Nishino J | Nagaokauniv. Technol. Niigata Jpn
スポンサーリンク
概要
関連著者
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TANAKA Shoji
Superconductivity Research Laboratory, International Superconductivity Technology Center
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Murakami Hidetoshi
Department Of Applied Physics Hokkaido University
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SHIOHARA Yuh
Superconductivity Research Laboratory, ISTEC
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Yaegashi S
Nikko Kyodo Toda
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Yaegashi Seiji
Central Research Laboratories Nippon Mining Co. Ltd.
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Tanaka S
Tokyo Inst. Technol. Tokyo Jpn
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Yaegashi Seiji
Superconductivity Research Laboratory, ISTEC
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Murakami Hirohiko
Superconductivity Research Laboratory, ISTEC
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Nishino Junya
Superconductivity Research Laboratory, ISTEC
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Yaegashi Seiji
Superconductivity Research Laboratory Istec
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Murakami H
Nhk Sci. And Technical Res. Lab. Tokyo Jpn
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Murakami H
Department Of Applied Chemistry Graduate School Of Engineering Tokyo University Of Agriculture And T
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Shiohara Y
Superconductivity Research Laboratory International Superconductivity Technology Center
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Shiohara Y
Massachusetts Institute Of Technology The Castings Research Lab. Waseda Univ.
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Shiohara Yuh
Superconducting Research Laboratory Istec
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Murakami H
Department Of Applied Physics Hokkaido University
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Nishino J
Nagaokauniv. Technol. Niigata Jpn
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Tanaka Shoji
Superconductivity Research Laboratory International Superconductivity Technology Center
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Tanaka S
Superconductivity Research Laboratory International Superconductivity Technology Center
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Tanaka S
Osaka Prefecture Univ. Sakai
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Tanaka S
International Superconductivity Technol. Center Tokyo Jpn
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GREEN Mark
Superconductivity Research Laboratory, ISTEC
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Green Mark
Superconductivity Research Laboratory Istec
著作論文
- Effect of Temperature and Oxygen Pressure on Preparation of Bi_2Sr_2CaCu_2O_x Thin Films by Metalorganie Deposition
- Preparation of YBa_2Cu_3O_ and YBa_2Cu_4O_8 Thick Films by Gas Deposition Using Fine Powders
- Bi-Based Superconducting Thin Films Prepared by a Combination of Metalorganic Deposition (MOD) and a Diffusion Process
- Low-Temperature Synthesis of YBa_2Cu_3O_ and YBa_2Cu_4O_8 by Sol-Gel Method
- Synthesis of YBa_2Cu_4O_8 Powders by Sol-Gel Method under Ambient Pressure