ASTM E666-09 PDF

ASTM E666-09 PDF

Name:
ASTM E666-09 PDF

Published Date:
06/01/2009

Status:
Active

Description:

Standard Practice for Calculating Absorbed Dose From Gamma or X Radiation

Publisher:
ASTM International

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

SKU:

Choose Document Language:
$18
Need Help?

1.1 This practice presents a technique for calculating the absorbed dose in a material from knowledge of the radiation field, the composition of the material, (1-5) , and a related measurement. The procedure is applicable for X and gamma radiation provided the energy of the photons fall within the range from 0.01 to 20 MeV.

1.2 A method is given for calculating the absorbed dose in a material from the knowledge of the absorbed dose in another material exposed to the same radiation field. The procedure is restricted to homogeneous materials composed of the elements for which absorption coefficients have been tabulated (2). It also requires some knowledge of the energy spectrum of the radiation field produced by the source under consideration. Generally, the accuracy of this method is limited by the accuracy to which the energy spectrum of the radiation field is known.

1.3 The results of this practice are only valid if charged particle equilibrium exists in the material and at the depth of interest. Thus, this practice is not applicable for determining absorbed dose in the immediate vicinity of boundaries between materials of widely differing atomic numbers. For more information on this topic, see Practice E 1249.

1.4 Energy transport computer codes exist that are formulated to calculate absorbed dose in materials more precisely than this method. To use these codes, more effort, time, and expense are required. If the situation warrants, such calculations should be used rather than the method described here.

1.5 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.


File Size : 1 file , 150 KB
Note : This product is unavailable in Russia, Ukraine, Belarus
Number of Pages : 9
Published : 06/01/2009
Redline File Size : 2 files , 270 KB

History

ASTM E666-21
Published Date: 02/01/2021
Standard Practice for Calculating Absorbed Dose From Gamma or X Radiation
$15.6
ASTM E666-14
Published Date: 01/01/2014
Standard Practice for Calculating Absorbed Dose From Gamma or X Radiation
$18.6
ASTM E666-09
Published Date: 06/01/2009
Standard Practice for Calculating Absorbed Dose From Gamma or X Radiation
$18
ASTM E666-08
Published Date: 11/01/2008
Standard Practice for Calculating Absorbed Dose From Gamma or X Radiation
$18
ASTM E666-03
Published Date: 07/10/2003
Standard Practice for Calculating Absorbed Dose From Gamma or X Radiation
$18
ASTM E666-97
Published Date: 06/10/1997
Standard Practice for Calculating Absorbed Dose From Gamma or X Radiation
$17.4

Related products

ASTM E1819-15(2021)
Published Date: 02/01/2021
Standard Guide for Environmental Monitoring Plans for Decommissioning of Nuclear Facilities
$15.6
ASTM E170-24
Published Date: 05/01/2024
Standard Terminology Relating to Radiation Measurements and Dosimetry
$20.7
ASTM E973-16(2020)
Published Date: 06/01/2020
Standard Test Method for Determination of the Spectral Mismatch Parameter Between a Photovoltaic Device and a Photovoltaic Reference Cell
$15
ASTM 51649-22
Published Date: 12/01/2022
Standard Practice for Electron Beam Radiation Processing at Energies Between 300 keV and 25 MeV
119.00 90.00 you save 29.00

Best-Selling Products

Alzheimer's Disease Report
Published Date: 12/01/2018
$2398.5
Cystic Fibrosis Disease Report
Published Date: 04/01/2019
$2398.5
Multiple Sclerosis Disease Report
Published Date: 12/01/2018
$2398.5
Non-Alcoholic Steatohepatitis Disease Report
Published Date: 12/01/2018
$2398.5
Non-Hodgkin's Lymphoma Disease Report
Published Date: 12/01/2018
$2398.5