
Tian Yue - Wikipedia
Tian Yue (Chinese: 田悅) (751 – March 26, 784 [1]), formally the Prince of Jiyang (濟陽王), was a Chinese military general, monarch, and politician who, from 782 to 784, claimed the title of Prince of Wei independent from the Tang regime.
Tian-Yue Chen - Google 學術搜尋 - Google Scholar
2021 IEEE International Symposium on Radio-Frequency Integration Technology …
Tian Yue - The New York Times | LinkedIn
View Tian Yue’s profile on LinkedIn, a professional community of 1 billion members. Hello, I'm Tian, a seasoned Data Architect and Analytics Engineer, I excel in…
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田跃 - 太原理工大学 - 物理与光电工程学院 - X-MOL科学 ...
稀土离子由于其具有独特的4f电子构型而展现出优异的光、电、磁及催化等特性,因此在照明、显示、光纤通讯、生物医学等领域具有着广泛的应用前景。 目前,本人的研究兴趣主要集中于以下三个方面: (1) 稀土掺杂无机微纳米材料的可控合成及光谱学性质研究; (2) 白光LED用荧光粉的合成及能量传递的研究 (3) 上转换发光敏化、光谱调控及其光催化性能的研究.
Yue Tian | IEEE Xplore Author Details
Yue Tian's primary research areas include Integrated Sensing and Communication (ISAC), semantic communication and information security, intelligent metasurfaces, peripheral device development for the metaverse, optimization of quantum communication systems, mobile edge computing/cloud-fog fusion computing, and wireless network security.
导师简介-田悦-光电与通信工程学院网站 - xmut.edu.cn
主持国家自然科学基金青年项目“群智云雾融合组网的弹性多域协同与冲突规避”、主持福建省自然科学基金面上项目“多模态云雾弹性融合共存与跨域协同关键技术的研究”、主持福建省自然科学基金面上项目“正交多址接入技术在无线协作网络中的物理层安全性的研究”、主持厦门市高层次留学人才项目(重点类)、主持厦门市自然科学基金面上项目等多项国家级和省市重点科研项目。 发表国际高水平论文50余篇。...
Yue Tian - Google Scholar
Pro Vice-Chancellor (People and Equity), University of Melbourne. C Huang, S Fujisawa, TF de Lima, AN Tait, EC Blow, Y Tian, S Bilodeau, ... D Qian, E Ip, MF Huang, MJ Li, A Dogariu, S Zhang, Y...
Tian Yue - Alchetron, The Free Social Encyclopedia
2024年9月26日 · Tian Yue (田悅) (751 – March 26, 784), formally the Prince of Jiyang (濟陽王), was a general of the Chinese dynasty Tang Dynasty who, from 782 to 784, claimed the title of Prince of Wei independent from the Tang regime.
浙江天岳汽车电器有限公司
浙江天岳汽车电器有限公司是一家专业制造汽车电动门锁系列产品的公司,始创于1984年,以科技创新、自主研发、持续发展为 ...
Tian-Yue - ORCID
Tian-Yue Chen via Scopus - Elsevier Comparative study on spin-orbit torque efficiencies from W/ferromagnetic and W/ferrimagnetic heterostructures Phys. Rev. Materials