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1 Decay Scheme Rh- disintegrates by beta minus emission to the ground state and excited levels of Pd-. Le rhodium se désintègre par émission bêta principalement vers le niveau fondamental et les niveaux excités du palladium. Nuclear Data T 1/ ( Rh ) :,1 () s Q ( Rh ) : 546 (5) kev.1 β Transitions Probability (%) Nature lg ft β,7 144 (5),15 (19) β,6 169 (5),5 (9) β,5 6 (5),87 (8) Allowed 5,71 β,4 47 (5),8 (1) β, 7 (5),49 (14) β, 94 (5),1 (4) Allowed 6,7 β,1 96 (5),86 (16) Allowed 7,9 β, 5 (5),4 (1) Allowed 5,56 β,9 8 (5),7 (5) (Allowed) 6,55 β,8 46 (5),78 (1) β,7 491 (5),11 (5) Allowed 5,76 β,6 59 (5), () β,5 577 (5), (4) Unique 1st Forbidden 7,8 β,4 68 (5),18 (7) Allowed 5,87 β, 644 (5),76 (18) Allowed 6,9 β, 668 (5),6 (9) Allowed 5,81 β,1 718 (5),71 (19) Allowed 6,47 β, 75 (5),9 () Allowed 6,4 NPL / A.Arinc 1 17/1/11 /4/1

Probability (%) Nature lg ft β,19 76 (5),117 (8) Allowed 7,6 β,18 88 (5), (1) β,17 841 (5), (4) (Allowed) 6,56 β,16 9 (5),9 () Allowed 5,78 β,15 146 (5),84 (6) 1st Forbidden 6,48 β,14 1 (5),9 (15) (1st Forbidden) 7,99 β,1 117 (5),8 (5) Allowed 6,71 β,1 17 (5),4 (7) Allowed 6,57 β,11 168 (5),4 (5) Allowed 6,6 β,1 14 (5),7 (8) Allowed 6,7 β,9 1545 (5),448 (9) Allowed 5,9 β,8 167 (5),77 (1) (Allowed) 8,4 β,7 184 (5),664 (1) Allowed 7,6 β,6 1984 (5) 1,67 () Allowed 5,79 β,4 17 (5),51 (5) Unique nd Forbidden 11 β, 41 (5) 9,8 (15) Allowed 5,7 β, 418 (5),68 (1) Allowed 6,58 β,1 4 (5) 8, () Allowed 5,87 β, 546 (5) 78,8 (4) Allowed 5,18. Gamma Transitions and Internal Conversion Coefficients P γce α Multipolarity K α L α M α T α π (%) (1 ) (1 4 ) (1 5 ) (1 ) (1 4 ) γ 6,(Pd) 48,49 (5),711 (4) E 8,17 (1) 1,6 (15), () 9,47 (14) γ 6,(Pd) 44, (4), (4) E 7,85 (11) 1,19 (15) 19, () 9,9 (1) γ 9,6(Pd) 49, (6),111 (16) γ 1,(Pd) 511,8547 (),6 () E 4,84 (7) 6,1 (9) 11,5 (17) 5,59 (8) γ 7,(Pd) 578,4 (6),9 (6) E,4 (5) 4,7 (6) 8,4 (1),95 (6) γ,1(pd) 616,17 (),7 (17) M198%E,89 (4),57 (5) 6,71 (1), (5) γ,1(pd) 61,91 (4) 9,9 (15) E,8 (4),48 (5) 6,54 (1),4 (5) γ 1,6(Pd) 68, (6),1 (6) E114%M,4 (4),74 (4) 5,15 (8),68 (4) γ 1,5(Pd) 684,8 (6),55 (1) γ 17,9(Pd) 7,8 (1),9 (18) γ 11,6(Pd) 715,86 (9),99 (4) γ 4,1(Pd) 717,45 (4),67 (4) E 1,94 (),6 (4) 4,4 (7), (4) γ 1,5(Pd) 751,6 (),11 () γ 9,(Pd) 87,46 (6),46 (8) E 1,1 (17) 1,4 (),69 (4) 1,75 () γ 15,5(Pd) 94,6 (9),6 (18) γ 5,1(Pd) 145,8 (4),11 (16) M194%E,8 (1),94 (14) 1,766 (5),918 (1) γ 6,1(Pd) 15,4 () 1,49 (5) M15,4%E,88 (1) 1,18 (15) 1,91 () 1,7 (15) γ 16,6(Pd),15 (6),4 (19) γ 1,(Pd) 118,7 (6),56 () γ 1,(Pd) 1114,46 (6),117 () M169%E,7 (1),88 (14) 1,57 (5),8 (14),8 (17) γ,(pd) 118, (),98 (8) E,675 (1),79 (11) 1,479 (1),77 (11),141 (19) γ,(pd) 11,76 (4) E γ 11,(Pd) 115,9 (9),87 (17) E,648 (9),757 (11) 1,417 (),74 (11),48 (4) γ 18,5(Pd) 1159,91 (1), (1) γ 1,(Pd) 118,8 (6),144 () M1,4%E,689 (1),79 (1) 1,48 (),79 (1),41 (7) γ 7,1(Pd) 1194,59 (5),57 (8) E,597 (9),696 (1) 1,4 (19),689 (1),664 (1) γ 1,4(Pd) 19,8 (8),9 (8) γ,6(pd) 158,7 (9),66 (8) NPL / A.Arinc 17/1/11 /4/1

P γce α Multipolarity K α L α M α T α π (%) (1 ) (1 4 ) (1 5 ) (1 ) (1 4 ) γ 1,6(Pd) 166,4 (9),19 (1) γ 1,(Pd) 15,4 (8),19 (1) γ,6(pd) 115,67 (8), (5) E,489 (7),567 (8) 1,61 (15),586 (9),8 (4) γ 4,6(Pd) 155,61 (9),6 (5) γ 4,5(Pd) 16,18 (9),18 (4) γ 15,(Pd) 17,9 (9),199 (15) γ 8,1(Pd) 197,5 (16),77 (1) γ 9,1(Pd) 1489,6 (5),18 () γ 16,(Pd) 1496,8 (6),4 (17) γ 7,5(Pd) 1498,74 (16),68 (4) γ 6,(Pd) 156,5 (),156 (8) γ 17,(Pd) 157,48 (),185 (19) γ 17,(Pd) 1577,8 (9),15 (16) γ,(pd) 1687,1 (1),55 (16) γ,(pd) 169, (),8 (14) γ 1,1(Pd) 17,46 (),9 (1) γ 11,1(Pd) 1766,6 (9), (5) E,74 (4),14 (5),586 (9),56 (7) 1,9 () γ,(pd) 1774,46 (1),94 (8) γ 4,(Pd) 1784,1 (9),4 (1) γ 1,1(Pd) 1796,97 (5),74 (5) M15,9%E,87 (4),7 (5),611 (9),516 (8) 1,89 () γ 8,4(Pd) 1854,91 (),15 (1) γ 6,(Pd) 199, (17),17 (5) γ 1,1(Pd) 197,5 (7),147 (4) M1,5%E,5 (4),85 (4),5 (8),5 (8),47 (4) γ 8,(Pd) 1954,9 (4), (4) γ 14,1(Pd) 197,4 (8),17 (4) γ 15,1(Pd) 1988,46 (8),58 (5) E1,5%M,117 (),118 (5),46 (5),75 (11) 6, (9) γ,(pd) 9,5 (5),9 (6) E, (),8 (4),46 (6),576 (8),48 (5) γ 16,1(Pd) 11,55 (5),51 (7) E,197 (),4 (4),419 (6),581 (9),57 (5) γ 5,(Pd) 185,7 (5),5 (6) γ 17,1(Pd) 19,19 (1),495 (1) M1,8%E,194 (), (),41 (6),594 (9),7 (6) γ 1,(Pd) 4,48 (5),195 (8) γ 19,1(Pd) 71,89 (1),117 (8) γ,1(pd) 9,1 (9),575 (16) γ 1,1(Pd) 16,44 (9),6 (16) E,167 (4),189 (),54 (5),646 (9) 4,56 (7) γ,1(pd) 66,7 (7), (7) E,168 (),18 (),41 (5),66 (1) 4,8 (7) γ,1(pd) 9,6 (1),66 (16) M11,%E,1645 (4),186 (),49 (5),654 (1) 4,67 (7) γ 4,1(Pd) 46,1 (8),145 (4) M1,5%E,166 (),184 (),44 (5),659 (1) 4,74 (7) γ 1,(Pd) 49,1 (7),464 (1) E,155 (),177 (5), (5),689 (1) 5,15 (8) γ 5,1(Pd) 456,8 (1), (4) γ 14,(Pd) 484,66 (),76 (14) γ 6,1(Pd) 55,47 (17),11 () γ 7,1(Pd) 54,8 (1),89 (9) M1,5%E,1464 (1),1657 (4),1 (5),75 (1) 5,9 (8) γ 8,1(Pd) 571,19 (),1 (6) γ 9,1(Pd) 651,4 (),68 (4) γ 17,(Pd) 75, (8),48 (1) γ,1(pd) 79,5 (5),7 (11) E,171 (18),146 (1),68 (4),785 (11) 6,41 (9) γ,1(pd) 74, (4),1 (4) γ 4,1(Pd) 788, (5),8 (1) γ 5,1(Pd) 89,1 (),6 (4) E,1195 (17),149 (19),5 (4),8 (1) 6,86 (1) γ,(pd) 81, (),1 (4) γ 6,1(Pd) 865 (1),14 (8) γ,(pd) 9,6 (5),66 (1) γ 4,(Pd) 917,6 (),94 (4) γ 6,(Pd) 7,4 (),15 (4) γ 7,(Pd) 55,1 (),6 (4) γ 9,(Pd) 164,7 (1), (1) γ 1,(Pd) 49,9 (5),86 (16) γ,(pd) 7,5 (7),49 (14) γ 6,(Pd) 76, (14),11 (1) γ 7,(Pd) 41,9 (9),15 (19) NPL / A.Arinc 17/1/11 /4/1

Atomic Data.1 Pd ω K :,8 (4) ω L :,56 (1) n KL :,975 (4).1.1 X Radiations Relative probability X K Kα 1, 5,9 Kα 1 1,1774 1 Kβ,7914 Kβ 1,819 7,44 Kβ 5 4,1 Kβ 4,994 4,66 Kβ 4 4,44 L Ll,545 Lα,87 -,89 Lη,6611 Lβ,994 -,1715 Lγ,464 -,5545.1. Auger Electrons Relative probability Auger K KLL 17, - 17,884 1 KLX, - 1,176 4 KXY,11-4,47 4,4 Auger L 1,8 -,6 NPL / A.Arinc 4 17/1/11 /4/1

4 Electron Emissions Electrons (per 1 disint.) e AL (Pd) 1,8 -,6,177 (8) e AK β,7 β,6 β,5 β,4 β, β, β,1 β, β,9 β,8 β,7 β,6 β,5 β,4 β, β, β,1 β, (Pd) KLL 17, - 17,884 KLX, - 1,176 KXY,11-4,47 max: 144 (5) max: 169 (5) max: 6 (5) 6,9 (16) max: 47 (5) max: 7 (5) max: 94 (5) 84,5 (17) max: 96 (5) 85, (17) max: 5 (5) 94,5 (17) max: 8 (5) 11,8 (17) max: 46 (5) max: 491 (5) 151,8 (18) max: 59 (5) max: 577 (5),8 (19) max: 68 (5), (19) max: 644 (5) 8,1 (19) max: 668 (5) 17,5 () max: 718 (5) 6,6 () max: 75 (5) 9,4 (),8 (7),15 (19),5 (9),87 (8),8 (1),49 (14),1 (4),86 (16),4 (1),7 (5),78 (1),11 (5), (), (4),18 (7),76 (18),6 (9),71 (19),9 () NPL / A.Arinc 5 17/1/11 /4/1

Electrons (per 1 disint.) β,19 β,18 β,17 β,16 β,15 β,14 β,1 β,1 β,11 β,1 β,9 β,8 β,7 β,6 β,4 β, β, β,1 β, max: 76 (5) 54 () max: 88 (5) max: 841 (5) 85,1 () max: 9 (5) 17,8 (1) max: 146 (5) 69, (1) max: 1 (5) 75,6 (1) max: 117 (5) 94,7 (1) max: 17 (5) 45,1 () max: 168 (5) 46, () max: 14 (5) 478,7 () max: 1545 (5) 584, () max: 167 (5) 65, () max: 184 (5) 716,4 () max: 1984 (5) 781,9 () max: 17 (5) 951,8 () max: 41 (5) 978,9 (4) max: 418 (5) 981,6 (4) max: 4 (5) 169,5 (4) max: 546 (5) 1511,1 (4),117 (8), (1), (4),9 (),84 (6),9 (15),8 (5),4 (7),4 (5),7 (8),448 (9),77 (1),664 (1) 1,67 (),51 (5) 9,8 (15),68 (1) 8, () 78,8 (4) NPL / A.Arinc 6 17/1/11 /4/1

5 Photon Emissions 5.1 X-Ray Emissions Photons (per 1 disint.) XL (Pd),545 -,5545,785 (14) XKα (Pd) 1,,1 (5) Kα XKα 1 (Pd) 1,1774,586 (9) XKβ (Pd),7914 XKβ 1 (Pd),819,168 (9) K β 1 XKβ 5 (Pd) 4,1 XKβ (Pd) 4,994,7 (1) K β XKβ 4 (Pd) 4,44 5. Gamma Emissions Photons (per 1 disint.) γ 6, (Pd) 48,49 (5),74 (4) γ 6, (Pd) 44, (4), (4) γ 9,6 (Pd) 49, (6),111 (16) γ 1, (Pd) 511,854 (),5 () γ 7, (Pd) 578,4 (6),9 (6) γ,1 (Pd) 616,16 (),71 (17) γ,1 (Pd) 61,9 (4) 9,87 (15) γ 1,6 (Pd) 68, (6),1 (6) γ 1,5 (Pd) 684,8 (6),55 (1) γ 17,9 (Pd) 7,8 (1),9 (18) γ 11,6 (Pd) 715,86 (9),99 (4) γ 4,1 (Pd) 717,44 (4),67 (4) γ 1,5 (Pd) 751,6 (),11 () γ 9, (Pd) 87,46 (6),45 (8) γ 15,5 (Pd) 94,6 (9),6 (18) γ 5,1 (Pd) 145,8 (4),11 (16) γ 6,1 (Pd) 15,9 () 1,49 (5) γ 16,6 (Pd),14 (6),4 (19) γ 1, (Pd) 118,71 (6),56 () γ 1, (Pd) 1114,45 (6),117 () γ, (Pd) 118,1 (),98 (8) γ 11, (Pd) 115,8 (9),87 (17) γ 18,5 (Pd) 1159,9 (1), (1) γ 1, (Pd) 118,79 (6),144 () γ 7,1 (Pd) 1194,58 (5),57 (8) γ 1,4 (Pd) 19,79 (8),9 (8) γ,6 (Pd) 158,71 (9),66 (8) NPL / A.Arinc 7 17/1/11 /4/1

Photons (per 1 disint.) γ 1,6 (Pd) 166, (9),19 (1) γ 1, (Pd) 15, (8),19 (1) γ,6 (Pd) 115,66 (8), (5) γ 4,6 (Pd) 155,6 (9),6 (5) γ 4,5 (Pd) 16,17 (9),18 (4) γ 15, (Pd) 17,8 (9),199 (15) γ 8,1 (Pd) 197,51 (16),77 (1) γ 9,1 (Pd) 1489,61 (5),18 () γ 16, (Pd) 1496,7 (6),4 (17) γ 7,5 (Pd) 1498,7 (16),68 (4) γ 6, (Pd) 156,4 (),156 (8) γ 17, (Pd) 157,47 (),185 (19) γ 17, (Pd) 1577,7 (9),15 (16) γ, (Pd) 1687, (1),55 (16) γ, (Pd) 169, (),8 (14) γ 1,1 (Pd) 17,44 (),9 (1) γ 11,1 (Pd) 1766,4 (9), (5) γ, (Pd) 1774,44 (1),94 (8) γ 4, (Pd) 1784,8 (9),4 (1) γ 1,1 (Pd) 1796,95 (5),74 (5) γ 8,4 (Pd) 1854,89 (),15 (1) γ 6, (Pd) 199,8 (17),17 (5) γ 1,1 (Pd) 197, (7),147 (4) γ 8, (Pd) 1954,9 (4), (4) γ 14,1 (Pd) 197,4 (8),17 (4) γ 15,1 (Pd) 1988,44 (8),58 (5) γ, (Pd) 9, (5),9 (6) γ 16,1 (Pd) 11,5 (5),51 (7) γ 5, (Pd) 185,7 (5),5 (6) γ 17,1 (Pd) 19,17 (1),495 (1) γ 1, (Pd) 4,45 (5),195 (8) γ 19,1 (Pd) 71,86 (1),117 (8) γ,1 (Pd) 9,9 (9),575 (16) γ 1,1 (Pd) 16,41 (9),6 (16) γ,1 (Pd) 66,4 (7), (7) γ,1 (Pd) 9,6 (1),659 (16) γ 4,1 (Pd) 45,98 (8),145 (4) γ 1, (Pd) 49,7 (7),464 (1) γ 5,1 (Pd) 456,79 (1), (4) γ 14, (Pd) 484,6 (),76 (14) γ 6,1 (Pd) 55,4 (17),11 () γ 7,1 (Pd) 54,79 (1),89 (9) γ 8,1 (Pd) 571,16 (),1 (6) γ 9,1 (Pd) 651,9 (),68 (4) γ 17, (Pd) 75,6 (8),48 (1) γ,1 (Pd) 79,48 (5),7 (11) γ,1 (Pd) 74,1 (4),1 (4) γ 4,1 (Pd) 788, (5),8 (1) NPL / A.Arinc 8 17/1/11 /4/1

Photons (per 1 disint.) γ 5,1 (Pd) 89,1 (),6 (4) γ, (Pd) 81, (),1 (4) γ 6,1 (Pd) 865 (1),14 (8) γ, (Pd) 9,6 (5),66 (1) γ 4, (Pd) 917,6 (),94 (4) γ 6, (Pd) 7, (),15 (4) γ 7, (Pd) 55, (),6 (4) γ 9, (Pd) 164,6 (1), (1) γ 1, (Pd) 49,8 (5),86 (16) γ, (Pd) 7,4 (7),49 (14) γ 6, (Pd) 75,9 (14),11 (1) γ 7, (Pd) 41,8 (9),15 (19) 6 Main Production Modes 5 U(n,f) Ru Ru(β ) Rh 7 References - W.Seelmann-Eggebert. Naturwiss. (1946) 79 (Half-life) - W.C.Peacock. Phys. Rev. 7 (1947) 149 (Beta emission energies, Beta emission probabilities) - L.E.Glendenin, E.P.Steinberg. NNES 9 (195) 79 (Half-life) - B.Kahn, W.S.Lyon. Phys. Rev. 9 (195) 9 - E.I.Firsov, A.A.Bashilov. Izvest. Akad. Nauk SSSR, Ser. Fiz. 1 (1957) 16; Columbia Tech. Transl. 1 (1958) 1619 - E.P.Grigorev, A.V.Zolotavin, I.I.Kuzmin, E.D.Pavlitskaia. Izvest. Akad. Nauk SSSR, Ser. Fiz. (1958) 194; Columbia Tech. Transl. (1959) 191 (Beta emission energies, Beta emission probabilities) - R.L.Robinson, F.K.McGowan, W.G.SMITH. Phys. Rev. 119 (196) 169 - O.J.Seagert, J.L.Demuynck. Nucl. Phys. 16 (196) 49 - S.Y.Ambiye, R.P.Sharma. Nucl. Phys. 9 (196) 657 (Gamma ray energies, Gamma-ray emission probabilities, Beta emission probabilities) - T.J.Kennett, G.L.Keech,. Nucl. Instrum. Methods 4 (196) 14 (Beta emission energies, Beta emission probabilities) - R.L.Robinson, P.H.Stelson, F.K.McGowan, J.L.C.Ford, Jr., W.T.Milner. Nucl. Phys. 74 (1965) 81 (Gamma ray energies) - V.Middleboe. Nature 11 (1966) 8 (Half-life) - V.V.Ovechkin, T.K.Ragimov, D.F.Rau. Yadern. Fiz. 4 (1966) 68 - A.S.Johnston, G.M.Julian. Bull. Am. Phys. Soc. 11, No. (1966) 49 (Beta emission energies, Beta emission probabilities) - H.Forest, M.Huguet, C.Ythier. C. R. Acad. Sci. (Paris) 64B (1967) 1614 NPL / A.Arinc 9 17/1/11 /4/1

- P.V.Rao, R.W.Fink. Nucl. Phys. A1 (1967) 85 - J.Vrzal, E.P.Grigorev, A.V.Zolotavin, J.Liptak, V.O.Sergeev, J.Urbanets. Izvest. Akad. Nauk SSSR, Ser. Fiz. 1 (1967) 696; Bull. Acad. Sci. USSR, Phys. Ser. 1 (1968) 69 - J.Hattula, E.Liukkonen. Ann. Acad. Sci. Fenn. Ser. A VI (1968) 74 - Kl.-D.Strutz, H.-J.Strutz, A. Flammersfeld. Z. Phys. 1 (1969) 1 - E.Beck. Nucl. Instrum. Methods 76 (1969) 77 (Beta emission energies) - Y.Kobayashi. JAERI-1178 (1969) 1 (Half-life) - P.Odru. Radiochim. Acta 1 (1969) 64 (Gamma-ray emission probabilities) - T.Azuma, Y.Sato. Annual Rep. Radiat. Center Osaka Prefect. 1 (1971) 8 - C.Marsol, O.Rahmouni, G.Ardisson. C. R. Acad. Sci. (Paris) 75B (197) 85 - C.Marsol, G.Ardisson. Rev. Roumaine Phys. 18 (197) 111 - K.Debertin, U.Schotzig, K.F.Walz, H.M.Weiss. Ann. Nucl. (1975) 7 (Gamma-ray emission probabilities) - A.M.Geidelman, V.V.Ovechkin, D.F.Rau, P.I.Fedotov, Y.V.Khonolov. Izvest. Akad. Nauk SSSR, Ser. Fiz. 9 (1975) 555; Bull. Acad. Sci. USSR, Phys. Ser. 9, No. (1975) 76 (Gamma-ray emission probabilities) - S.T.Hsue, H.H.Hsu, F.K.Wohn, W.R.Western, S.A.Williams. Phys. Rev. C1 (1975) 58 - K.Shizuma, H.Inoue, Y.Yoshizawa. Nucl. Instrum. Methods 17 (1976) 599 (Gamma ray energies) - K.Okano, Y.Kawase, S.Yamada. J. Phys. Soc. Japan 4 (1977) 81 - R.Kaur, A.K.Sharma, S.S.Sooch, N.Singh, P.N. Trehan. J. Phys. Soc. Japan 51 (198) - H.Kumahora, H.Inoue, Y.Yoshizawa. Nucl. Instrum. Methods 6 (198) 489 (Gamma ray energies) - R.C.Greenwood, D.A.Struttmann, K.D.Watts. Nucl. Instrum. Methods Phys. Res. A17 (199) 175 (Beta emission probabilities) - T.Chang, S.Wang, H.Wang, B.Meng. Nucl. Instrum. Methods Phys. Res. A5 (199) 196 (Gamma ray energies) - E.Schönfeld, H.Janssen. Nucl. Instrum. Methods Phys. Res. A69 (1996) 57 (XK, XL, Auger electrons) - R.G.Helmer, C.Van der Leun. Nucl. Instrum. Methods Phys. Res. A45 () 5 (Gamma ray energies) - I.M.Band, M.B.Trzhaskovskaya, C.W.Nestor Jr., P.O.Tikkanen, S.Raman. At. Data Nucl. Data Tables 81 () 1 (ICC) - T.Kibédi, R.H.Spear. At. Data Nucl. Data Tables 89 (5) 77 (E transition) - D.de Frenne, A.Negret. Nucl. Data Sheets 19 (8) 94 (Spin, Parity, Multipolarities, level) - T.Kibédi, T.W.Burrows, M.B.Trazhaskovskaya, P.M.Davidson, C.W.Nestor Jr. Nucl. Instrum. Methods Phys. Res. A589 (8) (Theoretical ICC) - M.Wang, G.Audi, A.H.Wapstra, F.G.Kondev, M.MacCormick, X.Xu, B.Pfeiffer. Chin. Phys. C6 (1) 16 (Q value) NPL / A.Arinc 1 17/1/11 /4/1

LNE-LNHB/CEA - Table de Radionucléides Rh 45 61 1 ; β -,1 () s γ Emission intensities per 1 disintegrations Rh 45 61,15,5,87,8,49,1,86,4,7,78,11,,,18,76 7 6 5 4 1 9 8 7 6 5 4 5 1 14 11,,, 5 6 8,, 49, 1, 86, 9 7, 6 8,,,, 1 5 1 6 8 89 6,,, 1 7 11 1 5,,,,,, 6 1 8 4 4 5 94, 94 6 59 66,,,,1,,,, 41,9 76,6 ;,5 99, 1, ; 7,5 ; 5 ; 49,9 ; 1,7 (1,) ; 16,7 ; 8,91 1 ; 54,97 1, ; 7, - ; 968,68 ; 917,86 ; 9,48 1,67,51 9,8,68 6 5 4 ; 156,5 ; 1557,68 4 ; 19, ; 11,76 ; 118, 8, 1 ; 511,8547 78,8 Pd 46 6 - Q = 546 kev % β - = 1 NPL / A.Arinc Scheme page : 1/ 17/1/11-5//1 ; Stable

LNE-LNHB/CEA - Table de Radionucléides Rh 45 61 1 ; β -,1 () s γ Emission intensities per 1 disintegrations Rh 45 61,6,71,9,117,,,9,84,9,8,4 1 19 18 17 16 15 14 1 1,, 1 9 6 66 55 8 5 75 1,, 1 17,,,,,, 9 8 5 5 9 5 4 8,,,1,1,4, 4 4 5 1,,, 6 1 99 5 8 17 76,,,,, 9 1 9 4 7 4 64,,,1, 1 4 4,1,14,7 ; 877,9 ; 88,9 ; 8,97 ; 78,74 717,59 (1) ; 75, ; 64,4 - ; 5,1 (1) - ; 484,66 ; 49,1 ; 8,8,448 9 ; 1,48 1,67 6 5 ; 156,5 ; 1557,68,51 9,8,68 4 4 ; 19, ; 11,76 ; 118, 8, 1 ; 511,8547 78,8 Pd 46 6 - Q = 546 kev % β - = 1 NPL / A.Arinc Scheme page : / 17/1/11-5//1 ; Stable

LNE-LNHB/CEA - Table de Radionucléides Rh 45 61 1 ; β -,1 () s γ Emission intensities per 1 disintegrations Rh 45 61,4,7 11 1 9 8 7 5 5 5 6 1 7 9 1 95,9,,,1,,,1,, ; 78,11 ; 4,48,448,77 9 8 1 8,11,45,1 77, ; 1,48 (1,) ; 199,7,664 1,67 7 6 5,9,57 4 6,7, 1,49,15,1 1 ; 176,44 ; 156,5 ; 1557,68,51 9,8,68 4, 6 7 9,87 1 8,7,9 4 ; 19, ; 11,76 ; 118, 8, 1,5 ; 511,8547 78,8 Pd 46 6 - Q = 546 kev % β - = 1 NPL / A.Arinc Scheme page : / 17/1/11-5//1 ; Stable