Search Results1-20 of  90

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  • Jian Ping Gong ID: 9000016554379

    Articles in CiNii:1

    • 筋肉タンパクによるゲルマシーンの創製 (特集 先端バイオナノテクノロジーの開発と応用) (2004)
  • Gong Jian Ping ID: 9000016563714

    Articles in CiNii:1

    • ATP駆動型ゲル運動システム (2009)
  • Gong Jian Ping ID: 9000017362567

    Articles in CiNii:1

    • Antifouling hydrogels against barnacles: biomimetic design inspired by seaweed (2010)
  • Gong Jian Ping ID: 9000018495488

    Articles in CiNii:1

    • Exotic function found in assembly of bio molecular motor obtained through active self-organization (2011)
  • Gong Jian Ping ID: 9000018550930

    Articles in CiNii:1

    • 現代ものづくり考 ゲル--物性の研究と再生医療への応用 (2011)
  • Gong Jian Ping ID: 9000025007275

    Articles in CiNii:1

    • Electric field effect on the sliding friction of a charged gel (2009)
  • Gong Jian Ping ID: 9000283752002

    北海道大学大学院理学研究科生体高分子設計学講座 (2007 from CiNii)

    Articles in CiNii:1

    • ダブルネットワーク・ハイドロゲルの生体における異物反応の評価 (2007)
  • GONG Jian Ping ID: 9000000356149

    北海道大学大学院理学研究科 (2001 from CiNii)

    Articles in CiNii:1

    • Nonliner Phenomena of Gels (2001)
  • GONG Jian Ping ID: 9000002180821

    北大院理 (2002 from CiNii)

    Articles in CiNii:1

    • Preparation of Molecularly Oriented Hydrogels and their Structures and Functions (2002)
  • GONG Jian Ping ID: 9000003435688

    Graduate School of Science, Hokkaido University:PRESTO JST (2004 from CiNii)

    Articles in CiNii:1

    • 14aTC-8 Fnction of Soft and Wet Matter 2 : Effect of surface adsoption eneigy on gel fnction (2004)
  • GONG Jian Ping ID: 9000005659782

    Division of Biological Sciences, Graduate School of Science, Hokkaido University (1995 from CiNii)

    Articles in CiNii:1

    • Spontaneous Motion of Amphoteric Polymer Gels on Water (1995)
  • GONG Jian Ping ID: 9000006401919

    Division of Biological Sciences, Graduate School of Science, Hokkaido University (2007 from CiNii)

    Articles in CiNii:1

    • Friction Coefficient between Rubber and Solid Substrate : Effect of Rubber Thickness (2007)
  • GONG Jian Ping ID: 9000016379595

    Department of Biological Sciences, Graduate School of Science, Hokkaido University (2009 from CiNii)

    Articles in CiNii:1

    • Nonvolatile and Shape-Memorized Bacterial Cellulose Gels Swollen by Poly(ethylene glycol) (2009)
  • GONG Jian Ping ID: 9000019058625

    Faculty of Advanced Life Science, Graduate School of Science, Hokkaido University (2011 from CiNii)

    Articles in CiNii:9

    • Novel Developed Systems and Techniques Based on Double-Network Principle (2011)
    • Adhesion, Spreading, and Proliferation of Endothelial Cells on Charged Hydrogels (2009)
    • Ultrathin tough double network hydrogels showing adjustable muscle-like isometric force generation triggered by solvent (2009)
  • GONG Jian Ping ID: 9000019141247

    Faculty of Advanced Life Science, Graduate School of Science, Hokkaido University (2012 from CiNii)

    Articles in CiNii:1

    • Hydrogels with a macroscopic-scale liquid crystal structure by self-assembly of a semi-rigid polyion complex (2012)
  • GONG Jian Ping ID: 9000019141284

    Faculty of Advanced Life Science, Hokkaido University (2012 from CiNii)

    Articles in CiNii:1

    • Active self-organization of microtubules in an inert chamber system (2012)
  • GONG Jian Ping ID: 9000020485567

    Graduate School of Science, Hokkaido University (1999 from CiNii)

    Articles in CiNii:1

    • Surface friction of hydrogels (1999)
  • GONG Jian Ping ID: 9000021269495

    北海道大学大学院理学研究科 (2002 from CiNii)

    Articles in CiNii:1

    • 20年後の高分子 (2002)
  • GONG Jian Ping ID: 9000258300746

    Articles in CiNii:6

    • 小さな力で多彩な色をだす構造色ゲル : 新しいメカノクロミック材料の合成法とその応用 (2015)
    • 関節軟骨障害に対する高機能高分子ゲルを用いた軟骨自然再生治療の開発とその分子機序の解明 (2010)
    • Lyotropic Liquid Crystalline Hydrogels with Tunable Structural Color and Anisotropic Physical Properties (2016)
  • GONG Jian Ping ID: 9000364896451

    Articles in CiNii:9

    • Polyelectrolyte Gels-Fundamentals and Applications (2006)
    • Production of Bacterial Cellulose with Well Oriented Fibril on PDMS Substrate (2008)
    • Orientated Bacterial Cellulose Culture Controlled by Liquid Substrate of Silicone Oil with Different Viscosity and Thickness (2009)
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