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energy gap peak

energy gap peak, Total:134 items.

In the international standard classification, energy gap peak involves: Farming and forestry, Food products in general, Road vehicle systems, Power stations in general, Terminology (principles and coordination), Nuclear energy engineering, Construction materials, Internal combustion engines, Linear and angular measurements, Thermodynamics and temperature measurements, Welding, brazing and soldering, Analytical chemistry, Lamps and related equipment, Optoelectronics. Laser equipment, Solar energy engineering, Switchgear and controlgear, Products of the chemical industry, Organic chemicals, Medical equipment, Medical sciences and health care facilities in general, Clothes, Space systems and operations, Ceramics, Non-ferrous metals, Agricultural machines, implements and equipment, Transformers. Reactors, Fertilizers, Radiation measurements, Semiconductor devices, Industrial automation systems, Physics. Chemistry, Protection of and in buildings, Elements of buildings, Plastics, Corrosion of metals.


GM Europe, energy gap peak

  • GME17009-2013 Porosities and Surface-Discontinuities Forks Shift / Transmission M1x Porosit鋞en und Oberfl鋍hen-Fehlstellen Schaltgabeln / Getriebe M1x Issue 1; English/German; Includes Appendix A and B

Military Standard of the People's Republic of China-General Armament Department, energy gap peak

  • GJB 8546-2015 High peak power, high energy laser parameter terminology

US-FCR, energy gap peak

Hunan Provincial Standard of the People's Republic of China, energy gap peak

  • DB43/T 1071-2015 Xuefeng black-bone chicken production performance testing technical regulations

Xinjiang Provincial Standard of the People's Republic of China, energy gap peak

  • DB65/T 4421-2021 Technical regulations for determination of milk production performance of Bactrian camels

Society of Automotive Engineers (SAE), energy gap peak

  • SAE J1512-2008 Manual Slack Adjuster Performance Requirements
  • SAE J1512-2002 Manual Slack Adjuster Performance Requirements
  • SAE J1512-2014 Manual Slack Adjuster Performance Requirements
  • SAE J1512-1985 Manual Slack Adjuster Performance Requirements
  • SAE J1513-2010 External Automatic Slack Adjuster Performance Requirements
  • SAE J1513-2021 External Automatic Slack Adjuster Performance Requirements
  • SAE J1513-1994 (R) External Automatic Slack Adjuster Performance Requirements, Recommended Practice May 1994

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., energy gap peak

  • ASHRAE 3766-1994 Performance Evaluation of an Air-Gap Insulation System
  • ASHRAE 4496-2002 Optimization Method for Minimizing Annual Energy@ Peak Demand@ and Annual Energy Cost Through Use of Building Thermal Storage
  • ASHRAE AT-01-16-2-2001 Thermal Performance of Flooded Evaporators@ Part 2: Review of Void Fraction@ Two-Phase Pressure Drop@ and Flow Pattern Studies (RP-1089)

Group Standards of the People's Republic of China, energy gap peak

  • T/SDPEA 0009-2018 Test guide for depth peak-load regulation capacity of coal fired power generating unit
  • T/CEC 370-2020 Technical specifications for frequency regulation and peak regulation of electrochemical energy storage power stations
  • T/GDAQI 009-2019 Multi-function testing instrument for escalator safety clearance
  • T/GDCKCJH 053-2021 Temperature performance requirements and test method for tunnel furnace of reflow soldering & wave soldering
  • T/CEEIA 390-2019 SPDs with integrated overcurrent protection function based on spark gap
  • T/CSEE 0341-2022 Technical Guidelines for In-depth Peak Shaving Adaptability Assessment and Performance Acceptance of Thermal Power Unit Thermal Control Systems
  • T/JCMS 0007-2022 Determination of the ultimate aerobic biodegradability of polylactic acid biodegradable materials under controlled composting conditions —Method by calculating the peak area of terahertz wide spectrum

American National Standards Institute (ANSI), energy gap peak

  • ANSI N13.12-2013 Surface and Volume Radioactivity Standards for Clearance
  • ANSI N42.31-2003 Measurement Procedures for Resolution and Efficiency of Wide-Bandgap Semiconductor Detectors of Ionizing Radiation

Association Francaise de Normalisation, energy gap peak

  • NF P85-504:1972 Seals. Elastomer base mastics used for sealing. Determination of adhesivness-cohesion. Characteristics under tensile stress.
  • NF P85-505:1972 Seals. Elastomer base mastics used for sealing. Determination of adhesivness-cohesion characteristics by cyclic tensile-compression tests.
  • NF T70-502:2007 Energetic materials for defense - Safety - Vulnerability - Card gap test.
  • NF T70-502:1995 Energetic materials for defense. Safety, vulnerability. Card gap test.
  • NF T70-528:2003 Energetic materials for defense - Safety, vulnerability - 75 mm diameter gap test.
  • NF T70-528:2009 Energetic materials for defense - Safety, vulnerability - 75 mm diameter gap test.
  • NF P85-501:1991 Building construction. Jointing products. Determination of resistance to flow.
  • NF S95-185:2009 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans.
  • NF S95-185*NF EN ISO 23747:2015 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans
  • NF EN ISO 23747:2015 Matériel d'anesthésie et de réanimation respiratoire - Débitmètres à débit de pointe expiratoire pour l'évaluation de la fonction pulmonaire chez les êtres humains respirant spontanément
  • NF B43-211:2004 Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity.
  • NF P18-650-4*NF EN 1097-4:2008 Tests for mechanical and physical properties of aggregates - Part 4 : determination of the voids of dry compacted filler
  • NF P50-766*NF EN ISO 13788:2013 Hygrothermal performance of building components and building elements - Internal surface temperature to avoid critical surface humidity and interstitial condensation - Calculation methods

Shanghai Provincial Standard of the People's Republic of China, energy gap peak

  • DB31/T 1146.1-2019 Smart Grid Energy Storage System Performance Test Technical Specification Part 1 Peak Shaving and Valley Filling Application

(U.S.) Telecommunications Industries Association , energy gap peak

  • TIA-102.CCAB-A-2014 Project 25 Two - Slot Time Division Multiple Access Transceiver Performance Recommendations

International Organization for Standardization (ISO), energy gap peak

  • ISO 9278:2008 Nuclear energy - Uranium dioxide pellets - Determination of density and volume fraction of open and closed porosity
  • ISO 19830:2015 Surface chemical analysis - Electron spectroscopies - Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • ISO 23747:2007 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans
  • ISO 23747:2015 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans
  • ISO/FDIS 20947-3:2021 Performance evaluation protocol for digital fitting systems — Part 3: Digital fitting performance — Gap
  • ISO 20947-3:2023 Performance evaluation protocol for digital fitting systems — Part 3: Digital fitting performance — Gap
  • ISO/TR 18147:2014 Space environment (natural and artificial) - Method of the solar energetic protons fluences and peak fluxes determination
  • ISO 13788:2001 Hygrothermal performance of building components and building elements - Internal surface temperature to avoid critical surface humidity and interstitial condensation - Calculation methods
  • ISO 13788:2012 Hygrothermal performance of building components and building elements - Internal surface temperature to avoid critical surface humidity and interstitial condensation - Calculation methods
  • ISO 20903:2011 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Methods used to determine peak intensities and information required when reporting results
  • ISO 20903:2019 Surface chemical analysis — Auger electron spectroscopy and X-ray photoelectron spectroscopy — Methods used to determine peak intensities and information required when reporting results

British Standards Institution (BSI), energy gap peak

  • BS ISO 5179:2021 Investigation of brazeability with spreading and gap-filling test
  • BS ISO 19830:2015 Surface chemical analysis. Electron spectroscopies. Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy
  • PD ISO/TR 18147:2014 Space environment (natural and artificial). Method of the solar energetic protons fluences and peak fluxes determination
  • BS PD ISO/TR 18147:2014 Space environment (natural and artificial). Method of the solar energetic protons fluences and peak fluxes determination
  • BS 6347-3:1983 Performance assessment of agricultural tractors - Method for determination of turning and clearance diameters
  • BS EN 60076-3:2001 Power transformers - Insulation levels, dielectric tests and external clearances in air
  • BS EN ISO 23747:2009 Anaesthetic and respiratory equipment. Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans
  • BS EN ISO 23747:2015 Tracked Changes. Anaesthetic and respiratory equipment. Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans
  • BS EN 1389:2004 Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity
  • BS EN 1389:2003 Advanced technical ceramics - Ceramic composites - Physical properties - Physical properties - Determination of density and apparent porosity
  • BS ISO 20903:2019 Tracked Changes. Surface chemical analysis. Auger electron spectroscopy and X-ray photoelectron spectroscopy. Methods used to determine peak intensities and information required when reporting results
  • BS ISO 20903:2011 Surface chemical analysis. Auger electron spectroscopy and X-ray photoelectron spectroscopy. Methods used to determine peak intensities and information required when reporting results

Korean Agency for Technology and Standards (KATS), energy gap peak

  • KS A ISO 9278:2012 Nuclear energy-Uranium dioxide pellets-Determination of density and volume fraction of open and closed porosity
  • KS A ISO 9278:2014 Nuclear energy — Uranium dioxide pellets — Determination of density and volume fraction of open and closed porosity
  • KS A ISO 9278-2014(2019) Nuclear energy — Uranium dioxide pellets — Determination of density and volume fraction of open and closed porosity
  • KS L ISO 13788:2008 Hygrothermal performance of building components and building elements-Internal surface temperature to avoid critical surface humidity and interstitial condensation-Calculation methods
  • KS L ISO 13788:2014 Hygrothermal performance of building components and building elements — Internal surface temperature

RO-ASRO, energy gap peak

  • STAS 125-1987 COMPACT REFRACTOR MATERIALS AND PRODUCTS Determination of apparent density absorption capacity, apparent porosity and total porosity

国家市场监督管理总局、中国国家标准化管理委员会, energy gap peak

  • GB/T 41073-2021 Surface chemical analysis—Electron spectroscopies—Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy

Professional Standard - Light Industry, energy gap peak

  • QB/T 2511-2001 Performance requirements on LC peak lead ballasts for single-ended metal halide lamps
  • QB/T 2511-2016 Single-ended metal halide lamps (ScI3-NaI series) with LC peak lead ballasts.Performance requirements

RU-GOST R, energy gap peak

  • GOST R 50005-1992 Lasers and solid-state laser heads. Measurement methods of peak local energy (power) density

Japanese Industrial Standards Committee (JISC), energy gap peak

  • JIS C 8914:1998 Measuring method of output power for crystalline solar PV modules
  • JIS C 8917:1998 Environmental and endurance test methods for crystalline solar PV modules

American Welding Society (AWS), energy gap peak

  • WRC 206:1975 Effects of Porosity on the Fatigue Properties of 5083 Aluminum Alloy Weldments
  • WRC 181:1973 Effects of Porosity on the Tensile Properties of 5083 and 6061 Aluminum Alloy Weldments

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, energy gap peak

  • GB/T 33052-2016 Microporous functional membrane—Measurement for Porosity—Absorption method by cetane

WRC - Welding Research Council, energy gap peak

  • BULLETIN 181-1973 EFFECTS OF POROSITY ON THE TENSILE PROPERTIES OF 5083 AND 6061 ALLUMINUM ALLOY WELDMENTS

Professional Standard - Medicine, energy gap peak

  • YY/T 1438-2016 Anaesthetic and respiratory equipment.Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans

German Institute for Standardization, energy gap peak

  • DIN EN ISO 23747:2007 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneoulsy breathing humans (ISO 23747:2007); German version EN ISO 23747:2007
  • DIN EN ISO 23747:2015-12 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans (ISO 23747:2015); German version EN ISO 23747:2015
  • DIN EN 623-2:1993 Advanced technical ceramics; monolithic ceramics; general and textural properties; part 2: determination of density and porosity; German version EN 623-2:1993
  • DIN EN 1097-4:2008 Tests for mechanical and physical properties of aggregates - Part 4: Determination of the voids of dry compacted filler; English version of DIN EN 1097-4:2008-06
  • DIN EN 1097-3:1998 Tests for mechanical and physical properties of aggregates - Part 3: Determination of loose bulk density and voids; German version EN 1097-3:1998
  • DIN EN 1389:2004 Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity; German version EN 1389:2003
  • DIN EN 1097-4:2008-06 Tests for mechanical and physical properties of aggregates - Part 4: Determination of the voids of dry compacted filler; German version EN 1097-4:2008
  • DIN EN 1097-3:1998-06 Tests for mechanical and physical properties of aggregates - Part 3: Determination of loose bulk density and voids; German version EN 1097-3:1998
  • DIN V VDE V 0126-18-6:2007 Solar wafers - Part 6: Method for the measuring of substitutional atomic carbon and interstitial oxygen in silicon used for photovoltaic

Danish Standards Foundation, energy gap peak

  • DS/EN ISO 23747:2009 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans
  • DS/IEC 76-3-1:1989 Power transformers. Part 3: Insulation levels and dielectric tests. External clearances in air
  • DS/EN 1389:2004 Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity
  • DS/EN 1097-3:1998 Tests for mechanical and physical properties of aggregates - Part 3: Determination of loose bulk density and voids
  • DS/EN 1097-4:2008 Tests for mechanical and physical properties of aggregates - Part 4: Determination of the voids of dry compacted filler

ES-UNE, energy gap peak

  • UNE-EN ISO 23747:2016 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans (ISO 23747:2015)

BR-ABNT, energy gap peak

NL-NEN, energy gap peak

  • NEN-EN 623-2-1994 Advanced technical ceramics. Monolithic ceramics. General and textural properties. Part 2: Determination of density and porosity

Canadian Standards Association (CSA), energy gap peak

  • CSA Z23747-08-CAN/CSA-2008 Mat閞iel d'anesth閟ie et de r閍nimation respiratoire ?D閎itm鑤res ?d閎it de pointe expiratoire pour l'関aluation de la fonction pulmonaire chez les 阾res humains respirant spontan閙ent premi鑢e 閐ition
  • CAN/CSA-Z23747-2008 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans (First Edition)

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, energy gap peak

  • GB/T 14634.2-2010 Test methods of rare earth three-band phosphors for fluorescent lamps.Part 2:Determination of emission dominantpeak and chromaticity
  • GB/T 28893-2012 Surface chemical analysis.Auger electron spectroscopy and X-ray photoelectron spectroscopy.Methods used to determine peak intensities and information required when reporting results

Lithuanian Standards Office , energy gap peak

  • LST EN ISO 23747:2009 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans (ISO 23747:2007)
  • LST EN ISO 23747:2015 Anaesthetic and respiratory equipment - Peak expiratory flow meters for the assessment of pulmonary function in spontaneously breathing humans (ISO 23747:2015)
  • LST EN 1389-2004 Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity
  • LST EN 1097-3-2002 Tests for mechanical and physical properties of aggregates - Part 3: Determination of loose bulk density and voids
  • LST EN 1097-4-2008 Tests for mechanical and physical properties of aggregates - Part 4: Determination of the voids of dry compacted filler

European Committee for Standardization (CEN), energy gap peak

  • EN 623-2:1993 Advanced technical ceramics; monolithic ceramics; general and textural properties; part 2: determination of density and porosity
  • EN 1097-4:1999 Tests for Mechanical and Physical Properties of Aggregates - Part 4: Determination of the Voids of Dry Compacted Filler
  • EN 1389:2003 Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity
  • EN 1097-4:2008 Tests for mechanical and physical properties of aggregates - Part 4: Determination of the voids of dry compacted filler
  • EN 1097-3:1998 Tests for mechanical and physical properties of aggregates - Part 3: Determination of loose bulk density and voids
  • EN 13041:2011 Soil improvers and growing media - Determination of physical properties - Dry bulk density, air volume, water volume, shrinkage value and total pore space

未注明发布机构, energy gap peak

  • BS EN 623-2:1993(1999) Advanced technical ceramics — Monolithic ceramics — General and textural properties — Part 2 : Determination of density and porosity
  • BS EN 1097-4:2008(2009) Tests for mechanical and physical properties of aggregates Part 4 : Determination of the voids of dry compacted filler

American Society for Testing and Materials (ASTM), energy gap peak

  • ASTM D2980-17 Standard Test Method for Saturated Density, Moisture-Holding Capacity, and Porosity of Saturated Peat Materials
  • ASTM D2980-17e1 Standard Test Method for Saturated Density, Moisture-Holding Capacity, and Porosity of Saturated Peat Materials
  • ASTM G48-11 : Standard Test Methods for Pitting and Crevice Corrosion Resistance of Stainless Steels and Related Alloys by Use of Ferric Chloride Solution

Institute of Electrical and Electronics Engineers (IEEE), energy gap peak

  • IEEE/ANSI N42.31-2003 American National Standard for Measurement Procedures for Resolution and Efficiency of Wide-Bandgap Semiconductor Detectors of Ionizing Radiation

Professional Standard - Machinery, energy gap peak

  • JB/T 13071.4-2017 Electrical equipment and system of NC machine tools.Performance test specification of torque motor.Part 4: Peak stall current

工业和信息化部/国家能源局, energy gap peak

  • JB/T 13071.5-2017 CNC machine tool electrical equipment and system torque motor performance test specifications Part 5: Peak locked-rotor torque

Indonesia Standards, energy gap peak

  • SNI 04-3586-1994 Power transformator Part 3.1: Insulation level and dielectric test external clearances in air

PT-IPQ, energy gap peak

  • NP EN 1097-3-2000 Tests for machanical and physical properties of aggregates Part 3:Determination of loose bulk density and voids

International Electrotechnical Commission (IEC), energy gap peak

  • IEC 60076-3-1:1987 Power transformers. Part 3: Insulation levels and dielectric tests. External clearances in air
  • IEC TS 62607-5-4:2022 Nanomanufacturing - Key control characteristics - Part 5-4: Energy band gap measurement of nanomaterials by electron energy loss spectroscopy (EELS)

Professional Standard - Nuclear Industry, energy gap peak

  • EJ/T 20227.3-2018 Applied performance test of boron-containing aluminum-based neutron absorbing materials Part 3: Crevice corrosion test method

(U.S.) Ford Automotive Standards, energy gap peak

  • FORD WSK-M11P47-A2-2014 PERFORMANCE, STRUCTURAL ADHESIVE, 0.1 - 0.3 MM GAP ***TO BE USED WITH FORD WSS-M99P1111-A*** (Shown on FORD WSK-M11P47-A1)
  • FORD WSK-M11P47-A3-2012 PERFORMANCE, STRUCTURAL ADHESIVE, 0.3 - 7 mm GAP ***TO BE USED WITH FORD WSS-M99P1111-A*** Shown on FORD WSK-M11P47-A1
  • FORD WSK-M11P47-A5-2012 PERFORMANCE, STRUCTURAL ADHESIVE, 0.1 - 0.3 mm GAP ***TO BE USED WITH FORD WSS-M99P1111-A*** Shown on FORD WSK-M11P47-A1
  • FORD WSK-M11P47-A5-2014 PERFORMANCE, STRUCTURAL ADHESIVE, 0.1 - 0.3 mm GAP ***TO BE USED WITH FORD WSS-M99P1111-A*** (Shown on FORD WSK-M11P47-A1)
  • FORD WSK-M11P47-A6-2014 PERFORMANCE, STRUCTURAL ADHESIVE, 0.1 - 1.0 mm GAP ***TO BE USED WITH FORD WSS-M99P1111-A*** (Shown on FORD WSK-M11P47-A1)
  • FORD WSK-M11P47-A4-2014 PERFORMANCE, STRUCTURAL ADHESIVE, 0.1 - 0.3 mm GAP ***TO BE USED WITH FORD WSS-M99P1111-A*** (Shown on FORD WSK-M11P47-A1)
  • FORD WSK-M11P47-A3-2014 PERFORMANCE, STRUCTURAL ADHESIVE, 0.3 - 7 mm GAP ***TO BE USED WITH FORD WSS-M99P1111-A*** (Shown on FORD WSK-M11P47-A1)

AENOR, energy gap peak

  • UNE-EN 1097-3:1999 TESTS FOR MECHANICAL AND PHYSICAL PROPERTIES OF AGGREGATES. PART 3: DETERMINATION OF LOOSE BULK DENSITY AND VOIDS.
  • UNE-EN 1097-4:2009 Tests for mechanical and physical properties of aggregates - Part 4: Determination of the voids of dry compacted filler

HU-MSZT, energy gap peak





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