首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   88311篇
  免费   9442篇
  国内免费   5359篇
电工技术   7251篇
技术理论   6篇
综合类   6913篇
化学工业   12285篇
金属工艺   5147篇
机械仪表   6444篇
建筑科学   7673篇
矿业工程   2721篇
能源动力   2626篇
轻工业   6848篇
水利工程   2312篇
石油天然气   4227篇
武器工业   1052篇
无线电   10877篇
一般工业技术   8911篇
冶金工业   3294篇
原子能技术   1245篇
自动化技术   13280篇
  2024年   192篇
  2023年   1423篇
  2022年   2744篇
  2021年   3979篇
  2020年   3000篇
  2019年   2336篇
  2018年   2706篇
  2017年   3003篇
  2016年   2770篇
  2015年   3980篇
  2014年   5026篇
  2013年   5828篇
  2012年   6833篇
  2011年   7398篇
  2010年   6708篇
  2009年   6232篇
  2008年   6294篇
  2007年   5955篇
  2006年   5306篇
  2005年   4316篇
  2004年   2955篇
  2003年   2288篇
  2002年   2152篇
  2001年   1866篇
  2000年   1601篇
  1999年   1362篇
  1998年   877篇
  1997年   768篇
  1996年   720篇
  1995年   602篇
  1994年   485篇
  1993年   322篇
  1992年   252篇
  1991年   166篇
  1990年   125篇
  1989年   109篇
  1988年   89篇
  1987年   58篇
  1986年   34篇
  1985年   27篇
  1984年   13篇
  1983年   12篇
  1982年   15篇
  1981年   15篇
  1980年   26篇
  1979年   20篇
  1962年   42篇
  1961年   39篇
  1960年   16篇
  1951年   9篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
杨斌 《电讯技术》2022,62(6):826-835
空中分布式作战是美军为应对“反介入/区域拒止”挑战提出的重要作战概念,具备分布式、智能化、高动态、大规模等特点,是未来美军空中作战平台在体系支持下作战样式的发展趋势。首先,按照提出时间梳理了美军空中分布式作战概念及典型研究项目,分析了空中分布式作战内涵、特点、工作机理以及发展趋势;然后,结合空中作战平台典型构型,提出了全域作战体系支撑下的空中分布式作战样式设想;最后,设计了空中分布式作战体系技术框架,并讨论了相应的关键技术。  相似文献   
2.
3.
Novel inks were formulated by dissolving polycaprolactone (PCL), a hydrophobic polymer, in organic solvent systems; polyethylene oxide (PEO) was incorporated to extend the range of hydrophilicity of the system. Hydroxyapatite (HAp) with a weight ratio of 55–85% was added to the polymer-based solution to mimic the material composition of natural bone tissue. The direct ink writing (DIW) technique was applied to extrude the formulated inks to fabricate the predesigned tissue scaffold structures; the influence of HAp concentration was investigated. The results indicate that in comparison to other inks containing HAp (55%, 75%, and 85%w/w), the ink containing 65% w/w HAp had faster ink recovery behavior; the fabricated scaffold had a rougher surface as well as better mechanical properties and wettability. It is noted that the 65% w/w HAp concentration is similar to the inorganic composition of natural bone tissue. The elastic modulus values of PCL/PEO/HAp scaffolds were in the range of 4–12 MPa; the values were dependent on the HAp concentration. Furthermore, vancomycin as a model drug was successfully encapsulated in the PCL/PEO/HAp composite scaffold for drug release applications. This paper presents novel drug-loaded PCL/PEO/HAp inks for 3D scaffold fabrication using the DIW printing technique for potential bone scaffold applications.  相似文献   
4.
5.
The structural diversity of polyphenols and the inherent limitations of current extraction techniques pose a challenge to extract polyphenols using a simple and green method. Hence, in this study, a method was developed to simultaneously fractionate multiple classes of polyphenols by only varying ethanol-water solutions. Honeybush tea, which is rich in polyphenols, was selected as a model for this study. Solvent extraction followed by solid-phase extraction (SPE) was developed to obtain a polyphenol-rich fraction from six honeybush samples. Based on a gradient elution programme (10%, 30%, 50%, 70% and 90% (v/v) ethanol-water solution) of SPE, the Strata X cartridge showed a better recovery of most targeted polyphenols under 0.9 mL of the drying volume and 1 mL min−1 of the dispensing speed. The elution programme for fractionating most polyphenols was as follows: single elution with 50% ethanol, followed by twice elution with 70% ethanol. The antioxidant capacity was used to analyse the differences among the polyphenol-rich fractions from six honeybush samples. Principal component analysis (PCA) revealed that unfermented C. genistoides (GG) has the greatest antioxidant capacity among the honeybush species studied. Additionally, mangiferin, isomangiferin and vicenin-2 were the main contributors to the antioxidant capacity in six honeybush fractions according to the correlation study.  相似文献   
6.
In this article, the memory-based dynamic event-triggered controller design issue is investigated for networked interval type-2 (IT2) fuzzy systems under non-periodic denial-of-service (DoS) attacks. For saving limited network bandwidth, a novel memory-based dynamic event-triggered mechanism (DETM) is proposed to schedule data communication. Unlike existing event-triggered generators, the developed memory-based DETM can utilize a series of newly released signals and further save network resources by introducing interval dynamic variables. Moreover, to improve design flexibility, an IT2 fuzzy controller with freely selectable fuzzy rule number and premise membership functions (MFs) is synthesized. Then, a new switched time-delay system with imperfectly matched MFs is established under the consideration of memory-based DETM and DoS attacks simultaneously. Besides, based on the property of MFs, the boundary information of membership grades and slack matrices are introduced in the stability analysis. Furthermore, by using a piecewise Lyapunov–Krasovskii method, membership-functions-dependent criteria are deduced to ensure the asymptotic stability of built fuzzy switched systems. Finally, the effectiveness of proposed control strategies is demonstrated by simulation examples.  相似文献   
7.
8.
9.
10.
目的观察化脓隐秘杆菌自然感染奶牛脾脏组织的病理学变化,并检测组织细胞中Caspase-3、Caspase-8、Caspase-9、Bax和Bcl-2的表达,以确定化脓隐秘杆菌感染对奶牛脾脏组织细胞凋亡的影响。方法筛检2头化脓隐秘杆菌阴性健康奶牛(对照)和5头自然感染化脓隐秘杆菌的奶牛,收集脾脏组织样本,采用本课题组国家发明专利方法,进行石蜡制片和HE染色,观察脾脏组织病理学变化;采用免疫组织化学方法与本课题组国家发明专利方法相结合,检测奶牛脾脏组织中与细胞正负凋亡相关的调节基因Bax和Bcl-2及凋亡通路蛋白Caspase-3、Caspase-8和Caspase-9的表达情况。结果肉眼观察可见化脓隐秘杆菌自然感染奶牛脾脏肿大、柔软,有出血;病理组织学观察可见脾脏组织出血,水肿,淋巴细胞数量减少,有坏死;脾脏淋巴细胞Caspase-3、Caspase-9和Bax表达阳性,与对照组相比,差异有统计学意义(P <0.05),少量淋巴细胞Caspase-8和Bcl-2表达阳性,与对照组相比,差异无统计学意义(P> 0.05)。结论化脓隐秘杆菌能够引起奶牛脾脏淋巴细胞发生坏死和凋亡;可通过调节脾脏中淋巴细胞Bcl-2家族的活性,引起其Bax和Bcl-2比率改变,增加淋巴细胞线粒体内外膜通透性,导致与凋亡相关因子的释放,激活Caspase-9,进一步激活Caspase-3,从而引起脾脏中淋巴细胞发生凋亡。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号