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According to DAB hypothesis, fission products behaviors in different ecosystems could be interpreted, and actual field data, including minor health effects, are explained in a very wide coincidence. DAB hypothesis represents a tool for interpreting the reduced radiological impact in the environment, reduced health effects of FP and consequently to reduce their radiophobia, as well as to reduce radiation protection and nuclear safety expenses. This lays a stress on DAB hypothesis as a good tool to interpret FP behavior and that the assumptions used in DAB construction are more near to the…mehr

Produktbeschreibung
According to DAB hypothesis, fission products behaviors in different ecosystems could be interpreted, and actual field data, including minor health effects, are explained in a very wide coincidence. DAB hypothesis represents a tool for interpreting the reduced radiological impact in the environment, reduced health effects of FP and consequently to reduce their radiophobia, as well as to reduce radiation protection and nuclear safety expenses. This lays a stress on DAB hypothesis as a good tool to interpret FP behavior and that the assumptions used in DAB construction are more near to the scientific facts than other assumptions like hyperstoichiometric media or atom diffusion
Autorenporträt
Abdul-Wali Ajlouni: Assis. Prof. of Radiation Physics-Applied Physics Department, TTU, Jordan. Dr. Ajlouni was a researcher on radiation safety, has received extensive training on radiation protection, has attended numerous conferences and published extensively on the subject. He received a SCOPUS Scientific Research Award in 2009.