The tables listed below provide information on the basic properties of all nuclides.
Legend
| α | Alpha decay |
| β- | Beta decay |
| β+ | Positron emission |
| K+ | Electron capture |
| IT | Internal conversion |
| SF | Spontaneous fission |
| p | Proton emission |
| n | Neutron emission |
Contents |
Main article: Isotopes of tantalum
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 156Ta | 144 ms | (2-) | %p ~ 100 |
| 156m1Ta | 375 ms | (9+ ) | %K+%β+=95. Alpha decay is a type of radioactive decay in which an Atomic nucleus emits an Alpha particle (two protons and two neutrons bound together into a particle In Nuclear physics, beta decay is a type of Radioactive decay in which a Beta particle (an Electron or a Positron) is emitted Positron emission is a type of Beta decay, sometimes referred to as " beta plus " (&beta+ Electron capture (sometimes called inverse beta decay) is a Decay mode for Isotopes that will occur when there are too many Protons in the Internal conversion is a Radioactive decay process where an excited nucleus interacts with an Electron in one of the lower electron shells causing the Spontaneous fission (SF is a form of Radioactive decay characteristic of very heavy Isotopes and is theoretically possible for any atomic nucleus whose mass is greater Proton emission (also known as proton radioactivity is a type of radioactive decay in which a Proton is ejected from a nucleus. Neutron emission is a type of Radioactive decay of atoms containing excess Neutrons in which a neutron is simply ejected from the nucleus Tantalum (ˈtæntələm (formerly tantalium /tænˈtæliəm/ is a Chemical element with the symbol Ta and Atomic number 73 Natural Tantalum ( Ta) consists of two Isotopes 180mTa (0012% and 181Ta (99 8 , %p=4. 2 |
| 157Ta | 10. 1 ms | 1/2+ | %α=96. 6 , %p=3. 4 |
| 157m1Ta | 4. 3 ms | 11/2- | %K+%β+ ~ 5 |
| 158Ta | 36. 5 ms | (2-) | %α=93 , %K+%β+=7 |
| 158m1Ta | 49 ms | (9+ ) | %α ~ 100 |
| 159Ta | 0. 57 s | %α=80 , %K+%β+=20 | |
| 160Ta | 1. 55 s | (9+ ) | %K+%β+=66, %α=34 |
| 160m1Ta | 1. 7 s | (2-) | %α=? |
| 161Ta | 2. 7 s | %K+%β+ ~ 95, %α ~ 5 | |
| 162Ta | 3. 52 s | %K+%β+=99. 926 , %α=0. 074 | |
| 163Ta | 10. 6 s | %K+%β+ ~ 99. 8, %α ~ 0. 2 | |
| 164Ta | 14. 2 s | (3+ ) | %K+%β+=100 |
| 165Ta | 31. 0 s | %K+%β+=100 | |
| 166Ta | 34. 4 s | (2) + | %K+%β+=100 |
| 167Ta | 1. 4 m | (3/2+ ) | %K+%β+=100 |
| 168Ta | 2. 0 m | (3+ ) | %K+%β+=100 |
| 169Ta | 4. 9 m | (5/2-) | %K+%β+=100 |
| 170Ta | 6. 76 m | (3+ ) | %K+%β+=100 |
| 171Ta | 23. 3 m | (5/2-) | %K+%β+=100 |
| 172Ta | 36. 8 m | (3+ ) | %K+%β+=100 |
| 173Ta | 3. 14 h | 5/2- | %K+%β+=100 |
| 174Ta | 1. 05 h | 3+ | %K+%β+=100 |
| 174m1Ta | 250 ns | ||
| 175Ta | 10. 5 h | 7/2+ | %K+%β+=100 |
| 176Ta | 8. 09 h | (1) - | %K+%β+=100 |
| 176m1Ta | 1. 1 ms | (+) | %IT=100 |
| 176m2Ta | 1. 4 ms | (20- ) | |
| 177Ta | 56. 56 h | 7/2+ | %K+%β+=100 |
| 178Ta | 9. 31 m | 1+ | %K+%β+=100 |
| 178m1Ta | 2. 36 h | (7) - | %K+%β+=100 |
| 178m2Ta | 60 ms | (15-) | %IT=100 |
| 179Ta | 1. 82 a | 7/2+ | %K=100 |
| 179m1Ta | 9. 0 ms | (25/2+ ) | |
| 179m2Ta | 52 ms | (37/2+ ) | |
| 180Ta | 8. 152 h | 1+ | %K=86 , %β-=14 |
| 180m1Ta | stable (>1. 2e+15 a) | 9- | %Abundance=0. 012 |
| 181Ta | stable | 7/2+ | %Abundance=99. 988 |
| 182Ta | 114. 43 d | 3- | %β-=100 |
| 182m1Ta | 283 ms | 5+ | %IT=100 |
| 182m2Ta | 15. 84 m | 10- | %IT=100 |
| 183Ta | 5. 1 d | 7/2+ | %β-=100 |
| 184Ta | 8. 7 h | (5-) | %β-=100 |
| 185Ta | 49. 4 m | (7/2+ ) | %β-=100 |
| 186Ta | 10. 5 m | (2- ,3-) | %β-=100 |
Main article: Isotopes of tungsten
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 158W | 0. Tungsten (ˈtʌŋstən also known as wolfram (/ˈwʊlfrəm/ is a Chemical element that has the symbol W and Atomic number 74 Naturally occurring Tungsten ( W) consists of five Isotopes whose half-lives are so long that they can be considered stable. 9 ms | 0+ | %α=100 |
| 158m1W | 0. 16 ms | 8+ | |
| 159W | 7. 3 ms | %α ~ 99. 5, %K+%β+ ~ 0. 5 | |
| 160W | 91 ms | 0+ | %α=87 , %K+%β+=? |
| 161W | 410 ms | %α=82 | |
| 162W | 1. 39 s | 0+ | %K+%β+=53 , %α=47 |
| 163W | 2. 75 s | %K+%β+=59 , %α=41 | |
| 164W | 6. 0 s | 0+ | %K+%β+=95. 6 , %α=4. 4 |
| 165W | 5. 1 s | %K+%β+=100 , %α < 0. 2 | |
| 166W | 18. 8 s | 0+ | %K+%β+=99. 965 , %α=0. 035 |
| 167W | 19. 9 s | (7/2-) | %K+%β+=?, %α=? |
| 168W | 53 s | 0+ | %K+%β+ ~ 100, %α=2. 7E-3 |
| 169W | 76 s | (5/2-) | %K+%β+=100 |
| 170W | 2. 42 m | 0+ | %K+%β+=100 |
| 171W | 2. 38 m | (5/2-) | %K+%β+=100 |
| 172W | 6. 6 m | 0+ | %K+%β+=100 |
| 173W | 7. 6 m | 5/2- | %K+%β+=100 |
| 174W | 31 m | 0+ | %K+%β+=100 |
| 175W | 35. 2 m | (1/2-) | %K+%β+=100 |
| 176W | 2. 5 h | 0+ | %K=100 |
| 177W | 135 m | (1/2-) | %K+%β+=100 |
| 178W | 21. 6 d | 0+ | %K=100 |
| 179W | 37. 05 m | (7/2) - | %K+%β+=100 |
| 179m1W | 6. 40 m | (1/2) - | %IT=99. 72, %K+%β+=0. 28 |
| 180W | 1. 2e+18 a | 0+ | %Abundance=0. 13, %α=100 |
| 180m1W | 5. 47 ms | 8- | %IT=100 |
| 181W | 121. 2 d | 9/2+ | %K=100 |
| 182W | stable (>1. 7e+20 a) | 0+ | %Abundance=26. 3 |
| 183W | stable (>0. 8e+20 a) | 1/2- | %Abundance=14. 3 |
| 183m1W | 5. 2 s | 11/2+ | %IT=100 |
| 184W | stable (>1. 8e+20 a) | 0+ | %Abundance=30. 67 |
| 185W | 75. 1 d | 3/2- | %β-=100 |
| 185m1W | 1. 67 m | 11/2+ | %IT=100 |
| 186W | stable (>1. 7e+20 a) | 0+ | %Abundance=28. 6 |
| 187W | 23. 72 h | 3/2- | %β-=100 |
| 188W | 69. 4 d | 0+ | %β-=100 |
| 189W | 11. 5 m | (3/2-) | %β-=100 |
| 190W | 30. 0 m | 0+ | %β-=100 |
Main article: Isotopes of rhenium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 160Re | 0. Rhenium (ˈriːniəm is a Chemical element with the symbol Re and Atomic number 75 Naturally occurring Rhenium ( Re) is 374% 185Re which is stable, and 62 79 ms | %p=91 , %α=9 | |
| 161Re | 0. 37 ms | (1/2+ ) | %p=100 |
| 161m1Re | 16 ms | (11/2-) | %α=95. 2 , %p=4. 8 |
| 162Re | 107 ms | (2-) | %α=94 |
| 162m1Re | 75 ms | (9+ ) | %α=91 |
| 163Re | 260 ms | %α=64 , %K+%β+=36 | |
| 164Re | 0. 38 s | %K+%β+ ~ 100 | |
| 164m1Re | 0. 88 s | %α=? | |
| 165Re | 2. 4 s | %K+%β+=87 , %α=13 | |
| 166Re | 2. 8 s | %α < 8 | |
| 167Re | 6. 1 s | %K+%β+ ~ 99. 3, %α ~ 0. 7 | |
| 168Re | 4. 4 s | (6+ ) | %K+%β+ ~ 100, %α ~ 5E-3 |
| 169Re | |||
| 169m1Re | 12. 9 s | %α ~ 0. 2 | |
| 170Re | 9. 2 s | (5+ ) | %K+%β+=100 |
| 171Re | 15. 2 s | (9/2-) | %K+%β+=100 |
| 172Re | 15 s | (5) | %K+%β+=100 |
| 172m1Re | 55 s | (2) | %K+%β+=100 |
| 173Re | 1. 98 m | (5/2-) | %K+%β+=100 |
| 174Re | 2. 40 m | %K+%β+=100 | |
| 175Re | 5. 89 m | (5/2-) | %K+%β+=100 |
| 176Re | 5. 3 m | 3(+) | %K+%β+=100 |
| 177Re | 14 m | (5/2-) | %K+%β+=100 |
| 178Re | 13. 2 m | (3+ ) | %K+%β+=100 |
| 179Re | 19. 5 m | (5/2) + | %K+%β+=100 |
| 180Re | 2. 44 m | (1) - | %K+%β+=100 |
| 181Re | 19. 9 h | 5/2+ | %K+%β+=100 |
| 182Re | 64. 0 h | 7+ | %K+%β+=100 |
| 182m1Re | 12. 7 h | 2+ | %K+%β+=100 |
| 183Re | 70. 0 d | 5/2+ | %K=100 |
| 183m1Re | 1. 04 ms | (25/2) + | %IT=100 |
| 184Re | 38. 0 d | 3(-) | %K+%β+=100 |
| 184m1Re | 169 d | 8(+) | %IT=75. 4 , %K=24. 6 |
| 185Re | stable | 5/2+ | %Abundance=37. 40 |
| 186Re | 3. 7183 d | 1- | %K=7. 47 , %β-=92. 53 |
| 186m1Re | 2. 0e+5 a | (8+ ) | %IT=100 |
| 187Re | 4. 35e10 a | 5/2+ | %Abundance=62. 60, %β-=100, %α < 0. 0001 |
| 188Re | 17. 005 h | 1- | %β-=100 |
| 188m1Re | 18. 6 m | (6) - | %IT=100 |
| 189Re | 24. 3 h | 5/2+ | %β-=100 |
| 190Re | 3. 1 m | (2) - | %β-=100 |
| 190m1Re | 3. 2 h | (6-) | %β-=54. 4 , %IT=45. 6 |
| 191Re | 9. 8 m | (3/2+ , 1/2+ ) | %β-=100 |
| 192Re | 16 s | %β-=100 |
Main article: Isotopes of osmium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 162Os | 1. Osmium (ˈɒzmiəm is a Chemical element that has the symbol Os and Atomic number 76 Osmium ( Os) has seven naturally-occurring Isotopes 5 of which are stable 187Os 188Os 189Os 190Os and (most 9 ms | 0+ | %α=100 |
| 163Os | %α=?, %K+%β+=? | ||
| 164Os | 21 ms | 0+ | %α ~ 98 , %K+%β+ ~ 2 |
| 165Os | 71 ms | (7/2-) | %α > 60 , %K+%β+ < 40 |
| 166Os | 181 ms | 0+ | %α=72 , %K+%β+=28 |
| 167Os | 0. 83 s | %α=67 , %K+%β+=33 | |
| 168Os | 2. 1 s | 0+ | %K+%β+=56 , %α=44 |
| 169Os | 3. 4 s | %K+%β+=89 , %α=11 | |
| 170Os | 7. 3 s | 0+ | %K+%β+=88 , %α=12 |
| 171Os | 8. 0 s | (5/2-) | %K+%β+=98. 3 , %α=1. 7 |
| 172Os | 19. 2 s | 0+ | %K+%β+=99. 0 , %α=1. 0 |
| 173Os | 16 s | (5/2-) | %K+%β+=99. 979 , %α=0. 021 |
| 174Os | 44 s | 0+ | %K+%β+=99. 980 +4-10, %α=0. 020 +10-4 |
| 175Os | 1. 4 m | (5/2-) | %K+%β+=100 |
| 176Os | 3. 6 m | 0+ | %K+%β+=100 |
| 177Os | 2. 8 m | (1/2-) | %K+%β+=100 |
| 178Os | 5. 0 m | 0+ | %K+%β+=100 |
| 179Os | 6. 5 m | (1/2-) | %K+%β+=100 |
| 180Os | 21. 5 m | 0+ | %K+%β+=100 |
| 181Os | 105 m | 1/2- | %K+%β+=100 |
| 181m1Os | 2. 7 m | (7/2) - | %K+%β+=100 |
| 182Os | 22. 10 h | 0+ | %K=100 |
| 183Os | 13. 0 h | 9/2+ | %K+%β+=100 |
| 183m1Os | 9. 9 h | 1/2- | %K+%β+=85 , %IT=15 |
| 184Os | 5. 6e13 a | 0+ | %Abundance=0. 02 |
| 185Os | 93. 6 d | 1/2- | %K=100 |
| 186Os | 2. 0e15 a | 0+ | %Abundance=1. 58, %α=100 |
| 187Os | stable | 1/2- | %Abundance=1. 6 |
| 188Os | stable | 0+ | %Abundance=13. 3 |
| 189Os | stable | 3/2- | %Abundance=16. 1 |
| 189m1Os | 5. 8 h | 9/2- | %IT=100 |
| 190Os | stable | 0+ | %Abundance=26. 4 |
| 190m1Os | 9. 9 m | (10) - | %IT=100 |
| 191Os | 15. 4 d | 9/2- | %β-=100 |
| 191m1Os | 13. 10 h | 3/2- | %IT=100 |
| 192Os | stable | 0+ | %Abundance=41. 0 |
| 192m1Os | 5. 9 s | (10- ) | %IT > 87, %β- < 13 |
| 193Os | 30. 11 h | 3/2- | %β-=100 |
| 194Os | 6. 0 a | 0+ | %β-=100 |
| 195Os | 6. 5 m | %β-=100 | |
| 196Os | 34. 9 m | 0+ | %β-=100 |
Main article: Isotopes of iridium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 165Ir | 300 μs | (11/2-) | %p=87 , %α=13 |
| 166Ir | 10. Iridium (ɪˈrɪdiəm is a Chemical element that has the symbol Ir and Atomic number 77 There are two natural Isotopes of Iridium ( Ir) and many Radioisotopes the most stable radioisotope being Ir-192 with a Half-life 5 ms | (2-) | %α=93 , %p=7 |
| 166m1Ir | 15. 1 ms | (9+ ) | %α=98. 2 , %p=1. 8 |
| 167Ir | 5 ms | %α=? | |
| 168Ir | 161 ms | %α=? | |
| 169Ir | 0. 4 s | %α ~ 100, %K+%β+=?, %p=? | |
| 170Ir | 1. 05 s | %K+%β+=25 sys%α=75 sys | |
| 171Ir | 1. 5 s | %α ~ 100, %K+%β+=?, %p=? | |
| 172Ir | 4. 4 s | (3+ ) | %α ~ 2, %K+%β+=98 |
| 172m1Ir | 2. 0 s | (7+ ) | %α=23 , %K+%β+=77 |
| 173Ir | 9. 0 s | (3/2+ , 5/2+ ) | %K+%β+ > 93, %α < 7 |
| 173m1Ir | 2. 20 s | (11/2-) | %K+%β+=88 , %α=12 |
| 174Ir | 9 s | (3+ ) | %K+%β+=99. 53 , %α=0. 47 |
| 174m1Ir | 4. 9 s | (7+ ) | %K+%β+=97. 5 , %α=2. 5 |
| 175Ir | 9 s | (5/2-) | %K+%β+=99. 15 , %α=0. 85 |
| 176Ir | 8 s | %K+%β+=97. 9 , %α=2. 1 | |
| 177Ir | 30 s | (5/2-) | %K+%β+=99. 94 , %α=0. 06 |
| 178Ir | 12 s | %K+%β+=100 | |
| 179Ir | 79 s | (5/2) - | %K+%β+=100 |
| 180Ir | 1. 5 m | %K+%β+=100 | |
| 181Ir | 4. 90 m | (5/2) - | %K+%β+=100 |
| 182Ir | 15 m | (5+ ) | %K+%β+=100 |
| 183Ir | 58 m | 5/2- | %K+%β+=100 |
| 184Ir | 3. 09 h | 5- | %K+%β+=100 |
| 185Ir | 14. 4 h | 5/2- | %K+%β+=100 |
| 186Ir | 16. 64 h | 5+ | %K+%β+=100 |
| 186m1Ir | 1. 90 h | 2- | %K+%β+ ~ 75, %IT ~ 25 |
| 187Ir | 10. 5 h | 3/2+ | %K+%β+=100 |
| 187m1Ir | 30. 3 ms | 9/2- | %IT=100 |
| 188Ir | 41. 5 h | 1- | %K+%β+=100 |
| 188m1Ir | 4. 2 ms | ||
| 189Ir | 13. 2 d | 3/2+ | %K=100 |
| 189m1Ir | 13. 3 ms | 11/2- | %IT=100 |
| 189m2Ir | 3. 7 ms | (25/2) + | %IT=100 |
| 190Ir | 11. 78 d | (4-) | %K+%β+=100, %β- < 0. 002 |
| 190m1Ir | 1. 2 h | (1-) | %IT=100 |
| 190m2Ir | 3. 25 h | (11) - | %K+%β+=94. 4 , %IT=5. 6 |
| 191Ir | stable | 3/2+ | %Abundance=37. 3 |
| 191m1Ir | 4. 94 s | 11/2- | %IT=100 |
| 191m2Ir | 5. 5 s | %IT=100 | |
| 192Ir | 73. 831 d | 4(+) | %β-=95. 24 , %K=4. 76 |
| 192m1Ir | 1. 45 m | 1(-) | %IT=99. 982, %β-=0. 018 |
| 192m2Ir | 241 a | (9) | %IT=100 |
| 193Ir | stable | 3/2+ | %Abundance=62. 7 |
| 193m1Ir | 10. 53 d | 11/2- | %IT=100 |
| 194Ir | 19. 28 h | 1- | %β-=100 |
| 194m1Ir | 31. 85 ms | (4+ ) | %IT=100 |
| 194m2Ir | 171 d | (10,11) | %β-=100 |
| 195Ir | 2. 5 h | 3/2+ | %β-=100 |
| 195m1Ir | 3. 8 h | 11/2- | %β-=95 , %IT=5 |
| 196Ir | 52 s | (0- ) | %β-=100 |
| 196m1Ir | 1. 40 h | (10,11-) | %β- ~ 100 , %IT < 0. 3 |
| 197Ir | 5. 8 m | 3/2+ | %β-=100 |
| 197m1Ir | 8. 9 m | 11/2- | %β-=99. 75 , %IT=0. 25 |
| 198Ir | 8 s | %β-=100 |
Main article: Isotopes of platinum
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 168Pt | 2. Platinum (ˈplætɪnəm is a Chemical element with the Atomic symbol Pt and an Atomic number of 78 Platinum ( Pt)Standard atomic mass 195084(9 u Table 0 ms | 0+ | %α=100 |
| 169Pt | 5 ms | %α=? | |
| 170Pt | 6 ms | 0+ | %α=100 |
| 171Pt | 25 ms | %α ~ 99, %K+%β+ ~ 1 | |
| 172Pt | 0. 096 s | 0+ | %α=94 +6-32 , %K+%β+=6 +32-6 |
| 173Pt | 342 ms | %K+%β+=16 , %α=84 | |
| 174Pt | 0. 90 s | 0+ | %α=75 , %K+%β+=25 |
| 175Pt | 2. 52 s | %α=64 , %K+%β+=36 | |
| 176Pt | 6. 33 s | 0+ | %K+%β+=62 , %α=38 |
| 177Pt | 11 s | (5/2-) | %K+%β+=94. 4 , %α=5. 6 |
| 178Pt | 21. 1 s | 0+ | %K+%β+=95. 4 , %α=4. 6 |
| 179Pt | 21. 2 s | 1/2- | %K+%β+=99. 76 , %α=0. 24 |
| 180Pt | 52 s | 0+ | %K+%β+=100, %α ~ 0. 3 |
| 181Pt | 51 s | 1/2- | %K+%β+=100, %α ~ 0. 06 |
| 182Pt | 3. 0 m | 0+ | %K+%β+=99. 969 , %α=0. 031 |
| 183Pt | 6. 5 m | 1/2- | %K+%β+ ~ 100, %α ~ 0. 0013 |
| 183m1Pt | 43 s | (7/2) - | %K+%β+=100, %α=? |
| 184Pt | 17. 3 m | 0+ | %K+%β+=100, %α ~ 0. 001 |
| 184m1Pt | 1. 01 ms | 8- | %IT=100 |
| 184m2Pt | 1. 1 ms | 8- | |
| 185Pt | 70. 9 m | 9/2+ | %K+%β+=100, %α=0. 0050 |
| 185m1Pt | 33. 0 m | 1/2- | %K+%β+=99 , %IT < 2 |
| 186Pt | 2. 2 h | 0+ | %K+%β+=100, %α ~ 0. 00010 |
| 187Pt | 2. 35 h | 3/2- | %K+%β+=100 |
| 188Pt | 10. 2 d | 0+ | %K=100, %α=2. 9E-5 |
| 189Pt | 10. 87 h | 3/2- | %K+%β+=100 |
| 190Pt | 6. 5e11 a | 0+ | %Abundance=0. 01, %α=100 |
| 191Pt | 2. 802 d | 3/2- | %K=100 |
| 192Pt | stable | 0+ | %Abundance=0. 79 |
| 193Pt | 50 a | 1/2- | %K=100 |
| 193m1Pt | 4. 33 d | 13/2+ | %IT=100 |
| 194Pt | stable | 0+ | %Abundance=32. 9 |
| 195Pt | stable | 1/2- | %Abundance=33. 8 |
| 195m1Pt | 4. 02 d | 13/2+ | %IT=100 |
| 196Pt | stable | 0+ | %Abundance=25. 3 |
| 197Pt | 19. 8915 h | 1/2- | %β-=100 |
| 197m1Pt | 95. 41 m | 13/2+ | %IT=96. 7 , %β-=3. 3 |
| 198Pt | stable | 0+ | %Abundance=7. 2 |
| 199Pt | 30. 80 m | 5/2- | %β-=100 |
| 199m1Pt | 13. 6 s | (13/2) + | %IT=100 |
| 200Pt | 12. 5 h | 0+ | %β-=100 |
| 201Pt | 2. 5 m | (5/2-) | %β-=100 |
| 202Pt | 44 h | 0+ | %β-=100 |
Main article: Isotopes of gold
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 172Au | 6. Gold (ˈɡoʊld is a Chemical element with the symbol Au (from its Latin name aurum) and Atomic number 79 Gold ( Au) has one stable Isotope, 197Au, and 18 Radioisotopes with 195Au being the most stable with 3 ms | %α ~ 100, %p < 2 | |
| 173Au | 59 ms | %α < 100 | |
| 174Au | 120 ms | %α=? | |
| 175Au | 200 ms | %α=94 +6-25, %K+%β+=6 +25-6 | |
| 176Au | 1. 08 s | %α=?, %K+%β+=? | |
| 177Au | 1. 18 s | %α < 40 | |
| 178Au | 2. 6 s | %K+%β+ < 60, %α > 40 | |
| 179Au | 7. 1 s | %K+%β+=78. 0 , %α=22. 0 | |
| 180Au | 8. 1 s | %K+%β+ < 98. 2, %α > 1. 8 | |
| 181Au | 11. 4 s | 5/2- | %K+%β+=98. 7 , %α=1. 3 |
| 182Au | 15. 6 s | %K+%β+=99. 87 , %α=0. 13 | |
| 183Au | 42. 0 s | (5/2) - | %K+%β+=99. 70 , %α=0. 30 |
| 184Au | 53. 0 s | 3+ | %K+%β+=99. 978, %α=0. 022 |
| 185Au | 4. 25 m | 5/2- | %K+%β+=99. 74 , %α=0. 26 |
| 185m1Au | 6. 8 m | %K+%β+ < 100, %IT=? | |
| 186Au | 10. 7 m | 3- | %K+%β+=100, %α=8E-4 |
| 187Au | 8. 4 m | 1/2+ | %K+%β+=100, %α=0. 003 sys |
| 187m1Au | 2. 3 s | 9/2- | %IT=100 |
| 188Au | 8. 84 m | 1(-) | %K+%β+=100 |
| 189Au | 28. 7 m | 1/2+ | %K+%β+=100, %α < 3E-5 |
| 189m1Au | 4. 59 m | 11/2- | %K+%β+ ~ 100, %IT > 0 |
| 190Au | 42. 8 m | 1- | %K+%β+=100, %α < 1E-6 |
| 190m1Au | 125 ms | (11-) | %IT=?, %K+%β+=? |
| 191Au | 3. 18 h | 3/2+ | %K+%β+=100 |
| 191m1Au | 0. 92 s | (11/2-) | %IT=100 |
| 192Au | 4. 94 h | 1- | %K+%β+=100 |
| 192m1Au | 29 ms | (5) + | %IT=100 |
| 192m2Au | 160 ms | (11-) | %IT=100 |
| 193Au | 17. 65 h | 3/2+ | %K+%β+=100 |
| 193m1Au | 3. 9 s | 11/2- | %IT=99. 97, %K+%β+ ~ 0. 03 |
| 194Au | 38. 02 h | 1- | %K+%β+=100 |
| 194m1Au | 600 ms | (5+ ) | %IT=100 |
| 194m2Au | 420 ms | (11-) | %IT=100 |
| 195Au | 186. 09 d | 3/2+ | %K=100 |
| 195m1Au | 30. 5 s | 11/2- | %IT=100 |
| 196Au | 6. 183 d | 2- | %K+%β+=92. 80 , %β- =7. 20 |
| 196m1Au | 8. 1 s | 5+ | %IT=100 |
| 196m2Au | 9. 6 h | 12- | %IT=100 |
| 197Au | stable | 3/2+ | %Abundance=100 |
| 197m1Au | 7. 73 s | 11/2- | %IT=100 |
| 198Au | 2. 69517 d | 2- | %β-=100 |
| 198m1Au | 2. 27 d | (12-) | %IT=100 |
| 199Au | 3. 139 d | 3/2+ | %β-=100 |
| 200Au | 48. 4 m | 1(-) | %β-=100 |
| 200m1Au | 18. 7 h | 12- | %β-=82 , %IT=18 |
| 201Au | 26 m | 3/2+ | %β-=100 |
| 202Au | 28. 8 s | (1-) | %β-=100 |
| 203Au | 53 s | 3/2+ | %β-=100 |
| 204Au | 39. 8 s | (2-) | %β-=100 |
| 205Au | 31 s | (3/2+ ) | %β-=100 |
Main article: Isotopes of mercury (element)
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 175Hg | 20 ms | %α=100 | |
| 176Hg | 18 ms | 0+ | %α ~ 100 |
| 177Hg | 0. Mercury (ˈmɜrkjʊri also called quicksilver or hydrargyrum, is a Chemical element with the symbol Hg ( Latinized hydrargyrum There are seven stable Isotopes of mercury ( Hg) with Hg-202 being the most abundant (29 130 s | %α=85, %K+%β+=15 | |
| 178Hg | 266 ms | 0+ | %K+%β+=?, %α ~ 100 |
| 179Hg | 1. 09 s | %K+%β+ ~ 47, %α ~ 53, %Kp ~ 0. 15 | |
| 180Hg | 2. 8 s | 0+ | %K+%β+=52 , %α=48 |
| 181Hg | 3. 6 s | 1/2(-) | %K+%β+=64 , %α=36 , %Kp=0. 014 , %Kα=9E-6 |
| 182Hg | 10. 83 s | 0+ | %K+%β+=84. 8 , %α=15. 2 |
| 183Hg | 9. 4 s | 1/2- | %K+%β+=88. 3 , %α=11. 7 , %Kp=0. 00056 |
| 184Hg | 30. 9 s | 0+ | %K+%β+=98. 74 , %α=1. 26 |
| 185Hg | 49. 1 s | 1/2- | %K+%β+=94 , %α=6 |
| 185m1Hg | 21. 6 s | 13/2+ | %IT=54 , %K+%β+=46 , %α ~ 0. 03 |
| 186Hg | 1. 38 m | 0+ | %K+%β+=99. 982 , %α=0. 018 |
| 187Hg | 2. 4 m | 13/2+ | %K+%β+=100, %α>1. 2E-4 |
| 187m1Hg | 1. 9 m | 3/2- | %K+%β+=100, %α>2. 5E-4 |
| 188Hg | 3. 25 m | 0+ | %K+%β+=100, %α=4. 0E-5 |
| 189Hg | 7. 6 m | 3/2- | %K+%β+=100, %α < 3E-5 |
| 189m1Hg | 8. 6 m | 13/2+ | %K+%β+=100, %α < 3E-5 |
| 190Hg | 20. 0 m | 0+ | %K+%β+=100, %α < 5E-5 |
| 191Hg | 49 m | (3/2-) | %K+%β+=100 |
| 191m1Hg | 50. 8 m | 13/2+ | %K+%β+=100 |
| 192Hg | 4. 85 h | 0+ | %K=100, %α < 4E-6 |
| 193Hg | 3. 80 h | 3/2- | %K+%β+=100 |
| 193m1Hg | 11. 8 h | 13/2+ | %K+%β+=92. 8 , %IT=7. 2 |
| 194Hg | 444 a | 0+ | %K=100 |
| 195Hg | 9. 9 h | 1/2- | %K+%β+=100 |
| 195m1Hg | 41. 6 h | 13/2+ | %IT=54. 2 , %K+%β+=45. 8 |
| 196Hg | stable | 0+ | %Abundance=0. 15 |
| 197Hg | 64. 14 h | 1/2- | %K=100 |
| 197m1Hg | 23. 8 h | 13/2+ | %K=8. 6 , %IT=91. 4 |
| 198Hg | stable | 0+ | %Abundance=9. 97 |
| 199Hg | stable | 1/2- | %Abundance=16. 87 |
| 199m1Hg | 42. 6 m | 13/2+ | %IT=100 |
| 200Hg | stable | 0+ | %Abundance=23. 10 |
| 201Hg | stable | 3/2- | %Abundance=13. 18 |
| 202Hg | stable | 0+ | %Abundance=29. 86 |
| 203Hg | 46. 612 d | 5/2- | %β-=100 |
| 204Hg | stable | 0+ | %Abundance=6. 87 |
| 205Hg | 5. 2 m | 1/2- | %β-=100 |
| 205m1Hg | 1. 10 ms | (13/2+ ) | %IT=100 |
| 206Hg | 8. 15 m | 0+ | %β-=100 |
| 207Hg | 2. 9 m | (9/2+ ) | %β-=100 |
| 208Hg | 42 m | 0+ | %β-=100 |
Main article: Isotopes of thallium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 179Tl | 0. Thallium (ˈθæliəm is a Chemical element with the symbol Tl and Atomic number 81 Thallium ( Tl) has 25 Isotopes which have Atomic masses that range from 184 to 210 16 s | %α ~ 100 | |
| 179m1Tl | 1. 4 ms | (9/2-) | %α ~ 100 |
| 180Tl | 0. 70 s | %K+%β+=?, %KSF ~ 1. 0E-4 | |
| 181Tl | (1/2+ ) | ||
| 181m1Tl | 3. 4 s | (9/2-) | %α=? |
| 182Tl | 3. 1 s | (7+ ) | %K+%β+ > 96, %α < 4 |
| 183Tl | (1/2+ ) | ||
| 183m1Tl | 60 ms | (9/2-) | %α < 0. 010 |
| 184Tl | 11 s | %K+%β+=97. 9 , %α=2. 1 | |
| 185Tl | 19. 5 s | (1/2+ ) | %K+%β+=? |
| 185m1Tl | 1. 83 s | (9/2-) | %IT=?, %α=? |
| 186Tl | 27. 5 s | (7+ ) | %K+%β+=100, %α ~ 0. 006 |
| 186m1Tl | 2. 9 s | (10- ) | %IT=100 |
| 187Tl | 51 s | (1/2+ ) | %K+%β+=?, %α=? |
| 187m1Tl | 15. 60 s | (9/2-) | %α=?, %K+%β+=?, %IT=? |
| 188Tl | 71 s | (2-) | %K+%β+=100 |
| 188m1Tl | 71 s | (7+ ) | %K+%β+=100 |
| 188m2Tl | 41 ms | (9-) | %IT=100 |
| 189Tl | 2. 3 m | (1/2+ ) | %K+%β+=100 |
| 189m1Tl | 1. 4 m | (9/2-) | %K+%β+=100, %IT<4 |
| 190Tl | 2. 6 m | (2) - | %K+%β+=100 |
| 190m1Tl | 3. 7 m | (7+ ) | %K+%β+=100 |
| 191Tl | (1/2+ ) | ||
| 191m1Tl | 5. 22 m | 9/2(-) | %K+%β+=100 |
| 192Tl | 9. 6 m | (2-) | %K+%β+=100 |
| 192m1Tl | 10. 8 m | (7+ ) | %K+%β+=100 |
| 193Tl | 21. 6 m | 1/2+ | %K+%β+=100 |
| 193m1Tl | 2. 11 m | 9/2- | %IT=75, %K+%β+=25 |
| 194Tl | 33. 0 m | 2- | %K+%β+=100 , %α < 1E-7 |
| 194m1Tl | 32. 8 m | (7+ ) | %K+%β+=100 |
| 195Tl | 1. 16 h | 1/2+ | %K+%β+=100 |
| 195m1Tl | 3. 6 s | 9/2- | %IT=100 |
| 196Tl | 1. 84 h | 2- | %K+%β+=100 |
| 196m1Tl | 1. 41 h | (7+ ) | %K+%β+=95. 5 , %IT=4. 5 |
| 197Tl | 2. 84 h | 1/2+ | %K+%β+=100 |
| 197m1Tl | 0. 54 s | 9/2- | %IT=100 |
| 198Tl | 5. 3 h | 2- | %K+%β+=100 |
| 198m1Tl | 1. 87 h | 7+ | %IT=46 , %K+%β+=54 |
| 198m2Tl | 32. 1 ms | (10- ) | %IT=100 |
| 199Tl | 7. 42 h | 1/2+ | %K+%β+=100 |
| 199m1Tl | 28. 4 ms | 9/2- | %IT=100 |
| 200Tl | 26. 1 h | 2- | %K+%β+=100 |
| 200m1Tl | 34. 3 ms | 7+ | %IT=100 |
| 201Tl | 72. 912 h | 1/2+ | %K=100 |
| 201m1Tl | 2. 035 ms | (9/2-) | %IT=100 |
| 202Tl | 12. 23 d | 2- | %K+%β+=100 |
| 202m1Tl | 572 μs | 7+ | |
| 203Tl | stable | 1/2+ | %Abundance=29. 524 |
| 204Tl | 3. 78 a | 2- | %β-=97. 10 , %K+%β+=2. 90 |
| 205Tl | stable | 1/2+ | %Abundance=70. 476 |
| 206Tl | 4. 199 m | 0- | %β-=100 |
| 206m1Tl | 3. 74 m | (12-) | %IT=100 |
| 207Tl | 4. 77 m | 1/2+ | %β-=100 |
| 207m1Tl | 1. 33 s | 11/2- | %IT=100, %β- < 0. 1 |
| 208Tl | 3. 053 m | 5(+) | %β-=100 |
| 209Tl | 2. 20 m | (1/2+ ) | %β-=100 |
| 210Tl | 1. 30 m | (5+ ) | %β-=100, %β-n=0. 007 +7- 4 |
Main article: Isotopes of lead
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 181Pb | 45 ms | (13/2+ ) | %α ~ 98 |
| 182Pb | 55 ms | 0+ | %α=? |
| 183Pb | 300 ms | (1/2-) | %α ~ 94, %K+%β+ ~ 6 |
| 184Pb | 0. Characteristics Lead has a dull luster and is a dense, Ductile, very soft highly Lead ( Pb) has four stable Isotopes - 204Pb 206Pb 207Pb 208Pb and one common Radiogenic isotope 55 s | 0+ | %α=? |
| 185Pb | 4. 1 s | %α < 100 | |
| 186Pb | 4. 83 s | 0+ | %α=54 , %K+%β+=46 |
| 187Pb | 18. 3 s | (13/2+ ) | %K+%β+=98. 0, %α=2. 0 |
| 187m1Pb | 15. 2 s | %α=?, %K+%β+=? | |
| 188Pb | 24 s | 0+ | %K+%β+=91. 5 , %α=8. 5 |
| 189Pb | 51 s | %K+%β+ > 99, %α ~ 0. 4 | |
| 190Pb | 1. 2 m | 0+ | %K+%β+=99. 79 , %α=0. 21 |
| 191Pb | 1. 33 m | (3/2-) | %K+%β+=99. 987 , %α=0. 013 |
| 191m1Pb | 2. 18 m | (13/2+ ) | %K+%β+=100, %α ~ 0. 02 |
| 192Pb | 3. 5 m | 0+ | %K+%β+=99. 9941 , %α=0. 0059 |
| 193Pb | 2 m | (3/2-) | %K+%β+=? |
| 193m1Pb | 5. 8 m | (13/2+ ) | %K+%β+=100 |
| 194Pb | 12. 0 m | 0+ | %K+%β+=100, %α=7. 3E-6 |
| 195Pb | 15 m | 3/2- | %K+%β+=100 |
| 195m1Pb | 15. 0 m | 13/2+ | %K+%β+=100 |
| 196Pb | 37 m | 0+ | %K+%β+=100, %α < 3E-5 |
| 197Pb | 8 m | 3/2- | %K+%β+=100 |
| 197m1Pb | 43 m | 13/2+ | %K+%β+=81 , %IT=19 |
| 198Pb | 2. 40 h | 0+ | %K+%β+=100 |
| 199Pb | 90 m | 3/2- | %K+%β+=100 |
| 199m1Pb | 12. 2 m | 13/2+ | %IT=93, %K+%β+=7 |
| 200Pb | 21. 5 h | 0+ | %K=100 |
| 201Pb | 9. 33 h | 5/2- | %K+%β+=100 |
| 201m1Pb | 61 s | 13/2+ | %IT>99, %K+%β+<1 |
| 202Pb | 5. 25e4 a | 0+ | %K=100, %α<1 |
| 202m1Pb | 3. 53 h | 9- | %IT=90. 5 , %K+%β+=9. 5 |
| 203Pb | 51. 873 h | 5/2- | %K=100 |
| 203m1Pb | 6. 3 s | 13/2+ | %IT=100 |
| 203m2Pb | 0. 48 s | 29/2- | %IT=100 |
| 204Pb | stable (>1. 4e17 a) | 0+ | %Abundance=1. 4 |
| 204m1Pb | 67. 2 m | 9- | %IT=100 |
| 205Pb | 1. 53e+7 a | 5/2- | %K=100 |
| 205m1Pb | 5. 54 ms | 13/2+ | %IT=100 |
| 206Pb | stable | 0+ | %Abundance=24. 1 |
| 207Pb | stable | 1/2- | %Abundance=22. 1 |
| 207m1Pb | 0. 805 s | 13/2+ | %IT=100 |
| 208Pb | stable | 0+ | %Abundance=52. 4 |
| 209Pb | 3. 253 h | 9/2+ | %β-=100 |
| 210Pb | 22. 3 a | 0+ | %β-=100, %α=1. 9E-6 |
| 211Pb | 36. 1 m | 9/2+ | %β- =100 |
| 212Pb | 10. 64 h | 0+ | %β-=100 |
| 213Pb | 10. 2 m | (9/2+ ) | %β-=100 |
| 214Pb | 26. 8 m | 0+ | %β-=100 |
| 215Pb | 36 s | (5/2+ ) | %β-=100 |
Main article: Isotopes of bismuth
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 185Bi | 44 μs | (1/2+ ) | %p ~ 100 |
| 186Bi | 15. Bismuth (ˈbɪzməθ is a Chemical element that has the symbol Bi and Atomic number 83 Standard atomic mass 20898040(1 u Isotopes of Bismuth (Bi occurring within the radioactive Disintegration chains of Actinium 0 ms | (3+ ) | %α ~ 100 |
| 186m1Bi | 9. 8 ms | (10- ) | %α ~ 100 |
| 187Bi | 35 ms | (9/2-) | %α>50 |
| 187m1Bi | 0. 8 ms | (1/2+ ) | |
| 188Bi | 0. 21 s | %α=?, %K+%β+=? | |
| 188m1Bi | 44 ms | %α=?, %K+%β+=? | |
| 189Bi | 680 ms | (9/2-) | %α > 50, %K+%β+ < 50 |
| 189m1Bi | 5 ms | (1/2+ ) | %α > 50, %K+%β+ < 50 |
| 190Bi | 6. 3 s | (3+ ) | %α=80 , %K+%β+=20 |
| 190m1Bi | 6. 2 s | (10- ) | %α=70 , %K+%β+=30 |
| 191Bi | 12 s | (9/2-) | %α=60 , %K+%β+=40 |
| 191m1Bi | 150 ms | (1/2+ ) | %α > 50, %K+%β+ < 50 |
| 192Bi | 37 s | (2+ , 3+ ) | %K+%β+=82 , %α=18 |
| 192m1Bi | 39. 6 s | (10- ) | %K+%β+=90. 8 , %α=9. 2 |
| 193Bi | 67 s | (9/2-) | %K+%β+=96. 5 , %α=3. 5 |
| 193m1Bi | 3. 2 s | (1/2+ ) | %α=90 +10-20, %K+%β+=10 +20-10 |
| 194Bi | 95 s | (3+ ) | %K+%β+=99. 54 , %α=0. 46 |
| 194m1Bi | 115 s | (10- ) | %K+%β+=99. 80 , %α=0. 20 |
| 194m2Bi | 125 s | (6+ , 7+ ) | %K+%β+=100 |
| 195Bi | 183 s | (9/2-) | %K+%β+=99. 967 , %α=0. 033 |
| 195m1Bi | 87 s | (1/2+ ) | %K+%β+=67 , %α=33 |
| 196Bi | 308 s | (3+ ) | %K+%β+=100, %α=0. 00115 |
| 196m1Bi | 0. 6 s | (7+ ) | %IT=100 |
| 196m2Bi | 240 s | (10- ) | %K+%β+=74. 2 , %IT=25. 8 , %α=0. 00038 |
| 197Bi | 9. 33 m | (9/2-) | %K+%β+=100, %α=1E-4 sys |
| 197m1Bi | 5. 04 m | (1/2+ ) | %K+%β+=45 , %α=55 , %IT < 0. 3 |
| 198Bi | 10. 3 m | (2+ , 3+ ) | %K+%β+=100 |
| 198m1Bi | 11. 6 m | (7+ ) | %K+%β+=100 |
| 198m2Bi | 7. 7 s | (10- ) | %IT=100 |
| 199Bi | 27 m | 9/2- | %K+%β+=100 |
| 199m1Bi | 24. 70 m | (1/2+ ) | %K+%β+=99 , %α ~ 0. 01, %IT < 2 |
| 200Bi | 36. 4 m | 7+ | %K+%β+=100 |
| 200m1Bi | 31 m | (2+ ) | %K+%β+ > 90, %IT < 10 |
| 200m2Bi | 0. 40 s | (10- ) | %IT=100 |
| 201Bi | 108 m | 9/2- | %K+%β+=100, %α < 1E-4 |
| 201m1Bi | 59. 1 m | 1/2+ | %K > 93, %IT < 6. 8, %α ~ 0. 3 |
| 202Bi | 1. 72 h | 5+ | %K+%β+=100, %α<1E-5 |
| 203Bi | 11. 76 h | 9/2- | %K+%β+=100, %α ~ 1E-5 |
| 203m1Bi | 303 ms | 1/2+ | %IT=100 |
| 204Bi | 11. 22 h | 6+ | %K+%β+=100 |
| 204m1Bi | 13. 0 ms | 10- | %IT=100 |
| 204m2Bi | 1. 07 ms | (17+ ) | %IT=100 |
| 205Bi | 15. 31 d | 9/2- | %K+%β+=100 |
| 206Bi | 6. 243 d | 6(+) | %K+%β+=100 |
| 207Bi | 31. 55 a | 9/2- | %K+%β+=100 |
| 208Bi | 3. 68e+5 a | (5) + | %K+%β+=100 |
| 208m1Bi | 2. 58 ms | (10) - | %IT=100 |
| 209Bi | 1. 9e+19 a | 9/2- | %Abundance=100, %α=100 |
| 210Bi | 5. 013 d | 1- | %β-=100, %α=1. 32E-4 |
| 210m1Bi | 3. 04e+6 a | 9- | %α=100 |
| 211Bi | 2. 14 m | 9/2- | %α=99. 724 , %β-=0. 276 |
| 212Bi | 60. 55 m | 1(-) | %β-=64. 06 , %α=35. 94 , %β-α=0. 023 |
| 212m1Bi | 25. 0 m | (9-) | %α=67 , %β-=33 , %β-α=30 |
| 212m2Bi | 7. 0 m | %β- ~ 100 | |
| 213Bi | 45. 59 m | 9/2- | %β-=97. 91 , %α=2. 09 |
| 214Bi | 19. 9 m | 1- | %β-=99. 979 , %α=0. 021 |
| 215Bi | 7. 6 m | %β-=100 | |
| 216Bi | 3. 6 m | (1-) | %β- ~ 100 |
| 217Bi | 97 s | (9/2-) | %β-=100 |
Main article: Isotopes of polonium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 190Po | 2. Polonium (pəˈloʊniəm is a Chemical element with the symbol Po and Atomic number 84 discovered in 1898 by Marie and Pierre Curie Polonium ( Po) has 33 known isotopes, all of which are radioactive. 0 ms | 0+ | %α=100, %K+%β+=0. 1 sys |
| 191Po | 15. 5 ms | %α=? | |
| 192Po | 0. 0332 s | 0+ | %α=100 |
| 193Po | 0. 42 s | (3/2- ) | %α=? |
| 193m1Po | 0. 24 s | (13/2+ ) | %α=? |
| 194Po | 0. 392 s | 0+ | %α=93 |
| 195Po | 4. 64 s | (3/2- ) | %α=75 , %K+%β+=25 |
| 195m1Po | 1. 92 s | (13/2+ ) | %α ~ 90, %K+%β+ ~ 10, %IT < 0. 01 |
| 196Po | 5. 8 s | 0+ | %α ~ 98, %K+%β+ ~ 2 |
| 197Po | 53. 6 s | (3/2- ) | %K+%β+=56 , %α=44 |
| 197m1Po | 25. 8 s | (13/2+ ) | %α=84 , %K+%β+=16 , %IT=0. 01 sys |
| 198Po | 1. 77 m | 0+ | %α=57 , %K+%β+=43 |
| 199Po | 5. 48 m | 3/2- | %K+%β+=88 , %α=12 |
| 199m1Po | 4. 13 m | 13/2+ | %K+%β+=59 , %α=39 , %IT=2. 1 |
| 200Po | 11. 5 m | 0+ | %α=11. 1 , %K+%β+=88. 9 |
| 201Po | 15. 3 m | 3/2- | %K+%β+=98. 4 , %α=1. 6 |
| 201m1Po | 8. 9 m | 13/2+ | %IT=56 , %K=41 , %α ~ 2. 9 |
| 202Po | 44. 7 m | 0+ | %K+%β+=98. 08 , %α=1. 92 |
| 202m1Po | 85 ns | 8+ | |
| 202m2Po | 200 ns | 11- | |
| 202m3Po | 19 ns | 12+ | |
| 202m4Po | 11 ns | (15-) | |
| 203Po | 36. 7 m | 5/2- | %K+%β+=99. 89 , %α=0. 11 |
| 203m1Po | 45 s | 13/2+ | %IT ~ 100 , %α ~ 0. 04 sys |
| 204Po | 3. 53 h | 0+ | %K+%β+=99. 34 , %α=0. 66 |
| 205Po | 1. 66 h | 5/2- | %K+%β+=99. 96 , %α=0. 04 |
| 205m1Po | 58 ms | 19/2- | %IT=100 |
| 206Po | 8. 8 d | 0+ | %K+%β+=94. 55 , %α=5. 45 |
| 207Po | 5. 80 h | 5/2- | %K+%β+=99. 979 , %α=0. 021 |
| 207m1Po | 2. 8 s | 19/2- | %IT=100 |
| 208Po | 2. 898 a | 0+ | %α=99. 9958 , %K+%β+=0. 0042 |
| 209Po | 102 a | 1/2- | %α=99. 52 , %K+%β+=0. 48 |
| 210Po | 138. 376 d | 0+ | %α=100 |
| 211Po | 0. 516 s | 9/2+ | %α=100 |
| 211m1Po | 25. 2 s | (25/2+ ) | %α=99. 984 , %IT=0. 016 |
| 212Po | 0. 299 μs | 0+ | %α=100 |
| 212m1Po | 45. 1 s | (18+) | %α=99. 93 , %IT=0. 07 |
| 213Po | 4. 2 μs | 9/2+ | %α=100 |
| 214Po | 164. 3 μs | 0+ | %α=100 |
| 215Po | 1. 781 ms | 9/2+ | %α=99. 99977 , %β-=2. 3E-4 |
| 216Po | 0. 145 s | 0+ | %α=100 |
| 217Po | 10 s | %α > 95, %β- < 5 | |
| 218Po | 3. 10 m | 0+ | %α=99. 980 , %β-=0. 020 |
Main article: Isotopes of astatine
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 193At | 40 ms | %α=? | |
| 194At | 40 ms | %α=? | |
| 194m1At | 250 ms | %α=? | |
| 195At | 0. Astatine (ˈæstətiːn is a Radioactive Chemical element with the symbol At and Atomic number 85 Astatine ( At) has 33 known Isotopes all of which are Radioactive; the range of their mass numbers is from 191 to 223 63 s | %α > 75, %K+%β+ < 25 | |
| 196At | 0. 253 s | %α ~ 100 | |
| 197At | 0. 35 s | (9/2- ) | %α=96 , %K+%β+=4 |
| 197m1At | 3. 7 s | (1/2+ ) | %α=?, %K+%β+=? |
| 198At | 4. 2 s | (3+ ) | %α=90 , %K+%β+=10 |
| 198m1At | 1. 0 s | (10- ) | %α=84 , %K+%β+=16 |
| 199At | 7. 2 s | (9/2- ) | %α=90 , %K+%β+=10 |
| 200At | 43 s | (3+ ) | %α=57 , %K+%β+=43 |
| 200m1At | 47 s | (7+) | %α=43 , %K+%β+ < 57 |
| 200m2At | 3. 5 s | (10- ) | %α ~ 10. 5, %IT ~ 85, %K ~ 4. 5 |
| 201At | 89 s | (9/2- ) | %α=71 , %K+%β+=29 |
| 202At | 184 s | (2,3)+ | %K+%β+=82 , %α=18 |
| 202m1At | 182 s | (7+) | %K+%β+=91. 3, %α=8. 7 |
| 202m2At | 0. 46 s | (10- ) | %IT=99. 7 , %K+%β+=0. 25 sys %α=0. 096 |
| 203At | 7. 4 m | 9/2- | %K+%β+=69 , %α=31 |
| 204At | 9. 2 m | 7+ | %K+%β+=96. 2 , %α=3. 8 |
| 204m1At | 108 ms | (10- ) | %IT=100 |
| 205At | 26. 2 m | 9/2- | %K+%β+=90 , %α=10 |
| 206At | 30. 0 m | (5)+ | %K+%β+=99. 11 , %α=0. 89 |
| 207At | 1. 80 h | 9/2- | %K+%β+=91. 4 , %α=8. 6 |
| 208At | 1. 63 h | 6+ | %K+%β+=99. 45 , %α=0. 55 |
| 209At | 5. 41 h | 9/2- | %K+%β+=95. 9 , %α=4. 1 |
| 210At | 8. 1 h | (5)+ | %K+%β+=99. 825 , %α=0. 175 |
| 211At | 7. 214 h | 9/2- | %α=41. 80 , %K=58. 20 |
| 212At | 0. 314 s | (1- ) | %α=100, %β- < 2E-6, %K+%β+ < 3E-2 |
| 212m1At | 0. 119 s | (9-) | %α > 99, %IT < 1 |
| 213At | 125 ns | 9/2- | %α=100 |
| 214At | 558 ns | 1- | %α=100 |
| 214m1At | 265 ns | ||
| 214m2At | 760 ns | 9- | |
| 215At | 0. 10 ms | 9/2- | %α=100 |
| 216At | 0. 30 ms | 1- | %α=100, %K<3E-7, %β-<6E-3 |
| 216m1At | 0. 1 ms | (9-) | |
| 217At | 32. 3 ms | 9/2- | %α=99. 988 , %β-=0. 012 |
| 218At | 1. 5 s | %α=99. 9 , %β-=0. 1 | |
| 219At | 56 s | %α ~ 97, %β- ~ 3 | |
| 220At | 3. 71 m | 3 | %α=8 , %β-=92 |
| 221At | 2. 3 m | %β-=100 | |
| 222At | 54 s | %β-=100 | |
| 223At | 50 s | %β-=100, %α=0. 008 sys |
Main article: Isotopes of radon
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 196Rn | 3 ms | 0+ | %α ~ 100 |
| 197Rn | 65 ms | (3/2- ) | %α ~ 100 |
| 197m1Rn | 19 ms | (13/2+ ) | %α ~ 100 |
| 198Rn | 64 ms | 0+ | %α=100 |
| 199Rn | 0. Radon (ˈreɪdɒn is the Chemical element that has the symbol Rn and Atomic number 86 There are thirty four known Isotopes of Radon ( Rn) The most stable isotope is 222Rn which is a Decay product (daughter product of 62 s | (3/2- ) | %α=94 sys, %K+%β+=6 sys |
| 199m1Rn | 0. 32 s | (13/2+ ) | %α=97 sys, %K+%β+=3 sys |
| 200Rn | 0. 96 s | 0+ | %α=86 +14-4, %K+%β+<18 |
| 201Rn | 7. 0 s | (3/2- ) | %α ~ 80 , %K+%β+ ~ 20 |
| 201m1Rn | 3. 8 s | (13/2+ ) | %α ~ 90, %K+%β+ ~ 10, %IT ~ 0 |
| 202Rn | 10. 0 s | 0+ | %α=86 , %K+%β+=14 |
| 203Rn | 45 s | (3/2,5/2)- | %α=66 , %K+%β+=34 |
| 203m1Rn | 28 s | (13/2+ ) | %α ~ 80 sys%K+%β+ ~ 20 sys |
| 204Rn | 1. 24 m | 0+ | %α=73 , %K+%β+=27 |
| 205Rn | 2. 8 m | 5/2- | %K+%β+=77 , %α=23 |
| 206Rn | 5. 67 m | 0+ | %α=63 , %K+%β+=37 |
| 207Rn | 9. 25 m | 5/2- | %K+%β+=79 , %α=21 |
| 208Rn | 24. 35 m | 0+ | %α=62 , %K+%β+=38 |
| 209Rn | 28. 5 m | 5/2- | %K+%β+=83 , %α=17 |
| 210Rn | 2. 4 h | 0+ | %α=96 , %K+%β+=4 |
| 211Rn | 14. 6 h | 1/2- | %K=72. 6 , %α=27. 4 |
| 212Rn | 23. 9 m | 0+ | %α=100 |
| 213Rn | 25. 0 ms | (9/2+ ) | %α=100 |
| 214Rn | 0. 27 μs | 0+ | %α=100 |
| 214m1Rn | 0. 69 ns | 6+ | |
| 214m2Rn | 6. 5 ns | 8+ | |
| 215Rn | 2. 30 μs | 9/2+ | %α=100 |
| 216Rn | 45 μs | 0+ | %α=100 |
| 217Rn | 0. 54 ms | 9/2+ | %α=100 |
| 218Rn | 35 ms | 0+ | %α=100 |
| 219Rn | 3. 96 s | 5/2+ | %α=100 |
| 220Rn | 55. 6 s | 0+ | %α=100 |
| 221Rn | 25 m | 7/2(+) | %β-=78 , %α=22 |
| 222Rn | 3. 8235 d | 0+ | %α=100 |
| 223Rn | 23. 2 m | 7/2 | %β-=100, %α=0. 0004 sys |
| 224Rn | 107 m | 0+ | %β-=100 |
| 225Rn | 4. 5 m | 7/2- | %β-=100 |
| 226Rn | 7. 4 m | 0+ | %β-=100 |
| 227Rn | 22. 5 s | %β-=100 | |
| 228Rn | 65 s | 0+ | %β-=100 |
Main article: Isotopes of francium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 200Fr | 19 ms | (3+ ) | %α=100 |
| 200m1Fr | 0. Francium (ˈfrænsiəm formerly known as eka-caesium and actinium K, is a Chemical element that has the symbol Fr and Francium ( Fr) has no stable Isotopes. A standard Atomic mass cannot be given 57 s | (10- ) | %α=100 |
| 201Fr | 48 ms | (9/2- ) | %α=100 , %K+%β+ < 1 |
| 202Fr | 0. 34 s | (3+ ) | %α ~ 97 , %K+%β+ ~ 3 |
| 202m1Fr | 0. 34 s | (10- ) | %α ~ 97 , %K+%β+ ~ 3 |
| 203Fr | 0. 55 s | (9/2- ) | %α ~ 95 , %K+%β+ ~ 5 |
| 204Fr | 1. 7 s | (3+ ) | %α ~ 80, %K+%β+ ~ 20 |
| 204m1Fr | 2. 6 s | (7+) | %α=? |
| 204m2Fr | 1 s | (10- ) | %α=? |
| 205Fr | 3. 85 s | (9/2- ) | %α > 99, %K+%β+ < 1 |
| 206Fr | 15. 9 s | (5+) | %α=84 , %K+%β+=16 |
| 206m1Fr | 0. 7 s | (10- ) | %α=0. 3 , %IT=? |
| 207Fr | 14. 8 s | 9/2- | %α=95 , %K+%β+=5 |
| 208Fr | 59. 1 s | 7+ | %α=90 , %K+%β+=10 |
| 209Fr | 50. 0 s | 9/2- | %α=89 , %K+%β+=11 |
| 210Fr | 3. 18 m | 6+ | %α=60 , %K+%β+=40 |
| 211Fr | 3. 10 m | 9/2- | %α>80, %K<20 |
| 212Fr | 20. 0 m | 5+ | %K+%β+=57 , %α=43 |
| 213Fr | 34. 6 s | 9/2- | %α=99. 45 , %K+%β+=0. 55 |
| 214Fr | 5. 0 ms | (1- ) | %α=100 |
| 214m1Fr | 3. 35 ms | (8-) | %α=100 |
| 215Fr | 86 ns | 9/2- | %α=100 |
| 215m1Fr | 3. 5 ns | (23/2)- | |
| 216Fr | 0. 70 μs | (1- ) | %α=100, %K<2E-7 sys |
| 217Fr | 22 μs | 9/2- | %α=100 |
| 218Fr | 1. 0 ms | 1- | %α=100 |
| 218m1Fr | 22. 0 ms | %α < 100 , %IT=? | |
| 219Fr | 20 ms | 9/2- | %α=100 |
| 220Fr | 27. 4 s | 1+ | %α=99. 65 , %β-=0. 35 |
| 221Fr | 4. 9 m | 5/2- | %α=100, %γ=8. 8E-11 |
| 222Fr | 14. 2 m | 2- | %β-=100 |
| 223Fr | 21. 8 m | 3/2(-) | %β-=99. 994, %α=0. 006 |
| 224Fr | 3. 33 m | 1- | %β-=100 |
| 225Fr | 4. 0 m | 3/2- | %β-=100 |
| 226Fr | 49 s | 1- | %β-=100 |
| 227Fr | 2. 47 m | 1/2+ | %β-=100 |
| 228Fr | 38 s | 2- | %β-=100 |
| 229Fr | 50 s | %β-=100 | |
| 230Fr | 19. 1 s | %β-=100 | |
| 231Fr | 17. 5 s | %β-=100 | |
| 232Fr | 5 s | %β-=100 |
Main article: Isotopes of radium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 202Ra | 0. Radium (ˈreɪdiəm is a radioactive Chemical element which has the symbol Ra and Atomic number 88 Radium ( Ra) has no stable Isotopes A standard Atomic mass cannot be given 7 ms | 0+ | %α=100 |
| 203Ra | 1. 0 ms | (3/2- ) | %α ~ 100 |
| 203m1Ra | 33 ms | (13/2+ ) | %α ~ 100 |
| 204Ra | 59 ms | 0+ | %α ~ 100 |
| 205Ra | 210 ms | (3/2- ) | %α=? |
| 205m1Ra | 170 ms | (13/2+ ) | %α=? |
| 206Ra | 0. 24 s | 0+ | %α ~ 100 |
| 207Ra | 1. 3 s | (5/2,3/2)- | %α ~ 90, %K+%β+ ~ 10 |
| 207m1Ra | 55 ms | (13/2+ ) | %IT=85 sys%α=15 sys %K+%β+ ~ 0. 55 |
| 208Ra | 1. 3 s | 0+ | %α=95 sys %K+%β+=5 sys |
| 209Ra | 4. 6 s | 5/2- | %α ~ 90, %K+%β+ ~ 10 |
| 210Ra | 3. 7 s | 0+ | %α ~ 96, %K+%β+ ~ 4 |
| 211Ra | 13 s | 5/2(-) | %α > 93, %K < 7 |
| 212Ra | 13. 0 s | 0+ | %α ~ 85, %K+%β+ ~ 15 |
| 213Ra | 2. 74 m | 1/2- | %α=80 , %K+%β+=20 |
| 213m1Ra | 2. 1 ms | %IT ~ 99, %α ~ 1 | |
| 214Ra | 2. 46 s | 0+ | %α=99. 941 , %K=0. 059 |
| 215Ra | 1. 59 ms | (9/2+ ) | %α=100 |
| 216Ra | 182 ns | 0+ | %α=100, %K<1E-8 |
| 217Ra | 1. 6 μs | (9/2+ ) | %α=100 |
| 218Ra | 25. 6 μs | 0+ | %α=100 |
| 219Ra | 10 ms | (7/2)+ | %α=100 |
| 220Ra | 18 ms | 0+ | %α=100 |
| 221Ra | 28 s | 5/2+ | %α=100, %γ=1. 2E-10 |
| 222Ra | 38. 0 s | 0+ | %α=100, %14C=3. 0E-8 |
| 223Ra | 11. 435 d | 3/2+ | %α=100, %14C=6. 4E-8 |
| 224Ra | 3. 66 d | 0+ | %α=100, %14C=4. 3E-9 |
| 225Ra | 14. 9 d | 1/2+ | %β-=100 |
| 226Ra | 1600 a | 0+ | %α=100, %14C=3. 2E-9 |
| 227Ra | 42. 2 m | 3/2+ | %β-=100 |
| 228Ra | 5. 75 a | 0+ | %β-=100 |
| 229Ra | 4. 0 m | 5/2(+) | %β-=100 |
| 230Ra | 93 m | 0+ | %β-=100 |
| 231Ra | 103 s | (7/2-,1/2+ ) | %β-=100 |
| 232Ra | 250 s | 0+ | %β-=100 |
| 233Ra | 30 s | %β-=100 | |
| 234Ra | 30 s | 0+ | %β-=100 |
Main article: Isotopes of actinium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 206Ac | 22 ms | (3+ ) | %α=? |
| 206m1Ac | 33 ms | (10- ) | |
| 207Ac | 22 ms | (9/2- ) | %α ~ 100 |
| 208Ac | 95 ms | (3+ ) | %α=? |
| 208m1Ac | 25 ms | (10- ) | %α=? |
| 209Ac | 0. Actinium (ækˈtɪniəm is a radioactive Chemical element with the symbol Ac and Atomic number 89 which was discovered in 1899, the earliest Actinium ( Ac) has no stable isotopes A standard atomic mass cannot be given 10 s | (9/2- ) | %α ~ 99, %K+%β+ ~ 1 |
| 210Ac | 0. 35 s | %α ~ 96, %K+%β+ ~ 4 | |
| 211Ac | 0. 25 s | %α ~ 100 | |
| 212Ac | 0. 93 s | %α ~ 97, %K+%β+ ~ 3 | |
| 213Ac | 0. 80 s | %α < 100 | |
| 214Ac | 8. 2 s | %α > 89 , %K < 11 | |
| 215Ac | 0. 17 s | 9/2- | %α=99. 91 , %K+%β+=0. 09 |
| 216Ac | 0. 33 ms | (1- ) | %α=100 |
| 216m1Ac | 0. 33 ms | (9-) | |
| 217Ac | 69 ns | 9/2- | %α=100, %K+%β+ < 2 |
| 217m1Ac | 740 ns | (29/2)+ | |
| 218Ac | 1. 08 μs | (1- ) | %α=100 |
| 219Ac | 11. 8 μs | 9/2- | %α=100, %K+%β+ ~ 1E-6 |
| 220Ac | 26. 4 ms | (3-) | %α=100 |
| 221Ac | 52 ms | (3/2- ) | %α=100 |
| 222Ac | 5. 0 s | 1- | %α=99 , %K+%β+=1 |
| 222m1Ac | 63 s | %α > 88, %IT < 10 , %K+%β+ < 2 | |
| 223Ac | 2. 10 m | (5/2- ) | %α=99, %K=1 |
| 224Ac | 2. 78 h | 0- | %K=90. 9 +14-20, %α=9. 1 +20-14, %β- < 1. 6 sys |
| 225Ac | 10. 0 d | (3/2- ) | %α=100, %14C=6. 0E-10 |
| 226Ac | 29. 37 h | (1) | %α=6E-3 , %β-=83 , %K=17 |
| 227Ac | 21. 773 a | 3/2- | %β-=98. 620 , %α=1. 380 |
| 228Ac | 6. 15 h | 3+ | %β-=100 |
| 229Ac | 62. 7 m | (3/2+ ) | %β-=100 |
| 230Ac | 122 s | (1+ ) | %β-=100 |
| 231Ac | 7. 5 m | (1/2+ ) | %β-=100 |
| 232Ac | 119 s | (1+ ) | %β-=100 |
| 233Ac | 145 s | (1/2+ ) | %β-=100 |
| 234Ac | 44 s | %β-=100 |
Main article: Isotopes of thorium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 210Th | 9 ms | 0+ | %α ~ 100 |
| 211Th | 37 ms | %α=?, %K=? | |
| 212Th | 30 ms | 0+ | %α=100, %K+%β+ ~ 0. Thorium (ˈθɔːriəm is a Chemical element with the symbol Th and Atomic number 90 Although Thorium ( Th) has multiple Isotopes, none of these isotopes are stable however one isotope is relatively stable ( 232Th 3 |
| 213Th | 140 ms | %α < 100 | |
| 214Th | 100 ms | 0+ | %α=100 |
| 215Th | 1. 2 s | (1/2- ) | %α=100 |
| 216Th | 0. 028 s | 0+ | %α=100, %K+%β+ ~ 0. 01 sys |
| 216m1Th | 180 μs | (8+,11- ) | |
| 217Th | 0. 252 ms | (9/2+ ) | %α=100 |
| 218Th | 109 ns | 0+ | %α=100 |
| 219Th | 1. 05 μs | %α=100, %K+%β+ ~ 1E-7 | |
| 220Th | 9. 7 μs | 0+ | %α=100, %K=2E-7 sys |
| 221Th | 1. 68 ms | (7/2+ ) | %α=100 |
| 222Th | 2. 8 ms | 0+ | %α=100 |
| 223Th | 0. 60 s | (5/2)+ | %α=100 |
| 224Th | 1. 05 s | 0+ | %α=100 |
| 225Th | 8. 72 m | (3/2)+ | %α ~ 90, %K ~ 10 |
| 226Th | 30. 57 m | 0+ | %α=100 |
| 227Th | 18. 72 d | (1/2+ ) | %α=100 |
| 228Th | 1. 9116 a | 0+ | %α=100, %20O=1. 13E-11 |
| 229Th | 7340 a | 5/2+ | %α=100 |
| 230Th | 7. 538e+4 a | 0+ | %α=100, %24NE=5. 6E-11 , %SF < 3. 8E-12 |
| 231Th | 25. 52 h | 5/2+ | %β-=100, %α ~ 1E-8 |
| 232Th | 1. 405e10 a | 0+ | %Abundance=100, %α=100 , %SF<1. 8E-9 |
| 233Th | 22. 3 m | 1/2+ | %β-=100 |
| 234Th | 24. 10 d | 0+ | %β-=100 |
| 235Th | 7. 1 m | (1/2+ ) | %β-=100 |
| 236Th | 37. 5 m | 0+ | %β-=100 |
| 237Th | 5. 0 m | %β-=100 |
Main article: Isotopes of protactinium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| <212Pa | 5. Protactinium (ˌproʊtækˈtɪniəm is a Chemical element with the symbol Pa and Atomic number 91 Protactinium ( Pa)Standard atomic mass 23103588(2 u The element has no stable isotopes 1 ms | (3+ ) | %α=? |
| 213Pa | 5. 3 ms | %α=? | |
| 214Pa | 17 ms | %α=? | |
| 215Pa | 14 ms | %α=100 | |
| 216Pa | 0. 20 s | %K ~ 2 sys %α ~ 98 sys | |
| 217Pa | 4. 9 ms | %α =100 | |
| 217m1Pa | 1. 6 ms | %α < 100 | |
| 218Pa | 0. 12 ms | %α=100 | |
| 219Pa | 53 ns | 9/2- | %α=100, %K+%β+ ~ 5E-9 |
| 220Pa | 0. 78 μs | %α=100, %K+%β+=3E-7 sys | |
| 221Pa | 5. 9 μs | 9/2- | %α=100 |
| 222Pa | 2. 9 ms | %α=100 | |
| 223Pa | 6. 5 ms | %α=100, %K+%β+ < 1. 0E-3 | |
| 224Pa | 0. 79 s | %α=100 | |
| 225Pa | 1. 7 s | %α=100 | |
| 226Pa | 1. 8 m | %α=74 , %K+%β+=26 | |
| 227Pa | 38. 3 m | (5/2- ) | %α=85 , %K=15 |
| 228Pa | 22 h | 3+ | %K+%β+=98. 0 , %α=2. 0 |
| 229Pa | 1. 50 d | (5/2+ ) | %K=99. 52 , %α=0. 48 |
| 230Pa | 17. 4 d | (2- ) | %K+%β+=91. 6 , %β-=8. 4 , %α=0. 0032 |
| 231Pa | 32760 a | 3/2- | %α=100, %SF < 1. 6E-11 |
| 232Pa | 1. 31 d | (2- ) | %β-=99. 997 , %K=0. 003 |
| 233Pa | 26. 967 d | 3/2- | %β-=100 |
| 234Pa | 6. 70 h | 4+ | %β-=100, %SF < 3E-10 |
| 234m1Pa | 1. 17 m | (0- ) | %β-=99. 84 , %IT=0. 16 , %SF < 1E-9 |
| 235Pa | 24. 5 m | (3/2- ) | %β-=100 |
| 236Pa | 9. 1 m | 1(-) | %β-=100 |
| 237Pa | 8. 7 m | (1/2+ ) | %β-=100 |
| 238Pa | 2. 3 m | (3-) | %β-=100, %SF < 2. 6E-6 |
Main article: Isotopes of uranium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 218U | 1. Uranium (jʊˈreɪniəm is a silvery-gray Metallic Chemical element in the Uranium ( U) is a naturally occurring element with no Stable isotopes In other words all uranium is Radioactive and hence vanishing by Radioactive 5 ms | 0+ | %α=100 |
| 219U | 42 μs | %α=? | |
| 220U | |||
| 221U | |||
| 222U | 1. 0 μs | 0+ | %α=100 |
| 223U | 18 μs | %α=? | |
| 224U | 0. 9 ms | 0+ | %α=100 |
| 225U | 95 ms | %α=100 | |
| 226U | 0. 35 s | 0+ | %α=100 |
| 227U | 1. 1 m | (3/2+ ) | %α=100, %K+%β+ < 0. 001 |
| 228U | 9. 1 m | 0+ | %K<5, %α>95 |
| 229U | 58 m | (3/2+ ) | %K+%β+ ~ 80, %α ~ 20 |
| 230U | 20. 8 d | 0+ | %α=100, %SF < 1. 4E-10 |
| 231U | 4. 2 d | (5/2- ) | %K=100, %α ~ 0. 0055 |
| 232U | 68. 9 a | 0+ | %α=100, %24NE=9E-11 |
| 233U | 1. 592e+5 a | 5/2+ | %α=100, %SF < 6E-11, %24NE < 9. 5E-11 |
| 234U | 2. 455e+5 a | 0+ | %Abundance=0. 0055, %α=100, %SF=1. 64E-9 , %nE=9E-12 , %MG=1. 4E-11 |
| 235U | 7. 038e+8 a | 7/2- | %Abundance=0. 7200, %α=100, %SF=7. 0E-9 , %20NE=8E-10 |
| 235m1U | 25 m | 1/2+ | %IT=100 |
| 236U | 2. 342e7 a | 0+ | %α=100, %SF=9. 4E-8 |
| 237U | 6. 75 d | 1/2+ | %β-=100 |
| 238U | 4. 468e+9 a | 0+ | %Abundance=99. 2745, %α=100, %SF=5. 45E-5 , %ββ=2. 2E-10 |
| 238m1U | 225 ns | 0+ | |
| 238m2U | 1 ns | ||
| 239U | 23. 45 m | 5/2+ | %β-=100 |
| 240U | 14. 1 h | 0+ | %β-=100 |
| 241U | |||
| 242U | 16. 8 m | 0+ | %β-=100 |
Main article: Isotopes of neptunium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 225Np | 6 ms | %α=? | |
| 226Np | 35 ms | %α=100 | |
| 227Np | 0. Neptunium (nɛpˈtjuːniəm is a Chemical element with the symbol Np and Atomic number 93 Neptunium ( Np) has no stable isotopes A standard atomic mass cannot be given 51 s | %α=100, %K+%β+ ~ 0. 05 | |
| 228Np | 61. 4 s | %K=60 , %α=40 , %KSF=0. 020 | |
| 229Np | 4. 0 m | %α > 50, %K < 50 | |
| 230Np | 4. 6 m | %K+%β+ < 97, %α > 3 | |
| 231Np | 48. 8 m | (5/2) | %K=98 , %α=2 |
| 232Np | 14. 7 m | (4+ ) | %K+%β+=100 |
| 233Np | 36. 2 m | (5/2+ ) | %K=100, %α < 0. 001 |
| 234Np | 4. 4 d | (0+ ) | %K+%β+=100 |
| 235Np | 396. 1 d | 5/2+ | %K=99. 99740 , %α=0. 00260 |
| 236Np | 1. 54e5 a | (6-) | %K=87. 3 , %β-=12. 5 , %α=0. 16 |
| 236m1Np | 22. 5 h | 1 | %K=52 , %β-=48 |
| 237Np | 2. 144e+6 a | 5/2+ | %α=100, %SF < 2E-10 |
| 237m1Np | 45 ns | ||
| 238Np | 2. 117 d | 2+ | %β-=100 |
| 238m1Np | 112 ns | ||
| 239Np | 2. 3565 d | 5/2+ | %β-=100 |
| 240Np | 61. 9 m | (5+) | %β-=100 |
| 240m1Np | 7. 22 m | 1(+) | %β-=99. 89 , %IT=0. 11 |
| 241Np | 13. 9 m | (5/2+ ) | %β-=100 |
| 242Np | 5. 5 m | (6) | %β-=100 |
| 242m1Np | 2. 2 m | (1+ ) | %β-=100 |
| 243Np | 1. 8 m | (5/2- ) | %β-=100 |
| 244Np | 2. 29 m | (7-) | %β-=100 |
Main article: Isotopes of plutonium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 228Pu | 4 ms | 0+ | %α=100 |
| 229Pu | %α=? | ||
| 230Pu | 0+ | %α=? | |
| 231Pu | |||
| 232Pu | 34. Plutonium ( Pu) has no stable isotopes A standard atomic mass cannot be given 1 m | 0+ | %K=77 , %α=23 |
| 233Pu | 20. 9 m | %K+%β+=99. 88 , %α=0. 12 | |
| 234Pu | 8. 8 h | 0+ | %K ~ 94, %α ~ 6 |
| 234m1Pu | 3 ns | ||
| 235Pu | 25. 3 m | (5/2+ ) | %K+%β+=99. 9973 , %α=0. 0027 |
| 235m1Pu | 25 ns | ||
| 236Pu | 2. 858 a | 0+ | %α=100, %SF=1. 37E-7 |
| 236m1Pu | 37 ps (0+ ) | ||
| 236m2Pu | 34 ns | ||
| 237Pu | 45. 2 d | 7/2- | %α=0. 0042 , %K=99. 9958 |
| 237m1Pu | 0. 18 s | 1/2+ | %IT=100 |
| 237m2Pu | 85 ns | ||
| 237m3Pu | 1. 1 μs | ||
| 238Pu | 87. 7 a | 0+ | %α=100, %SF=1. 85E-7 , %MG ~ 6E-15, %SI ~ 1. 4E-14 |
| 238m1Pu | 0. 6 ns | ||
| 238m2Pu | 6. 0 ns | (0+ ) | |
| 239Pu | 24110 a | 1/2+ | %α=100, %SF=3. 0E-10 |
| 239m1Pu | 7. 5 μs | (5/2+ ) | |
| 239m2Pu | 2. 6 ns | (9/2- ) | |
| 240Pu | 6563 a | 0+ | %α=100 , %SF=5. 75E-6 |
| 241Pu | 14. 35 a | 5/2+ | %β-=99. 998, %α=0. 00245 , %SF ~ 2. 4E-14 |
| 241m1Pu | 21 μs | ||
| 241m2Pu | 32 ns | ||
| 242Pu | 3. 733e+5 a | 0+ | %α=100 , %SF=5. 54E-4 |
| 243Pu | 4. 956 h | 7/2+ | %β-=100 |
| 243m1Pu | 45 ns | ||
| 244Pu | 8. 08e+7 a | 0+ | %α=99. 879 , %SF=0. 121 , %ββ < 3E-11 |
| 245Pu | 10. 5 h | (9/2- ) | %β-=100 |
| 245m1Pu | 90 ns | ||
| 246Pu | 10. 84 d | 0+ | %β-=100 |
| 247Pu | 2. 27 d | %β-=100 |
Main article: Isotopes of americium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 232Am | 79 s | %K ~ 98, %α ~ 2, %KSF=0. Americium (ˌæməˈrɪsiəm is a Synthetic element that has the symbol Am and Atomic number 95 Americium ( Am) has no stable Isotopes A standard atomic mass cannot be given 069 | |
| 233Am | |||
| 234Am | 2. 32 m | %K=99. 961 , %α=0. 039 , %KSF=0. 0066 | |
| 235Am | 15 m | %K+%β+=?, %α=? | |
| 236Am | %K=?, %α=? | ||
| 237Am | 73. 0 m | 5/2(-) | %α=0. 025 , %K=99. 975 |
| 237m1Am | 5 ns | ||
| 238Am | 98 m | 1+ | %K+%β+>99. 99, %α=1. 0E-4 |
| 238m1Am | 35 μs | ||
| 239Am | 11. 9 h | (5/2)- | %K=99. 990 , %α=0. 010 |
| 239m1Am | 163 ns | (7/2+ ) | |
| 240Am | 50. 8 h | (3-) | %K=100, %α=1. 9E-4 |
| 241Am | 432. 2 a | 5/2- | %α=100, %SF=4. 3E-10 |
| 241m1Am | 1. 2 μs | ||
| 242Am | 16. 02 h | 1- | %β-=82. 7 , %K=17. 3 |
| 242m1Am | 141 a | 5- | %IT=99. 541 , %α=0. 459 , %SF < 4. 7E-9 |
| 242m2Am | 14. 0 ms | %SF=?, %IT=? | |
| 243Am | 7370 a | 5/2- | %α=100, %SF=3. 7E-9 |
| 243m1Am | 5. 5 μs | ||
| 244Am | 10. 1 h | (6-) | %β-=100 |
| 244m1Am | 26 m | 1+ | %β-=99. 9639 , %K=0. 0361 |
| 245Am | 2. 05 h | (5/2)+ | %β-=100 |
| 245m1Am | 0. 64 μs | ||
| 246Am | 39 m | (7-) | %β-=100 |
| 246m1Am | 25. 0 m | 2(-) | %β-=100, %IT<0. 01 |
| 246m2Am | 73 μs | ||
| 247Am | 23. 0 m | (5/2) | %β-=100 |
Main article: Isotopes of curium
| Isotope | Half-life | Spin Parity | Mode(s) or Abundance |
|---|---|---|---|
| 238Cm | 2. This article is about the chemical element Curium for the ancient city also called Curium (located in Cyprus see Kourion Curium (ˈkjuːriəm Curium ( Cm) has no stable isotopes A standard atomic mass cannot be given 4 h | 0+ | %K=96. 16 , %α=3. 84 |
| 239Cm | 2. 9 h | (7/2- ) | %K= 100, %α < 0. 1 |
| 240Cm | 27 d | 0+ | %α > 99. 5 , %K < 0. 5 , %SF=3. 9E-6 |
| 241Cm | 32. 8 d | 1/2+ | %K=99. 0 , %α=1. 0 |
| 241m1Cm | 15. 3 ns | ||
| 242Cm | 162. 8 d | 0+ | %α=100, %SF=6. 37E-6 |
| 242m1Cm | 40 ps | ||
| 242m2Cm | 0. 18 μs | ||
| 243Cm | 29. 1 a | 5/2+ | %α=99. 71 , %K=0. 29 , %SF=5. 3E-9 |
| 243m1Cm | 42 ns | ||
| 244Cm | 18. 10 a | 0+ | %α=100, %SF=1. 371E-4 |
| 244m1Cm | 34 ms | 6+ | %IT=100, %SF < 7. 7E-10 |
| 245Cm | 8500 a | 7/2+ | %α=100, %SF=6. 1E-7 |
| 245m1Cm | 13. 2 ns | ||
| 246Cm | 4730 a | 0+ | %α=99. 9737 , %SF=0. 0263 |
| 247Cm | 1. 56e+7 a | 9/2- | %α=100 |
| 248Cm | 3. 40e+5 a | 0+ | %α=91. 61 , %SF=8. 39 |
| 249Cm | 64. 15 m | 1/2(+) | %β-=100 |
| 250Cm | 9000 a | 0+ | %SF ~ 86, %α ~ 8, %β- ~ 6 |
| 251Cm | 16. 8 m | (1/2+ ) | %β-=100 |
| 252Cm | 2 d | 0+ | %β-=100 |