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Baldwin TD and Hicks TW, Assessment Calculations for Human ...

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0977-6Version 11Dose (mSv)0.10.01TotalE_Rn222_Ra226_occupierE_ext_occupier_inside[Cs137]E_ext_occupier_outside[Cs137]E_ext_occupier_inside[Ra226fRa226]E_ext_occupier_inside[Ag108m]E_ext_occupier_inside[Nb94]E_ext_occupier_outside[Ra226fRa226]E_ext_occupier_outside[Ag108m]E_ext_occupier_outside[Nb94]E_ext_occupier_inside[Th228fTh232]E_ext_occupier_outside[Th228fTh232]E_Rn222_U234_occupier0.0012000 3000 4000 5000 6000 7000 8000 9000 10000 11000 12000Year (CE)Figure 6.22Main radionuclides that contribute to annual dose to a site occupant(B3b) at grid cell C10 (Vault 15) (Case A). The legend indicatesexposure pathway, radionuclide contributing to dose <strong>and</strong> sourceradionuclide in the inventory.0.300.250.20Dose (mSv)0.150.10TotalExternal (inside)External (outside)InhalationIngestionRn2220.050.002000 3000 4000 5000 6000 7000 8000 9000 10000 11000 12000Year (CE)Figure 6.23Annual dose from different exposure pathways <strong>for</strong> a site occupant(B3b) at grid cell C10 (Vault 15) (Case A).Galson Sciences Ltd 35 21 March 2011

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