Kida Shigeo | Theory And Simulation Center National Institute For Fusion Science
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概要
関連著者
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Kida Shigeo
Theory And Simulation Center National Institute For Fusion Science
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Kida Shigeo
Theory And Computer Simulation Center National Institute For Fusion Science
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木田 重雄
京都大学工学部
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三浦 英昭
核融合研
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Miura Hideaki
Theory And Computer Simulation Center National Institute For Fusion Science
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Goto S
Faculty Of Science Niigata University
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DAS Chandra
Theory and Computer Simulation Center, National Institute for Fusion Science
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GOTO Susumu
Theory and Computer Simulation Center, National Institute for Fusion Science
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Das Chandra
Theory And Computer Simulation Center National Institute For Fusion Science
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Goto S
Center For Instrumental Analysis Niigata University
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Kida S
National Inst. Fusion Sci. Toki Jpn
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ISHIHARA Norio
Theory and Computer Simulation Center, National Institute for Fusion Science
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KITAUCHI Hideaki
Theory and Computer Simulation Center, National Institute for Fusion Science
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MAKIHARA Takafumi
Theory and Computer Simulation Center, National Institute for Fusion Science
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Makihara T
Theory And Computer Simulation Center National Institute For Fusion Science
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Kitauchi H
Theory And Computer Simulation Center National Institute For Fusion Science
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Kitauchi Hideaki
Theory And Computer Simulation Center National Institute For Fusion Science
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Ishihara Norio
Theory And Computer Simulation Center National Institute For Fusion Science
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Beronov Kamen
Research Institute for Mathematical Sciences, Kyoto University
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Beronov Kamen
Research Institute For Mathematical Sciences Kyoto University
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Goto Susumu
Theory And Computer Simulation Center National Institute For Fusion Science
著作論文
- Overall Self-Similar Decay of Two-Dimensional Turbulence : Classical Phenomenology and Applications
- Thermally Driven MHD Dynamo in a Rotating Spherical Shell
- Automatic Tracking of Low-Pressure Vortex
- Equatorial magnetic dipole field intensification by convection vortices in a rotating spherical shell
- Scalar vorticity transitions in viscous two-dimensional stagnation flow