RCC
RCC的相关文献在1989年到2022年内共计307篇,主要集中在水利工程、肿瘤学、无线电电子学、电信技术
等领域,其中期刊论文221篇、会议论文12篇、专利文献74篇;相关期刊143种,包括中国处方药、核标准计量与质量、印制电路信息等;
相关会议8种,包括四川省水力发电工程学会2008年学术年会、2007全国理论计算机科学学术年会、2007中日电子电路秋季大会暨秋季国际PCB技术/信息论坛等;RCC的相关文献由581位作者贡献,包括田育功、杨俊、胡汉东等。
RCC
-研究学者
- 田育功
- 杨俊
- 胡汉东
- 郭慧亮
- 阮厚勇
- 庄宗其
- 杜志达
- 佘乃东
- 哈普瑞特·辛格
- 奥利弗·施尔
- 安德里亚·马尔
- 延斯·弗里切
- 托尼·温斯切尼克
- 曾荣良
- 欧珠光
- 毛裕民
- 洪光椅
- 王涛
- 科莱特·宋
- 谢毅
- 郑国川
- A·多尔纳
- D·K·斯洛尼姆
- J·A·斯托弗
- M·E·伯琴斯基
- N·C·特温
- W·L·特雷皮基奥
- 严尚源
- 中村佑辅
- 任永义
- 何凡
- 何江达
- 刘东亮
- 刘传洋
- 刘军
- 刘大有
- 刘纯一
- 向世武
- 周祥兵
- 周秋鸿
- 图尔逊江·乌守尔
- 奚向军
- 姚世强
- 孙先涛
- 孙光
- 孙军帅
- 孙大鹏
- 崔春风
- 左建明
- 张文秀
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摘要:
RCC总部大楼(以下简称"RCC")在叶卡捷琳堡已经正式启用,这是福斯特及合伙人建筑事务所在俄罗斯设计的第一座办公楼。该建筑将传统的分格式办公室进行了重新构想,在质量、舒适度和灵活性方面设定了新的标准。15层楼高的创新性模块化办公单元被包围在一个节能外墙中,成为RCC在叶卡捷琳堡的一个独特象征。
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HONGYAN LI;
CHUNLING LIAO;
WENJUAN WENG;
HONGZHEN ZHONG;
TIANBIAO ZHOU
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摘要:
In this study,we used a meta-analysis method to evaluate the relationship between hypoxia-inducible factor-1α(HIF1α)1772C/T gene polymorphism(rs 11549465)and renal cell carcinoma(RCC)/prostate cancer risk.We searched for relevant studies(before March 1,2019)on Cochrane Library,Embase,and PubMed.Studies meeting the inclusion criteria were recruited into this meta-analysis.The outcome of dichotomous data was showed in the way of odds ratios(OR),and 95%confidence intervals(CI)were also counted.In this investigation,there was no association between HIF1α1772C/T gene polymorphism and susceptibility to RCC in Caucasians,Asians as well as overall populations.In addition,HIF1α1772C/T gene polymorphism was not found to be relevant to the survival in RCC.Interestingly,the T allele was relevant to prostate cancer risk in all populations,but not in Caucasians and Asians.However,the TT genotype and the CC genotype were not related to prostate cancer susceptibility in Asian,Caucasian,and all populations.In conclusion,the T allele of the HIF1α1772C/T gene polymorphism was related to prostate cancer risk in the overall populations.
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Abdul Khaliq Karimi;
Abdul Bari Jaheed;
Bashir Ahmad Aasim;
Javed Ahmad Farooqi
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摘要:
This paper addresses a comprehensive design of RCC T-beam Bridge based on AASHTO design standards. The bridge is designed and proposed to be constructed over an irrigation canal (Zahirshahi canal) of Kandahar province, Afghanistan that has more than 30 bridges over it. Yet they are not enough, and the demand for construction of new bridges is gradually arising because of the vast urbanization in the surrounding of the canal. Most of the bridges on this canal are Reinforced Concrete Slab (RCS) bridges;?these type bridges are limited by capacity and are generally found only in smaller spans. Since they can only span short distances and are often constructed as multiple-span?bridges with vertical supports between the abutments to allow a longer length.?All constructed slab bridges over Zahirshahi canal are four-span bridges. Constructing multi-span bridges on the canal decreases waterway due to the existence of many piers and footings that could increase the water level during the peak flow, even, sometimes can cause over flow. Taking into consideration these deficiencies of the present (RCS) bridges, two-span RCC T-beam Bridge is one of the best alternatives to be constructed over the canal. In addition, canal cross-sectional dimensions are almost constant along its length, though the construction of two-span RCC T-beam bridge is applicable at any point of the canal. The design is selected based on exclusive survey of the area during all seasons including the peak flowing of the canal.
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