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Basic concepts of nuclear power and its fuel cycle
Basic principles of radiation protection
Discharge of radionuclides as airborne and liquid effluents
4 other sections not shown
absorbed accident activity approach arising assessment atoms canisters capacity cent chapter characteristics Commission concrete consideration considered construction containment cooling countries currently decay decay heat decommissioning deep discussed disposal effects effluents electrical element energy environment Environmental example exposure fissile material fission products fuel rods future geological formations give given glass Group half-life high level liquid indicated International isotopes level liquid wastes level wastes limits long-term material metres natural neutrons nuclear fuel nuclear reactor nuclides occur ocean operation option organs particles period persons placed plant plutonium population possible practice present problems proposed protection radiation doses radioactive wastes radionuclides reactor received referred release removal repository reprocessing reprocessing of spent reprocessing plants require respect result rock salt solid solidified HLLW solidified products spent fuel steel storage stored Study Table tanks thermal tissues transport transuranics types United uranium various