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degree relationship

degree relationship, Total:99 items.

In the international standard classification, degree relationship involves: Plastics, Analytical chemistry, Earthworks. Excavations. Foundation construction. Underground works, Power transmission and distribution networks, Lubricants, industrial oils and related products, Construction materials, Petroleum products in general, Protection against dangerous goods, Adhesives, Welding, brazing and soldering, Road vehicles in general, Geology. Meteorology. Hydrology, Road vehicle systems, Non-ferrous metals, Products of the textile industry.


ESDU - Engineering Sciences Data Unit, degree relationship

International Commission on Illumination (CIE), degree relationship

  • CIE 78-1988 Brightness Luminance Relations: Classified Bibliography (E)

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., degree relationship

  • ASHRAE 3817-1994 Time-Temperature-Humidity Relations for the Storage of Fresh Commodities
  • ASHRAE 3660-1993 Measurement of Pressure- Temperature- Concentration Relations for Mixtures of R-12/ Mineral Oil and R-134a Synthetic Oil

Taiwan Provincial Standard of the People's Republic of China, degree relationship

  • CNS 4448-1992 Method of Test for Stiffness in Torsion of Plastics as a Function of Temperature
  • CNS 11777-1-2005 Method of test for moisture–density relations of soils(Modified effort method)
  • CNS 11777-2005 Method of test for moisture–density relations of soils(Standard effort method)
  • CNS 11777.1-2005 Method of test for moisture–density relations of soils(Modified effort method)

Korean Agency for Technology and Standards (KATS), degree relationship

SE-SIS, degree relationship

  • SIS SMS 2195-1971 Cylindrical and tapered (1:10) shaft ands Lengthrelations and diameterranges

Institute of Electrical and Electronics Engineers (IEEE), degree relationship

  • IEEE Std 738-1993 IEEE Standard for Calculating the Current - Temperature Relationship of Bare Overhead Conductors
  • IEEE Std 738-2012 IEEE Draft Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors
  • IEEE Std P738-2012 Draft 09 IEEE Draft Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors
  • IEEE Std 738-2012 Draft 10 IEEE Draft Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors
  • IEEE P738/D9, January 2023 IEEE Draft Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors
  • IEEE P738/D10, April 2023 IEEE Approved Draft Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors
  • IEEE P738-2012_Cor 1-2013/D2, August 2013 IEEE Approved Draft Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors - Corrigendum 1
  • IEEE 738-2012 IEEE Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors
  • IEEE 738-2006 Standard for Calculating the Current-Temperature of Bare Overhead Conductors

KR-KS, degree relationship

  • KS F 2331-2022 Test method for moisture-density relations of soil cement mixtures

German Institute for Standardization, degree relationship

  • DIN 51563:2011-04 Testing of Mineral Oils and Related Materials - Determination of Viscosity Temperature Relation - Slope m

The American Road & Transportation Builders Association, degree relationship

  • AASHTO T 134-2005(R2009) Standard Method of Test for Moisture-Density Relations of Soil-Cement Mixtures
  • AASHTO T 134-2005 Standard Method of Test for Moisture-Density Relations of Soil-Cement Mixtures
  • AASHTO T 99-2010 Standard Method of Test for Moisture-Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • AASHTO T 99-2015 Standard Method of Test for Moisture-Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • AASHTO T 99-2021 Standard Method of Test for Moisture-Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • AASHTO T 99-2001 Standard Method of Test for Moisture-Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • AASHTO T 180-2001 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • AASHTO T 180-2010 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • AASHTO T 180-2015 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • AASHTO T 180-2018 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • AASHTO T 180-2021 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • AASHTO T 180-2009 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • AASHTO T 134-1995 Standard Method of Test for Moisture-Density Relations of Soil-Cement Mixtures HM-22; Part IIA; ASTM Designation: D 558-82 R(2000)

AASHTO - American Association of State Highway and Transportation Officials, degree relationship

  • T 134-2005 Standard Method of Test for Moisture-Density Relations of Soil-Cement Mixtures
  • T134-1993 Standard Method of Test for Moisture-Density Relations of Soil- Cement Mixtures
  • T 134-2003 Standard Method of Test for Moisture-Density Relations of Soil-Cement Mixtures (ASTM Designation: D 558-82)
  • T134-1995 Standard Method of Test for Moisture-Density Relations of Soil-Cement Mixtures (Twentieth Edition; ASTM D 558-82)
  • T 99-2001 Standard Method of Test for Moisture-Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • T 99-2015 Standard Method of Test for Moisture-Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • T 99-2010 Standard Method of Test for Moisture-Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • T 134-1995 Standard Method of Test for Moisture-Density Relations of Soil-Cement Mixtures (HM-22; Part IIA; ASTM Designation: D 558-82)
  • T 180-2017 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • T 180-2001 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • T180-1993 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • T 180-2015 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • T 180-2009 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • T99-1994 Standard Method of Test for the Moisture-Density Relations of Soils Using a 2.5 kg (5.5 lb) Rammer and a 305 mm (12 in.) Drop
  • T 180-2010 Standard Method of Test for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop
  • T 99-2017 Standard Method of Test for Moisture–Density Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop
  • T99-1997 Standard Specification for the Moisture-Density Relations of Soils Using a 2.5 kg (5.5 lb) Rammer and a 305 mm (12 in.) Drop (Twentieth Edition)
  • T180-1995 Standard Specification for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop (Eighteenth Edition)
  • T180-1997 Standard Specification for Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop (Nineteenth Edition)
  • T99-1995 Standard Specification for the Moisture-Density Relations of Soils Using a 2.5 kg (5.5 lb) Rammer and a 305 mm (12 in.) Drop (Eighteenth Edition)

Professional Standard - Petrochemical Industry, degree relationship

  • SH/T 0732-2004 Standard test method for low temperature, low shear rate, viscosity/temperature dependence of lubricating oils using a temperature-scanning technique

Indonesia Standards, degree relationship

  • SNI 6886-2012 Metode uji penentuan hubungan kadar air dan densitas campuran tanah-semen

American Society for Testing and Materials (ASTM), degree relationship

  • ASTM D558-96 Standard Test Methods for Moisture-Density Relations of Soil-Cement Mixtures
  • ASTM D2879-83 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D2879-86 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D2879-18 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D7110-05a Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures
  • ASTM D7110-14 Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures
  • ASTM D5133-05(2011) Standard Test Method for Low Temperature, Low Shear Rate, Viscosity/Temperature Dependence of Lubricating Oils Using a Temperature-Scanning Technique
  • ASTM D5133-12 Standard Test Method for Low Temperature, Low Shear Rate, Viscosity/Temperature Dependence of Lubricating Oils Using a Temperature-Scanning Technique
  • ASTM D2879-92e1 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D2879-96 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D2879-97(2002)e1 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D2879-97 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D2879-97(2007) Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D287-12a Standard Test Method for API Gravity of Crude Petroleum and Petroleum Products (Hydrometer Method)
  • ASTM D287-12 Standard Test Method for API Gravity of Crude Petroleum and Petroleum Products (Hydrometer Method)
  • ASTM D7110-15 Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures
  • ASTM D2879-10 Standard Test Method for Vapor Pressure-Temperature Relationship and Initial Decomposition Temperature of Liquids by Isoteniscope
  • ASTM D5133-05 Standard Test Method for Low Temperature, Low Shear Rate, Viscosity/Temperature Dependence of Lubricating Oils Using a Temperature-Scanning Technique
  • ASTM D7110-21 Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures
  • ASTM D7110-20 Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures
  • ASTM D7110-05 Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures
  • ASTM D7110-05a(2011) Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures

IEEE - The Institute of Electrical and Electronics Engineers@ Inc., degree relationship

  • IEEE 738-1993 Standard for Calculating the Current-Temperature Relationship of Bare Overhead Conductors (Includes Access to Additional Content)

API - American Petroleum Institute, degree relationship

  • API PUBL 937-A-2005 Study to Establish Relations for the Relative Strength of API 650 Cone Roof Roof-to-Shell and Shell-to-Bottom Joints

American Society of Mechanical Engineers (ASME), degree relationship

  • ASME N-641-2001 Alternative Pressure-Temperature Relationship and Low Temperature Overpressure Protection System Requirements Section XI, Division 1

European Committee for Standardization (CEN), degree relationship

  • prCEN ISO/TR 19441 Petroleum products - Density vs. temperature relationships of current fuels, biofuels and biofuel components

IN-BIS, degree relationship

US-FCR, degree relationship

  • FCR COE CRD-C 653-95-1995 HANDBOOK FOR CONCRETE AND CEMENT STANDARD TEST METHOD FOR DETERMINATION OF MOISTURE-DENSITY RELATION OF SOILS

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, degree relationship

  • GB/T 22052-2008 Test method for vapor pressure-temperature relationship and initial decompostition temperature of liquids by isoteniscope

International Organization for Standardization (ISO), degree relationship

  • ISO 19212:2006 Adhesives - Determination of temperature dependence of shear strength
  • ISO/TS 20273:2017 Guidelines on weld quality in relationship to fatigue strength

British Standards Institution (BSI), degree relationship

  • BS ISO 19212:2006 Adhesives - Determination of temperature dependence of shear strength

NO-SN, degree relationship

  • NS 3656-1993 Concrete testing. Rate of reaction as a function o temperature

Group Standards of the People's Republic of China, degree relationship

  • T/CIDA 0019-2023 Specifications for farmland evapotranspiration measurement by eddy covariance

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, degree relationship

  • GB/T 35472.6-2017 Test method for friction element of wet automatic transmission—Part 6: μ-PVT test method

Association Francaise de Normalisation, degree relationship

Japanese Industrial Standards Committee (JISC), degree relationship

  • JIS H 7201:2007 Method for measurement of pressure-composition-temperature(PCT) relations of hydrogen absorbing alloys

GB-REG, degree relationship

  • REG NASA-LLIS-4416-2012 Critical System Maturity Requirements, Critical System Analytic Model, and Critical System Certification Proces




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