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   120265篇
  免费   593篇
  国内免费   158篇
化学   45521篇
晶体学   1702篇
力学   8054篇
综合类   3篇
数学   27111篇
物理学   38625篇
  2023年   112篇
  2022年   333篇
  2021年   529篇
  2020年   394篇
  2019年   502篇
  2018年   10190篇
  2017年   11089篇
  2016年   5143篇
  2015年   1438篇
  2014年   764篇
  2013年   1286篇
  2012年   5702篇
  2011年   14697篇
  2010年   8512篇
  2009年   8516篇
  2008年   12317篇
  2007年   16225篇
  2006年   580篇
  2005年   7974篇
  2004年   4069篇
  2003年   4035篇
  2002年   1757篇
  2001年   268篇
  2000年   410篇
  1999年   117篇
  1998年   94篇
  1997年   75篇
  1996年   245篇
  1995年   151篇
  1994年   140篇
  1993年   108篇
  1992年   116篇
  1991年   116篇
  1990年   112篇
  1989年   129篇
  1988年   134篇
  1987年   132篇
  1986年   115篇
  1985年   138篇
  1984年   154篇
  1983年   126篇
  1982年   127篇
  1981年   128篇
  1980年   124篇
  1979年   139篇
  1978年   144篇
  1976年   87篇
  1973年   109篇
  1969年   80篇
  1968年   108篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
A dispersive solid-phase extraction method based on a new sorbent has been performed on plasma and wastewater samples to determine metoprolol by high-performance liquid chromatography–tandem mass spectrometry. In this study, the analyte was adsorbed from the samples onto microcrystalline cellulose as a green and efficient sorbent and then eluted for use in the determination step. In the mass spectrometer, the analyte was detected in the positive mode and selectivity of the analysis was increased by sequential mass analysis through multiple reaction monitoring. All of the effective parameters in the extraction of metoprolol from plasma and wastewater were optimized. Under optimal conditions the method was linear in the ranges of 1–1,000 and 0.1–1,000 ng/ml in plasma and wastewater samples, respectively. The detection limits of the method were 0.30 and 0.03 ng/ml in plasma and wastewater samples, respectively. The data showed that the method provides low detection limit, wide linear range, good precision and high extraction recovery. Finally several plasma and wastewater samples were successfully analyzed using the method. The use of a small amount of a green and inexpensive sorbent and a low volume of plasma without the need for further pretreatment steps are the main advantages of the method.  相似文献   
2.
3.
Journal of Algebraic Combinatorics - The symbolic powers, in general, are not equal to the ordinary powers. Therefore, one interesting question here is for what classes of ideals ordinary and...  相似文献   
4.
5.
6.
7.
8.
We summarize the results of our recent work on Bäcklund transformations (BTs), particularly focusing on the relation between BTs and infinitesimal symmetries. We present a BT for an associated Degasperis–Procesi (aDP) equation and its superposition principle and investigate the solutions generated by applying this BT. Following our general methodology, we use the superposition principle of the BT to generate the infinitesimal symmetries of the aDP equation.  相似文献   
9.
Mesoscopic modeling at the pore scale offers great promise in exploring the underlying structure transport performance of flow through porous media. The present work studies the fluid flow subjected to capillarity-induced resonance in porous media characterized by different porous structure and wettability. The effects of porosity and wettability on the displacement behavior of the fluid flow through porous media are discussed. The results are presented in the form of temporal evolution of percentage saturation and displacement of the fluid front through porous media. The present study reveals that the vibration in the form of acoustic excitation could be significant in the mobilization of fluid through the porous media. The dependence of displacement of the fluid on physicochemical parameters like wettability of the surface, frequency along with the porosity is analyzed. It was observed that the mean displacement of the fluid is more in the case of invading fluid with wetting phase where the driving force strength is not so dominant.  相似文献   
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