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Radioactivity / Nuclear chemistry / Chemical elements / Transition metals / Nuclear isomer / Induced gamma emission / Nuclear fission / Nuclear reaction / Neutron / Physics / Nuclear physics / Particle physics


LLNL-TR[removed]Theoretical Assessment of 178m2Hf De-Excitation E. P. Hartouni, M. Chen, M. A. Descalle, J. E. Escher,
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Document Date: 2009-01-09 02:35:07


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File Size: 1,89 MB

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Livermore / /

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Lawrence Livermore National Laboratory / Tzu-Fang Wang Lawrence Livermore National Laboratory / Lawrence Livermore National Security LLC / Nuclear Storage Systems / Energy Release Systems / /

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United States / /

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Music Album Release / /

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energy levels / neutron energy / energy recovery / energy band / energy producing systems / chemical systems / mass-energy equivalence / stored energy / nuclear isomer systems / energy storage / particular physical systems / high energy beam / energy cost / energy storage schemes / energy densities / energy density / higher energy / storage technologies / energy regions / little additional energy / large scale processing / nuclear level energy / high energy expense / large energy / physical systems / The energy storage capacity / high rotational energy / energy density system / energy / /

MusicAlbum

Multiplication / /

Organization

U.S. Department of Energy / United States government / /

Person

Ian J. Thompson / Petr Navratil / Marie-Anne Descalle / Jutta E. Escher / Jason Pruet / Edward P. Hartouni / Alex Loshak / W. Erich Ormand / /

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Executive / /

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TNT / /

ProvinceOrState

California / /

Technology

laser / X-ray / lasers / energy storage technologies / /

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