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| 1 | Analysis on the Application of Reactive Power Compensation Technology in Electrical Automation显示文摘 | Rumin LIU Lingzhi YANG Haiming LIU | 2015 | International Journal of Technology Management2015,,2: | 1 |
| 2 | Spatial Pattern of Female Non-agricultural Employment and Its Driving Forces in Guangdong Province,China:A Perspective of Individual and Family-level显示文摘Promoting women’s employment is not only the need of social and economic development,but also the historical mission of liberating women.This paper uses data from the 1%Population Sample Survey,taken in Guangdong Province in 2015,to explore how women’s marital status,education,and family environment affect the female non-agricultural employment rate(FNAER)on a county scale using a spatial-lag model.The results show that:1)The female non-agricultural employment rate in counties of Guangdong Province is low,with more than three-quarters of counties having female non-agricultural employment rate less than 50%.Moreover,the spatial distribution of FNAER is uneven,with the high-value areas concentrated in the southeast and the low-value areas mainly distributed in the central and western parts of Guangdong Province.2)From the perspective of industry,there are significant spatial differences among women.In the southeast,women are mainly engaged in the secondary industry,while in the central and western regions,women are mainly engaged in the tertiary industry.3)Women having better skills and more effective support from the elderly can improve the FNAER.Women having lower skills,smaller-scale families,a higher fertility rate,and households with two or more elderly members have a negative effect on the FNAER.4)Public policies suggest that improving women’s education and their family environment,building social welfare facilities,and repairing the family environment will increase the FNAER. | FU Zhanhui MEI Lin LIU Yanjun TIAN Junfeng ZHENG Rumin TIAN Jing | 2020 | Chinese Geographical Science2020,30,4: | 0 |
| 3 | Research on Flexible Manufacturing System in Mechatronics Professional Comprehensive Training显示文摘 | Rumin LIU Haiming LIU Lingzhi YANG | 2015 | International Journal of Technology Management2015,,1: | 0 |
| 4 | Discussion on Existing Problems and the Development Trend of Electrical Automation Monitoring System显示文摘 | Haiming LIU Rumin LIU Lingzhi YANG | 2015 | International Journal of Technology Management2015,,3: | 0 |
| 5 | Research on Distribution of Electric Dipole Field based on Applied Mathematics and Computer显示文摘 | Lingzhi YANG Rumin LIU Haiming LIU | 2015 | International Journal of Technology Management2015,,4: | 0 |
| 6 | Attenuation of Telomerase Activity by siRNA Targeted Telomerase RNA Leads to Apoptosis and Inhibition of Proliferation in Human Renal Carcinoma Cells显示文摘OBJECTIVE Telomerase is an attractive molecular target for cancer therapy because the activation of telomerase is one of the key steps in cell immortalization and carcinogenesis. RNA interference using small-interfering RNA (siRNA) has been demonstrated to be an effective method for inhibiting the expression of a given gene in human cells. The aim of the present study was to investigate whether inhibition of telomerase activity by siRNA targeted against human telomerase RNA (hTR) can inhibit proliferation and induce apoptotic cell death in human renal carcinoma cells (HRCCs). METHODS The siRNA duplexes for hTR were synthesized and 786-0 HRCCs were transfected with different concentrations of hTR-siRNA. The influence on the hTR mRNA level, telomerase activity, as well as the effect on cell proliferation and apoptosis was examined. RESULTS Anti-hTR siRNA treatment of HRCCs resulted in specific reduction of hTR mRNA and inhibition of telomerase activity. Additionally, significant inhibition of proliferation and induction of apoptosis were observed. CONCLUSION siRNA against the hTR gene can inhibit proliferation and induce apoptosis by blocking telomerase activity of HRCCs. Specific hTR inhibition by siRNA represents a promising new option for renal cancer treatment. | Rumin Wen Junjie Liu Wang Li Wenfa Yang Lijun Mao Junnian Zheng | 2006 | Chinese Journal of Clinical Oncology2006,3,5: | 0 |
| 7 | Carbonized waste milk powders as cathodes for stable lithium-sulfur batteries with ultra-large capacity and high initial coulombic efficiency显示文摘To explore the natural resources as sustainable precursors offers a family of green materials.The use of bio-waste precursors especially the remaining from food processing is a scalable,highly abundant,and cost-effective strategy.Exploring waste materials is highly important especially for new materials discovery in emerging energy storage technologies such as lithium sulfur batteries(LSBs).Herein,waste milk powder is carbonized and constructed as the sulfur host with the hollow micro-/mesoporous framework,and the resulting carbonized milk powder and sulfur(CMP/S) composites are employed as cathodes for LSBs.It is revealed that the hollow micro-/mesoporous CMP/S framework can not only accommodate the volume expansion but also endow smooth pathways for the fast diffusion of electrons and Li-ions,leading to both high capacity and long cycling stability.The CMP/S composite electrode with 56 wt% loaded sulfur exhibits a remarkable initial capacity of 1596 mAh g^(-1) at 0.1 C,corresponding to 95% of the theoretical capacity.Even at a rate of 1 C,it maintains a high capacity of 730 mAh g^(-1) with a capacity retention of 72.6% after 500 cycles,demonstrating a very low capacity fading of only 0.05% per cycle.Importantly,the Coulombic efficiency is always higher than 96%during all the cycles.The only used source material is expired waste milk powders in our proposal.We believe that this 'trash to treasure' approach will open up a new way for the utilization of waste material as environmentally safe and high performance electrodes for advanced LSBs. | Rabia Khatoon Sanam Attique Rumin Liu Sajid Rauf Nasir Ali Luhong Zhang Yu-Jia Zeng Yichuan Guo Yusuf Valentino Kaneti Jongbeom Na Haichao Tang Hongwen Chen Yang Tian Jianguo Lu | 2022 | Green Energy & Environment2022,7,5: | 0 |