The interplay of nuclear and atomic physics in the synthesis of the elements [electronic resource]
In many astronomical environments, physical conditions are so extreme that matter is almost completely ionized. The absence of bound atomic electrons can dramatically alter the decay rates of a number of radioactive nuclei. Several examples of this interplay of nuclear and atomic physics relevant to...
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Corporate Authors: | , |
Format: | Government Document Electronic eBook |
Language: | English |
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Berkeley, Calif. : Oak Ridge, Tenn. :
Lawrence Berkeley National Laboratory ; distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy,
1989.
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Subjects: |
MARC
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245 | 0 | 4 | |a The interplay of nuclear and atomic physics in the synthesis of the elements |h [electronic resource] |
260 | |a Berkeley, Calif. : |b Lawrence Berkeley National Laboratory ; |a Oak Ridge, Tenn. : |b distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy, |c 1989. | ||
300 | |a Pages: 15 : |b digital, PDF file. | ||
336 | |a text |b txt |2 rdacontent. | ||
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338 | |a online resource |b cr |2 rdacarrier. | ||
500 | |a Published through the Information Bridge: DOE Scientific and Technical Information. | ||
500 | |a 03/01/1989. | ||
500 | |a "lbl-27392" | ||
500 | |a " conf-890387-7" | ||
500 | |a "DE89016305" | ||
500 | |a Workshop on highly charged ions: new physics and advanced techniques, Berkeley, CA, USA, 13-15 Mar 1989. | ||
500 | |a Norman, E.B. | ||
520 | 3 | |a In many astronomical environments, physical conditions are so extreme that matter is almost completely ionized. The absence of bound atomic electrons can dramatically alter the decay rates of a number of radioactive nuclei. Several examples of this interplay of nuclear and atomic physics relevant to the synthesis of the chemical elements are described. 16 refs., 4 figs. | |
536 | |b AC03-76SF00098. | ||
650 | 7 | |a Beta Decay Radioisotopes. |2 local. | |
650 | 7 | |a Nuclear Decay. |2 local. | |
650 | 7 | |a Days Living Radioisotopes. |2 local. | |
650 | 7 | |a Heavy Nuclei. |2 local. | |
650 | 7 | |a Beryllium Isotopes. |2 local. | |
650 | 7 | |a Alkaline Earth Isotopes. |2 local. | |
650 | 7 | |a Rhenium Isotopes. |2 local. | |
650 | 7 | |a Beta-minus Decay Radioisotopes. |2 local. | |
650 | 7 | |a Electron Capture. |2 local. | |
650 | 7 | |a Nucleosynthesis. |2 local. | |
650 | 7 | |a Lutetium 176. |2 local. | |
650 | 7 | |a Electron Capture Radioisotopes. |2 local. | |
650 | 7 | |a Stellar Activity. |2 local. | |
650 | 7 | |a Even-odd Nuclei. |2 local. | |
650 | 7 | |a Stable Isotopes. |2 local. | |
650 | 7 | |a Manganese 54. |2 local. | |
650 | 7 | |a Isotopes. |2 local. | |
650 | 7 | |a Rare Earth Nuclei. |2 local. | |
650 | 7 | |a Years Living. |2 local. | |
650 | 7 | |a Intermediate Mass Nuclei. |2 local. | |
650 | 7 | |a Odd-even Nuclei. |2 local. | |
650 | 7 | |a Odd-odd Nuclei. |2 local. | |
650 | 7 | |a Synthesis. |2 local. | |
650 | 7 | |a Decay. |2 local. | |
650 | 7 | |a Lutetium Isotopes. |2 local. | |
650 | 7 | |a Manganese Isotopes. |2 local. | |
650 | 7 | |a Capture. |2 local. | |
650 | 7 | |a Beryllium 7. |2 local. | |
650 | 7 | |a Ionization. |2 local. | |
650 | 7 | |a Rare Earth Isotopes. |2 local. | |
650 | 7 | |a Rhenium 187. |2 local. | |
650 | 7 | |a Internal Conversion Radioisotopes. |2 local. | |
650 | 7 | |a Light Nuclei. |2 local. | |
650 | 7 | |a Nuclei. |2 local. | |
650 | 7 | |a Years Living Radioisotopes. |2 local. | |
650 | 7 | |a Radioisotopes. |2 local. | |
650 | 7 | |a Hours Living Radioisotopes. |2 local. | |
650 | 7 | |a Classical And Quantum Mechanics, General Physics. |2 edbsc. | |
710 | 2 | |a Lawrence Berkeley Laboratory. |4 res. | |
710 | 2 | |a Lawrence Berkeley National Laboratory. |4 res. | |
710 | 1 | |a United States. |b Department of Energy. |b Office of Scientific and Technical Information. |4 dst. | |
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