YONEZAWA Fumiko | Department of Phsics, Keio University
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概要
関連著者
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YONEZAWA Fumiko
Department of Phsics, Keio University
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Yonezawa Fumiko
Department Of Applied Physics Tokyo Institute Of Technology
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YAMAGUCHI Toshio
Department of Physics, Tokyo Women's Medical University
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Yamaguchi Toshio
Department Of Chemistry Faculty Of Science Fukuoka University
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Yamaguchi Tomohiko
Department Of Chemical Systems National Institute Of Materials And Chemical Research (nimc)
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Tsuyoshi Yamaguchi
Faculty Of Engineering Shizuoka University
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Yamaguchi Takahide
Department Of Physics Graduate School Of Science The University Of Tokyo
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Yonezawa F
Department Of Physics Keio University
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Yamaguchi Toshihisa
Department Of Applied Physics Chubu Institute Of Technology
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Yamaguchi Toshio
Department of Chemical Engineering, Tokyo University of Agriculture and Technology
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Koga Junichiro
Department Of Physics Keio University
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Koga J
Department Of Physics Keio University
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NISHIO Kengo
Department of Physics, Keio University
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Nishio Kengo
Department Of Physics Keio University
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OHTANI Hiroaki
Department of Phsics, Keio University
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大谷 寛明
核融合科学研究所シミュレーション科学研究部新領域シミュレーション研究系:総合研究大学院大学物理科学研究科
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Saeki Akira
Department Of Physics Keio University
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Saeki Akira
Department Of Physics Faculty Of Science Shizuoka University
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Saeki Akira
Department of Physics, Keio University
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大谷 寛明
核融合科学研究所シミュレーション科学研究部
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大谷 寛明
核融合研
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Yonezawa Fumiko
Department Of Physics Faculty Of Science And Technology Keio University
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TERAMOTO Takashi
Department of Physics, Keio University
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Teramoto T
Hokkaido Univ. Sapporo
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Teramoto Takashi
Department Of Physics Keio University
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Teramoto Takashi
Department of Mechanical Engineering, Tokyo Institute of Technology
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OMATA Kazumi
Department of Medical Ecology and Informatics, Research Institute, International Medical Center of J
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MORI Hiroyuki
Department of Hematology and Molecular Medicine Unit, Atomic Bomb Disease Institute, Nagasaki Univer
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Mori Hiroyuki
Department Of Biological Information Graduate School Of Bioscience And Biotechnology Tokyo Institute
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Nagao Tatsuya
Department Of Physics Faculty Of Science And Technology Keio University
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OGAWA Tohru
Institute of Applied Physics, University of Tsukuba
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OHTANl Hiroaki
Department of Physics, Keio University
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Ogawa Tohru
Institute Of Applied Physics University Of Tsukuba
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MORIGAKI Kazuo
Institute for Solid State Physics, University of Tokyo
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Omata Kazumi
Department Of Medical Ecology And Informatics Research Institute International Medical Center Of Jap
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Omata Kazumi
Department Of Physics Faculty Of Science And Technology Keio University
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Ohtanl Hiroaki
Department Of Physics Keio University
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Morigaki Kazuo
Institute For Solid State Physics University Of Tokyo
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Yonezawa Fumiko
Department Of Physics The City College Of Cuny
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Okumura Hisashi
Department Of Physics Keio University
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Nakamura Mitsunobu
Department Of Electronic Engineering Tamagawa University
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Nakamura Mitsunobu
Department Of Physics Kyoto University
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IWASAKI Yuishi
Department of Systems Engineering,Faculty of Engineering,Ibaraki University
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Iwasaki Yuishi
Department Of Intelligent System Engineering Faculty Of Engineering Ibaraki University
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Iwasaki Yuishi
Department Of Systems Engineering Faculty Of Engineering Ibaraki University
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Mori Hiroyuki
Department Of Materials Science Faculty Of Science Hiroshima University
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Yamaguchi Toshio
Department Of Physics Faculty Of Science And Technology Keio University
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Morigaki Kazuo
Institute For Solid Stale Physics University Of Tokyo
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OHTANI Hiroaki
Department of Physics, Keio University
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YONEZAWA Fumiko
Department of Physics, The City College of CUNY
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NAGAO Tatsuya
Department of Materials Science and Technology, Nagaoka University of Technology
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YAMAGUCHI Toshio
Department of Physics, Tokyo Women's Medical University
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YONEZAWA Fumiko
Department of Applied Physics, Tokyo Institute of Technology
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MORI Hiroyuki
Department of Agricultural Chemistry, Kochi University
著作論文
- Structural and Electronic Properties of Expanded Selenium in the Liquid-Vapor Supercritical Region
- Nonmetal-Metal Transition in Expanded Selenium by the Spin Density Functional Method : Condensed Matter: Electronic Properties, etc.
- Nonmetal-Metal Transitions of Expanded and Compressed Selenium near the Liquid-Vapor Critical Point and under High Pressure
- Confinement-Induced Stable Amorphous Solid of Lennard-Jones Argon (Condensed Matter: Structure, Mechanical and Thermal Properties)
- Tight-Binding Molecular Dynamics Study on the Structural Change of Amorphous Germanium with the Increase of Density (Condensed Matter : Structure, Mechanical and Thermal Properties)
- Order N Non-Orthogonal Tight-Binding Molecular Dynamics and its Application to the Study of Glass Transition in Germanium(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Order N Non-Orthogonal Tight-Binding Molecular Dynamics and its Application to the Study of Glass Transition in Germanium
- Tight-Binding Electronic State Calculations of Silicon Nanostructures with Local Disorders : Origin of The 'F' Band Luminescence From Porous Silicon
- Electronic Properties of Low-Dimensional Si Nanostructures. I. Local Electronic Probabilities : Condensed Matter: Electronic Properties, etc.
- Metal-Nonmetal Transitions in Expanded Fluids : Electronic and Thermodynamic Properties
- Metal-Nonmetal Transition in Doped Semiconductors (Selected Topics in Semiconductor Physics) -- (Phase Transition)
- Numerical Study of the Finger Instability in Wetting Phenomena:Growth of the Fingers
- Early Stage Process of Pattern Formation Phenomena
- Fluctuations of Membranes near the Lamellar-Gyroid Transition Point
- Fast Numerical Scheme for Finding Equilibrium Patterns : Cross-Disciplinary Physics
- A Phenomenological Model for the Critical Temperature of Layered Superconductors
- A Theoretical Approach to the Optical Gaps of 1D- and 3D-Se_Te_x
- Expansion Type of Model Fluids : Condensed Matter: Structure, etc.
- Numerical Study on Error Catastrophe of Adaptive Mutants and Their Stability
- A Systematic Approach to the Problems of Random Lattices. II : A Double-Site Approximation and an Application to the Calculation of Frequency Spectra of Disordered Systems