Miyata Yasunori | Department Of Mechanical Engineering Nagaoka University Of Technology
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概要
関連著者
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Miyata Yasunori
Department Of Mechanical Engineering Nagaoka University Of Technology
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MIYATA Yasunori
Department of Mechanical Engineering, Nagaoka University of Technology
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Iso Chikashi
Department Of Physics Tokyo Institute Of Technology
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Iwai Seiko
Department Of Physics Tokyo Institute Of Technology
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KANASUGI Hirotaka
Department of Physics, Tokyo Institute of Technology
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Kanasugi Hirotaka
Department Of Physics Tokyo Institute Of Technology
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IWAI Seiko
Department of Physics, Tokyo Institute of Technology
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Takeda Masatoshi
Department Of Biology Faculty Of Science Niigata University
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Imai Syozo
Research Institute Of Electrical Communication Tohoku University
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Takeda Masatoshi
Department Of Mechanical Engineering Nagaoka University Of Technology
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Takeda M
Department Of Mechanical Engineering Nagaoka University Of Technology
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Takeda Masatoshi
Department Of Biology Niigata University
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Tanaka Hiroyoshi
Department Of Mechanical Engineering Nagaoka University Of Technology
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Tanaka Hiroyoshi
Department Of Anesthesiology Toride Kyodo General Hospital Toride City
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Kudoh Koki
Department Of Physics Tokyo Institute Of Technology
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Shimizu Yoshiaki
Department Of Production Systems Engineering Toyohashi University Of Technology
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Miyata Yasunori
Department Of Physics Tokyo Institute Of Technology
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Miyata Y
Department Of Mechanical Engineering Nagaoka University Of Technology
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Miyata Yasunori
Department Of Production Systems Engineering Toyohashi University Of Technology
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Shimizu Yoshiaki
Department Of Biological And Environmental Sciences Faculty Of Agriculture Yamaguchi University
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ISHIHARA Eiki
Department of Production Systems Engineering, Toyohashi University of Technology
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Ishihara Eiki
Department Of Production Systems Engineering Toyohashi University Of Technology
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KUDOH Koki
Department of Physics, Tokyo Institute of Technology
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MIYATA Yasunori
Department of Physics, Tokyo Institute of Technology
著作論文
- Analytical Modeling of the Growth of Arrayed Needles during Unidirectional Solidification Process under High Temperature Gradient: Part I. Modeling of Array and Growth Theory
- Relations between Inclusive Reactions Based on the Vector-Meson-Dominance Model and Smoothness of Invariant Amplitudes
- Triple Reggeization of the Spin-Dependent Inclusive Reactions. I : π+N→π+Anything
- Modified Veneziano Model for πN Scattering
- On Veneziano's Constraints
- An Infrastructure for Integrating Element Technologies of Life Cycle Engineering
- Dendritic Growth in Undercooled Melt with Forced Convection : Experiment for Pure Succinonitrile
- Crossing Invariant Solution of Baryon Exchange Degeneracy and Reggeon F/D Ratios In SU(4)
- How to Discriminate between Charm Model and Color Model of J(3.1) and Ψ(3.7) Mesons by High Energy Hadron-Hadron Collisions
- Analytical Modeling of the Growth of Arrays of Needles during Unidirectional Solidification Process under High Temperature Gradient: Part II. Comparison with Experiments
- Dendritic Growth in Undercooled Melt with Forced Convection : Theory