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How to measure internal temperature

How to measure internal temperature, Total:31 items.

In the international standard classification, How to measure internal temperature involves: Equipment for petroleum and natural gas industries, Conducting materials, Semiconductor devices, Electricity. Magnetism. Electrical and magnetic measurements.


German Institute for Standardization, How to measure internal temperature

  • DIN EN 13485:2022-08 Thermometers for measuring the ambient or internal temperature for the transport, storage and distribution of temperature sensitive goods - Tests, performance, suitability; German and English version prEN 13485:2022 / Note: Date of issue 2022-07-15*Int...
  • DIN EN 13486:2022-08 Temperature recorders and thermometers for measuring the ambient or internal temperature for the transport, storage and distribution of temperature sensitive goods - Periodic verification; German and English version prEN 13486:2022 / Note: Date of issu...
  • DIN ISO 12219-6:2017 Interior air of road vehicles - Part 6: Method for the determination of the emissions of semi-volatile organic compounds from vehicle interior parts and materials at higher temperature - Small chamber method (ISO 12219-6:2017)
  • DIN EN 61788-9:2006 Superconductivity - Part 9: Measurements for bulk high temperature superconductors - Trapped flux density of large grain oxide superconductors (IEC 61788-9:2005); German version EN 61788-9:2005

KR-KS, How to measure internal temperature

British Standards Institution (BSI), How to measure internal temperature

  • 22/30454351 DC BS EN 13485. Thermometers for measuring the ambient or internal temperature for the transport, storage and distribution of temperature sensitive goods. Tests, performance, suitability
  • 22/30454354 DC BS EN 13486. Temperature recorders and thermometers for measuring the ambient or internal temperature for the transport, storage and distribution of temperature sensitive goods. Periodic verification
  • BS EN 61788-9:2005 Superconductivity - Part 9: Measurements for bulk high temperature superconductors - Trapped flux density of large grain oxide superconductors

Korean Agency for Technology and Standards (KATS), How to measure internal temperature

  • KS C IEC 61788-10-2017(2022) Superconductivity-Part 10:Critical temperature measurement-Critical temperature of Nb-Ti, Nb3Sn, and Bi-system oxide composite superconductors by a resistance method
  • KS C IEC 61788-10:2003 Superconductivity-Part 10:Critical temperature measurement-Critical temperature of Nb-Ti, Nb3Sn, and Bi-system oxide composite superconductors by a resistance method
  • KS C IEC 61788-10:2017 Superconductivity-Part 10:Critical temperature measurement-Critical temperature of Nb-Ti, Nb3Sn, and Bi-system oxide composite superconductors by a resistance method
  • KS M ISO 4266-4-2003(2018)
  • KS C IEC 61788-9-2016(2021) Superconductivity – Part 9: Measurements for bulk high temperature superconductors – Trapped flux density of large grain oxide superconductors
  • KS C IEC 61788-9:2016 Superconductivity – Part 9: Measurements for bulk high temperature superconductors – Trapped flux density of large grain oxide superconductors

Japanese Industrial Standards Committee (JISC), How to measure internal temperature

  • JIS H 7309:2006 Superconductivity -- Part 10: Critical temperature measurement -- Critical temperature of Nb-Ti, Nb3Sn, and Bi-system oxide composite superconductors by a resistance method

International Electrotechnical Commission (IEC), How to measure internal temperature

  • IEC 61788-9:2005 Superconductivity - Part 9: Measurements for bulk high temperature superconductors - Trapped flux density of large grain oxide superconductors

European Committee for Electrotechnical Standardization(CENELEC), How to measure internal temperature

  • EN 61788-9:2005 Superconductivity Part 9: Measurements for bulk high temperature superconductors - Trapped flux density of large grain oxide superconductors

Association Francaise de Normalisation, How to measure internal temperature

  • NF C31-888-9*NF EN 61788-9:2005 Superconductivity - Part 9 : measurements for bulk high temperature superconductors - Trapped flux density of large grain oxide superconductors.
  • NF C31-888-10:2003 Superconductivity - Part 10 : critical temperature measurement - Critical temperature of Nb-Ti, Nb3Sn, and Bi-system oxide composite superconductors by a resistance method.
  • NF EN 61788-9:2005 Supraconductivité - Partie 9 : mesures pour supraconducteurs haute température massifs - Densité de flux résiduel des oxydes supraconducteurs à gros grains
  • NF X43-408-6*NF ISO 12219-6:2018 Interior air of road vehicles - Part 6 : Method for the determination of the emissions of semi-volatile organic compounds from vehicle interior parts and materials at higher temperature - Small chamber method

ES-UNE, How to measure internal temperature

  • UNE-EN 61788-9:2005 Superconductivity -- Part 9: Measurements for bulk high temperature superconductors - Trapped flux density of large grain oxide superconductors (Endorsed by AENOR in November of 2005.)

Danish Standards Foundation, How to measure internal temperature

  • DS/EN 61788-9:2005 Superconductivity - Part 9: Measurements for bulk high temperature superconductors - Trapped flux density of large grain oxide superconductors

Lithuanian Standards Office , How to measure internal temperature

  • LST EN 61788-9-2005 Superconductivity. Part 9: Measurements for bulk high temperature superconductors. Trapped flux density of large grain oxide superconductors (IEC 61788-9:2005)

GOSTR, How to measure internal temperature

  • GOST R ISO 12219-6-2020 Interior air of road vehicles. Part 6. Method for the determination of the emissions of semi-volatile organic compounds from vehicle interior parts and materials at higher temperature. Small chamber method

API - American Petroleum Institute, How to measure internal temperature

  • API MPMS 11.5.1-2009 Manual of Petroleum Measurement Standards Chapter 11 - Physical Properties Data Section 5 - Density/Weight/Volume Intraconversion Part 1 - Conversions of API Gravity at 60 °F (First Edition)




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