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Principles of Radiological Physics
Carcinogenesis by Ionizing Radiations 1145
The Measurement of Ionizing Radiations for Biological
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absorbed absorption coefficient acid action of radiation activations alleles amount aqueous solutions atomic number average beam biochemical biological effects breakage breaks broken ends caused cent centromere chamber charged particles chemical chromatids chromosome collisions curve dissociation distribution dosage Drosophila Drosophila melanogaster electron volts electrons energy dissipation energy transfer enzymes example excitation energy experiments fluorescence Franck-Condon principle gene gene mutations genetic germ cells given heterochromatin high-energy hydrogen peroxide increase individual induced inelastic collisions influence inhibition ionic yield ionizing radiations irradiation kinetic energy lethals light linear material measurement mitosis molecule Muller mutagenesis mutagenic mutant genes neutrons normal nuclei occur organisms oxidation oxygen pair production penetration photon Phys polyatomic potential probability produced protein radicals Radiology Radium Therapy range rays reactions region relative roentgen scattering Sect spermatozoa spontaneous structural changes studies substances temperature tion tissue tracks translocations ultraviolet vibrational wave length X rays X-ray