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>BSI Standards >17 METROLOGY AND MEASUREMENT. PHYSICAL PHENOMENA>17.240 Radiation measurements>BS EN ISO 6980-2:2025 Nuclear energy. Reference beta-particle radiation Calibration fundamentals related to basic quantities characterizing the radiation field
immediate downloadReleased: 2025-09-30
BS EN ISO 6980-2:2025 Nuclear energy. Reference beta-particle radiation Calibration fundamentals related to basic quantities characterizing the radiation field

BS EN ISO 6980-2:2025

Nuclear energy. Reference beta-particle radiation Calibration fundamentals related to basic quantities characterizing the radiation field

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Standard number:BS EN ISO 6980-2:2025
Pages:52
Released:2025-09-30
ISBN:978 0 539 36501 6
Status:Standard
BS EN ISO 6980-2:2025 - Nuclear Energy Calibration Standard

BS EN ISO 6980-2:2025 - Nuclear Energy Calibration Standard

Welcome to the future of nuclear energy calibration with the BS EN ISO 6980-2:2025 standard. This comprehensive document is an essential resource for professionals in the nuclear energy sector, providing detailed guidelines and calibration fundamentals related to beta-particle radiation. Released on September 30, 2025, this standard is the latest in a series of publications aimed at enhancing the precision and reliability of radiation measurements.

Key Features

  • Standard Number: BS EN ISO 6980-2:2025
  • Pages: 52
  • ISBN: 978 0 539 36501 6
  • Status: Standard

Comprehensive Coverage

This standard delves into the intricacies of beta-particle radiation, offering a thorough exploration of calibration fundamentals. It is designed to assist professionals in understanding and applying the basic quantities that characterize the radiation field. With 52 pages of in-depth content, this document serves as a vital tool for ensuring accurate and consistent radiation measurements.

Why Choose BS EN ISO 6980-2:2025?

The BS EN ISO 6980-2:2025 standard is a critical asset for anyone involved in the field of nuclear energy. It provides a structured approach to the calibration of beta-particle radiation, ensuring that measurements are both precise and reliable. By adhering to this standard, professionals can enhance the safety and efficiency of nuclear energy applications.

Benefits of the Standard

  • Enhanced Accuracy: Provides detailed guidelines for precise radiation measurement.
  • Reliability: Ensures consistent results across various applications.
  • Up-to-Date Information: Reflects the latest advancements and research in the field.
  • Comprehensive Guidance: Covers all fundamental aspects of beta-particle radiation calibration.

Who Should Use This Standard?

The BS EN ISO 6980-2:2025 standard is ideal for a wide range of professionals, including:

  • Nuclear engineers and technicians
  • Radiation safety officers
  • Research scientists in nuclear physics
  • Quality assurance specialists in nuclear facilities

Stay Ahead with the Latest Standards

In the rapidly evolving field of nuclear energy, staying informed about the latest standards is crucial. The BS EN ISO 6980-2:2025 standard represents the cutting edge of radiation calibration, providing the tools and knowledge necessary to maintain high standards of safety and efficiency.

Conclusion

Embrace the future of nuclear energy with the BS EN ISO 6980-2:2025 standard. This essential document offers a wealth of information and guidance, ensuring that professionals in the field are equipped with the knowledge they need to succeed. With its comprehensive coverage and up-to-date content, this standard is a must-have for anyone involved in the calibration of beta-particle radiation.

For more information on how this standard can benefit your work in nuclear energy, explore the detailed guidelines and insights provided within its pages. Equip yourself with the tools to achieve precision and reliability in your radiation measurements.

DESCRIPTION

BS EN ISO 6980-2:2025


This standard BS EN ISO 6980-2:2025 Nuclear energy. Reference beta-particle radiation is classified in these ICS categories:
  • 17.240 Radiation measurements
This document specifies methods for the measurement of the absorbed-dose rate in a tissue-equivalent slab phantom in the ISO 6980 reference beta-particle radiation fields. The energy range of the beta-particle-emitting isotopes covered by these reference radiations is 0,22 MeV to 3,6 MeV maximum beta energy corresponding to 0,07 MeV to 1,2 MeV mean beta energy. Radiation energies outside this range are beyond the scope of this document. While measurements in a reference geometry (depth of 0,07 mm or 3 mm at perpendicular incidence in a tissue?equivalent slab phantom) with an extrapolation chamber used as primary standard are dealt with in detail, the use of other measurement systems and measurements in other geometries are also described, although in less detail. However, as noted in ICRU 56, the ambient dose equivalent, H*(10), used for area monitoring, and the personal dose equivalent, Hp(10), as used for individual monitoring, of strongly penetrating radiation, are not appropriate quantities for any beta radiation, even that which penetrates 10 mm of tissue (Emax > 2 MeV). This document is intended for those organizations wishing to establish primary dosimetry capabilities for beta particles and serves as a guide to the performance of dosimetry with an extrapolation chamber used as primary standard for beta?particle dosimetry in other fields. Guidance is also provided on the statement of measurement uncertainties.