleum

  • SY 7549-2000 Determination of crude oil viscosity-temperature curve: rotational viscometer method
  • SY/T 7549-2000 Determination of viscosity-temperature charts for crude oil with rotational viscometers

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

  • GB/T 27752-2011 Validation of the strength of uranium reference solution plutonium reference solution and potassium dichromate reference solution
  • GB/T 24635.3-2009 Geometrical Product Specifications (GPS)—Coordinate measuring machines(CMM):Technique for determining the uncertainty of measurement—Part 3:Use of calibrated workpieces or standards

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

  • JJF 1130-2005 Guide to the Estimation of Uncertainty in Calibration of Geometrical Measuring Equipment

SCC

  • AWWA JAW36162 Journal AWWA — Commercial Labs: How Accurate Are They?
  • AWWA ACE54287 How to Measure Efficiency and How to Establish Goals for Efficiency Gains--Performance Benchmarking for Water Utilities
  • DANSK DS/EN ISO 15530-3:2011 Geometrical product specifications (GPS) - Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement - Part 3: Use of calibrated workpieces or measurement standards
  • BS DD CEN ISO/TS 15530-3:2007 Geometrical product specifications (GPS). Coordinate measuring machines (CMM). Technique for determining the uncertainty of measurement-Use of calibrated workpieces or standards
  • AWPA A46-20 Standard Method for Determining MCS Concentration in EL2 Treatment Solution Samples by Turbidity Measurement
  • SN-CEN ISO/TS 15530-3:2007 Geometrical product specifications (GPS) — Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement — Part 3: Use of calibrated workpieces or standards (ISO/TS 15530-3:2004)
  • 09/30198173 DC BS EN ISO 15530-3. Geometrical Product Specifications (GPS). Coordinate measuring machines (CMM). Technique for determining the uncertainty of measurement. Part 3. Use of calibrated workpieces or standards
  • AWPA A46-14 Standard Method for Determining MCS Stabilizer Concentration in EL2 Treatment Solution Samples by Turbidity Measurement
  • NS-EN ISO 15530-3:2011 Geometrical product specifications (GPS) — Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement — Part 3: Use of calibrated workpieces or measurement standards (ISO 15530-3:2011)
  • DANSK DS/ISO/TS 15530-4:2008 Geometrical Product Specifications (GPS) - Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement - Part 4: Evaluating task-specific measurement uncertainty using simulation

American Society for Testing and Materials (ASTM)

  • ASTM E544-99 Standard Practices for Referencing Suprathreshold Odor Intensity
  • ASTM E544-99(2004) Standard Practices for Referencing Suprathreshold Odor Intensity
  • ASTM E2218-23 Standard Test Method for Determining Forming Limit Curves
  • ASTM E1891-10a(2015) Standard Guide for Determination of a Survival Curve for Antimicrobial Agents Against Selected Microorganisms and Calculation of a D-Value and Concentration Coefficient
  • ASTM E1921-10e1 Standard Test Method for Determination of Reference Temperature, T o , for Ferritic Steels in the Transition Range
  • ASTM F1832-97 Standard Test Method for Determining the Force-Draw and Let-Down Curves for Archery Bows
  • ASTM F1832-07(2017) Standard Test Method for Determining the Force-Draw and Let-Down Curves for Archery Bows
  • ASTM E2218-02 Standard Test Method for Determining Forming Limit Curves
  • ASTM F2771-10 Standard Test Method for Determining the Luminance Curve of an Electroluminescent Lamp at Ambient Conditions
  • ASTM D7250/D7250M-20 Standard Practice for Determining Sandwich Beam Flexural and Shear Stiffness
  • ASTM F2771-09 Standard Test Method for Determining the Luminance Curve of an Electroluminescent Lamp at Ambient Conditions
  • ASTM E1895-04e1 Standard Guide for Determining Uses and Limitations of Deterministic Fire Models
  • ASTM E1895-04 Standard Guide for Determining Uses and Limitations of Deterministic Fire Models
  • ASTM E1891-10a Standard Guide for Determination of a Survival Curve for Antimicrobial Agents Against Selected Microorganisms and Calculation of a D-Value and Concentration Coefficient
  • ASTM E1891-21 Standard Guide for Determination of a Survival Curve for Antimicrobial Agents Against Selected Microorganisms and Calculation of a D-Value and Concentration Coefficient
  • ASTM D6068-96 Standard Test Method for Determining J-R Curves of Plastic Materials
  • ASTM E1891-10 Standard Guide for Determination of a Survival Curve for Antimicrobial Agents Against Selected Microorganisms and Calculation of a D-Value and Concentration Coefficient
  • ASTM E1891-97 Standard Guide for Determination of a Survival Curve for Antimicrobial Agents Against Selected Microorganisms and Calculation of a D-Value and Concentration Coefficient
  • ASTM E1891-97(2002) Standard Guide for Determination of a Survival Curve for Antimicrobial Agents Against Selected Microorganisms and Calculation of a D-Value and Concentration Coefficient
  • ASTM D5835-20 Standard Practice for Sampling Stationary Source Emissions for the Automated Determination of Gas Concentrations
  • ASTM F3260-18 Standard Test Method for Determining the Flexural Stiffness of Medical Textiles
  • ASTM F3260-17 Standard Test Method for Determining the Flexural Stiffness of Medical Textiles
  • ASTM A962/A962M-16a Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM A962/A962M-11a Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM D4913-00(2005)e1 Standard Practice for Determining Concentration of Hydrogen Sulfide by Direct Reading, Length of Stain, Visual Chemical Detectors
  • ASTM A962/A962M-24 Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM A962/A962M-14a Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM A962/A962M-16 Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM A962/A962M-13a Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM A962/A962M-13 Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM A962/A962M-14 Standard Specification for Common Requirements for Bolting Intended for Use at Any Temperature from Cryogenic to the Creep Range
  • ASTM E561-21 Standard Test Method for K R Curve Determination
  • ASTM E561-20 Standard Test Method for K R Curve Determination

Standard Association of Australia (SAA)

NL-NEN

  • NEN 3057-1970 Plastics. Determlnation of temperature of deflectlon under load and deflection temperature range

GOSTR

  • GOST R 8.988-2020 State system for ensuring the uniformity of measurements. Standard reference data. The density and thermal expansion of liquid lithium-lead alloys in the temperature range from the liquidus line to 1050 K and in the concentration range from 10 at. % to 84
  • GOST R 8.935-2017 State system for ensuring the uniformity of measurements. National standard. Standard reference data. Titanium. Lattice constants for the temperature range from 5 K to 300 К. Linear temperature expansion coefficient for the temperature range from 5 К to 1

British Standards Institution (BSI)

  • BS EN 1911:2010 Stationary source emissions. Determination of mass concentration of gaseous chlorides expressed as HCl. Standard reference method
  • BS EN 17346:2020 Ambient air. Standard method for the determination of the concentration of ammonia using diffusive samplers

RU-GOST R

  • GOST R 56270-2014 Environmental management. Life cycle assessment. Illustrative examples on how to apply ISO 14044 to goal and scope definition and inventory analysis

American National Standards Institute (ANSI)

American Industrial Hygiene Association (AIHA)

  • ASSE Z590.2-2003 Criteria for Establishing the Scope and Functions of the Professional Safety Position

US-CFR-file

  • CFR 40-80.1238-2014 Protection of Environment. Part80:Regulation of fuels and fuel additives.Section80.1238:How is a refinery's or importer's average benzene concentration determined?

German Institute for Standardization

  • DIN EN ISO 15530-3:2018-09 Geometrical product specifications (GPS) - Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement - Part 3: Use of calibrated workpieces or measurement standards (ISO 15530-3:2011); German version EN 15530-3:2011
  • DIN 53019-1:1980 Viscometry; Determination of viscosities and flow curves using standard design rotary viscometers with a standard geometry measuring system
  • DIN 53019-2:2001-02 Viscosimetry - Measurement of viscosities and flow curves by means of rotation viscosimeters - Part 2: Viscosimeter calibration and determination of the uncertainty of measurement
  • DIN EN ISO 15530-3:2018 Geometrical product specifications (GPS) - Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement - Part 3: Use of calibrated workpieces or measurement standards (ISO 15530-3:2011)
  • DIN EN 1911:2010 Stationary source emissions - Determination of mass concentration of gaseous chlorides expressed as HCl - Standard reference method; German version EN 1911:2010

Association Francaise de Normalisation

  • NF EN ISO 15530-3:2011 Geometrical product specification (GPS) - Coordinate measuring machines (CMM): Technique for determining measurement uncertainty - Part 3: use of calibrated parts or measurement standards
  • FD X30-309*FD ISO/TR 14049:2012 Environmental management - Life cycle assessment - Illustrative examples on how to apply ISO 14044 to goal and scope definition and inventory analysis
  • NF E11-160-3*NF EN ISO 15530-3:2011 Geometrical product specifications (GPS) - Coordinate measuring machines (CMM): technique for determining the uncertainty of measurement - Part 3 : use of calibrated workpieces or measurement standards
  • XP ISO/TS 15530-4:2008 Geometrical Product Specification (GPS) - Coordinate measuring machines (CMM): technique for determining measurement uncertainty - Part 4: assessment of task-specific measurement uncertainty using...

GSO

  • OS GSO ISO 15530-3:2015 Geometrical product specifications (GPS) -- Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement -- Part 3: Use of calibrated workpieces or measurement standards
  • BH GSO ISO/TS 15530-4:2023 Geometrical Product Specifications (GPS) — Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement — Part 4: Evaluating task-specific measurement uncertainty using simulation
  • GSO ISO/TS 15530-4:2023 Geometrical Product Specifications (GPS) — Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement — Part 4: Evaluating task-specific measurement uncertainty using simulation

CZ-CSN

  • CSN 73 0212-4-1994 Geometrical accuracy in building industry. Accuracy checking. Part 4: Line structures
  • CSN 73 0212-1-1996 Geometric accuracy of construction inspections. Part 1: Basic provisions

Danish Standards Foundation

  • DS/EN ISO 15530-3:2012 Geometrical product specifications (GPS) - Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement - Part 3: Use of calibrated workpieces or measurement standards
  • DS/ISO/TR 14049:2012 Environmental management - Life cycle assessment - Illustrative examples on how to apply ISO 14044 to goal and scope definition and inventory analysis

PH-BPS

  • PNS ISO/TR 14049:2021 Environmental management - Life cycle assessment - Illustrative examples on how to apply ISO 14044 to goal and scope definition and inventory analysis

American Society of Mechanical Engineers (ASME)

  • ASME STP-PT-094-2022 Determination of Stress Strain Curves of 304, 304L, 316, 316L for Strain-Based Design Criteria

Lithuanian Standards Office

  • LST EN ISO 15530-3:2012 Geometrical product specifications (GPS) - Coordinate measuring machines (CMM): Technique for determining the uncertainty of measurement - Part 3: Use of calibrated workpieces or measurement standards (ISO 15530-3:2011)

AASHTO - American Association of State Highway and Transportation Officials

  • TP 124-2016 Standard Method of Test for Determining the Fracture Potential of Asphalt Mixtures Using Semicircular Bend Geometry (SCB) at Intermediate Temperature

Korean Agency for Technology and Standards (KATS)

  • KS I ISO 14049-2014(2019) Environmental management — Life cycle assessment — Illustrative examples on how to apply KS I ISO 14044 to goal and scope definition and inventory analysis

AGMA - American Gear Manufacturers Association

  • 908-B89-1989 Geometry Factors for Determining the Pitting Resistance and Bending Strength of Spur@ Helical and Herringbone Gear Teeth