Tanahashi Takahiko | Faculty Of Science And Technology Keio University
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概要
関連著者
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Tanahashi Takahiko
Faculty Of Science And Technology Keio University
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Tanahashi Takahiko
Faculty Of Engineering Keio University
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TANAHASHI Takahiko
Faculty of Science and Technology, Keio University
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Ando Tsuneyo
Faculty Of Science And Technology Keio University
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Ando Tsuneyo
Faculty Of Engineering Keio University
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Ando Tsuneyo
Fac. Of Sci. And Tech. Keio Univ.
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Kanai Eriya
Faculty Of Science And Technology Keio University
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Ido Yasushi
Faculty Of Engineering Hokkaido University
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Kawai Hideki
静岡大学電子工学研究所
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Kato Yasumasa
Faculty Of Science And Technology Keio University
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Kasahara Eiji
Faculty Of Engineering Keio University
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Sawada Tetsuo
Faculty Of Science And Technology Keio University
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Sawada Tatsuo
Department Of Mechanical Engineering Keio University
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Oki Yoshiatsu
Japan Defence Agency 1 Research Center
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Oki Yoshiatsu
Faculty Of Science And Technology Keio University
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KAWAI Hideki
Engineering Research Laboratory, Kanegafuchi Chemical Industry Co.
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MASUZAWA Jun
Mitsubishi Heavy Industry
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SHIZAWA Kazuyuki
Faculty of Science and Technology, Keio University
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Tanahashi Takahiko
Fac. Of Sci. And Tech. Keio Univ.
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Kawai Hideki
Engineering Research Laboratory Kanegafuchi Chemical Industry Co.
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IDO Yasushi
Faculty of Engineering, Hokkaido University
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Shizawa Kazuyuki
Faculty Of Science And Technology
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渡辺 正裕
東京工業大学大学院総合理工学研究科
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HIBIYA Taketoshi
Fundamental Research Laboratories, NEC Corporation
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Watanabe M
Hiroshima Univ. Higashi‐hiroshima Jpn
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Wang W
National Laboratory Of Solid State Microstructure And Department Of Physics Nanjing University
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Watanabe Mahiko
Department Of Applied Physics And Chemistry Faculty Of Engineering Hiroshima University
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Watanabe M
Nec Corp. Ibaraki Jpn
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TANAKA Hisashi
Faculty of Engineering, University of Miyazaki
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Wang W
National Tainan Teachers Coll. Tainan Twn
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WATANABE Masahito
Fundamental Research Laboratories, NEC Corporation
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WANG Wei
Fundamental Research Laboratories, NEC Corporation
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Kawai Hideki
Kanegafuchi Chemical Industry
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Kato Y
Keio Univ. Yokohama Jpn
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Kaneda Takeshi
Department Of Energy Science Tokyo Institute Of Technology
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Hibiya T
Fundamental Research Laboratories Nec Corporation
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Kasahara Eiji
Faculty Of Engineering Keio University.
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Kawai Hideki
Department Of Thoracic Surgery Akita Red Cross Hospital
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Katoh Y
Yamaguchi Univ. Ube Jpn
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Makihara Takafumi
Faculty Of Science And Technology Keio University
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Tanahashi T
Faculty Of Science And Technology Keio University
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Oki Yoshiatsu
Japanese Defense Agency 1 Research Center
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KATOH Yasumasa
Faculty of Science and Technology, Keio University
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SAWADA Tatsuo
Faculty of Science and Technology, Keio University
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KOHNO Kimihiko
Kanegafuchi Chemical Industry
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Kawai Hideki
Department Of Dental Materials Science School Of Dentistry Aichi-gakuin University
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OGASAWARA Kenji
Faculty of Science and Technology, Keio University
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Nakai Taijiro
Faculty of Science and Technology, Keio University
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Ikeda Hiroshi
Heavy Apparatus Engineering Laboratory, Toshiba Corporation
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OKANAGA Hiroo
Faculty of Science and Technology, Keio University
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Hibiya Taketoshi
Fundamental Research Laboratories Nec Corporation
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Ogasawara Kenji
Faculty Of Science And Technology Keio University
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MASUZAWA Jun
Department of Mechanical Engineering, Keio University
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Ido Yasushi
Faculty Of Science And Technology Keio University
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Okanaga Hiroo
Faculty Of Science And Technology Keio University
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Nakai Taijiro
Faculty Of Science And Technology Keio University
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Shizawa Kazuyuki
Faculty Of Science And Technology Keio University
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Sawada Tatsuo
Fac. Of Sci. And Tech. Keio Univ.
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Ikeda Hiroshi
Heavy Apparatus Engineering Laboratory Toshiba Corporation
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Tanaka Hisashi
Faculty Of Engineering University Of Miyazaki
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Kawai Hideki
Department Of Cardiology Fujita Health University School Of Medicine
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Sawada Tatsuo
Faculty Of Science And Technology Keio University
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Wang Wei
National Laboratory of Solid State Microstructure and Department of Physics, Nanjing University
著作論文
- Three-Dimensional Simulation of Silicon Melt Flow in Electromagnetic Czochralski Crystal Growth
- Finite-Element Method for Three-Dimensional Incompressible Viscous Flow Using Simultaneous Relaxation of Velocity and Bernoulli Function : Flow in a Lid-Driven Cubic Cavity at Re=5000
- GSMAC-FEM for Incompressible Viscous Flow Analysis : A Modified GSMAC Method
- FLOW OF THE ENTRANCE REGION IN A POROUS PIPE : 3RD REPORT : TRANSIENT FLOW
- Numerical Flow Analysis in a Cubic Cavity by the GSMAC Finite-Element Method : In the Case Where the Reynolds Numbers are 1000 and 3200
- A new System of Sensing Film Thickness by Use of Thermal Conduction : Series C : Vibration, Control Engineering, Engineering for Industry
- Theoretical Consideration on the Fundamental Behavior of Conducting Magnetic Fluids : Couette-like Flow
- Analysis of the Waterhammer with Water Column Separation
- Comparisons between Experimental and Theoretical Results of the Waterhammer with Water Column Separations
- Numerical Analysis of Natural Convection of Thermoelectrically Conducting Fluids in a Square Cavity under a Uniform Magnetic Field : Estimation of Induced Heating Term
- Numerical Analysis of Natural Convection of Thermo-Electrically Conducting Fluids in a Square Cavity under a Uniform Magnetic Field : Calculated Results, Frequency Characteristics
- New Hybrid-Streamline-Upwind Finite-Element Method in Dual Space : Fundamental Theory and Discrete Del Operator
- Fundamental Steady F1ow of Polar Fluids
- Entrance Flows of Electrically Conducting Fluids between Two Parallel Plates : Transient and Steady Flows
- GSMAC-A New Finite Element Method for Unsteady Incompressible Viscous Flow Problems : 2nd Report, Flow in a Square Cavity at High Reynolds Numbers : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical Properties
- GSMAC-A New Finite Element Method for Unsteady Incompressible Viscous Flow Problems : 1st Report, A Stable Method at High Reynolds Numbers : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical Properties
- A Numerical Method for Compressible Viscous Flow with a Multi Grid Algorithm
- Theoretical Study on Equation of Motion and Yield Stress of Electrorheological Fluid
- Fundamental Nonlinear Theory for Micropolar Electrically Conducting Fluids : Conservation Law, Nonequilibrium Thermodynamics, Peltier Effect
- Power Expended Theorem for Micropolar Conducting Magnetic Fluids
- New Hybrid-Streamline-Upwind Finite-Element Method for a Dual Space : Verification for Two-Dimensional Advection-Diffusion Equation
- Electromagnetic Interaction on Micropolar Fluids
- Micropolar Theory for Viscoelastic Magnetic Fluids
- Flow of the Entrance Region in a Porous Pipe : 2nd Report, Uniform Inlet Velocity Profile
- Determination of Constitutive Equations for Magnetic Fluids Using the Theory of Integrity Bases and the Principle of Maximal Dissipation Rate
- NEW CONSTITUTIVE EQUATIONS FOR CONDUCTING MAGNETIC FLUIDS WITH INTERNAL ROTATION : THERMODYNAMICAL DISCUSSIONS