Search Results - ELECTRONIC ENGINEERING DESIGN

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    Principles and practice of systems engineering in the master's training in "Design and technology of electronic equipment" by S. S. Sokolov

    “…The necessity and the possibility of introducing of systems engineering principles in the educational process of masters training on knowledge field of "Design and technology of electronic equipment " is discussed. …”
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    Electron transfer engineering of artificially designed cell factory for complete biosynthesis of steroids by Qihang Chen, Wenqian Wei, Zikai Chao, Rui Qi, Jianhong He, Huating Chen, Ke Wang, Xinglong Wang, Yijian Rao, Jingwen Zhou

    Published in Nature Communications (2025-04-01)
    “…Abstract Biosynthesis of steroids by artificially designed cell factories often involves numerous nicotinamide adenine dinucleotide phosphate (NADPH)-dependent enzymes that mediate electron transfer reactions. …”
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    Designing high‐performance nonfused ring electron acceptors via side‐chain engineering by Xinming Zheng, Wenlong Liu, Nan Wei, Andong Zhang, Guangliu Ran, Hongtao Shan, Hong Huo, Yahui Liu, Hao Lu, Xinjun Xu, Zheng Tang, Wenkai Zhang, Zhishan Bo

    Published in Aggregate (2024-04-01)
    “…Abstract The side‐chain has a significant influence on the optical properties and aggregation behaviors of the organic small molecule acceptors, which becomes an important strategy to optimize the photovoltaic performance of organic solar cells. In this work, we designed and synthesized three brand‐new nonfused ring electron acceptors (NFREAs) OC4‐4Cl‐Ph, OC4‐4Cl‐Th, and OC4‐4Cl‐C8 with hexylbenzene, hexylthiophene, and octyl side chains on the π‐bridge units. …”
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    Designing Electronic Didactic - Based A Gamafication Environment to Develop Skills of Electrical Engineering by Soaad Shaheen, Samar Nosier

    “…The Current Research Aims At Designing A Gamafication - Based Electronic Didactic Environment In Order To Develop Skills Of Electrical Engineering For Students Of Industrial Education Besides Outlining The Impact Of The Electronic Environment On Developing The Above Mentioned Skills Because Of The Low Level Of Those Students Regarding Their Skillful And Cognitive Aspects. …”
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    Reconfigurable Electronic Platforms: A Top-Down Approach to Learn about Design and Integration of Electronic Systems by Almudena Rivadeneyra, Francisco J. Romero, Michael Haider, Vijay D. Bhatt, Jose F. Salmeron, Noel Rodriguez, Diego P. Morales, Markus Becherer

    Published in Micromachines (2022-03-01)
    “…This case report presents a real example of a study which introduces the use of reconfigurable platforms in the teaching of electronics engineering to establish a bridge between theory and practice. …”
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    Electronically engineering microstructural design for developing advanced steels: An exploration of high Si bainitic steel by Xiaolei Xing, Yawen Li, Shuo Meng, Zhijun Shi, Yefei Zhou, Qingxiang Yang, Jianwei Xiao, Yuntian Zhu, Chuang Deng

    Published in Materials & Design (2022-09-01)
    “…This work suggests that controlling the microstructures by electronic structure engineering has great potential for designing new structural materials with excellent mechanical properties.…”
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    Designing an Electronic System for a Foreign Language Teaching of Students of the Training Program “Information Science and Computer Engineering by Natalya Kopylova

    “…The work shows the design of an information electronic system for teaching students a foreign language (using the example of English) of the training program “Information Science and Computer Engineering” for the educational program “Space Information Systems and Technologies”, based on the technologies for developing web applications. …”
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    Ionic‐electronic dual‐conductor interface engineering and architecture design in layered lithium‐rich manganese‐based oxides by Youyou Fang, Yuefeng Su, Jinyang Dong, Jiayu Zhao, Haoyu Wang, Ning Li, Yun Lu, Yujia Wu, Wenbo Li, Ni Yang, Xiaojuan Wu, Feng Wu, Lai Chen

    Published in Carbon Energy (2025-02-01)
    “…The designed LLO cathode with IEDC interface engineering (LMOSG) exhibits improved ICE (82.9% at 0.1 C), elevated initial discharge capacity (296.7 mAh g−1 at 0.1 C), exceptional rate capability (176.5 mAh g−1 at 5 C), and outstanding cycle stability (73.7% retention at 5 C after 500 cycles). …”
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