Oyanagi Yoshio | Department Of Information Science University Of Tokyo
スポンサーリンク
概要
関連著者
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Oyanagi Yoshio
Department Of Information Science University Of Tokyo
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OYANAGI Yoshio
Department of Information Science, University of Tokyo
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Oyanagi Yoshio
Department Of Physics University Of Tokyo
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KATO Kiyoshi
Department of Cosmosciences, Hokkaido University
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Shimizu Y
Department Of Physics Nagoya University
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FUJIMOTO Junpei
High Energy Accelerator Research Organization
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FUJIMOTO Junpei
National Laboratory for High Energy Physics (KEK)
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SHIMIZU Yoshimitsu
National Laboratory for High Energy Physics (KEK)
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SHIMIZU Yoshimitsu
Department of Physics, University of Tokyo
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Tokuda Naoki
Department Of Electrical And Electronic Engineering Tottori University
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Shimizu Yoshimitsu
National Laboratory For High Energy Physics
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Zhang Shao-liang
Department Of Computational Science And Engineering Nagoya University
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Liang Zhang
Inst. Of Computational Fluid Dynamics
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Oyanagi Y
Department Of Information Science University Of Tokyo
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Fujimoto J
High Energy Accelerator Research Organization
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WANG Ren-Hong
Institute of Mathematics Sciences, Dalian University of Technology
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LI Wei
Doctoral Program in Engineering, University of Tsukuba
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Zhang Shao-liang
Department Of Applied Physics University Of Tokyo
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Kato Kiyoshi
Department Of Cosmosciences Hokkaido University
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Wang Ren-hong
Institute Of Mathematics Sciences Dalian University Of Technology
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Li Wei
Doctoral Program In Engineering University Of Tsukuba
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Kato Kiyoshi
Department Of Civil Engineering National Defense Academy
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KATO Kiyoshi
Department of Physics, Kogakuin University
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OYANAGI Yoshio
Department of Physics, University of Tokyo
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SHIMIZU Yoshimitsu
National Laboratory for High Energy Physics(KEK)
著作論文
- Numerical Approach to One-Loop Integrals : Particles and Fields
- Orthomin(k) Method for Linear Least Squares Problem
- Veneziano Amplitudes for First Excited Scalars
- A Kind of Bivariate Cubic Splines and Related Linear Operators on Type-1 Triangulation
- F_π/F_K Ratio and πK Scattering Amplitude of the Veneziano Type
- Veneziano-Type Formula for Pion Electromagnetic Form Factor
- Possible 27-plets in Baryon Resonances
- Weinberg Sum Rules with Veneziano Residues
- Future Trend of Parallel Computing in Computational Sciences