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Michael L. Klein

  1. Constant pressure molecular dynamics algorithms
    1994/09/01 by Glenn Martyna, Douglas J. Tobias, Michael L. Klein · 1 voice · 32 citations
    Biochemistry, Genetics and Molecular Biology · Earth and Planetary Sciences · Materials Science · #High-pressure geophysics and materials #Material Dynamics and Properties #Protein Structure and Dynamics
  2. Constant pressure molecular dynamics for molecular systems
    1983/12/10 by Shūichi Nosé, Shuichi Nosé, Michael L. Klein +1 · 23 citations
    Earth and Planetary Sciences · Physics and Astronomy · Chemistry · #High-pressure geophysics and materials #Advanced Chemical Physics Studies #Crystallography and molecular interactions
  3. Pairwise additive effective potentials for nitrogen
    1980/12/20 by Ch. S. N. Murthy, C.S. Murthy, K. Singer +4 · 2 citations
    Chemistry · Earth and Planetary Sciences · Physics and Astronomy · #Chemical Thermodynamics and Molecular Structure #High-pressure geophysics and materials #Advanced Chemical Physics Studies
  4. Modeling liquid water by climbing up Jacob's ladder in density functional theory facilitated by using deep neural network potentials
    2021/04/29 by Chunyi Zhang, Fujie Tang, Zhang, Chunyi +13 · 3 citations
    Physics and Astronomy · Materials Science · #Spectroscopy and Quantum Chemical Studies #Quantum, superfluid, helium dynamics #Machine Learning in Materials Science
  5. Evidence of association ofAPOEwith age-related macular degeneration - a pooled analysis of 15 studies
    2011/09/01 by Gareth J. McKay, Chris Patterson, Chris C. Patterson +56 · 1 citation
    Medicine · #Glaucoma and retinal disorders #Retinal Diseases and Treatments #Retinal Imaging and Analysis
  6. SCAN: An Efficient Density Functional Yielding Accurate Structures and Energies of Diversely-Bonded Materials
    2015/11/03 by Jianwei Sun, Richard C. Remsing, Sun, Jianwei +21 · 1 citation
    Materials Science · #Boron and Carbon Nanomaterials Research #FOS: Physical sciences #Graphene research and applications #MXene and MAX Phase Materials #Materials Science (cond-mat.mtrl-sci)