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   101681篇
  免费   4333篇
  国内免费   2755篇
化学   41102篇
晶体学   1073篇
力学   8125篇
综合类   111篇
数学   34585篇
物理学   23773篇
  2023年   497篇
  2022年   787篇
  2021年   846篇
  2020年   1014篇
  2019年   990篇
  2018年   11008篇
  2017年   10789篇
  2016年   7108篇
  2015年   1940篇
  2014年   1588篇
  2013年   2051篇
  2012年   6046篇
  2011年   12721篇
  2010年   7117篇
  2009年   7417篇
  2008年   8131篇
  2007年   10135篇
  2006年   1564篇
  2005年   2422篇
  2004年   2332篇
  2003年   2589篇
  2002年   1603篇
  2001年   683篇
  2000年   721篇
  1999年   669篇
  1998年   621篇
  1997年   579篇
  1996年   648篇
  1995年   473篇
  1994年   380篇
  1993年   326篇
  1992年   286篇
  1991年   261篇
  1990年   218篇
  1989年   201篇
  1988年   155篇
  1987年   166篇
  1986年   144篇
  1985年   130篇
  1984年   89篇
  1983年   79篇
  1982年   76篇
  1981年   56篇
  1980年   57篇
  1979年   53篇
  1914年   45篇
  1913年   40篇
  1912年   40篇
  1909年   41篇
  1908年   40篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
31.
Defects play a central role in controlling the electronic properties of two-dimensional (2D) materials and realizing the industrialization of 2D electronics. However, the evaluation of charged defects in 2D materials within first-principles calculation is very challenging and has triggered a recent development of the WLZ (Wang, Li, Zhang) extrapolation method. This method lays the foundation of the theoretical evaluation of energies of charged defects in 2D materials within the first-principles framework. Herein, the vital role of defects for advancing 2D electronics is discussed, followed by an introduction of the fundamentals of the WLZ extrapolation method. The ionization energies (IEs) obtained by this method for defects in various 2D semiconductors are then reviewed and summarized. Finally, the unique defect physics in 2D dimensions including the dielectric environment effects, defect ionization process, and carrier transport mechanism captured with the WLZ extrapolation method are presented. As an efficient and reasonable evaluation of charged defects in 2D materials for nanoelectronics and other emerging applications, this work can be of benefit to the community.  相似文献   
32.
The structure and properties of 12Cr1MoV steel irradiated with a zirconium ion beam were studied by optical microscopy, scanning electron microscopy, and micro- and nanoindentation. It is shown that the modification covers the entire cross-section of the irradiated specimens to a depth of 1 mm. The data on irradiation-induced structural changes are used to interpret the changes in mechanical properties of the irradiated specimens under static and cyclic loading. Particular attention is given to analysis of strain estimation by the digital image correlation method.  相似文献   
33.
Ni–Co alloys have a wide range of applications in various fields owning to their excellent physical, chemical, and mechanical properties. In this paper, we prepare Ni–Co alloy coatings on 316L stain steel surfaces by electroplating. We present a novel approach utilizing a nanosecond laser to induce microtextures on Ni–Co alloy coatings. We study experimentally the effects of laser power and scanning rate on the surface morphologies of Ni–Co alloy coatings. The results indicate that the shape and size of induced microtextures can be controlled by the laser power and scanning rate. The size of grains increases with increase in the work current of the laser (WCL) at a certain scanning rate. With the WCL constant, the size of grains decreases with increase in scanning rate while their average height increases. It is a simple and easily-controlled method for the fabrication of microstructures on Ni–Co alloy coatings, which has promising applications in investigations of the properties of microtextured surfaces, such as friction, adhesion, and wetting.  相似文献   
34.
35.
36.
37.
38.
39.
We give the form of the output function in Ginsburg’s machine in which the input and output dictionaries are abelian groups and the transition function is of a special form.  相似文献   
40.
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