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   299120篇
  免费   4702篇
  国内免费   906篇
化学   165235篇
晶体学   3877篇
力学   10910篇
综合类   3篇
数学   38058篇
物理学   86645篇
  2021年   2173篇
  2020年   2622篇
  2019年   2868篇
  2018年   3660篇
  2017年   3482篇
  2016年   5913篇
  2015年   4321篇
  2014年   5584篇
  2013年   14948篇
  2012年   11754篇
  2011年   13507篇
  2010年   8841篇
  2009年   8369篇
  2008年   12129篇
  2007年   12099篇
  2006年   11025篇
  2005年   10411篇
  2004年   9108篇
  2003年   7918篇
  2002年   7653篇
  2001年   8227篇
  2000年   6412篇
  1999年   5008篇
  1998年   4114篇
  1997年   4080篇
  1996年   4007篇
  1995年   3633篇
  1994年   3525篇
  1993年   3571篇
  1992年   3856篇
  1991年   3763篇
  1990年   3631篇
  1989年   3490篇
  1988年   3563篇
  1987年   3388篇
  1986年   3266篇
  1985年   4479篇
  1984年   4595篇
  1983年   3753篇
  1982年   4103篇
  1981年   3999篇
  1980年   3826篇
  1979年   3858篇
  1978年   4073篇
  1977年   3861篇
  1976年   4075篇
  1975年   3619篇
  1974年   3748篇
  1973年   4080篇
  1972年   2451篇
排序方式: 共有10000条查询结果,搜索用时 46 毫秒
31.
32.
The growth-fragmentation equation describes a system of growing and dividing particles, and arises in models of cell division, protein polymerisation and even telecommunications protocols. Several important questions about the equation concern the asymptotic behaviour of solutions at large times: at what rate do they converge to zero or infinity, and what does the asymptotic profile of the solutions look like? Does the rescaled solution converge to its asymptotic profile at an exponential speed? These questions have traditionally been studied using analytic techniques such as entropy methods or splitting of operators. In this work, we present a probabilistic approach: we use a Feynman–Kac formula to relate the solution of the growth-fragmentation equation to the semigroup of a Markov process, and characterise the rate of decay or growth in terms of this process. We then identify the Malthus exponent and the asymptotic profile in terms of a related Markov process, and give a spectral interpretation in terms of the growth-fragmentation operator and its dual.  相似文献   
33.
34.
35.
Palladium nanoparticle‐incorporated metal–organic framework MIL‐101 (Pd/MIL‐101) was successfully synthesized and characterized using X‐ray diffraction, nitrogen physisorption, X‐ray photoelectron, UV–visible and infrared spectroscopies, and transmission electron microscopy. The characterization techniques confirmed high porosity and high surface area of MIL‐101 and high stability of nano‐size palladium particles. Pd/MIL‐101 nanocomposite was investigated for the Sonogashira cross‐coupling reaction of aryl and heteroaryl bromides with various alkynes under copper‐free conditions. The reusability of the catalyst was tested for up to four cycles without any significant loss in catalytic activity. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
36.
37.
38.
39.
40.
The aim of this work was to determine the parameters that have decisive roles in microwave-assisted reactions and to develop a model, using computational chemistry, to predict a priori the type of reactions that can be improved under microwaves. For this purpose, a computational study was carried out on a variety of reactions, which have been reported to be improved under microwave irradiation. This comprises six types of reactions. The outcomes obtained in this study indicate that the most influential parameters are activation energy, enthalpy, and the polarity of all the species that participate. In addition to this, in most cases, slower reacting systems observe a much greater improvement under microwave irradiation. Furthermore, for these reactions, the presence of a polar component in the reaction (solvent, reagent, susceptor, etc.) is necessary for strong coupling with the electromagnetic radiation. We also quantified that an activation energy of 20–30 kcal mol−1 and a polarity (μ) between 7–20 D of the species involved in the process is required to obtain significant improvements under microwave irradiation.  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