Nogami H | Research And Development Division Anelva Corporation
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概要
関連著者
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Nogami H
Research And Development Division Anelva Corporation
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Nogami Hiroshi
Institute For Advanced Materials Processing Tohoku University
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Nogami Hiroshi
Institute Of Multidisciplinary Research For Advanced Materials Tohoku University
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Fudolig Agustin
Institute For Advanced Materials Processing Tohoku University
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YAGI Jun-ichiro
Institute for Advanced Materials Processing, Tohoku University
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Yagi Jun-ichiro
Institute For Advanced Materials Processing Tohoku University
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Fudolig A
Institute For Advanced Materials Processing Tohoku University
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中川 吉郎
大阪市立大学
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Nakagawa Y
Yamanashi Univ. Kofu Jpn
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中川 吉郎
大阪市立大・工
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Tsukada T
Tdk Corp. Chiba Jpn
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中川 恭彦
山梨大学大学院医学工学総合研究部
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深沢 塔一
金沢工業大学機械系
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中川 恭彦
山梨大学工学部
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中川 恭彦
山梨大医工
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ISSHIKI Minoru
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University
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Mimura Kouji
Institute Of Multidisciplinary Research For Advanced Materials Tohoku University
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Mimura Kouji
Institute For Advanced Materials Processing Tohoku University
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Isshiki Minoru
Institute For Advanced Materials Processing Tohoku University
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Isshiki Minoru
Instite For Advanced Materials Processing Tohoku University
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深澤 塔一
金沢工大
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NAKAGAWA Yukito
Anelva Corporation
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TSUKADA Tsutomu
Anelva Corporation
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NOGAMI Hiroshi
Research and Development Division, ANELVA CORPORATION
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NAKAGAWA Yukito
Research and Development Division, ANELVA CORPORATION
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MASHIMO Kimiko
Research and Development Division, ANELVA CORPORATION
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OGAHARA Yoneichi
Research and Development Division, ANELVA CORPORATION
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TSUKADA Tsutomu
Research and Development Division, ANELVA CORPORATION
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深沢 塔一
金沢工業大学 機械・物質系
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Mashimo Kimiko
Research And Development Division Anelva Corporation
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NOGAMI Hiroshi
ANELVA Corporation
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WANI Etsuo
ANELVA Corporation
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Tsukada Tsutomu
Anelva Corp.
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Ogahara Yoneichi
Research And Development Division Anelva Corporation
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Mimura Kouji
Instite for Advanced Materials Processing Tohoku University
著作論文
- SiO_2 Etching Using M=0 Helicon Wave Plasma
- Prediction of Generation Rates in "Reactive Arc Plasma" Ultrafine Powder Production Process
- Numerical Analysis of the Flow Characteristics and Temperature Distribution in Metal Beads Subjected to Transferred Arc Plasma Impingement
- Prediction of Surface Temperature on Metal Beads Subjected to Argon-Hydrogen Transferred Arc Plasma Impingement
- Modeling of the Flow, Temperature and Concentration Fields in an Arc Plasma Reactor with Argon-Nitrogen Atmosphere
- NUMERICAL SIMULATION OF FLOW AND TEMPERATURE DISTRIBUTION IN A TRANSFERRED ARGON ARC PLASMA ENCLOSED IN A CHAMBER
- Etching Characteristics by M=0 Helicon Wave Plasma ( Plasma Processing)