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Database: 365,228(8 Aug 2026)

group effect generation effect

group effect generation effect, Total:200 items.

The international standard classification for "group effect generation effect" includes: Physicochemical methods of analysis , Accident and disaster control , Electrical engineering in general , Other methods of testing of metals , Measurement of electrical and magnetic quantities , Electrical equipment of ships and of marine structures , Textiles in general .

The Chinese standard classification for "group effect generation effect" includes: Basic standards and general methods , Hygiene, safety and labor protection , Metal physical property test method , Magnetic measurement instrument , Electrical, observation/communication and navigation equipment for vessel in general , Basic standards and general methods .


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

  • GB/T 34059-2017 Nanotechnology--Nanobiological effects of nanomaterials--NMR-based metabolomics
  • GB/T 32006-2015(英文版) Evaluation of photothermal effect of gold nanorods
  • GB/T 32127-2015 Guide for monitoring effect and comprehensive benefit evaluation of demand response
  • GB/T 13870.5-2016 Effects of current on human beings and livestock―Part 5:Touch voltage threshold values for physiological effects
  • GB/T 13870.3-2003 Effects of curent on human beings and livetock - Part 3: Effects of currents passing tthrough the body of livestock
  • GB/T 13870.4-2017 Effects of current on human beings and livestock-Part 4:Effects of lightning strokes

Group Standards of the People's Republic of China

  • T/CEAC 029-2024 Coenzyme Q10 Benefits Application Guide
  • T/ACCEM 785-2025 Guide to the efficacy and application of sea buckthorn flavonoids
  • T/CIET 818-2024 Efficient Activated Carbon Adsorption Device for Combined Water Pollution Emergency Treatment
  • T/CEC 228-2019 Guidelines for the detection of distribution transformer winding materials by pyroelectric effect method
  • T/CECA-G 0011-2016 Application Effect and Energy Efficiency Evaluation of Lighting System (Road/Tunnel)
  • T/CEEIA 342-2018 Test procedure of wind turbine anti-islanding
  • T/CPQS E00039-2022 Application technical requirements of full-effect air conditioning units for archaeological discover warehouse
  • T/CSTM 00641-2022 Metallic effect powder coatings

Professional Standard - Non-ferrous Metal

  • YS/T 1002-2014 Calculation method of anode effect frequency and anode effect duration for aluminum electrolysis

Professional Standard - Machinery

Military Standard of the People's Republic of China-General Armament Department

  • GJB 8670.3-2015 Special bomb effect test method Part 3: Illumination bomb air-drop effect test
  • GJB 5214.15-2003 Special ammunition effect test methods Part 15: Smoke screen effect test of smoke bombs
  • GJB 8670.15-2015 Special ammunition effect test methods Part 15: Smoke screen effect test of smoke bombs
  • GJB 8670.9-2015 Special bomb effect test method Part 9: Arson bomb arson effect test simulation method
  • GJB 8670.16-2015 Special bullet effect test method Part 16: Propaganda bullet scatter effect test
  • GJB 8670.8-2015 Special ammunition effect test method Part 8: Arson bomb arson effect test live ammunition firing method
  • GJB 8670.7-2015 Special bomb effect test methods Part 7: Arson bomb static explosion (throwing) effect test

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

Professional Standard - Education

  • JY 180-1985 Electrochemical cross effect demonstrator

Professional Standard-Ships

  • CB 1289-1995 Requirements for Electromagnetic Effect of Vessel System

Professional Standard - Electron

  • SJ 1977-1981 Detail specification for high frequency field-effect transistors,Type CS4
  • SJ 1978-1981 Detail specification for high frequency field-effect transistors,Type CS5

Professional Standard - Textile

British Standards Institution (BSI)

  • PD ISO/TR 16219:2024 Fan system effects and system effect factors
  • BS PD IEC/TR 62690:2014 Hydrogen effects in optical fibre cables. Guidelines
  • BS EN ISO 28803:2012 Ergonomics of the physical environment. Application of international standards to people with special requirements
  • BS DD ISO/TS 14415:2006 Ergonomics of the thermal environment - Application of international standards to people with special requirements
  • PD 6519-3-1999 Guide to effects of current on human beings and livestock. Effects of currents passing through the body of livestock
  • BS EN 62396-1:2016 Process management for avionics. Atmospheric radiation effects - Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • DD IEC/TS 62396-1:2006 Process management for avionics. Atmospheric radiation effects - Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • 11/30246255 DC BS EN 62396-1. Process management for avionics. Atmospheric radiation effects. Part 1. Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • 18/30362022 DC BS ISO 230-3. Test code for machine tools. Part 3. Determination of thermal effects
  • BS EN 15530:2008 Aluminium and aluminium alloys - Environmental aspects of aluminium products - General guidelines for their inclusion in standards
  • BS ISO 230-3:2001 Test code for machine tools-Determination of thermal effects
  • BS PAS 42:2002 Method of test for establishing the efficiency of decorative fuel effect gas fires

American National Standards Institute (ANSI)

American Society for Testing and Materials (ASTM)

  • ASTM STP 1443-2003 Relationship between multiple stress effects and amphibian population decline
  • ASTM STP 363-1964 Space radiation effects
  • ASTM E984-95(2001) Standard Guide for Identifying Chemical Effects and Matrix Effects in Auger Electron Spectroscopy
  • ASTM E984-12(2020) Standard Guide for Identifying Chemical Effects and Matrix Effects in Auger Electron Spectroscopy
  • ASTM E984-95 Standard Guide for Identifying Chemical Effects and Matrix Effects in Auger Electron Spectroscopy
  • ASTM STP 1339-2001 Hydraulic Failure Analysis: Fluid, Component, and System Effects
  • ASTM STP 836-1984 Defect Effects in Composite Materials
  • ASTM E984-12 Standard Guide for Identifying Chemical Effects and Matrix Effects in Auger Electron Spectroscopy
  • ASTM E984-06 Standard Guide for Identifying Chemical Effects and Matrix Effects in Auger Electron Spectroscopy
  • ASTM E983-10 Standard Guide for Minimizing Unwanted Electron Beam Effects in Auger Electron Spectroscopy
  • ASTM C1171-05(2011) Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories
  • ASTM C1171-15 Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories
  • ASTM C1171-05 Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories
  • ASTM STP 384-1965 RADIATION EFFECTS IN ELECTRONICS
  • ASTM STP 481-1970 Reactor Vessel Radiation Effects Surveillance Programs
  • ASTM STP 1004-1988 Analytical and Experimental Methods for Residual Stress Effects in Fatigue
  • ASTM STP 1244-1995 The influence of constraint effect on fracture theory and its application
  • ASTM STP 732-1981 Health Effects Synthetic Silicate Particles
  • ASTM STP 1171-1993 The role of constraint effects in cracks
  • ASTM STP 1046-V1-1990 Effects of materials under the influence of radiation

European Committee for Standardization (CEN)

  • EN ISO 28803:2012 Ergonomics of the physical environment - Application of international standards to people with special requirements (ISO 28803:2012)
  • prEN 60865-1992 Short circuit currents; calculation of effects
  • prEN 509-2021 Decorative fuel-effect gas appliances

Korean Agency for Technology and Standards (KATS)

International Electrotechnical Commission (IEC)

  • IEC 60812:2018 Failure modes and effects analysis (FMEA and FMECA)
  • IEC TR 62690:2014 Hydrogen effects in optical fibre cables - Guidelines
  • IEC 60865:1986 Calculation of the effects of short-circuit currents
  • IEC 62396-1:2016 RLV Process management for avionics — Atmospheric radiation effects — Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • IEC TR 60479-2:1987 Effects of current passing through the human body. Part 2 : Special aspects. Chapter 4: Effects of alternating current with frequencies above 100 Hz. Chapter 5: Effects of special waveforms of current. Chapter 6: Effects of unidirectional single impulse c
  • TS 62396-1-2006 Process management for avionics – Atmospheric radiation effects – Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment (Edition 1.0)

Ente Nazionale Italiano di Unificazione

Magyar Szabványügyi Testület

German Institute for Standardization

  • DIN EN 62396-1 E:2010-11 Atmospheric radiation effects Part 1: Accommodating atmospheric radiation effects in avionics through single event effects
  • DIN SPEC 91373:2018-06 Magnetocalorics – Terminology;
  • DIN VDE 0870-1:1984 Electromagnetic influence; definitions [VDE Specification]
  • DIN 52018:2005 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN 52018:2016 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN 52018:2005-04 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN 52018:2016-08 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN 52018 E:2016-03 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN 4990:1972 Cemented Carbide Cutting Application Group
  • DIN EN ISO 15831:2004-05 Clothing - Physiological effects - Measurement of thermal insulation by means of a thermal manikin (ISO 15831:2004); German version EN ISO 15831:2004
  • DIN EN ISO 3248:2016-12 Paints and varnishes - Determination of the effect of heat (ISO 3248:2016); German version EN ISO 3248:2016

Instituto Uruguayo de Normas Técnicas

Association Francaise de Normalisation

  • FD ISO/TR 16219:2024 Fans - System effects and system effect factors
  • NF EN 61206:1995 Ultrasound - Continuous Wave Doppler Systems - Test Methods
  • NF X50-124:2023 Managing skills to cope with transitions - Inclusion and performance in organizations - Tool for measuring performance and describing the skills needs of your organization
  • NF T30-059:1974 PAINTS. DETERMINATION OF IMMEDIATE EFFECT OF HEAT.

National Standardisation Body (ASRO)

  • STAS 11232/5-1981 Stabilized power supplies, d.c. outputTEMPERATURE EFFECT, TRANSIENT PERFORMANCE MEASUREMENT, SETTLING EFFECTS Prescription

Military Standards (MIL-STD)

  • MIL MIL-A-8869B-1987 AIRPLANE STRENGTH AND RIGIDITY NUCLEAR WEAPONS EFFECTS (SUPERSEDING MIL-A-8869A)
  • MIL MIL-PRF-19500/638B-2004 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTOR, N-CHANNEL SILICON, TYPE 2N7410, JANSD AND JANSR (SUPERSEDING MIL-PRF-19500/638A)
  • MIL MIL-STD-1818A-1993 ELECTROMAGNETIC EFFECTS REQUIREMENTS FOR SYSTEMS (S/S BY MIL-STD-464) (SUPERSEDING MIL-STD-1818)
  • MIL MIL-PRF-19500/639A-1998 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTOR, P-CHANNEL SILICON TYPE 2N7411 JANSD AND JANSR (SUPERSEDING MIL-S-19500/639)
  • MIL MIL-PRF-19500/684D-2007 SEMICONDUCTOR DEVICE, TRANSISTOR, FIELD EFFECT, SILICON, N-CHANNEL, RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS), TYPES 2N7472U2, 2N7473U2, AND 2N7474U2, JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/684C)
  • MIL MIL-PRF-19500/685H-2016 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED TRANSISTOR, N-CHANNEL, SILICON, TYPES 2N7475T1, 2N7476T1 AND 2N7477T1 (TOTAL DOSE AND SINGLE EVENT EFFECTS), JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/685G)
  • MIL MIL-PRF-19500/684B-2004 SEMICONDUCTOR DEVICE, TRANSISTOR, FIELD EFFECT, SILICON, N-CHANNEL, RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS), TYPES 2N7472U2, 2N7473U2, AND 2N7474U2, JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/684A)
  • MIL MIL-PRF-19500/685D-2007 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED TRANSISTOR, N-CHANNEL, SILICON, TYPES 2N7475T1, 2N7476T1 AND 2N7477T1 (TOTAL DOSE AND SINGLE EVENT EFFECTS), JANTXVR AND JANSR(SUPERSEDING MIL-PRF-19500/685B)
  • MIL MIL-PRF-19500/684C-2006 SEMICONDUCTOR DEVICE, TRANSISTOR, FIELD EFFECT, SILICON, N-CHANNEL, RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS), TYPES 2N7472U2, 2N7473U2, AND 2N7474U2, JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/684B)
  • MIL MIL-PRF-19500/633B-2004 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTORS, P-CHANNEL SILICON TYPES 2N7403 AND 2N7404, JANSD AND JANSR (SUPERSEDING MIL-PRF-19500/633A)
  • MIL MIL-PRF-19500/632B-2004 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTORS, N-CHANNEL SILICON, TYPES 2N7399, 2N7400, 2N7401, AND 2N7402, JANSD AND JANSR (SUPERSEDING MIL-PRF-19500/632A)
  • MIL MIL-PRF-19500/634B-2004 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTORS, N-CHANNEL SILICON, TYPES 2N7405, 2N7406, 2N7407, AND 2N7408, JANSD AND JANSR (SUPERSEDING MIL-PRF-19500/634A)
  • MIL MIL-PRF-19500/705A-2004 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTOR, N-CHANNEL, SILICON TYPES 2N7488T3, 2N7489T3, AND 2N7490T3, JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/705)
  • MIL MIL-PRF-19500/706A-2005 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTOR, N-CHANNEL, SILICON, TYPES 2N7497T2, 2N7498T2, AND 2N7499T2, JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/706)
  • MIL MIL-PRF-19500/687A-2004 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTOR, N-CHANNEL SILICON, TYPES 2N7509, 2N7510, AND 2N7511, JANTXVD, R AND JANSD, R (SUPERSEDING MIL-PRF-19500/687)
  • MIL MIL-PRF-19500/704A-2004 SEMICONDUCTOR DEVICE, FIELD EFFECT RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TRANSISTOR, N-CHANNEL, SILICON, TYPES 2N7485U3, 2N7486U3, AND 2N7487U3, JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/704)
  • MIL MIL-PRF-19500/684A-2003 SEMICONDUCTOR DEVICE, TRANSISTOR, FIELD EFFECT, SILICON, N-CHANNEL, RADIATION HARDENED (TOTAL DOSE AND SINGLE EVENT EFFECTS) TYPES 2N7472U2, 2N7473U2, AND 2N7474U2 JANTXVR AND JANSR (SUPERSEDING MIL-PRF-19500/684)

Institute of Electrical and Electronics Engineers (IEEE)

International Telecommunication Union (ITU)

Yugoslav Association for Standardization

  • JUS N.R1.353-1979 Letter symbohfor semiconductor devices. Bipolar andfield-effect transistors.
  • JUS N.R1.323-1979 Termsand definitions for semiconductor devices. Bipolar and field-effect transistors.

(U.S.) Telecommunications Industries Association

American Water Works Association (AWWA)

  • AWWA ACE68996 Costs and Benefits of Adaptation
  • AWWA ACE69012 Application of a MIEX Reactor Model to Evaluate DOC Removal
  • AWWA ACE58230 Competitive Effects of NOM: Application of a 3-Component Model to Atrazine Adsorption in PAC/Membrane Processes

American Welding Society (AWS)

GCC Standardization Organization

  • GSO ISO 230-3:2008 Test code for machine tools - Part 3: Determination of thermal effects
  • GSO ISO 15831:2013 Clothing -- Physiological effects -- Measurement of thermal insulation by means of a thermal manikin
  • GSO IEC/TR 62690:2017 Hydrogen effects in optical fibre cables - Guidelines

Society of Automotive Engineers (SAE)

American Concrete Institute

  • ACI SP-47 Freezing Effects In Concrete
  • ACI SP-068 Developments in the Use of Superplasticizers

International Organization for Standardization (ISO)

  • ISO/TS 14415:2005 Ergonomics of the thermal environment - Application of International Standards to people with special requirements

Gosstandart of Russia

  • GOST R ISO 1817-2009 Rubber. Determination of resistance to liquids effect
  • GOST R 50254-1992 Short circuit in electrical installations. Calculation methods of thermit and electrodinamic effects of short circuit currents
  • GOST 33291-2015 Paint materials. Method for determination of the effect of heat
  • GOST R 53651-2009 Paint materials. Method for determination of the effect of heat
  • GOST ISO 10993-6-2021 Medical devices. Biological evaluation of medical devices. Part 6. Tests for local effects after implantation
  • GOST R 71056-2023 Field effect transistor. Parameters system
  • GOST R ISO 10993.6-1999 Medical devices. Biological evaluation of medical devices. Part 6. Tests for local effects after implantation
  • GOST R ISO 10993-6-2009 Medical devices. Biological evaluation of medical devices. Part 6. Tests for local effects after implantation

Türk Standardları Enstitüsü

  • TS 3182-1978 EFFECTS OF CURRENT PASSING THROUGH THE HUMAN BODY

South African Bureau of Standard

  • SANS 60479-3:1998 Effects of current on human beings and livestock Part 3: Effects of currents passing through the body of livestock

(U.S.) Joint Electron Device Engineering Council Soild State Technology Association

Danish Standards Foundation

Illuminating Engineering Society of North America

Spanish Association for Standardization (UNE)

  • UNE 15300-3:2004 Machine-tools. Test code for machine tools. Part 3: Determination of thermal effects.
  • UNE-ISO 230-3:2010 Machine tools. Test code for machine tools. Part 3: Determination of thermal effects.

The Directorate General of Specifications and Metrology (DGSM)

  • OS GSO IEC 62396-1:2014 Process management for avionics - Atmospheric radiation effects - Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • OS GSO ISO 15831:2013 Clothing -- Physiological effects -- Measurement of thermal insulation by means of a thermal manikin

Kingdom of Bahrain Testing and Metrology Directorate

  • BH GSO IEC 62396-1:2016 Process management for avionics - Atmospheric radiation effects - Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment

American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE)

  • ASHRAE SA-96-2-4-1996 Principles of Refrigerant Circuiting with Application to Microchannel Condensers: Part II - The Pressure-Drop Effect and the Cross-Flow Heat Exchanger Effect
  • ASHRAE 3825-1994 Stack Effect in Tall Buildings
  • ASHRAE CH-99-22-3-1999 Total Equivalent Warming Impact of R-22 Alternatives in Air-Conditioning and Heat Pump Applications

Engineering Sciences Data Unit (ESDU)

  • ESDU 95026-2011 Edge effects on the response of sandwich panels subjected to acoustic loading
  • ESDU 95026-2012 Edge effects on the response of sandwich panels subjected to acoustic loading

Canadian Standards Association (CSA)

Association for Electrical, Electronic & Information Technologies (VDE)

The Institution of Engineering and Technology (IET)

American Petroleum Institute (API)

Air Movement and Control Association (AMCA)

The European Organisation for Civil Aviation Equipment

U.S. Air Force

Thai Industrial Standards Institute (TISI)

  • TIS 867-2007 Three-phase induction motors: minimum efficiency

National Association of Corrosion Engineers (NACE)

  • NACE Paper 11107-2011 Effect of residual stress in high frequency induction welded pipe (HFI) on HIC resistance

Czech Standards Institute (UNMZ)