Isotopes of arsenic
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Arsenic Arsenic is a chemical element with the symbol As and atomic number 33. Arsenic occurs in many minerals, usually in combination with sulfur and metals, but also as a pure elemental crystal. Arsenic is a metalloid. It has various allotropes, ...
(33As) has 33 known
isotope Isotopes are two or more types of atoms that have the same atomic number (number of protons in their nuclei) and position in the periodic table (and hence belong to the same chemical element), and that differ in nucleon numbers (mass numb ...
s and at least 10
isomers In chemistry, isomers are molecules or polyatomic ions with identical molecular formulae – that is, same number of atoms of each element – but distinct arrangements of atoms in space. Isomerism is existence or possibility of isomers. ...
. Only one of these isotopes, 75As, is stable; as such, it is considered a
monoisotopic element A monoisotopic element is an element which has only a single stable isotope (nuclide). There are only 26 elements that have this property. A list is given in a following section. Stability is experimentally defined for chemical elements, as ther ...
. The longest-lived
radioisotope A radionuclide (radioactive nuclide, radioisotope or radioactive isotope) is a nuclide that has excess nuclear energy, making it unstable. This excess energy can be used in one of three ways: emitted from the nucleus as gamma radiation; transferr ...
is 73As with a half-life of 80 days. Arsenic has been proposed as a " salting" material for
nuclear weapon A nuclear weapon is an explosive device that derives its destructive force from nuclear reactions, either fission (fission bomb) or a combination of fission and fusion reactions ( thermonuclear bomb), producing a nuclear explosion. Both bom ...
s (
cobalt Cobalt is a chemical element with the symbol Co and atomic number 27. As with nickel, cobalt is found in the Earth's crust only in a chemically combined form, save for small deposits found in alloys of natural meteoric iron. The free element, p ...
is another, better-known salting material). A jacket of 75As, irradiated by the intense high-energy neutron flux from an exploding
thermonuclear weapon A thermonuclear weapon, fusion weapon or hydrogen bomb (H bomb) is a second-generation nuclear weapon design. Its greater sophistication affords it vastly greater destructive power than first-generation nuclear bombs, a more compact size, a low ...
, would transmute into the radioactive isotope 76As with a
half-life Half-life (symbol ) is the time required for a quantity (of substance) to reduce to half of its initial value. The term is commonly used in nuclear physics to describe how quickly unstable atoms undergo radioactive decay or how long stable at ...
of 1.0778 days and produce approximately 1.13 
MeV In physics, an electronvolt (symbol eV, also written electron-volt and electron volt) is the measure of an amount of kinetic energy gained by a single electron accelerating from rest through an electric potential difference of one volt in vacu ...
gamma radiation, significantly increasing the radioactivity of the weapon's
fallout Nuclear fallout is the residual radioactive material propelled into the upper atmosphere following a nuclear blast, so called because it "falls out" of the sky after the explosion and the shock wave has passed. It commonly refers to the radioac ...
for several hours. Such a weapon is not known to have ever been built, tested, or used.


List of isotopes

, - , 60As , style="text-align:right" , 33 , style="text-align:right" , 27 , 59.99313(64)# , , p , 59Ge , 5+# , , , - , 61As , style="text-align:right" , 33 , style="text-align:right" , 28 , 60.98062(64)# , , p , 60Ge , 3/2−# , , , - , 62As , style="text-align:right" , 33 , style="text-align:right" , 29 , 61.97320(32)# , , p , 61Ge , 1+# , , , - , 63As , style="text-align:right" , 33 , style="text-align:right" , 30 , 62.96369(54)# , , p , 62Ge , (3/2−)# , , , - , 64As , style="text-align:right" , 33 , style="text-align:right" , 31 , 63.95757(38)# , 40(30) ms
8(+43-7) ms, β+ , 64Ge , 0+# , , , - , 65As , style="text-align:right" , 33 , style="text-align:right" , 32 , 64.94956(32)# , 170(30) ms , β+ , 65Ge , 3/2−# , , , - , 66As , style="text-align:right" , 33 , style="text-align:right" , 33 , 65.94471(73) , 95.77(23) ms , β+ , 66Ge , (0+) , , , - , style="text-indent:1em" , 66m1As , colspan="3" style="text-indent:2em" , 1356.70(17) keV , 1.1(1) µs , , , (5+) , , , - , style="text-indent:1em" , 66m2As , colspan="3" style="text-indent:2em" , 3023.9(3) keV , 8.2(5) µs , , , (9+) , , , - , 67As , style="text-align:right" , 33 , style="text-align:right" , 34 , 66.93919(11) , 42.5(12) s , β+ , 67Ge , (5/2−) , , , - , 68As , style="text-align:right" , 33 , style="text-align:right" , 35 , 67.93677(5) , 151.6(8) s , β+ , 68Ge , 3+ , , , - , style="text-indent:1em" , 68mAs , colspan="3" style="text-indent:2em" , 425.21(16) keV , 111(20) ns
107(+23-16) ns, , , 1+ , , , - , 69As , style="text-align:right" , 33 , style="text-align:right" , 36 , 68.93227(3) , 15.2(2) min , β+ , 69Ge , 5/2− , , , - , 70As , style="text-align:right" , 33 , style="text-align:right" , 37 , 69.93092(5) , 52.6(3) min , β+ , 70Ge , 4(+#) , , , - , style="text-indent:1em" , 70mAs , colspan="3" style="text-indent:2em" , 32.008(23) keV , 96(3) µs , , , 2(+) , , , - , 71As , style="text-align:right" , 33 , style="text-align:right" , 38 , 70.927112(5) , 65.28(15) h , β+ , 71Ge , 5/2− , , , - , 72As , style="text-align:right" , 33 , style="text-align:right" , 39 , 71.926752(5) , 26.0(1) h , β+ , 72Ge , 2− , , , - , 73As , style="text-align:right" , 33 , style="text-align:right" , 40 , 72.923825(4) , 80.30(6) d , EC , 73Ge , 3/2− , , , - , rowspan=2, 74As , rowspan=2 style="text-align:right" , 33 , rowspan=2 style="text-align:right" , 41 , rowspan=2, 73.9239287(25) , rowspan=2, 17.77(2) d , β+ (66%) , 74Ge , rowspan=2, 2− , rowspan=2, , rowspan=2, , - , β (34%) , 74Se , - , 75As , style="text-align:right" , 33 , style="text-align:right" , 42 , 74.9215965(20) , colspan=3 align=center, Stable , 3/2− , 1.0000 , , - , style="text-indent:1em" , 75mAs , colspan="3" style="text-indent:2em" , 303.9241(7) keV , 17.62(23) ms , , , 9/2+ , , , - , rowspan=2, 76As , rowspan=2 style="text-align:right" , 33 , rowspan=2 style="text-align:right" , 43 , rowspan=2, 75.922394(2) , rowspan=2, 1.0942(7) d , β (99.98%) , 76Se , rowspan=2, 2− , rowspan=2, , rowspan=2, , - , EC (.02%) , ''76Ge'' , - , style="text-indent:1em" , 76mAs , colspan="3" style="text-indent:2em" , 44.425(1) keV , 1.84(6) µs , , , (1)+ , , , - , 77As , style="text-align:right" , 33 , style="text-align:right" , 44 , 76.9206473(25) , 38.83(5) h , β , 77mSe , 3/2− , , , - , style="text-indent:1em" , 77mAs , colspan="3" style="text-indent:2em" , 475.443(16) keV , 114.0(25) µs , , , 9/2+ , , , - , 78As , style="text-align:right" , 33 , style="text-align:right" , 45 , 77.921827(11) , 90.7(2) min , β , 78Se , 2− , , , - , 79As , style="text-align:right" , 33 , style="text-align:right" , 46 , 78.920948(6) , 9.01(15) min , β , 79mSe , 3/2− , , , - , style="text-indent:1em" , 79mAs , colspan="3" style="text-indent:2em" , 772.81(6) keV , 1.21(1) µs , , , (9/2)+ , , , - , 80As , style="text-align:right" , 33 , style="text-align:right" , 47 , 79.922534(25) , 15.2(2) s , β , 80Se , 1+ , , , - , 81As , style="text-align:right" , 33 , style="text-align:right" , 48 , 80.922132(6) , 33.3(8) s , β , 81mSe , 3/2− , , , - , 82As , style="text-align:right" , 33 , style="text-align:right" , 49 , 81.92450(21) , 19.1(5) s , β , ''82Se'' , (1+) , , , - , style="text-indent:1em" , 82mAs , colspan="3" style="text-indent:2em" , 250(200) keV , 13.6(4) s , β , ''82Se'' , (5-) , , , - , 83As , style="text-align:right" , 33 , style="text-align:right" , 50 , 82.92498(24) , 13.4(3) s , β , 83mSe , 3/2−# , , , - , rowspan=2, 84As , rowspan=2 style="text-align:right" , 33 , rowspan=2 style="text-align:right" , 51 , rowspan=2, 83.92906(32)# , rowspan=2, 4.02(3) s , β (99.721%) , 84Se , rowspan=2, (3)(+#) , rowspan=2, , rowspan=2, , - , β, n (.279%) , 83Se , - , style="text-indent:1em" , 84mAs , colspan="3" style="text-indent:2em" , 0(100)# keV , 650(150) ms , , , , , , - , rowspan=2, 85As , rowspan=2 style="text-align:right" , 33 , rowspan=2 style="text-align:right" , 52 , rowspan=2, 84.93202(21)# , rowspan=2, 2.021(10) s , β, n (59.4%) , 84Se , rowspan=2, (3/2−)# , rowspan=2, , rowspan=2, , - , β (40.6%) , 85Se , - , rowspan=2, 86As , rowspan=2 style="text-align:right" , 33 , rowspan=2 style="text-align:right" , 53 , rowspan=2, 85.93650(32)# , rowspan=2, 0.945(8) s , β (67%) , 86Se , rowspan=2, , rowspan=2, , rowspan=2, , - , β, n (33%) , 85Se , - , rowspan=2, 87As , rowspan=2 style="text-align:right" , 33 , rowspan=2 style="text-align:right" , 54 , rowspan=2, 86.93990(32)# , rowspan=2, 0.56(8) s , β (84.6%) , 87Se , rowspan=2, 3/2−# , rowspan=2, , rowspan=2, , - , β, n (15.4%) , 86Se , - , rowspan=2, 88As , rowspan=2 style="text-align:right" , 33 , rowspan=2 style="text-align:right" , 55 , rowspan=2, 87.94494(54)# , rowspan=2, 300# ms
300 ns, β , 88Se , rowspan=2, , rowspan=2, , rowspan=2, , - , β, n , 87Se , - , 89As , style="text-align:right" , 33 , style="text-align:right" , 56 , 88.94939(54)# , 200# ms
300 ns, β , 89Se , 3/2−# , , , - , 90As , style="text-align:right" , 33 , style="text-align:right" , 57 , 89.95550(86)# , 80# ms
300 ns, , , , , , - , 91As , style="text-align:right" , 33 , style="text-align:right" , 58 , 90.96043(97)# , 50# ms
300 ns, , , 3/2−# , , , - , 92As , style="text-align:right" , 33 , style="text-align:right" , 59 , 91.96680(97)# , 30# ms
300 ns, , , , ,


References

* Isotope masses from: ** * Isotopic compositions and standard atomic masses from: ** ** * Half-life, spin, and isomer data selected from the following sources. ** ** ** * A.Shore, A. Fritsch, M. Heim, A. Schuh, M. Thoennessen. ''Discovery of the Arsenic Isotopes.'
arXiv:0902.4361


External links

{{Authority control Arsenic
Arsenic Arsenic is a chemical element with the symbol As and atomic number 33. Arsenic occurs in many minerals, usually in combination with sulfur and metals, but also as a pure elemental crystal. Arsenic is a metalloid. It has various allotropes, ...