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1 Decay Scheme Pb disintegrates by beta minus emission to excited levels and to the ground state level of Bi. Le plomb se désintègre par émission bêta moins vers des niveaux excités et le niveau fondamental du bismuth. 2 Nuclear Data T 1/2 ( Pb ) : 26,916 (44) min T 1/2 ( Bi ) : 19,8 (1) min Q ( Pb ) : 1019 (11) 2.1 β Transitions Probability Nature lg f t 100 β0,9 180 (11) 2,762 (22) Allowed 4,5 β0,8 222 (11) 0,0196 (27) Allowed 6,9 β0,7 485 (11) 1,047 (17) 1st Forbidden 6,2 β0,5 667 (11) 46,52 (37) 1st Forbidden 5,1 β0,4 729 (11) 41,09 (39) 1st Forbidden 5,2 β0,0 1019 (11) 9,2 (7) 1st Forbidden 6,3 2.2 Gamma Transitions and Internal Conversion Coefficients P γ+ce Multipolarity α K α L α M α T 100 γ 1,0(Bi) 53,2275 (21) 14,71 (42) M1 + E2 9,80 (29) 2,32 (7) 12,88 (39) γ ( 1,0) (Bi) 107,22 (9) 0,0068 (14) γ ( 1,1) (Bi) 137,45 (30) 0,045 (18) γ ( 1,2) (Bi) 141,3 (6) 0,027 (14) LNE LNHB /V. Chisté, M.M. Bé 1 23/02/2007 15/12/2010

P γ+ce Multipolarity α K α L α M α T 100 γ ( 1,3) (Bi) 170,07 (6) 0,0146 (27) γ 3,2(Bi) 196,17 (10) 0,069 (9) γ 3,1(Bi) 205,642 (30) 0,0114 (23) γ ( 1,4) (Bi) 216,47 (7) 0,0100 (23) γ 4,1(Bi) 241,997 (3) 13,72 (20) M1(+E2) 0,724 (22) 0,1250 (38) 0,0295 (9) 0,888 (27) γ 3,0(Bi) 258,87 (3) 0,924 (13) M1 0,601 (18) 0,1037 (31) 0,0244 (7) 0,737 (22) γ 7,3(Bi) 274,80 (5) 0,504 (15) M1 + E2 0,295 (9) 0,0731 (22) 0,0179 (5) 0,392 (12) γ 4,0(Bi) 295,224 (2) 27,29 (26) M1 + E2 0,390 (12) 0,0698 (21) 0,0165 (5) 0,482 (14) γ 9,7(Bi) 305,26 (3) 0,0324 (22) [E1] 0,0241 (7) 0,00413 (12) 0,000971 (29) 0,0295 (9) γ 6,2(Bi) 314,32 (7) 0,077 (6) γ 6,1(Bi) 323,83 (4) 0,0287 (32) γ 5,0(Bi) 351,932 (2) 46,96 (37) M1(+ E2) 0,260 (8) 0,0445 (13) 0,01049 (31) 0,319 (10) γ 9,6(Bi) 462,00 (7) 0,213 (6) γ 7,1(Bi) 480,43 (2) 0,3838 (49) M1(+E2) 0,1132 (34) 0,0192 (6) 0,00452 (14) 0,1384 (42) γ 9,5(Bi) 487,09 (7) 0,438 (6) (E1) 0,00871 (26) 0,001423 (43) 0,000333 (10) 0,01058 (32) γ 7,0(Bi) 533,66 (2) 0,192 (10) [M1,E2] 0,05 (3) 0,010 (4) 0,0023 (9) 0,06 (4) γ 8,3(Bi) 538,41 (9) 0,0196 (27) γ 9,4(Bi) 543,81 (7) 0,050 (9) E1 + M2 0,00696 (21) 0,001124 (34) 0,000262 (8) 0,00843 (25) γ 9,3(Bi) 580,13 (3) 0,372 (6) (E1) 0,00611 (18) 0,000981 (29) 0,000229 (7) 0,00740 (22) γ ( 1,5) (Bi) 765,96 (9) 0,053 (8) γ 9,1(Bi) 785,96 (9) 1,068 (13) E1 0,00341 (10) 0,000533 (16) 0,0001239 (37) 0,00410 (12) γ 9,0(Bi) 839,00 (4) 0,589 (8) (E1) 0,00302 (9) 0,000470 (14) 0,0001092 (33) 0,00363 (11) 3 Atomic Data 3.1 Bi ω K : 0,964 (4) ω L : 0,391 (16) ω M : 0,031 (3) n KL : 0,809 (5) n LM : 1,28 3.1.1 X Radiations Relative probability K Kα 2 74,8157 59,77 Kα 1 77,1088 100 Kβ 3 86,835 } Kβ 1 87,344 } Kβ 5 87,862 } 34,25 Kβ 2 89,732 } Kβ 4 90,074 } 10,48 KO 2,3 90,421 } LNE LNHB /V. Chisté, M.M. Bé 2 23/02/2007 15/12/2010

Relative probability L Ll 9,42 Lα 10,45 10,55 Lη 11,35 Lβ 12,13 13,38 Lγ 14,31 16,36 3.1.2 Auger Electrons Relative probability Auger K KLL 57,49 63,42 100 KLX 70,02 77,10 56,2 KXY 82,45 90,52 9,2 Auger L 5,3 16,4 4 Electron Emissions Electrons per 100 disint. e AL (Bi) 5,3 16,4 19,8 (3) e AK (Bi) 0,80 (9) KLL 57,49 63,42 } KLX 70,02 77,10 } KXY 82,45 90,52 } ec 1,0 L (Bi) 36,8400 39,8089 10,39 (31) ec 1,0 M (Bi) 49,2284 50,6479 2,46 (8) ec 1,0 N (Bi) 52,2893 53,0704 0,641 (20) ec 4,1 K (Bi) 151,471 (3) 5,26 (16) ec 3,0 K (Bi) 168,34 (3) 0,32 (1) ec 4,0 K (Bi) 204,698 (2) 7,22 (23) ec 4,1 L (Bi) 225,610 228,578 0,908 (28) ec 4,1 M (Bi) 237,998 239,417 0, (7) ec 4,1 N (Bi) 241,059 241,840 0,0560 (17) ec 3,0 L (Bi) 242,48 245,45 0,0551 (17) ec 5,0 K (Bi) 261,406 (2) 9,26 (29) ec 4,0 L (Bi) 278,836 281,805 1,291 (40) ec 4,0 M (Bi) 291,225 292,644 0,305 (10) LNE LNHB /V. Chisté, M.M. Bé 3 23/02/2007 15/12/2010

Electrons per 100 disint. ec 4,0 N (Bi) 294,286 295,067 0,0797 (25) ec 5,0 L (Bi) 335,544 338,513 1,584 (46) ec 5,0 M (Bi) 347,933 349,352 0,373 (11) ec 5,0 N (Bi) 350,994 351,775 0,0975 (29) β0,9 max: 180 (11) 2,762 (22) β0,9 avg: 50 (3) β0,8 max: 222 (11) 0,0196 (27) β0,8 avg: 62 (3) β0,7 max: 485 (11) 1,047 (17) β0,7 avg: 145 (4) β0,5 max: 667 (11) 46,52 (37) β0,5 avg: 207 (4) β0,4 max: 724 (11) 41,09 (39) β0,4 avg: 227 (4) β0,0 max: 1019 (11) 9,2 (7) β0,0 avg: 337 (4) 5 Photon Emissions 5.1 XRay Emissions Photons per 100 disint. XL (Bi) 9,42 16,36 12,42 (22) XKα 2 (Bi) 74,8157 6,26 (12) } Kα XKα 1 (Bi) 77,1088 10,47 (20) } XKβ 3 (Bi) 86,835 } XKβ 1 (Bi) 87,344 } 3,59 (9) K β 1 XKβ 5 (Bi) 87,862 } XKβ 2 (Bi) 89,732 } XKβ 4 (Bi) 90,074 } 1,10 (4) K β 2 XKO 2,3 (Bi) 90,421 } LNE LNHB /V. Chisté, M.M. Bé 4 23/02/2007 15/12/2010

5.2 Gamma Emissions Photons per 100 disint. γ 1,0 (Bi) 53,2275 (21) 1,060 (7) γ ( 1,0) (Bi) 107,22 (9) 0,0068 (14) γ ( 1,1) (Bi) 137,45 (30) 0,045 (18) γ ( 1,2) (Bi) 141,3 (6) 0,027 (14) γ ( 1,3) (Bi) 170,07 (6) 0,0146 (27) γ 3,2 (Bi) 196,20 (5) 0,069 (9) γ 3,1 (Bi) 205,68 (9) 0,0114 (23) γ ( 1,4) (Bi) 216,47 (7) 0,0100 (23) γ 4,1 (Bi) 241,997 (3) 7,268 (22) γ 3,0 (Bi) 258,87 (3) 0,5318 (36) γ 7,3 (Bi) 274,80 (5) 0,362 (10) γ 4,0 (Bi) 295,224 (2) 18,414 (36) γ 9,7 (Bi) 305,26 (3) 0,0315 (21) γ 6,2 (Bi) 314,32 (7) 0,077 (6) γ 6,1 (Bi) 323,83 (4) 0,0287 (32) γ 5,0 (Bi) 351,932 (2) 35,60 (7) γ 9,6 (Bi) 462,00 (7) 0,213 (6) γ 7,1 (Bi) 480,43 (2) 0,3371 (41) γ 9,5 (Bi) 487,09 (7) 0,433 (6) γ 7,0 (Bi) 533,66 (2) 0,182 (6) γ 8,3 (Bi) 538,41 (8) 0,0196 (27) γ 9,4 (Bi) 543,81 (7) 0,050 (9) γ 9,3 (Bi) 580,13 (3) 0,369 (6) γ ( 1,5) (Bi) 765,96 (9) 0,053 (8) γ 9,1 (Bi) 785,96 (9) 1,064 (13) γ 9,0 (Bi) 839,04 (9) 0,587 (8) 6 Main Production Modes { Ra 226 decay chain Possible impurities : Pb 210 7 References M. Curie, A. Debierne, A.S. Eve, H. Geiger, O. Hahn, S.C. Lind, S. Meyer, E. Rutherford, E. Schweidler. Rev. Mod. Phys. 3 (1931) 427 (Halflife.) E.E. Berlovich. Bull. Acad. Sci. USSR, Phys. Ser. 16 (1952) 314 (Beta emission intensity.) K. Sageyama. J. Phys. Soc. (Japan) 8 (1953) 689 (Beta emission intensity.) H. Daniel, R. Nierhaus. Z. Naturforsch. 11a (1956) 212 (Halflife.) LNE LNHB /V. Chisté, M.M. Bé 5 23/02/2007 15/12/2010

K.O. Nielsen, O.B. Nielsen, M.A. Waggoner. Nucl. Phys. 2 (1957) 476 (Beta emission intensity.) H. Daniel. Z. Naturforsch. 11a (1958) 759 (Beta emission intensity.) G.T. Ewan, J. Tavendale. Can. J. Phys. 42 (1964) 2286 E.W.A. Lingeman, J. Konijn, P. Polak, A.H. Wapstra. Nucl. Phys. A133 (1969) 630 G. Wallace, G.E. Coote. Nucl. Instrum. Methods 74 (1969) 353 R.S. Mowatt. Can. J. Phys. 48 (1970) 2606 (Gammaray emission probabilities.) K.Ya. Gromov, B.M. Sabirov, J.J. Urbanets. Bull. Acad. Sci. USSR, Phys. Ser. 33 (1970) 1510 A. Hachem. Comp. Rend. Acad. Sci. (Paris) 281B (1975) 45 V. Zobel, J. Eberth, E. Eube. Nucl. Instrum. Methods 141 (1977) 329 F. Rösel. At. Data. Nucl. Data Tables 21 (1978) 91 (Theoretical ICC.) G. Mouze. Comp. Rend. Acad. Sci. (Paris) 292 (1981) 1243 H. Akcay, G. Mouze, D. Maillard, Ch. Ythier. Radiochem. Radioanal. Lett. 51 (1982) 1 M.A. Farouk, A.M. AlSoraya. Nucl. Instrum. Methods 200 (1982) 593 D.G. Olson. Nucl. Instrum. Methods 206 (1983) 313 U. Schötzig, K. Debertin. Int. J. Appl. Radiat. Isotop. 34 (1983) 533 I. Penev, W. Andrejtscheff, Ch. Protochristow, Zh. Zelev. Z. Physik A318 (1984) 213 (Halflife (E=53 ).) Y.A. Akovali. Nucl. Data Sheets 55 (1988) 665 ( level, spin, parity, multipolariy.) G. Mouze, J.F. Comanducci, C. Ythier. Rev. Roumaine Phys. 35 (1990) 337 G. Mouze, O. Diallo, P. Bechlich, J.F. Comanducci, C. Ythier. Radiochim. Acta 49 (1990) 13 W.J.Lin, G.Harbottle. J. Radioanal. Nucl. Chem. Lett. 153 (1991) 137 D. E. Martz, G. H. Langner Jr., P. R. Johnson. Health Phys. 61 (1991) 511 (Halflife.) O. Diallo, G. Mouze, C. Ythier, J.F. Comanducci. Nuovo Cim. 106A (1993) 1321 Y.A. Akovali. Nucl. Data Sheets 76 (1995) 127 ( level, spin, parity, multipolariy.) E. Schönfeld, H. Janssen. Nucl. Instrum. Meth. Phys. Res. A369 (1996) 527 (Atomic data.) J. Morel, M. Etcheverry, J.L. Picolo. Appl. Rad. Isotopes 49 (1998) 1387 D. Sardari, T.D. MacMahon. J. Radioanal. Nucl. Chem. 244 (2000) 463 J.U. Delgado, J. Morel, M. Etcheverry. Appl. Rad. Isotopes 56 (2002) 137 G.L. Molnar, Z.S. Révay, T. Belgya. 11th Int. Symp. On capture gammaray spectroscopy, 26 sep. 2002, Pruhonice (2002) 522 I.M. Band, M.B. Trzhaskovskaya, C.W. Nestor, Jr., P.O. Tikkanen, S. Raman. At. Data. Nucl. Data Tables 81 (2002) 1 (Theoretical ICC.) LNE LNHB /V. Chisté, M.M. Bé 6 23/02/2007 15/12/2010

G. Audi, A.H. Wapstra, C. Thibault. Nucl. Phys. A729 (2003) 129 (Q.) R.G.Helmer. IAEA CRP To be published (2003) J. Morel, S. Speman, M. Rasko, E. Terechtchenko, J.U. Delgado. Appl. Rad. Isotopes 60 (2004) 341 M. Voltaggio, M. Spadoni. Appl. Rad. Isotopes To be published (2011) (Halflife.) LNE LNHB /V. Chisté, M.M. Bé 7 23/02/2007 15/12/2010

LNELNHB/CEA Table de Radionucléides Pb 82 132 0 Pb 82 132 0 + ; 0 β 26,916 (44) min γ Emission intensities per 100 disintegrations 2,762 0,0196 9 8 5 0,031 0,213 0,433 0,05 0,369 1,064 0,587 0,019 6 + 1 ; 839 797,24 1,047 7 2 7 1 2 0,36 0,33 0,18 (1) ; 533,67 46,52 41,09 6 5 4 3 7 8 7 0,07 0,02 3 5,6 8 1 4 7,26 1 8,4 9 1 4 1 8 0,06 0,01 0,53 377,03 (0,1) ; 351,932 1 ; 295,224 (2) ; 258,87 9,2 2 1 0 Bi 83 131 Q = 1019 % β = 100 1,06 62,7 (2) ; 53,2275 1 ; 0 0,52 ns 19,8 (1) min LNE LNHB / V. Chisté, M.M. Bé Scheme page : 1/1 23/02/2007 25/11/2010