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:: Volume 6, Number 3 (12-2008) ::
Back to browse issues page 2008, 6(3): 135-140
XML Performance of Sife - Eldeen dosimeter over broad absorbed dose and dose rate ranges of γ – radiation and at different temperatures Print

Author(s): Dr. Kh. A. Sife - Eldeen *
* - National Center for Radiation Research and Technology, Nasr City, Cairo, Egypt , sifekhdr@hotmail.com
Study Type: Original Research | Subject: Radiation Biology
Article abstract:
Background: Results are presented on some dosimetric characteristics of Sife – Eldeen dosimeter based on the radiation induced conductivity (RIC) of 3.5 M aqueous urea solutions. The studied characteristics were the response (RIC) of Sife – Eldeen dosimeter in broad ranges of absorbed dose, dose rates and at different irradiation temperature. Materials and Methods: Kent EIL5007 conductivity meter (Kent industrial measurements–Brown Boveri) was used for the measurement of samples RIC. Results: RIC of 3.5M urea aqueous was studied at low (0 – 462 Gy), as well as, at high (0 - 2592 kGy) absorbed radiation dose ranges. The coefficient of variation CV%, associated with RIC measurement of 3.5 M urea solution as a function of absorbed radiation dose, was found to be not more than 3.5% for both high and low absorbed radiation dose ranges. The effect of dose rate on RIC was studied in the range 0.035 - 5.969 kGy/h. The temperature effect on this system, at different doses, was also studied. Conclusion: The obtained results show the importance of using this dosimeter for dose evaluation in industrial gamma radiation processes , as well as in medical fields. Iran. J. Radiat. Res., 2008; 6 (3): 135-140
KeywordsSife – Eldeen dosimeter, liquid chemical dosimeters, γ – Radiation, Urea, Electrical conductivity.,
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Sife - Eldeen K. Performance of Sife - Eldeen dosimeter over broad absorbed dose and dose rate ranges of γ – radiation and at different temperatures. International Journal of Radiation Research. 2008; 6 (3) :135-140
URL http://www.ijrr.com/browse.php?a_code=A-10-1-290&slc_lang=en&sid=1
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Back to browse issues page Volume 6, Number 3 ( 12-2008)
International Journal of Radiation Research
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