Nagoya Institute of Technology

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    5310 research outputs found

    超過作用に対する危機耐性能を備えた新たな橋システムに関する研究

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    名古屋工業大学博士(工学)Doctor of Engineering主査:野中 哲也doctoral thesi

    ポリマーブレンドにおける相構造のマイクロ/ナノスケール制御による自動車用高分子材料の創製

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    名古屋工業大学博士(工学)Doctor of Engineering主査:永田 謙二doctoral thesi

    Revisiting the Concept of Qi as Life Force

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    departmental bulletin pape

    A1N/A1GaN 二重バリア層を備える高耐圧 A1 0.36 Ga 0.64 N チャネルHFETの研究

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    departmental bulletin pape

    ACOUSTIC AND WAVEFORM MODELING FOR SINGING VOICE SYNTHESIS BASED ON DEEP NEURAL NETWORKS

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    名古屋工業大学博士(工学)Doctor of Engineering主査:徳田 恵一doctoral thesi

    A Study on Sub-linear Time Algorithms in Mobile Agent Systems

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    名古屋工業大学博士(工学)Doctor of Engineering主査:片山 喜章doctoral thesi

    A Study on Conversational AI Platform for Participatory Democracy

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    名古屋工業大学博士(工学)Doctor of Engineering主査:加藤 昇平doctoral thesi

    Reinforcement Learning aided Optimal Resource Allocation Mechanism for Open Markets

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    名古屋工業大学博士(学術)Doctor of Philosophy主査:打矢 隆弘doctoral thesi

    Hydroxyapatite as Green Catalyst for Environmental Cleaning

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    Hydroxyapatite, one of the most well-known calcium phosphate compounds, has been extensively applied as a bioceramic for artificial bone tissue crafting, ion-exchange fillers for heavy metal ions, and adsorbents of proteins owing to its unique chemical and physical properties. The application of hydroxyapatite as a green catalyst for the oxidative decomposition of volatile organic compounds (VOCs) opens a new avenue for the design and development of functional ceramic materials. This review summarizes the catalytic decomposition of VOCs on hydroxyapatites under both thermal- and photo-excited conditions, followed by a detailed summary of the correlated chemical structure and surface characteristics, as well as elucidation of the catalytic mechanism.application/pdfdepartmental bulletin pape

    細胞制御のための機能性オルガネラの創製

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    名古屋工業大学博士(ナノメディシン科学)Doctor of Nanopharmaceutical Sciences主査:山下 啓司doctoral thesi

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