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ASTM E 2232

Ausgabedatum: 2010

Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radiation Processing Applications

1.1 This guide describes different mathematical methods that may be used to calculate absorbed dose and criteria for their selection. Absorbed-dose calculations can deter...
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Herausgeber:
American Society for Testing and Materials
Format:
Digital | 19 Seiten
Sprache:
Englisch
Aktuell Gültig:
1.1 This guide describes different mathematical methods that may be used to calculate absorbed dose and criteria for their selection. Absorbed-dose calculations can determine the effectiveness of the radiation process, estimate the absorbed-dose distribution in product, or supplement or complement, or both, the measurement of absorbed dose. 1.2 Radiation processing is an evolving field and annotated examples are provided in Annex A6 to illustrate the applications where mathematical methods have been successfully applied. While not limited by the applications cited in these examples, applications specific to neutron transport, radiation therapy and shielding design are not addressed in this document. 1.3 This guide covers the calculation of radiation transport of electrons and photons with energies up to 25 MeV. 1.4 The mathematical methods described include Monte Carlo, point kernel, discrete ordinate, semi-empirical and empirical methods. 1.5 General purpose software packages are available for the calculation of the transport of charged and/or uncharged particles and photons from various types of sources of ionizing radiation. This standard is limited to the use of these software packages or other mathematical methods for the determination of spatial dose distributions for photons emitted following the decay of <(hoch)137>Cs or <(hoch)60>Co, for energetic electrons from particle accelerators, or for X-rays generated by electron accelerators. 1.6 This guide assists the user in determining if mathematical methods are a useful tool. This guide may assist the user in selecting an appropriate method for calculating absorbed dose. The user must determine whether any of these mathematical methods are appropriate for the solution to their specific application and what, if any, software to apply. Note 1 -The user is urged to apply these predictive techniques while being aware of the need for experience and also the inherent ....(abbreviated)
ASTM E 2232
2021 06 15
Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radi...
Norm
ASTM E 2232
2020 12 01
Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radi...
Norm
ASTM E 2232
2016 12 01
Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radi...
Norm
ASTM E 2232
2010 07 01
Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radiat...
Norm
ASTM E 2232
2010
Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radiat...
Norm
ASTM E 2232
2002
Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radiat...
Norm
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Norm
ASTM E 2232
Ausgabedatum : 2010 07 01
Standard Guide for Selection and Use of Mathematical Methods for Calculating Absorbed Dose in Radiation Processing Applications