Ogasawara Masatada | Faculty Of Engineering Keio University
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概要
関連著者
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Ogasawara Masatada
Faculty Of Engineering Keio University
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Hatayama Akiyoshi
Faculty Of Engineering Keio University
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Ogasawara Masatada
Faculty of Science and Technology, Keio University
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Fukano Azusa
Faculty Of Science And Technology Keio University
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Fukano Azusa
Faculty of Science and Technology, Keio University
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Fukano A
Tokyo Metropolitan Coll. Technol. Tokyo Jpn
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Ogasawara M
Keio Iniv. Yokohama
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KOSHI Yuji
Faculty of Engineering, Keio University
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Hirao Akinari
Faculty Of Engineering Keio University
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Koshi Yuji
Faculty Of Engineering Keio University
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Sentoku Y
Osaka Univ. Osaka
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Sentoku Yasuhiko
Faculty Of Science And Technology Keio University
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Hatayama Akiyoshi
Research Information Center Institute Of Plasma Physics Nagoya University:faculty Of Science And Eng
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Ogasawara Masatada
Research Information Center Institute Of Plasma Physics Nagoya University:faculty Of Science And Eng
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HIRAO Akinari
Faculty of Engineering,Keio University
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MORI Sigehiko
Faculty of Engineering, Keio University
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Mori Sigehiko
Faculty Of Engineering Keio University
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Koshi Yuji
Research Information Center Institute Of Plasma Physics Nagoya University:faculty Of Science And Eng
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Hayashi Nobuhiko
Naka Fusion Research Establishment Japan Atomic Energy Research Institute
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Hatayama Akiyoshi
Faculty of Science and Technology, Keio University
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Takizuka Tomonori
Naka Fusion Research Establishment Japan Atomic Energy Research Institute
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Aono Osamu
Department Of Phycics Faculty Of Science University Of Tokyo
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Hatayama A
Keio Univ.
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Fukano Azusa
Tokyo Metropolitan College Of Technology
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Ogasawara Masatada
Faculty Of Science And Technology Keio University
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Ishihara Michiaki
Faculty Of Science And Technology Keio University
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Sugihara Masayoshi
Division Of Large Tokamak Development Japan Atomic Energy Research Institute
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Sugihara Masayoshi
Faculty Of Engineering Keio University
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Amamori Takuji
Faculty of Science and Technology, Keio University
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Hitoki Shigehisa
Mitsubishi Electric Corporation
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OHKUBO Hideyuki
Faculty of Engineering,Keio University
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SHIMIZU Katsusuke
Faculty of Science and Technology,Keio University
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KAKIZUKA Tomonori
Naka Fusion Research Establishment,Japan Atomic Energy Research,Institute
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Ohkubo Hideyuki
Faculty Of Engineering Keio University
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Amamori Takuji
Faculty Of Science And Technology Keio University
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Mori Sigehiko
Faculty Of Engineering Keio University:(present Address) Department Of Plant Engineering Mitsubishi
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Kakizuka Tomonori
Naka Fusion Research Establishment Japan Atomic Energy Research Institute
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Shimizu Katsusuke
Faculty Of Science And Technology Keio University
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Nakahama Yasumitsu
Faculty Of Science And Technology Keio University
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Fukano Azusa
Mechanical Sysytems Engineering Course, Monozukuri Department, Tokyo Metropolitan College of Industrial Technology, Shinagawa, Tokyo 140-0011, Japan
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Ogasawara Masatada
Faculty of Engineering, Keio University
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Ogasawara Masatada
Faculty of Science and Technology, Keio University, Yokohama 223-8522, Japan
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OGASAWARA Masatada
Faculty of Science and Technology,Keio University
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Aono Osamu
Department of Physics, Jichi Medical School
著作論文
- Radial Structure of Two-Stream Instability in Light Ion Beam
- Return Current in the Presence of Two-Stream Instability Due to Uniform Ion Beam Propagating in a Plasma
- Effects of Impurity Ions on the Anomalous Diffusion due to the Dissipative Trapped Ion Instability
- Comparison of Weibel Instability and Magnetic Field Generating Thermal Instability
- Magnetic Field Generating Thermal Instability Including the Nernst Effect
- Hydrodynamic Effects on Field-Generating Thermal Instability in Laser-Heated Plasma
- Electric Field Strength at the Head of a LIB Evaluated by Using a Theory of Hammer and Rostoker
- 1. On the Heat Flux Derived by the Moment Method in Lorentzian Plasma between Hot and Cold Walls (V. Plasma Characteristics (Electron))
- Enhancement of D-T Reaction Rate in Nonuniform Magnetoplasma
- Nonlinear Saturation of Dissipative Trapped Ion Instability and Anomalous Transport
- Nonlinear Stabilization of Dissipative Trapped Ion Instability
- Numerical Investigation of Saturation Mechanism of the Dissipative Trapped Ion Instability
- Mixing Length Hypothesis in the Dissipative Trapped Ion Instability
- Sum and Difference Frequency Generation in a Plasma by Two Nonuniform Electric Fields in the Presence of a Static Magnetic Field. II
- Effect of Beam Deceleration in the Two-Stream Instability
- Numerical Investigation of Saturation Mechanism of the Dissipative Trapped Ion Instability II
- Bounce Time Averaged Wave Potential and the Dissipative Trapped Ion Instability
- Analysis of Biasing Induced Divertor Asymmetry Using a Five-Point Model
- MAGNETIC-FIELD-GENERATING THERMAL INSTABILITY IN THE CASE OF ICF BY LIGHT ION BEAM
- Sum and Difference Frequency Generation in a Plasma by Two Nonuniform Electric Fields in the Presence of a Static Magnetic Field
- Effects of Temperature Relaxations on Waves in a Homogeneous Plasma
- ON THE GROWTH RATE OF RAYLEIGH-TAYLOR INSTABILITY AT THE DECELERATING SHOCK FRONT
- An Operator in the Cartesian Tensor Expansion of the Boltzmann Equation for a Magneto-Plasma
- Estimation of Width of Electron Energy Loss Region in Cusp Magnetic Field in Negative Ion Sources