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   1374857篇
  免费   39819篇
  国内免费   14848篇
化学   696168篇
晶体学   20469篇
力学   78213篇
综合类   411篇
数学   246207篇
物理学   388056篇
  2021年   15850篇
  2020年   18151篇
  2019年   18474篇
  2018年   13294篇
  2016年   30020篇
  2015年   23286篇
  2014年   33779篇
  2013年   78587篇
  2012年   42743篇
  2011年   38451篇
  2010年   39459篇
  2009年   41856篇
  2008年   36289篇
  2007年   30993篇
  2006年   38510篇
  2005年   29317篇
  2004年   30719篇
  2003年   28838篇
  2002年   30084篇
  2001年   28995篇
  2000年   25582篇
  1999年   23651篇
  1998年   22056篇
  1997年   22062篇
  1996年   22167篇
  1995年   20050篇
  1994年   19368篇
  1993年   18717篇
  1992年   18541篇
  1991年   18760篇
  1990年   17888篇
  1989年   17866篇
  1988年   17326篇
  1987年   17312篇
  1986年   16236篇
  1985年   22571篇
  1984年   23799篇
  1983年   19978篇
  1982年   21660篇
  1981年   20888篇
  1980年   20205篇
  1979年   20295篇
  1978年   21662篇
  1977年   21245篇
  1976年   20947篇
  1975年   19654篇
  1974年   19275篇
  1973年   19796篇
  1972年   14278篇
  1967年   12483篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
Employing radical bridges between anisotropic metal ions has been a viable route to achieve high-performance single-molecule magnets (SMMs). While the bridges have been mainly considered for their ability to promote exchange interactions, the crystal-field effect arising from them has not been taken into account explicitly. This lack of consideration may distort the understanding and limit the development of the entire family. To shed light on this aspect, herein we report a theoretical investigation of a series of N -radical-bridged diterbium complexes. It is found that while promoting strong exchange coupling between the terbium ions, the N -radical induces a crystal field that interferes destructively with that of the outer ligands, and thus reduces the overall SMM behavior. Based on the theoretical results, we conclude that the SMM behavior in this series could be further maximized if the crystal field of the outer ligands is designed to be collinear with that of the radical bridge. This conclusion can be generalized to all exchange-coupled SMMs.  相似文献   
2.
3.
4.
5.
In this article, we construct and analyze a residual-based a posteriori error estimator for a quadratic finite volume method (FVM) for solving nonlinear elliptic partial differential equations with homogeneous Dirichlet boundary conditions. We shall prove that the a posteriori error estimator yields the global upper and local lower bounds for the norm error of the FVM. So that the a posteriori error estimator is equivalent to the true error in a certain sense. Numerical experiments are performed to illustrate the theoretical results.  相似文献   
6.
7.
A liquid dewetting method for the determination of the viscoelastic properties of ultrathin polymer films has been extended to study thickness effects on the properties of ultrathin polycarbonate (PC) films. PC films with film thicknesses ranging from 4 to 299 nm were placed on glycerol at temperatures from below the macroscopic glass transition temperature (Tg) to above it with the dewetting responses being monitored. It is found that the isothermal creep results for films of the same thickness, but dewetted at different temperatures can be superposed into one master curve, which is consistent with the fact of PC being a thermorheologically simple material. Furthermore, the results show that the Tg of PC thin films is thickness dependent, but the dependence is weaker than the results for freely standing films and similar to literature data for PC films supported on rigid substrates. It was also found that the rubbery plateau region for the PC films stiffens dramatically, but still less than what has been observed for freely standing polycarbonate films. The rubbery stiffening is discussed in terms of a recently reported model that relates macroscopic segmental dynamics with the stiffening. © 2015 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2015 , 53, 1559–1566  相似文献   
8.
9.
10.
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