Ute Koichi | Graduate School Of Engineering Science Osaka University
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概要
関連著者
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右手 浩一
大阪大学大学院基礎工学研究科
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Ute Koichi
Graduate School Of Engineering Science Osaka University
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右手 浩一
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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北山 辰樹
大阪大学大学院基礎工学研究科
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畑田 耕一
大阪大学基礎工学部
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Ute Koichi
Department Of Chemical Science And Technology Faculty And School Of Engineering The University Of To
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北山 辰樹
Department Of Chemistry Osaka University
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畑田 耕一
大阪大学基礎工学部合成化学科
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Hatada Koichi
Department Of Chemistry Faculty Of Engineering Science Osaka University
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KITAYAMA Tatsuki
Department of Chemistry, Graduate of Engineering Science, Osaka University
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UTE Koichi
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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Kitayama Tatsuki
Department Of Chemistry Faculty Of Engineering Science Osaka University
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HATADA Koichi
Department of Chemistry, Graduate of Engineering Science, Osaka University
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OHNUMA Hidetaka
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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TARAO Toshiyuki
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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HONGO Shin-ya
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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Hirotani Shuji
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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Tarao Toshiyuki
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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Ohnuma Hidetaka
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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Hongo Shin-ya
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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小林 昭雄
大阪大学大学院工学研究科生命先端工学専攻
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中澤 慶久
日立造船株式会社
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佐藤 浩昭
名城大学農学ハイテクリサーチセンター
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中沢 慶久
'technical And Planning Department Hitachi Zosen Corporation
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畑田 耕一
大阪大学
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MIYATAKE Nobuo
Department of Chemistry. Faculty of Engineering Science, Osaka University
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西浦 崇文
Osaka Univ. Osaka Jpn
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佐藤 浩昭
名古屋大学
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右手 浩一
大阪大学基礎工学部
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Miyatake Nobuo
Department Of Chemistry Faculty Of Engineering Sciecne Osaka University
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小林 昭雄
大阪大学大学院工学研究科
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福崎 英一郎
大阪大学大学院工学研究科
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小林 昭雄
阪大院・工・生命先端
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福崎 英一郎
阪大院・工・応生
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小林 昭雄
阪大院・工・応生工
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馬場 健史
大阪大学大学院薬学研究科
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馬場 健史
阪大院・工・生命先端
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宮田 幹二
大阪大学大学院工学研究科
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MIYATA Mikiji
Department of Material and Life Science, Graduate School of Engineering, Osaka University
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TOHNAI Norimitsu
Department of Material and Life Science, Graduate School of Engineering, Osaka University
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中沢 慶久
日立造船(株)
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Osa Masashi
Department Of Polymer Chemistry Kyoto University
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Miyata M
Kyoto Univ. Kyoto Jpn
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Miyata Mikiji
Material And Life Science Graduate School Of Engineering Osaka University
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Miyata Mikiji
Department Of Chemistry Faculty Of Engineering Gifu University
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YOSHIZAKI Takenao
Department of Polymer Chemistry, Kyoto University
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MATSUI Ken-ichi
Department of Physics, Faculty of Science, Osaka University
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SADA Kazuki
Department of Material and Life Science, Graduate School of Engineering, Osaka University
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Matsui Ken-ichi
Department Of Chemistry. Faculty Of Engineering Science Osaka University
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YAMAKAWA Hiromi
Department of Textile Chemistry, Kyoto University
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佐田 和己
Kyushu Univ. Fukuoka
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Tohnai Norimitu
Department Of Material & Life Science Graduate School Of Osaka University
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中沢 慶久
日立造証
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佐藤 浩昭
名城大・農学ハイテク
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右手 浩一
阪大院・基礎工・合成
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北山 辰樹
阪大院・基礎工・合成
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畑田 耕一
大阪大学大学院基礎工学研究科化学系専攻
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西浦 崇文
大阪大学大学院基礎工学研究科化学系専攻
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Tohnai Norimitsu
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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Yamakawa H
Department Of Polymer Chemistry Kyoto University
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Yamakawa Hiromi
Department Of Polymer Chemistry Kyoto University
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Sada Kazuki
Department Of Applied Chemistry Faculty Of Engineering Kyushu University
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SUMIDA Masakazu
Department of Polymer Chemistry, Kyoto University
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Sumida Masakazu
Department Of Polymer Chemistry Kyoto University
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SHIMIZU Itaru
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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KITAYAMA Tatsuki
Graduate School of Engineering Science, Osaka University
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WATANABE Tomomichi
Department of Material and Life Science Graduate School of Engineering, Osaka University
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MIYAMOTO Jun
Department of Material and Life Science Graduate School of Engineering, Osaka University
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FUKUDA Takeyoshi
Department of Material and Life Science Graduate School of Engineering, Osaka University
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MAEHARA Kunitaka
Graduate School of Engineering Science, Osaka University
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KINOSHITA Ryuji
Department of Chemistry. Faculty of Engineering Science, Osaka University
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Shimizu Itaru
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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馬場 健史
大阪大学大学院工学研究科
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Miyamoto Jun
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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NISHIURA Takafumi
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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NIIMI Ryo
Department of Chemistry, Graduate School of Engineering Science, Osaka University
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YAMASAKI Yumi
Department of Chemistry, Faculty of Engineering Sciecne, Osaka University
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NAITO Masami
Department of Chemistry, Faculty of Engineering Sciecne, Osaka University
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右手 浩一
大阪大学 基礎工学部
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Naito Masami
Department Of Chemistry Faculty Of Engineering Sciecne Osaka University
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Niimi Ryo
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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Yoshizaki Takenao
Department Of Polymer Chemistry Kyoto University
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Yamasaki Yumi
Department Of Chemistry Faculty Of Engineering Sciecne Osaka University
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Kinoshita Ryuji
Department Of Chemistry. Faculty Of Engineering Science Osaka University
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Fukuda Takeyoshi
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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Maehara Kunitaka
Graduate School Of Engineering Science Osaka University
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Watanabe Tomomichi
Department Of Material And Life Science Graduate School Of Engineering Osaka University
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Kitayama Tatsuki
Graduate School Of Engineering Science Osaka University
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Nishiura Takafumi
Department Of Chemistry Graduate School Of Engineering Science Osaka University
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Sada Kazuki
Div. Of Chemistry School Of Sci. Hokkaido Univ.
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Yamasaki Yumi
Department Of Bioscience And Biotechnology Faculty Of Agriculture Kyushu University
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Sada Kazuki
Department Of Chemistry & Biochemistry Kyushu University
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小林 昭雄
大阪大学大学院・工学研究科・応用生物工学専攻
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馬場 健史
阪大院・工
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福崎 英一郎
阪大院・工
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小林 昭雄
阪大院・工
著作論文
- 超臨界流体クロマトグラフィーによるポリプレノールの構造解析
- 312 超臨界流体クロマトグラフィーを用いた長鎖ポリプレノールの解析
- 立体規則性均一構造高分子の構築
- Determination of Stereochemical Compositions of Oligo- and Poly(α-methylstyrene)s by ^1H and ^C NMR
- Stereospecific Group Transfer Polymerization of Methyl Methacrylate with Lewis-Acid Catalysis : Formation of Highly Syndiotactic Poly(methyl methacrylate)
- Enhanced Stereocontrol in Disyndiotactic-specific Group Transfer Polymerization of Methyl Crotonate-Stereochemical Evidence of Group Transfer
- Combination of Tris (pentafluorophenyl) borane and Trialkylsilyl Triflate as an Efficient Catalyst System for the Group Transfer Polymerization of Acrylates
- Preparation of Disyndiotactic Poly(methyl crotonate) by Stereospecific Group Transfer Polymerization
- Well-defined Ion-pair Clusters of Alkyl- and Dialkylammonium Salts of a Sterically-hindered Carboxylic Acid. Implication for Hydrogen-bonded Lys Salt Bridges
- Conformational Asymmetry of a Linear Perfluoroalkyl Chain in Solution. Dynamic Fluorine-19 NMR Spectroscopy of the Perfluoro-n-alkanes Carrying a Chiral End-Group as a Probe of Magnetic Nonequivalence
- 超臨界流体クロマトグラフィーによるオリゴマーの重合度分別と高分子科学への応用
- ルイス酸触媒GTPによる高分子の立体規則性制御
- LC-NMRとDOSY : 高分子の溶液NMRの新しい測定法
- LC/NMRによる高分子のキャラクタリゼーション
- Direct Determination of Molecular Weight Distribution by Size Exclusion Chromatography with 750MHz ^1H NMR Detection (On-Line SEC-NMR)
- Group Transfer Polymerization of Methyl Crotonate
- 均一オリゴマーの単結晶 高分子立体化学の精密化をめざして
- ユニフォームポリマー
- Preparation of Uniform Stereoblock Poly(methyl methacrylate)
- 高分子ギネスブック:分子量の最も大きい単分散高分子は?
- Controlled Synthesis of Isotactic and Symmetrical Poly(methyl methacrylate) Directed toward Uniform Polymers with High Crystallinity
- 「均一ポリマー」の調製とその構造・物性研究への展開
- オンラインGPC/NMR装置の開発と高分子の構造解析への応用
- 超臨界流体クロマトグラフィ-(SFC)による合成高分子の重合度分別
- 高分子機器分析--高分解能NMR-2-高分子溶液
- PMMAマクロマ-についての2,3の話題