Umeda Takateru | Department Of Metallurgical Engineering Faculty Of Engineering Chulalongkorn University
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概要
- UMEDA Takateruの詳細を見る
- 同名の論文著者
- Department Of Metallurgical Engineering Faculty Of Engineering Chulalongkorn Universityの論文著者
関連著者
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Umeda Takateru
Department Of Metallurgical Engineering Faculty Of Engineering Chulalongkorn University
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Nagaumi Hiromi
Nikkei Research & Development Center (nrdc) Nippon Light Metal Company Ltd.
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Okane Toshimitsu
Digital Manufacturing Research Center National Institute Of Advanced Industrial Science And Technolo
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UMEDA Takateru
Department of Metallurgical Engineering, Faculty of Engineering, Chulalongkorn University
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Shiohara Yuh
Superconducting Research Laboratory Istec
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Umeda Takateru
Department Of Metallurgy The University Of Tokyo
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HIMEMIYA Toshiaki
Wakkanai Hokusei Junior College
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SUZUKI Satoru
Nikkei Research & Development Center (NRDC), Nippon Light Metal Company Ltd.
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Suzuki Satoru
Nikkei Research & Development Center (nrdc) Nippon Light Metal Company Ltd.
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Himemiya Toshiaki
Wakkanai Hokuse Junior College
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YAO Xin
Superconductivity Research Laboratory
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Shiohara Yuh
Superconductivity Research Laboratory Istec
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Shinohara Yuh
Superconductivity Research Lab. International Superconductivity Technology Center
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Umeda T
Kobe Steel Ltd. Hyogo Jpn
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Umeda Takateru
Department Of Metallurgy Graduate School Of Engineering The University Of Tokyo
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Okane T
Swiss Federal Inst. Technol. Lausanne (epfl) Lausanne Che
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KAMBARA Makoto
Department of Metallurgy, The University of Tokyo
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SUVANCHAI Pongsugitwat
Department of Metallurgical Engineering, Faculty of Engineering, Chulalongkorn University
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Kambara Makoto
Department Of Metallurgy The University Of Tokyo
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OKANE Toshimitsu
Department of Metallurgy, Graduate School of Engineering, The University of Tokyo
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NOMOTO Sukeharu
Department of Metallurgy, The University of Tokyo
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Nomoto Sukeharu
Department Of Metallurgy The University Of Tokyo
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Suvanchai Pongsugitwat
Department Of Metallurgical Engineering Faculty Of Engineering Chulalongkorn University
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Ikeda Minoru
Department Of Materials Engineering The University Of Tokyo
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Himemiya T
Wakkanai Hokusei Coll. Wakkanai Jpn
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Diewwanit Ittipon
Department Of Metallurgical Engineering Faculty Of Engineering Chulalongkorn University
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SUWANPINIJ Piyada
Department of Metallurgical Engineering, Faculty of Engineering, Chulalongkorn University
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KITKAMTHORN Usanee
School of Metallurgical Engineering, Institute of Engineering, Suranaree University of Technology
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Kitkamthorn Usanee
School Of Metallurgical Engineering Institute Of Engineering Suranaree University Of Technology
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Suwanpinij Piyada
Department Of Metallurgical Engineering Faculty Of Engineering Chulalongkorn University
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Yao Xin
Superconductivity Research Laboratory, ISTEC
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Kambara Makoto
Department of Materials Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan
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Kato Osamu
Mechanical Working Process, Process Technology Laboratories, Technical Development Bureau, Nippon Steel Corporation
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Tong Ching
Graduate School, The University of Tokyo
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Suzuki Toshio
Engineering Research Institute, Faculty of Engineering, The University of Tokyo
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Niwa Naotaka
Department of Metallurgy, Faculty of Engineering, The University of Tokyo
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Ikeda Minoru
Department of Metallurgy, Faculty of Engineering, The University of Tokyo
著作論文
- Solute Redistribution Model of Dendritic Solidification Considering Diffusion in Both the Liquid and Solid Phases
- 95 K NdBCO Single Crystal Grown in Air by Controlling Liquid Compositiorn
- Hot Tearing of Machinability Improved 2xxx Aluminum Alloy of High Tin Content with Manganese and Chromium Addition
- Mechanical Properties of High Strength Al-Mg-Si Alloy during Solidification
- Effect of Iron Content on Hot Tearing of High-Strength Al-Mg-Si Alloy
- Eutectic Growth of Unidirectionally Solidified Fe-Cr-Ni Alloy
- Numerical Analysis of Purely Diffusion Controlled Ostwald Ripening in a Solid-Liquid Mixture
- Three-Phase Planar Eutectic Growth Models for a Ternary Eutectic System
- Influence of Copper and Iron on Solidification Characteristics of 356 and 380-Type Aluminum Alloys
- Effect of Molybdenum Addition on Solidification Structure, Mechanical Properties and Wear Resistivity of High Chromium Cast Irons.