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  1. Classifying superheavy elements by machine learning
    2019/02/08 by Sheng Gong, Wei Wu, Fancy Qian Wang +6 · 1 citation
    Materials Science · Chemistry · #Machine Learning in Materials Science #History and advancements in chemistry #X-ray Diffraction in Crystallography #Superheavy Elements #Atomic theory #Enhanced Data Rates for GSM Evolution #Physics #Atomic number #Atomic physics #Artificial intelligence #Nuclear physics #Computer science
  2. About islands of stability and limiting mass of the atomic nuclei
    2018/12/14 by В. С. Окунев · 1 citation
    Physics and Astronomy · #Nuclear physics research studies #Astronomical and nuclear sciences #Nuclear Physics and Applications #Mass number #Atomic number #Magic number (chemistry) #Neutron #Limiting #Neutron number #Isotope #Physics #Nuclear physics #Half-life #Atomic physics #Neutron temperature #MAGIC (telescope) #Neutron cross section #Astrophysics #Biology
  3. Blackbody radiation shift assessment for a lutetium ion clock
    2017/12/31 by K. J. Arnold, Kyle J. Arnold, Rattakorn Kaewuam +6 · 1 citation
    Medicine · Physics and Astronomy · #Advanced Frequency and Time Standards #Atomic and Subatomic Physics Research #Atomic clock #Atomic number #Atomic physics #Black-body radiation #Cardiovascular Syncope and Autonomic Disorders #Ion #Ionization #Lutetium #Materials science #Molecule #Optics #Physics #Polarizability #Quantum mechanics #Radiation #Scalar (mathematics) #physics.atom-ph #quant-ph
  4. A new assessment of the alleged link between element 115 and element 117 decay chains
    2016/07/09 by U. Forsberg, D. Rudolph, C. Fahlander +8 · 6 citations
    Physics and Astronomy · #Nuclear physics research studies #Radioactive Decay and Measurement Techniques #Nuclear Physics and Applications #Physics #Element (criminal law) #Link (geometry) #Decay chain #Isotope #Nuclear physics #Heavy element #Atomic number #Atomic physics #Particle physics #Computer science #Astrophysics #Law
  5. The highest limitingZin the extended periodic table
    2015/11/18 by Y. K. Gambhir, A. Bhagwat, Meenakshi Gupta · 1 citation
    Physics and Astronomy · #Nuclear physics research studies #Astronomical and nuclear sciences #Atomic and Molecular Physics #Physics #Limiting #Nuclear binding energy #Limit (mathematics) #Nucleon #Fission #Atomic physics #Periodic table #Nuclear physics #Atomic number #Ground state #Quantum mechanics #Neutron
  6. Chemistry of the superheavy elements
    2015/02/10 by M. Schädel · 8 citations
    Physics and Astronomy · Chemistry · #Nuclear physics research studies #Astronomical and nuclear sciences #Atomic and Molecular Physics #Element (criminal law) #Superheavy Elements #Periodic table #Heavy element #Relativistic quantum chemistry #Atom (system on chip) #Atomic number #Electron #Physics #Chemistry #Atomic physics #Nuclear physics #Quantum mechanics #Astrophysics #Computer science #Law
  7. Are MCDF calculations 101% correct in the super-heavy elements range?
    2011/01/25 by P. Indelicato, Paul Indelicato, Jacek Bieroń +1 · 4 citations
    Physics and Astronomy · #Advanced Chemical Physics Studies #Atomic and Molecular Physics #Atomic number #Atomic physics #Electron #Ground state #Heavy element #Ion #Ionization #Ionization energy #Materials science #Nuclear physics research studies #Periodic table #Physics #Quantum mechanics #Range (aeronautics)
  8. Mean free path of inelastic electron scattering in elemental solids and oxides using transmission electron microscopy: Atomic number dependent oscillatory behavior
    2008/03/05 by Konstantin Iakoubovskii, Kazutaka Mitsuishi, Yoshiko Nakayama +1 · 3 citations
    Materials Science · Physics and Astronomy · #Electron and X-Ray Spectroscopy Techniques #Advanced Chemical Physics Studies #Surface and Thin Film Phenomena #Mean free path #Atomic physics #Electron #Physics #Inelastic scattering #Scattering #Atomic number #Atom (system on chip) #Transmission electron microscopy #Lambda #Scanning transmission electron microscopy #Free electron model #Condensed matter physics #Materials science #Molecular physics #Optics #Quantum mechanics
  9. Transactinide Elements and Future Elements
    2007/12/31 by Darleane C. Hoffman, Diana M. Lee, Valeria Pershina +1 · 2 citations
    Engineering · Physics and Astronomy · #Advanced Chemical Physics Studies #Atom (system on chip) #Atomic and Molecular Physics #Atomic number #Element (criminal law) #Engineering #Identification (biology) #Law #Nuclear physics #Nuclear physics research studies #Physics #Superheavy Elements #Theoretical physics
  10. The Second Born Corrections to the Electrical and Thermal Conductivities of Dense Matter in the Liquid Metal Phase
    2007/08/31 by Naoki Itoh, Shinsuke Uchida, Yu Sakamoto +2 · 1 citation
    Chemistry · Earth and Planetary Sciences · Engineering · Physics and Astronomy · #Atomic number #Atomic physics #Born approximation #Chemical Thermodynamics and Molecular Structure #Computational physics #Coulomb #Electron #Electron scattering #High-pressure geophysics and materials #Nuclear physics #Phase (matter) #Physics #Quantum mechanics #Random phase approximation #Scattering #Thermal #Thermodynamic and Structural Properties of Metals and Alloys #Thermodynamics #astro-ph
  11. Spin–orbit effects on the transactinide p-block element monohydrides MH (M=element 113–118)
    2000/02/08 by Young‐Kyu Han, Cheolbeom Bae, Sang-Kil Son +1 · 5 citations
    Physics and Astronomy · Chemistry · Materials Science · #Advanced Chemical Physics Studies #Inorganic Chemistry and Materials #Hydrogen Storage and Materials #Bond length #Atomic physics #Dissociation (chemistry) #Bond-dissociation energy #Spin–orbit interaction #Open shell #Molecular orbital #Atomic orbital #Atomic number #Molecule #Valence (chemistry) #Chemistry #Physics #Physical chemistry #Condensed matter physics #Electron #Nuclear physics
  12. Electromagnetic isotope separation at the China Institute of Atomic Energy
    1992/08/01 by Li Gongpan, Lin Zhizhou, Xiang Xuyang +1 · 1 citation
    Chemistry · Engineering · Environmental Science · Medicine · Physics and Astronomy · #Atomic energy #Atomic mass #Atomic number #Atomic physics #Boron Compounds in Chemistry #Chemical Synthesis and Characterization #Chemistry #Engineering #Heavy ion #Ion #Isotope #Isotope separation #Magnetic separation #Materials science #Metallurgy #Nuclear Physics and Applications #Nuclear engineering #Nuclear physics #Physics #Radiochemistry
  13. Electromagnetic separation of stable isotopes at the Institute of Atomic Energy, Academia Sinica
    1981/07/01 by Hua Ming-da, Li Gongpan, Li Gong-pan +4 · 1 citation
    Engineering · Physics and Astronomy · #Astro and Planetary Science #Atomic energy #Atomic number #Atomic physics #Engineering physics #Isotope #Isotope separation #Nuclear Physics and Applications #Nuclear physics #Particle accelerators and beam dynamics #Philosophy #Physics #Quantum mechanics #Work (physics)
  14. SCF Dirac–Slater Calculations of the Translawrencium Elements
    1969/07/15 by J. T. Waber, D. T. Cromer, David A. Liberman · 3 citations
    Physics and Astronomy · Chemistry · #Rare-earth and actinide compounds #Nuclear physics research studies #Advanced Chemical Physics Studies #Atomic number #Series (stratigraphy) #Atomic physics #Dirac (video compression format) #Range (aeronautics) #Ground state #Relativistic quantum chemistry #Physics #Chemistry #Quantum mechanics #Materials science #Geology
  15. Atomic Units
    1959/11/01 by H. SHULL, Harrison Shull, G. G. Hall +1 · 1 citation
    Chemistry · Mathematics · #Atomic mass #Atomic number #Atomic physics #Bohr model #Bohr radius #Computer science #Confusion #Electron #History and advancements in chemistry #Mathematics #Physics #Quantum #Quantum mechanics #Statistics #Symbol (formal) #Theoretical physics #Unit (ring theory) #Value (mathematics) #Various Chemistry Research Topics