正在显示 271 至 278 笔资料(共 278 笔资料)
2018年5月11日
ARTS + iNNOVATION (A+i) at the City University of Hong Kong Chengdu Research Institute (CityUCRI), which officially opened on 11 May, will provide public space for applied research, training and incubation for creative media and digital society-related industries. It will also enhance collaboration on research and professional training between Chengdu and Hong Kong. <br />
2018年4月23日
在最新一期的世界顶级学术期刊《科学》杂志上,其刊登的《Ultralarge elastic deformation of nanoscale diamond》一文宣布了这项金刚石在纳米尺度下力学行为的重大发现。该研究项目由香港城市大学机械与生物医学工程系副教授、香港城市大学深圳研究院先进结构材料研究中心(CASM)研究员陆洋课题组领衔展开。这支由中美科学家领导的国际科研团队首次报道,在纳米尺度下,即金刚石的大小降至约100纳米(约人类头发六百分之一粗幼)时,就可承受前所未有的巨大形变且能恢复原状,而其中单晶纳米金刚石的弹性拉伸形变最大可以达到约百分之九,接近金刚石在理论上所能达到的弹性变形极限。
2018年4月19日
Innovative green technology capable of recycling mixed textile waste into value-added products, such as synthetic fibre and bioplastics, is developed by a researcher team from the School of Energy and Environment (SEE) at City University of Hong Kong. The team recently won a Gold Medal at the 46th International Exhibition of Inventions of Geneva.
2017年12月21日
The development of a more effective photothermal therapy for treating cancer may now be one step closer.
2017年11月14日
Energy must balance with environmental protection, reliability and sustainability, and social and economic welfare. That’s the key message in a commentary article penned by Professor Way Kuo, President of City University of Hong Kong, for the 2018 January issue of the journal Joule. <br />
2017年10月17日
A smart thermostat for central air-conditioning systems that can save more than 10% on power and improve indoor comfort levels has been developed and launched onto the market by a team at City University of Hong Kong (CityU).
2017年6月5日
A pioneering system for predicting with greater accuracy the landfall of seasonal typhoons to be developed by Professor Johnny Chan Chung-leung, Chair Professor of Atmospheric Science at the School of Energy and Environment, City University of Hong Kong (CityU), has received a grant under the European Commission (EC) and Research Grants Council (RGC) Collaboration Scheme.
2017年4月6日
The new advanced material is 10 times stronger than conventional crystalline magnesium alloy and has super-deformation capacity two times higher than that of magnesium-based metallic glass. The magnesium-alloy system consists of nanocrystalline cores embeddedin amorphous glassy shells. The strength of the resulting dual-phase material is a near-ideal 3.3 gigapascals (Gpa) – making this the strongest magnesium – alloy thin film yet developed.