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Lieste fon do Isotope/4. Periode

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Dissen Artikkel is ne Lieste fon do Isotope fon aal do bekoande chemiske Elemente fon ju fjoode Periode.

Ne Uursicht uur aal wiedere Isotope as uk ne Legende is in dän Haudartikkel Lieste fon do Isotope tou fienden.

IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
35K190 ms11,881 (K/β+), 5,984 (Kp)3/2+K/β+=100, Kp=0,37
36K342 ms12,805 (K/β+), 4,299 (Kp) , 6,166 (Kα)2+K/β+=100, Kp=0,048, Kα=0,0034
37K1,226 s6,1493/2+K/β+=100
38K7,636 min5,9133+K/β+=100
38m1K923,9 ms6,0430+K/β+=100
39Kstabil3/2+Andeel=93,2581
40K1,277·109 a1,311 (β), 1,505 (K/β+)4−Häufigkeit=0,0117, β=89,28, K/β+=10,72
41Kstabil3/2+Andeel=6,7302
42K12,360 h3,5252−β=100
43K22,3 h1,8153/2+β=100
44K22,13 min5,6602−β=100
45K17,3 min4,2043/2+β=100
46K105 s7,716(2−)β=100
47K17,50 s6,6431/2+β=100
48K6,8 s12,090 (β), 2,144 (βn)(2−)β=100, βn=1,14
49K1,26 s10,97 (β), 5,82 (βn)(3/2+)β=100, βn=86
50K472 ms14,2 (β), 7,9 (βn)(0−,1,2−)β=100, βn=29
51K365 ms13,9 (β), 9,5 (βn)(1/2+,3/2+)β=100, βn=47
52K105 msβ=100, βn=91
53K30 ms(3/2+)β=100, βn=85
54K10 ms18,0 (β), 14,2 (βn)β=100, βn=?
IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
35Ca50 ms15,61 (K/β+), 10,86 (Kp)K/β+=100, Kp=?
36Ca102 ms10,99 (K/β+), 9,32 (Kp)0+K/β+=100, Kp=57
37Ca181,1 ms11,639 (K/β+), 9,781 (Kp)3/2+K/β+=100, Kp=76
38Ca440 ms6,7430+K/β+=100
39Ca859,6 ms6,5313/2+K/β+=100
40Castabil0+Andeel=96,941
41Ca1,03·105 a0,4217/2−K=100
42Castabil0+Andeel=0,647
43Castabil7/2−Andeel=0,135
44Castabil0+Andeel=2,086
45Ca162,61 d0,2577/2−β=100
46Castabil0+Andeel=0,004
47Ca4,536 d1,9927/2−β=100
48Ca6·1018 a4,272 (β)0+Andeel=0,187, β=?, ββ=?
49Ca8,718 min5,2623/2−β=100
50Ca13,9 s4,9660+β=100
51Ca10,0 s7,33 (β), 0,58 (βn)(3/2−)β=100, βn=?
52Ca4,6 s7,90+β=100
53Ca90 ms10,1 (β), 4,5 (βn)(3/2−,5/2−)β=100, βn+ β2n>30
54Ca10,90+β=100
55Ca5/2−


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
40Sc182,3 ms14,320 (K/β+), 7,279 (Kα), 5,991 Kp)4−K/β+=100, Kα=0,017, Kp=0,44
41Sc596,3 ms6,4597/2−K/β+=100
42Sc681,3 ms6,4260+K/β+=100
42m1Sc61,7 s7,0427+,(5+,6+)K/β+=100
43Sc3,891 h2,2217/2−K/β+=100
44Sc3,927 h3,6532+K/β+=100
44m1Sc58,6 h0,271 (IT), 3,924 (K/β+)6+IT=98,80, K/β+=1,20
45Scstabil7/2−Andeel=100
45m1Sc318 ms0,0123/2+IT=100
46Sc83,79 d2,3674+β=100
46m1Sc18,75 s0,1431−IT=100
47Sc3,3492 d0,6007/2−β=100
48Sc43,67 h3,9946+β=100
49Sc57,2 min2,0067/2−β=100
50Sc102,5 s6,8885+β=100
50m1Sc0,35 s0,257 (IT), 7,145 (β)2+,3+IT>97,5 < 100, β<2,5
51Sc12,4 s6,508(7/2)-β=100
52Sc8,2 s9,013+β=100
53Sc
54Sc>1 µs11,3β=100


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
39Ti26 ms(3/2+)K=100, Kp+K2p≈14
40Ti50 ms11,68 (K/β+), 11,14 (Kp)0+K/β+=100, Kp
41Ti80 ms12,93 (K/β+), 11,84 (Kp)3/2+K/β+=100, Kp≈100
42Ti199 ms7,000+K/β+=100
43Ti509 ms6,8677/2−K/β+=100
44Ti63 a0,2680+K=100
45Ti184,8 min2,0627/2−K/β+=100
46Tistabil0+Andeel=8,0
47Tistabil5/2−Andeel=7,3
48Tistabil0+Andeel=73,8
49Tistabil7/2−Andeel=5,5
50Tistabil0+Andeel=5,4
51Ti5,76 min2,4713/2−β=100
52Ti1,7 min1,9730+β=100
53Ti32,7 s5,02(3/2)-β=100
54Ti4,120+β=?
55Ti320 ms(3/2−)β=100
56Ti160 ms0+β=100, βn=0,06 s ys
57Ti180 ms(5/2−)β=100, βn=0,04 sys
58Ti8,80+β=?
59Ti(5/2−)β=?
60Ti0+β=?
61Ti(1/2−)β=?, βn=?


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
43V800 ms11,3(7/2−)K/β+=100
44V90 ms13,7 (K/β+), 8,58 (Kα)(2+)K/β+=100, Kα=?
44m1V150 ms13,70(6+)K/β+=100
45V547 ms7,1337/2−K/β+=100
46V422,37 ms7,0510+K/β+=100
46m1V10,02 ms3+IT=100
47V32,6 min2,9283/2−K/β+=100
48V15,9735 d4,0124+K/β+=100
49V330 d0,6027/2−K=100
50V1,4·1017 a2,208 (K/β+), 1,037 (β)6+Häufigkeit=0,250, K/β+=83, β=17
51Vstabil7/2−Andeel=99,750
52V3,743 min3,9763+β=100
53V1,61 min3,4367/2−β=100
54V49,8 s7,0423+β=100
55V6,54 s5,96(7/2−)β=100
56V230 ms(3+)β=100
57V320 ms(7/2−)β=100, βn=?
58V200 ms11,6(3+)β=100
59V130 ms9,9(7/2−)β=100
60V200 ms(3+)β=100, βn=0,03 sys
61V
62V(3+)β=?
63V(7/2−)β=?
64Vβ=?


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
43Cr21 ms15,89 (K/β+), 11,93 (Kp), 15,70 (Kα)(3/2+)K/β+=100, Kp=?, Kα=?
44Cr53 ms10,31 (K/β+), 8,50 (Kp)0+K/β+=100, Kp<10
45Cr50 ms12,46 (K/β+), 10,85 (Kp)K/β+=100, Kp>27
46Cr0,26 s7,6030+K/β+=100
47Cr500 ms7,4513/2−K/β+=100
48Cr21,56 h1,6590+K/β+=100
49Cr42,3 min2,6315/2−K/β+=100
50Cr1,8·1017 a0+Andeel=4,345, KK=?
51Cr27,7025 d0,7537/2−K=100
52Crstabil0+Andeel=83,789
53Crstabil3/2−Andeel=9,501
54Crstabil0+Andeel=2,365
55Cr3,497 min2,6033/2−β=100
56Cr5,94 min1,6170+β=100
57Cr21,1 s5,093/2−,5/2−, 7/2−β=100
58Cr7,0 s3,970+β=100
59Cr0,74 s7,7β=100
60Cr0,57 s5,90+β=100
61Cr270 ms8,8(5/2−)β=100, βn=0,6 sys
62Cr190 ms0+β=100, βn=1,0 sys
63Cr110 ms(1/2−)β=100, βn=1,4 sys
64Cr0+
65Cr(1/2−)β=?
66Cr0+β=100
67Cr(1/2−)β=?


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
46Mn41 ms17,10 (K), 12,21 (Kp)K=100, Kp=32
47Mn100 ms12,29 (K/β+), 5,72 (Kp)K/β+=100, Kp>3,4
48Mn158,1 ms13,82 (K/β+), 5,72 (Kp) , 6,13 (Kα)4+K/β+=100, Kp=0,28, Kα<6·10−4
49Mn382 ms7,7155/2−K/β+=100
50Mn283,88 ms7,6330+K/β+=100
50m1Mn1,75 min7,8625+K/β+=100
51Mn46,2 min3,2085/2−K/β+=100
52Mn5,591 d4,7126+K/β+=100
52m1Mn21,1 min5,090 (K/β+), 0,378 (IT)2+K/β+=98,25, IT=1,75
53Mn3,74·106 a0,5977/2−K=100
54Mn312,3 d0,597 (K/β+), 0,697 (β)3+K/β+=100, β<2,9·10−4
55Mnstabil5/2−Andeel=100
56Mn2,5785 h3,6953+β=100
57Mn85,4 s2,6915/2−β=100
58Mn3,0 s6,2501+β=100
58m1Mn65,2 s6,322 (β), 0,072 (IT)(4)+β≈80, IT≈20
59Mn4,6 s5,193/2−,5/2−β=100
60Mn51 s8,630+β=100
60m1Mn1,77 s8,902 (β), 0,272 (IT)3+β=88,5, IT=11,5
61Mn0,71 s7,35(5/2−)β=100
62Mn0,88 s10,4(3+)β=100
63Mn0,25 s8,8β=100
64Mn140 ms(3+)β=100, βn=1,4 sys
65Mn110 ms10,4(5/2−)β=100, βn=6,9 sys
66Mn90 msβ=100, βn=11 sys


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
46Fe20 ms13,1 (K), 12,9 (Kp)0+K=100, Kp=?
47Fe27 ms15,6 (K/β+), 15,6 (Kp)K/β+=100, Kp=?
48Fe44 ms10,89 (K/β+), 9,16 (Kp)0+K/β+=100, Kp>3,6
49Fe70 ms13,03 (K/β+), 10,94 (Kp)(7/2−)K/β+=100, Kp>62
50Fe150 ms8,15 (K/β+), 3,56 (Kp)0+K/β+=100, β+P≈0
51Fe305 ms8,0205/2−K/β+=100
52Fe8,275 h2,3720+K/β+=100
52m1Fe45,9 s9,192(12+)K/β+=100
53Fe8,51 min3,7437/2−K/β+=100
53m1Fe2,58 min3,04019/2−IT=100
54Festabil0+Andeel=5,8
55Fe2,73 a0,2313/2−K=100
56Festabil0+Andeel=91,72
57Festabil1/2−Andeel=2,2
58Festabil0+Andeel=0,28
59Fe44,503 d1,5653/2−β=100
60Fe1,5·106 a0,2370+β=100
61Fe5,98 min3,9783/2−,5/2−β=100
62Fe68 s2,530+β=100
63Fe6,1 s6,32(5/2)-β=100
64Fe2,0 s4,70+β=100
65Fe0,4 s7,9β=100
66Fe440 ms0+β=100
67Fe470 ms8,7(1/2−)β=100, βn=1,1 sys
68Fe0,10 s7,60+β=100
69Fe170 ms(1/2−)β=100, βn=6,9 sys


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
50Co44 ms17,28 (K/β+), 13,13 (Kp)(6+)K/β+=100, Kp>42
51Co(7/2−)
52Co18 ms14,41 (K/β+), 6,63 (Kp)K/β+=100
53Co240 ms8,302(7/2−)K/β+=100
53m1Co247 ms11,492 (K/β+), 1,592 (p)(19/2−)K/β+≈98,5, p≈1,5
54Co193,23 ms8,2430+K/β+=100
54m1Co1,48 min8,442(7)+K/β+=100
55Co17,53 h3,4517/2−K/β+=100
56Co77,27 d4,5664+K/β+=100
57Co271,79 d0,8367/2−K=100
58Co70,86 d2,3072+K/β+=100
58m1Co9,04 h0,0255+IT=100
59Costabil7/2−Andeel=100
60Co5,2714 a2,8245+β=100
60m1Co10,467 min0,059 (IT), 2,883 (β)2+IT=99,76, β=0,24
61Co1,650 h1,3227/2−β=100
62Co1,50 min5,3152+β=100
62m1Co13,91 min5,337 (β), 0,022 (IT)5+β≈100, IT<1
63Co27,4 s3,672(7/2)-β=100
64Co0,30 s7,3071+β=100
65Co1,20 s5,958(7/2)-β=100
66Co0,233 s10,0(3+)β=100
67Co0,42 s8,4(7/2−)β=100
68Co0,18 s11,7β=100
69Co0,27 s9,3β=100
70Co150 ms12,7β=100, βn=2,5 sys
71Co210 ms10,9(7/2−)β=100, βn=2,6 sys
72Co90 msβ=100, βn=4,8 sys
73Co(7/2−)β=?
74Coβ=?
75Co(7/2−)β=?


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
52Ni38 ms11,26 (K/β+), 10,27 (Kp)0+K/β+=100, Kp=17
53Ni45 ms13,26 (K/β+)(7/2−)K/β+=100, Kp≈45
54Ni140 ms8,800+K/β+=100
55Ni212,1 ms8,6947/2−K/β+=100
56Ni6,077 d2,1360+K/β+=100
57Ni35,60 h3,2643/2−K/β+=100
58Nistabil0+Andeel=68,077
59Ni7,6·104 a1,0723/2−K/β+=100
60Nistabil0+Andeel=26,223
61Nistabil3/2−Andeel=1,140
62Nistabil0+Andeel=3,634
63Ni100,1 a0,0671/2−β=100
64Nistabil0+Andeel=0,926
65Ni2,5172 h2,1375/2−β=100
66Ni54,6 h0,2250+β=100
67Ni21 s3,558(1/2−)β=100
68Ni19 s2,0600+β=100
68m1Ni0,86 ms2,847IT=100
69Ni11,4 s5,36β=100
70Ni3,50+β=100
71Ni1,86 s6,9β=100
72Ni2,1 s5,20+β=100
73Ni0,70 s8,8(7/2+)β=100, βn=0,3 sys
74Ni0,54 s7,10+β=100, βn=4,5 sys
75Ni0,6 s(7/2+)β=100, βn=8,4 sys
76Ni0,24 s0+β=100, βn=?


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
55Cu13,7K/β+=100
56Cu15,3 (K/β+), 8,13 (Kp)K/β+=100, Kp=?
57Cu199,4 ms8,773/2−K/β+=100
58Cu3,204 s8,5631+K/β+=100
59Cu81,5 s4,8003/2−K/β+=100
60Cu23,7 min6,1272+K/β+=100
61Cu3,333 h2,2373/2−K/β+=100
62Cu9,74 min3,9481+K/β+=100
63Custabil3/2−Andeel=69,17
64Cu12,700 h1,675 (K/β+), 0,579 (β)1+K/β+=61,0, β=39,0
65Custabil3/2−Andeel=30,83
66Cu5,120 min2,6421+β=100
67Cu61,83 h0,5773/2−β=100
68Cu31,1 s4,4601+β=100
68m1Cu3,75 min0,722 (IT), 5,182 (β)(6−)IT=84, β=16
69Cu2,85 min2,6753/2−β=100
70Cu4,5 s6,599(1+)β=100
70m1Cu47 s6,739(4)-β=100
71Cu19,5 s4,56(3/2−)β=100
72Cu6,6 s8,22(1+)β=100
73Cu3,9 s6,3β=100
74Cu1,594 s9,9(1+,3+)β=100
75Cu1,224 s7,9 (β), 3,1 (βn)β=100, βn=3,5
76Cu0,641 s11,3 (β), 3,7 (βn)β=100, βn=3
76m1Cu1,27 sβ=100
77Cu469 ms10,1β=100, βn=?
78Cu342 ms12,4β=100
79Cu188 ms10,7 (β), 6,4 (βn)β=100, βn=55


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
57Zn40 ms14,62 (β+), 13,93 (Kp)(7/2−)K/β+=100, Kp>65
58Zn65 ms9,370+K/β+=100
59Zn182,0 ms9,09 (β+), 5,68 (Kp)3/2−K/β+=100, Kp=0,10
60Zn2,38 min4,1580+K/β+=100
61Zn89,1 s5,6373/2−K/β+=100
62Zn9,186 h1,6270+K/β+=100
63Zn38,47 min3,3673/2−K/β+=100
64Znstabil0+Andeel=48,6
65Zn244,26 d1,3525/2−K/β+=100
66Znstabil0+Andeel=27,9
67Znstabil5/2−Andeel=4,1
68Znstabil0+Andeel=18,8
69Zn56,4 min0,9061/2−β=100
69m1Zn13,76 h0,439 (IT), 1,345 (β)9/2+IT=99,967, β=0,033
70Zn5·1014 a0+Andeel=0,6
71Zn2,45 min2,8131/2−β=100
71m1Zn3,96 h2,971 (β), 0,158 (IT)9/2+β≈100, IT<0,05
72Zn46,5 h0,4580+β=100
73Zn23,5 s4,290(1/2)-β=100
73m1Zn5,8 s4,486 (β), 0,196 (IT)(7/2+)β=?, IT=?
74Zn95,6 s2,340+β=100
75Zn10,2 s6,00(7/2+)β=100
76Zn5,7 s4,160+β=100
77Zn2,08 s7,27(7/2+)β=100
77m1Zn1,05 s0,772 (IT), 8,042 (β)(1/2−)IT>50, β<50
78Zn1,47 s6,440+β=100
79Zn995 ms9,09 (β), 2,20 (βn)(9/2+)β=100, βn=1,3
80Zn0,545 s7,29 (β), 2,64 (βn)0+β=100, βn=1,0
81Zn0,29 s11,9 (β), 4,9 (βn)β=100, βn=7,5


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
61Ga0,15 s9,0(3/2−)K/β+=100
62Ga116,12 ms9,170+K/β+=100
63Ga32,4 s5,523/2−, 5/2−K/β+=100
64Ga2,627 min7,1650+K/β+=100
65Ga15,2 min3,2553/2−K/β+=100
66Ga9,49 h5,1750+K/β+=100
67Ga3,2612 d1,0003/2−K=100
68Ga67,629 min2,9211+K/β+=100
69Gastabil3/2−Andeel=60,108
70Ga21,14 min1,656 (β), 0,655 (K)1+β=99,59, K=0,41
71Gastabil3/2−Andeel=39,892
72Ga14,10 h4,0013−β=100
72m1Ga39,68 ms0,120(0+)IT=100
73Ga4,86 h1,5933/2−β=100
74Ga8,12 min5,37(3−)β=100
74m1Ga9,5 s0,06 (IT), 5,43 (β)(0)IT>50, β<50
75Ga126 s3,3923/2−β=100
76Ga32,6 s7,01(2+, 3+)β=100
77Ga13,2 s5,34(3/2−)β=100
78Ga5,09 s8,2(3+)β=100
79Ga2,847 s7,0 (β), 1,3 (βn)(3/2−)β=100, βn=0,089
80Ga1,697 s10,38 (β), 2,35 (βn)(3)β=100, βn=0,89
81Ga1,217 s8,32 (β), 3,39 (βn)(5/2−)β=100, βn=11,9
82Ga0,599 s12,7 (β), 5,3 (βn)(1,2,3)β=100, βn=22,3
83Ga0,31 s11,5 (β), 8,0 (βn)β=100, βn=40
84Ga85 ms14,0 (β), 8,5 (βn)β=100, βn=70


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
61Ge40 ms13,6 (K/β+), 13,2 (Kp)(3/2−)K/β+=100, Kp≈80
62Ge0,11 s9,750+K/β+=100
63Ge95 ms9,78K/β+=100
64Ge63,7 s4,410+K/β+=100
65Ge30,9 s6,24(3/2)- K/β+=100, Kp=0,011
66Ge2,26 h2,100+K/β+=100
67Ge18,9 min4,2231/2−K/β+=100
68Ge270,8 d0,1060+K=100
69Ge39,05 h2,2275/2−K/β+=100
69m1Ge5,1 µs0,0871/2−IT=100
69m2Ge2,81 µs0,3989/2+IT=100
70Gestabil0+Andeel=21,23
71Ge11,43 d0,2291/2−K=100
71m1Ge20,40 ms0,1989/2+IT=100
72Gestabil0+Andeel=27,66
73Gestabil9/2+Andeel=7,73
73m1Ge0,499 s0,0671/2−IT=100
74Gestabil0+Andeel=35,94
75Ge82,78 min1,1761/2−β=100
75m1Ge47,7 s0,140 (IT), 1,316 (β)7/2+IT=99,970, β=0,030
76Gestabil0+Andeel=7,44
77Ge11,30 h2,7027/2+β=100
77m1Ge52,9 s2,862 (β), 0,160 (IT)1/2−β=81, IT=19
78Ge88,0 min0,9540+β=100
79Ge18,98 s4,150(1/2)- β=100
79m1Ge39,0 s4,336 (β), 0,186 (IT)(7/2+)β=96, IT=4
80Ge29,5 s2,670+β=100
81Ge7,6 s6,23(9/2+)β=100
81m1Ge7,6 s6,909(1/2+)β=100
82Ge4,60 s4,70+β=100
83Ge1,85 s8,9(5/2+)β=100
84Ge947 ms7,7 (β), 3,4 (βn)0+β=100, βn=10,8
85Ge535 ms10,1 (β), 4,6 (βn)β=100, βn=14


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
65As0,19 s9,4K/β+=100
66As95,77 ms9,8K/β+=100
67As42,5 s6,01(5/2−)K/β+=100
68As151,6 s8,103+K/β+=100
69As15,2 min4,015/2−K/β+=100
70As52,6 min6,224(+)K/β+=100
71As65,28 h2,0135/2−K/β+=100
72As26,0 h4,3562−K/β+=100
73As80,30 d0,3413/2−K=100
74As17,77 d2,562 (K/β+), 1,353 (β)2−K/β+=66, β=34
75Asstabil3/2−Andeel=100
75m1As16,79 ms0,3039/2+IT=100
76As1,0778 d2,9622−β=100
77As38,83 h0,6833/2−β=100
77m1As114 µs0,4759/2+IT=100
78As90,7 min4,212−β=100
79As9,01 min2,2813/2−β=100
80As15,2 s5,6411+β=100
81As33,3 s3,8563/2−β=100
82As19,1 s7,27(1+)β=100
82m1As13,6 s7,27(5−)β=100
83As13,4 s5,46(5/2−,3/2−)β=100
84As4,5 s9,9 (β), 1,2 (βn)(3−)β=100, βn=0,28
85As2,021 s8,9 (β), 4,4 (βn)(3/2−)β=100, βn=59,4
86As0,945 s11,1 (β), 5,0 (βn)β=100, βn=33
87As0,48 s10,3 (β), 6,2 (βn)(3/2−)β=100, βn=15,4


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
65Se<50 ms14,1K/β+=100
66Se0+
67Se60 ms10,15 (K/β+), 7,84 (Kp)K/β+=100, Kp=0,5
68Se35,5 s4,70+K/β+=100
69Se27,4 s6,78 (K/β+), 3,39 (Kp)(3/2−)K/β+=100, Kp=0,045
70Se41,1 min2,40+K/β+=100
71Se4,74 min4,83/2−,5/2−K/β+=100
72Se8,40 d0,3350+K=100
73Se7,15 h2,7409/2+K/β+=100
73m1Se39,8 min2,766 (K/β+), 0,026 (IT)3/2−K/β+=27,4, IT=72,6
74Sestabil0+Andeel=0,89
75Se119,779 d0,8645/2+K=100
76Sestabil0+Andeel=9,36
77Sestabil1/2−Andeel=7,63
77m1Se17,36 s0,1627/2+IT=100
78Sestabil0+Andeel=23,78
79Se1,13·106 a0,1517/2+β=100
79m1Se3,92 min0,096 (IT), 0,247 (β)1/2−IT=99,944, β=0,056
80Sestabil0+Andeel=49,61
81Se18,45 min1,5851/2−β=100
81m1Se57,28 min0,103 (IT), 1,688 (β)7/2+IT=99,948, β=0,052
82Se1,08·1020 a2,9950+Andeel=8,73, ββ=100
83Se22,3 min3,6689/2+β=100
83m1Se70,1 s3,8961/2−β=100
84Se3,10 min1,8300+β=100
85Se31,7 s6,182(5/2+)β=100
86Se15,3 s5,0990+β=100
87Se5,29 s7,280 (β), 0,990 (βn)(5/2+)β=100, βn=0,36
88Se1,53 s6,85 (β), 1,91 (βn)0+β=100, βn=0,99
89Se0,41 s9,0 (β), 3,1 (βn)(5/2+)β=100, βn=7,8
90Se0+
91Se0,27 s10,7 (β), 5,7 (βn)β=100, βn=21


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
70Br79,1 ms10,4K/β+=100
70m1Br2,2 sK/β+=100
71Br21,4 s6,55/2−K/β+=100
72Br78,6 s8,73+K/β+=100
72m1Br10,6 s0,101 (IT), 8,801 (K/ β+)1−IT≈100, K/β+=?
73Br3,4 min4,6601/2−K/β+=100
74Br25,4 min6,907(0−)K/β+=100
74m1Br46 min9,9214(+)K/β+=100
75Br96,7 min3,0303/2−K/β+=100
76Br16,2 h4,9631−K/β+=100
76m1Br1,31 s0,103 (IT), 5,066 (K/ β+)(4+)IT>99,4, K/β+<0,6
77Br57,036 h1,3653/2−K/β+=100
77m1Br4,28 min0,1069/2+IT=100
78Br6,46 min3,574 (K/β+), 0,706 (β)1+K/β+≈100, β<0,01
78m1Br119,2 µs(4+)
79Brstabil3/2−Andeel=50,69
79m1Br4,86 s0,2089/2+IT=100
80Br17,68 min2,004 (β), 1,871 (K/β+)1+β=91,7, K/β+=8,3
80m1Br4,4205 h0,0865−IT=100
81Brstabil3/2−Andeel=49,31
82Br35,30 h3,0935−β=100
82m1Br6,13 min0,046 (IT), 3,139 (β)2−IT=97,6, β=2,4
83Br2,40 h0,9723/2−β=100
84Br31,80 min4,6502−β=100
84m1Br6,0 min4,9706−β=100
85Br2,90 min2,8703/2−β=100
86Br55,1 s7,626(2−)β=100
87Br55,60 s6,853 (β), 1,337 (βn)3/2−β=100, βn=2,52
88Br16,34 s8,96 (β), 1,91 (βn)(1,2−)β=100, βn=6,58
89Br4,348 s8,16 (β), 3,05 (β)n(3/2−,5/2−)β=100, βn=13,8
90Br1,91 s10,35 (β), 4,04 (βn)βn=25,2, β=100
91Br0,541 s9,80 (β), 5,34 (βn)β=100, βn=18,3
92Br0,343 s12,20 (β), 6,66 (βn)(2−)β=100, βn=33
93Br102 ms11,0 (β), 7,7 (βn)(5/2−)β=100, βn=10 +5−3
94Br70 msβ=100, βn=30


IsotopHoolichwäidstiedFerfaalsenergie in MeVSpinparitätFerfaalsoard(e) af Andeel in %
71Kr64 ms10,5 (K/β+), 8,6 (Kp)K/β+=100, Kp=5,2
72Kr17,2 s5,040+K/β+=100
73Kr27,0 s6,67 (K/β+), 3,72 (Kp)5/2−K/β+=100, Kp=0,68
74Kr11,50 min3,140+K/β+=100
75Kr4,3 min4,899(5/2) +K/β+=100
76Kr14,8 h1,3110+K/β+=100
77Kr74,4 min3,0635/2+K/β+=100
78Kr2,0·1021 a2,8680+Andeel=0,35, KEC
79Kr35,04 h1,6261/2−K/β+=100
79m1Kr50 s0,1307/2+IT=100
80Krstabil0+Andeel=2,25
81Kr2,29·105 a0,2817/2+K=100
81m1Kr13,10 s0,191 (IT), 0,472 (K)1/2−IT=99,9975, K=2,5·10−3
82Krstabil0+Andeel=11,6
83Krstabil9/2+Andeel=11,5
83m1Kr1,83 h0,0421/2−IT=100
84Krstabil0+Andeel=57,0
85Kr10,756 a0,6879/2+β=100
85m1Kr4,480 h0,305 (IT), 0,992 (β)1/2−IT=21,4, β=78,6
86Krstabil0+Andeel=17,3
87Kr76,3 min3,8875/2+β=100
88Kr2,84 h2,9140+β=100
89Kr3,15 min4,990(3/2+,5/2+)β=100
90Kr32,32 s4,3920+β=100
91Kr8,57 s6,440(5/2+)β=100
92Kr1,840 s5,987 (β), 0,889 (βn)0+β=100, βn=0,033
93Kr1,286 s8,60 (β), 2,68 (βn)(1/2+)β=100, βn=1,95
94Kr0,20 s7,3 (β), 3,4 (βn)0+β=100, βn=5,7
95Kr0,78 s9,81/2β=100