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Department of Physics, Faculty of Science, Kyoto University | 論文
- Tables Useful for the Calculation of the Molecular Integrals VI
- Frost Heaving Phenomena in Helium : I. QUANTUM LIQUIDS AND SOLIDS : He in Restricted Geometry
- Iron and Nickel Line Diagnostics for the Galactic Center Diffuse Emission
- Group Theoretical Classification of Solutions of the Unrestricted Hartree-Fock Equation in Molecular Systems with a Spatial Point Symmetry
- Low Frequency Instability in Plasmas Produced by a Local Electron Cyclotron Resonance
- Observation of High Frequency Instability in Plasmas Produced by Local Electron Cyclotron Resonance
- Clusters of Basic Amino Acids in Midkine: Roles in Neurite-Promoting Activity and Plasminogen Activator-Enhancing Activity^1
- Enzyme-Linked Immunoassay for Midkine, and Its Application to Evaluation of Midkine Levels in Developing Mouse Brain and Sera from Patients with Hepatocellular Carcinomas
- Subaru Deep Near-Infrared Imaging of the Field of a Possible Proto-Cluster Near the Radio Galaxy 53W002 at z = 2.4
- Chandra Observation of the Starburst Galaxy NGC 2146
- Optical Study of the Triplet State in NaNO_2 Crystals : Excitonic Aspects of Phosphorescence Spectra
- Resonating Hartree-Fock Studies on Electronic Structures of Excited States in the One Dimensional Bond Alternated Hubbard Model
- Resonating Hartree-Fock Studies on Electron Correlation and Bond Alternation in the One Dimensional Half Filled Hubbard Model
- 1-4 μm Spectroscopy of Very Red Stars Found in an I-Band Objective Prism Survey
- Application of the Improper Hartree-Bogoliubov Formalism to the Schematic Model of Odd Nuclei
- A Variational Foundation of the Improper Hartree-Bogoliubov Formalism
- A New Fermion Many-Body Theory Based on the SO(2N+1) Lie Algebra of the Fermion Operators
- Superpolaron Model for Metallic Polyacetylene
- Resonating Hartree-Fock Theory of the One Dimensional Hubbard Model.I.Quantum Fluctuations by SDW Solitons and Breathers
- Energy Band and Lattice Structures of Trigonal Se and Te in the Vector Charge Density Wave Model : Condensed Matter and Statistical Physics