Tomita Yukio | Tokyo Institute Of Technology
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概要
関連著者
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Tomita Yukio
Tokyo Institute Of Technology
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SUDOU Kouzou
Tokyo Institute of Technology
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MOCHIMARU Yoshihiro
Tokyo Institute of Technology
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Arai Shigeki
Toshiba Corporation
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Tomita Yukio
Science University Of Tokyo
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YAMAZAKI Shinzo
Tokyo Metropolitan Technical College
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Tomita Yukio
Tokyo Institute Of Technology.
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SASAHARA Toshio
Tokyo Metropolitan Technical College
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Tomita Y
Faculty Of Engineering Tokyo University Of Science
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Tomita Y
Science Univ. Tokyo Noda Jpn
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SUDOU Kouzou
Hiroshima Univ.
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TAKAMI Toshihiro
Hiroshima Univ.
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Tomita Yukio
Faculty Of Science And Technology Science University Of Tokyo
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Takami Toshihiro
Faculty Of Engineering Hiroshima University
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Yamane Ryuichiro
Tokyo Insitute Of Technology
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Yamane Ryuichiro
Research Associate Tokyo Institute Of Technology.
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Yamane Ryuichiro
Tokyo Institute Of Technology.
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TAMAKI Teiichi
Tokyo Institute of Technology,
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ARAI Shigeki
Tokyo Institute of Technology
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ARAI Shigeki
Postgraduate Student, Tokyo Institute of Technology
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TOMITA Yukio
Professor, Tokyo Institute of technology
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SUDOU Kouzou
Research Associate, Tokyo Institute of Technology
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Sudou Kouzou
Faculty Of Engineering Hiroshima University
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Sudou Kouzou
Tokyo Institute Of Technology.
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KATO Hiroshi
Faculty of Science, Kwansei Gakuin University
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Tamaki Teiichi
Tokyo Institute Of Technology
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ISHIBASHI Yukio
Tokyo Institute of Techonology
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Shirakashi Masataka
Technological University Of Nagaoka
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Ishibashi Yukio
Tokyo Institute Of Technology
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Tomita Yukio
Tokyo Institute Of Technology Meguro-ku Tokyo
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TANAKA Kaneyoshi
Musashi Institute of Technology
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TAKENAGA Hisakuni
Mitsubisi Heavy Industry, Nagasaki Technical Institute.
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TSUCHIYA Ken
Japan Steel Works, Ltd.
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HASEGAWA Tomiichi
Tokyo Institute of Technology
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Mochimaru Yoshihiro
Tokyo Institute Of Technology.
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Hasegawa Tomiichi
Faculty Of Engineering Niigata University
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Takenaga Hisakuni
Mitsubisi Heavy Industry Nagasaki Technical Institute.
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Tomita Yukio
Professor Tokyo Institute Of Technology
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Tsuchiya Ken
Japan Steel Works Ltd.
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SUDO Kouzou
Tokyo Institute of Technology
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Tomita Y.
Tokyo Institute of Technology
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Kato Hiroshi
Faculty of Engineeering Kyoto University
著作論文
- The Scale Effect and Design Method of the Regenerative Pump with Non-Radial Vanes
- A Study of Pseudo-Shock : 2nd Report, X-Type Pseudo-Shock
- Flow of Liquid Metals in Curved Channels under a Transversely Applied Magnetic Field : 3rd Report, Experiment on Transition and Turbulent Flows
- Flow of Liquid Metals in Curved Channels under a Transversely Applied Magnetic Field : 2nd Report, Theoretical Analysis of Laminar Flow
- Flow of Liquid Metals in Curved Channels under a Transversely Applied Magnetic Field : 1st Report, Analysis of Laminar Flow
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 8th Report, Influence of Channel Side Walls and Aspect Ratio on Laminar and Transition Flows
- A Study of Viscoelastic Fluid Flow : 4th Report, The Laminar Flow in the Region near the Entrance of a Circular Pipe
- Researches on the Performance of the Regenerative Pump with Non-Radial Vanes : 2nd Report, Effects of the Pump Elements
- Researches on the Performance of the Regenerative Pump with Non-Radial Vanes : 1st Report, Performance and Inner Flow
- Flow of Non-Newtonian Fluids in Curved Pipes : 3rd Report, Turbulent Friction Coefficient : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical Properties
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 7th Report, Experiment on the Unsteady Channel Flow
- Effect of a Magnetic and an Electrical Field on the Behavior of Liquid Jets
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 2nd report, Laminar Flow in the Entrance Region
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 3rd Report, Influence of an Electric and a Magnetic Field on the Transition of Flows
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 4th Report, Resistance Coefficient for Turbulent Channel Flow
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 5th Report, Skin Friction Coefficient of Turbulent Circular Pipe Flow
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 1st Report, Laminar Flow in the Entrance Region
- A Study of High Speed Gas Flow by Hydraulic Analogy : The 4th Report, Flow Around an Airfoil
- A Study on the Elastodynamic Pump : 1st Report, Normal Stress Effect
- A Study of Viscoelastic Fluid Flow : 2nd Report, Extrudate Irregularities
- A Study on Anomalous Turbulent FIows of Non-Newtonian Fluids : 2nd Report, Transitional Region from Laminar to Turbulent Flow
- A Study of Viscoelastic Fluid Flow : 1st Report, Correction of Tube Length and Others
- A Study of Viscoelastic Fluid Flow : 3rd Report, Turbulent Flow in a Circular Pipe
- A Study on the Flow of Wood Pulp Slurries in a Pipe Line
- The Structure of Turbulent Diffusion : 2nd Report, Diffusion near the Turbulent Interface
- A Study on the Flows of Dilute Polymer Solutions : 1st Report, Frictional Resistance of a Rotating Disk in a Dilute Polymer Solution
- A Study on the Flows of Dilute Polymer Solutions : 2nd Report, On the Stability of the Laminar Boundary Layer Flow
- A Study on the Flows of Dilute Polymer Solutions : 3rd Report, Flow Field and Heat Transfer around a Circular Cylinder
- A Study on Anomalous Turbulent Flows of Non-Newtonian Fluids : 3rd Report, Experiment and Analysis in Transitional Region
- A Numerical Method for the Solution of Nonlinear Equations
- A Study on Non-Newtonian Flow in Pipe Lines
- A Study on the Flows of Dilute Polymer Solutions : 4th Report, On the Velocity Measurement by a Pitot Tube Method
- Flow of Liquid Metals with a Transversely Applied Magnetic Field : 6th Report, Turbulent Flow in the Entrance Region