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   5264篇
  免费   224篇
  国内免费   16篇
化学   3543篇
晶体学   20篇
力学   139篇
数学   813篇
物理学   989篇
  2023年   36篇
  2022年   29篇
  2021年   85篇
  2020年   77篇
  2019年   63篇
  2018年   96篇
  2017年   55篇
  2016年   150篇
  2015年   146篇
  2014年   163篇
  2013年   289篇
  2012年   367篇
  2011年   400篇
  2010年   185篇
  2009年   176篇
  2008年   279篇
  2007年   319篇
  2006年   269篇
  2005年   237篇
  2004年   210篇
  2003年   177篇
  2002年   150篇
  2001年   87篇
  2000年   49篇
  1999年   38篇
  1998年   32篇
  1997年   29篇
  1996年   33篇
  1995年   30篇
  1994年   34篇
  1993年   26篇
  1992年   24篇
  1991年   24篇
  1990年   25篇
  1989年   23篇
  1988年   24篇
  1985年   24篇
  1984年   24篇
  1983年   22篇
  1982年   26篇
  1981年   26篇
  1980年   21篇
  1977年   21篇
  1934年   26篇
  1933年   24篇
  1932年   29篇
  1930年   24篇
  1929年   24篇
  1927年   28篇
  1924年   20篇
排序方式: 共有5504条查询结果,搜索用时 15 毫秒
1.

In this paper, we design a Branch and Bound algorithm based on interval arithmetic to address nonconvex robust optimization problems. This algorithm provides the exact global solution of such difficult problems arising in many real life applications. A code was developed in MatLab and was used to solve some robust nonconvex problems with few variables. This first numerical study shows the interest of this approach providing the global solution of such difficult robust nonconvex optimization problems.

  相似文献   
2.
3.
4.

The diffusive behavior of nanoparticles inside porous materials is attracting a lot of interest in the context of understanding, modeling, and optimization of many technical processes. A very powerful technique for characterizing the diffusive behavior of particles in free media is dynamic light scattering (DLS). The applicability of the method in porous media is considered, however, to be rather difficult due to the presence of multiple sources of scattering. In contrast to most of the previous approaches, the DLS method was applied without ensuring matching refractive indices of solvent and porous matrix in the present study. To test the capabilities of the method, the diffusion of spherical gold nanoparticles within the interconnected, periodic nanopores of inverse opals was analyzed. Despite the complexity of this system, which involves many interfaces and different refractive indices, a clear signal related to the motion of particles inside the porous media was obtained. As expected, the diffusive process inside the porous sample slowed down compared to the particle diffusion in free media. The obtained effective diffusion coefficients were found to be wave vector-dependent. They increased linearly with increasing spatial extension of the probed particle concentration fluctuations. On average, the slowing-down factor measured in this work agrees within combined uncertainties with literature data.

  相似文献   
5.
6.
Naphthalimide‐phthalimide derivatives (NDPDs) have been synthesized and combined with an iodonium salt, N‐vinylcarbazole, amine or 2,4,6‐tris(trichloromethyl)‐1,3,5‐triazine to produce reactive species (i.e., radicals and cations). These generated reactive species are capable of initiating the cationic polymerization of epoxides and/or the radical polymerization of acrylates upon exposure to very soft polychromatic visible lights or blue lights. Compared with the well‐known camphorquinone based systems used as references, the novel NDPD based combinations employed here demonstrate clearly higher efficiencies for the cationic polymerization of epoxides under air as well as the radical polymerization of acrylates. Remarkably, one of the NDPDs (i.e., NDPD2) based systems is characterized by an outstanding reactivity. The structure/reactivity/efficiency relationships of the investigated NDPDs were studied by fluorescence, cyclic voltammetry, laser flash photolysis, electron spin resonance spin trapping, and steady state photolysis techniques. The key parameters for their reactivity are provided. © 2014 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2015 , 53, 665–674  相似文献   
7.
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