Kaneko Shobu | Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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概要
関連著者
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Kaneko Shobu
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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KANEKO Shobu
Department of Applied Physics,Faculty of Engineering The University of Tokyo
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Kaneko S
Univ. Tokyo
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KAMITANI Atsushi
Department of Electrical and Information Engineering,Faculty of Engineering,Yamagata University
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Kamitani Atsushi
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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Kihara Taro
Department Of Physics Faculity Of Science University Of Tokyo
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Tsutsui Hiroaki
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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アナッシュ W.
千葉大学工学部
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田口 政義
日大生産工
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宮嵜 武
電気通信大学電気通信学研究科
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Takata M
Department Of Physics Division Of Material Science Nagoya University
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TAGUCHI Masayoshi
Department of Applied Physics,Faculty of Engineering The University of Tokyo
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Miyazaki Takeshi
Research Information Center Institute Of Plasma Physics Nagoya University:hitachi Ltd. Kodaira
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Taguchi Masayoshi
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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MIYAZAKI Takeshi
Department of Neurosurgery, Faculty of Medicine, Shimane University
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TSUTSUI Hiroaki
Department of Applied Physics,Faculty of Engineering The University of Tokyo
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KIHARA Taro
Department of Physics, Faculty of Science, University of Tokyo
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Miyazaki Takeshi
Department Of Neurosurgery Faculty Of Medicine Shimane University
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Miyazaki Takeshi
Department Of Materials Science And Technology Nagaoka University Of Technology
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Miyazaki Takeshi
Department of Applied Chemistry, Faculty of Engineering, Osaka University
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Taniguchi Masaki
Grad. Sch. Sci. Hiroshima Univ.:hsrc Hiroshima Univ.
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TAKIMOTO AKIO
Department of Fermentation Technology, Faculty of Engineering, Osaka University
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Kaneko Shobu
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Takimoto Akio
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo:central Research Labora
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ARAI Shigeru
Department of Pathology 1, Yamagata University School of Medicine.
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UYAMA Tadao
Department of Electrical Engineering,Faculty of Engineering,Himeji Institute of University
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Uyama Tadao
Department Of Electrical Engineering Faculty Of Engineering Himeji Institute Of Technology
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Kaneko Shobu
Department Of Physics Faculty Of Science University Of Tokyo
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Takimoto Akio
Bioprocess Program Process R&d Laboratories Shionogi & Co.ltd.
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Takimoto Akio
Central Research Laboratories Matsushita Electric Industrial Co. Ltd.
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WATANABE Kenji
Course of Electromagnetic Energy Engineering,Osaka University
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HIROTA Isao
Energy Technology Division, Electrotechnical Laboratory, AIST, MITI
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Takimoto A
Bioprocess Program Process R&d Laboratories Shionogi & Co.ltd.
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MIDZUNO Yukio
Department of Physics, Faculty of Science, University of Tokyo
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Arai Shigeru
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Midzuno Yukio
Department Of Physics Faculty Of Science University Of Tokyo
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TSUNEMATSU Toshihide
Department of Applied Physics, Faculty of Engineering, University of Tokyo
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Hirota Isao
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo:electrotechnical Labora
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Tsutsui Hiroaki
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Tsunematsu Toshihide
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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Chiyoda Katsuji
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo:electrotechnical Labora
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Wang Yi
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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Kaneko S.
Department of Neurology,Kitano Hospital
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Watanabe Kenji
Course Of Electomagnetic Energy Engineering Faculty Of Engineering Osaka University
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UYAMA Tadao
Department of Electrical Engineering, Faculty of Engineering, Himeji Institute of Technology
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Kamitani Atsushi
Department of Applied Physics, Faculty of Engineering, The University of Tokyo
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TAGUCHI Munetaka
RIKEN/SPring-8
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Wang Yi
Department Of Clinical Laboratory Medicine Jichi Medical School
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Miyazaki Takeshi
Hitachi Ltd. Kodaira city
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Takeda Tatsuoki
Division Of Thermonuclear Fusion Research Naka Fusion Research Establishment Japan Atomic Energy Res
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Kaneko Shobu
Department Of Physics And Astronomy The University Of Tennessee:(present Address) Department Of Appl
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Yamao Akihiro
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo:fuchu Works Toshiba Cor
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Chiyoda Katsuji
Electrotechnical Laboratory
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Hirota Isao
Electrotechnical Laboratory, AIST, MITI
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TSUNEMATSU Toshihide
Division of Thermonuclear Fusion Research,Naka Fusion Research Establishment,Japan Atomic Energy Res
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TOKUDA Sinji
Division of Thermonuclear Fusion Research,Naka Fusion Research Establishment,Japan Atomic Energy Res
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MIYAUCHI Yasuyuki
Department of Applied Physics, Faculty of Engineering, University of Tokyo
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Yi Ping
Department of Applied Physics,Faculty of Engineering,The University of Tokyo
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CHIYODA Katsuji
Department of Applied Physics,Faculty of Engineering,The University of Tokyo
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HIROTA Isao
Department of Applied Physics,Faculty of Engineering,The University of Tokyo
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Tokuda Sinji
Division Of Thermonuclear Fusion Research Naka Fusion Research Establishment Japan Atomic Energy Res
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Kihara Taro
Department Of Physics University Of Tokyo
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Kamitani Atsushi
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Tsunematsu T
Division Of Thermonuclear Fusion Research Naka Fusion Research Establishment Japan Atomic Energy Res
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Tsunematsu Toshihide
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Yi Ping
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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KOBA Saburo
Department of Physics, Faculty of Science, University of Tokyo
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Koba Saburo
Department Of Physics Faculty Of Science University Of Tokyo
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Koba Saburo
Department Of Physics Faculty Of Scicnce University Of Tokyo
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Miyauchi Yasuyuki
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Kaneko Shobu
Department Of Physics University Of Tokyo
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KANEKO Shobu
Department of Applied Physics,Faculty of Engineering,University of Tokyo
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Kaneko Shobu
Department of Applied Physics, Faculty of Engineering, University of Tokyo
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Kaneko S.
Department of Physics, Faculty of Science, University of Tokyo
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TSUTSUI Hiroaki
Department of Applied Physics, Faculty of Engineering, The University of Tokyo
著作論文
- Magnetohydrodynamic Stability of Spheromak Plasma in Toroidal Flux Conserver with Rectangular Cross Section.II.Application of Mercier Criterion
- Magnetohydrodynamic Stability of Spheromak Plasma in Toroidal Flux Conserver with Rectangular Cross Section. II. Application of Mercier Criterion
- Magnetohydrodynamic Stability of Spheromak Plasma in Toroidal Flux Conserver with Rectangular Cross Section
- Magnetohydrodynamic Equilibrium and Stability of Spheromak Plasma in Flux Conserver
- Magnetohydrodynamic Equilibrium and Stability of Spheromak Plasma in Flux Conserver
- Stability Analysis of Spheromak by ERATO-J Code against Internal Modes
- Stability of Force-Free Spheromak Plasma in Spheroidal Flux Conserver
- Viscosity Coefficients of a Plasma in a Strong Magnetic Field : Application of the Quantum Mechanical Unified Theory
- The Maximum Disturbance Growth Rate for an Unstable Plasma Column
- Necessary and Sufficient Condition for Hydromagnetic Stability of the Bennett Pinch. II. : Finite-Radius Pinch
- Transport Coefficients of Plasmas in a Magnetic Field
- Necessary and Sufficient Condition for Hydromagnetic Stability of the Bennett Pinch. : III. Reverse B_z Pinch
- Oscillator Strength Sums and van der Waals Constants of Closed Shell Atoms from the Hartree-Fock Wave Functions
- Second Virial Coefficient of Helium from the Square-well Potential
- Complementary Variational Principles on Electrical Conductivities of a Plasma in a Unifrom Magnetic Field
- Necessary and Sufficient Condition for Hydromagnetic Stability of the Bennett Pinch
- Thermal Conductivities and Coefficients of Thermal Diffusion of a High-Temperature Plasma in a Uniform Magnetic Field
- Magnetohydrodynamic Stability of Spheromak Plasma in Toroidal Flux Conserver with Rectangular Cross Section III Stability for Symmetric Modes
- Magnetohydrodynamic Equilibrium and Stability of Spheromak by Boundary-Fitted Curvilinear Coordinate System-Improvement of Plasma Confinement by External Coil-
- Magnetohydrodynamic Equilibrium and Stability of Spheromak by Boundary-Fitted Curvilinear Coordinate System : Improvement of Plasma Confinement by External Coil
- Magnetohydrodynamic Stability pd Spheromak Palsma ib Spheroidal Flux Vonxernver-Application of Mercier Criterion-
- Magnetohydrodynamic Equilibrium and Stability of Spheromak with Spheroidal Plasma-Vacuum Interface
- Magnetohydrodynamic Equilibrium and Stability of Spheromak with Spheroidal Plasma-Vacuum Interface
- Temperature Variation of Mayer's Cluster Integrals
- Transport Properties of Plasmas in a Strong Magnetic Field
- Virial Coefficients and Intermolecular Potential for Small Nonspherical Molecules
- Magnetohydrodynamic Equilibrium with Spheroidal Plasma-Vacuum Interface : Compact Toroid without Toroidal Magnetic Field
- Magnetohydrodynamic Equilibrium with Prolate Spheroidal Plasma-Vacuum Interface
- Magnetohydrodynamic Equilibrium Comfiguration by Body-Fitted Curvilinear Coordinate System : Application to Spheromak
- Electric Dipole Polarizabilities and Dipole Shielding Factors of Neon, Magnesium and Argon Atoms from the Hartree-Fock Wave Functions
- Magnetohydrodynamic Stability of Spheromak Plasma in Toroidal Flux Conserver with Rectangular Cross Section III. Stability for Symmetric Modes
- Stability of Spheroidal Spheromak Plasma by use of Force-Free Approximation
- Confirmation of the Existence of a Helium Double-Molecule
- Non-additive Intermolecular Potential in Gases : II. Cluster Integrals
- Electrical Polarizabilities of Rare Gas Atoms by the Hartree-Fock Wave Functions
- Viscosity Coefficient of a Plasma in a Magnetic Field
- Transport Coefficients of a Magnetoplasma in an Alternating Electric Field