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   367187篇
  免费   2335篇
  国内免费   1037篇
化学   166037篇
晶体学   5008篇
力学   20098篇
综合类   7篇
数学   73068篇
物理学   106341篇
  2020年   2108篇
  2019年   2407篇
  2018年   18936篇
  2017年   19370篇
  2016年   12743篇
  2015年   3933篇
  2014年   4362篇
  2013年   9887篇
  2012年   13811篇
  2011年   27591篇
  2010年   16776篇
  2009年   17183篇
  2008年   22785篇
  2007年   27632篇
  2006年   8333篇
  2005年   14187篇
  2004年   10671篇
  2003年   10587篇
  2002年   7864篇
  2001年   6404篇
  2000年   5332篇
  1999年   3701篇
  1998年   3303篇
  1997年   3255篇
  1996年   3210篇
  1995年   2601篇
  1994年   2612篇
  1993年   2663篇
  1992年   2760篇
  1991年   2825篇
  1990年   2724篇
  1989年   2701篇
  1988年   2645篇
  1987年   2613篇
  1986年   2517篇
  1985年   3210篇
  1984年   3365篇
  1983年   2723篇
  1982年   2986篇
  1981年   2871篇
  1980年   2672篇
  1979年   2876篇
  1978年   3005篇
  1977年   2940篇
  1976年   2931篇
  1975年   2771篇
  1974年   2740篇
  1973年   2954篇
  1972年   1949篇
  1967年   1883篇
排序方式: 共有10000条查询结果,搜索用时 0 毫秒
51.
Applied Magnetic Resonance - The suggested approach allowed us to derive analytical expressions for modeling the shape of solid-echo signal and its time evolution for a system of three-spin groups...  相似文献   
52.
53.
Physics of Atomic Nuclei - We have studied the mechanisms influencing production of cumulative pions and protons in the fragmentation of the incident deuterons into cumulative pions and protons...  相似文献   
54.
55.
56.
57.
58.
Injection-moulding is one of the most common manufacturing processes used for polymers. In many applications, the mechanical properties of the product is of great importance. Injection-moulding of thin-walled polymer products tends to leave the polymer structure in a state where the mechanical properties are anisotropic, due to alignment of polymer chains along the melt flow direction. The anisotropic elastic-viscoplastic properties of low-density polyethylene, that has undergone an injection-moulding process, are therefore examined in the present work. Test specimens were punched out from injection-moulded plates and tested in uniaxial tension. Three in-plane material directions were investigated. Because of the small thickness of the plates, only the in-plane properties could be determined. Tensile tests with both monotonic and cyclic loading were performed, and the local strains on the surface of the test specimens were measured using image analysis. True stress vs. true strain diagrams were constructed, and the material response was evaluated using an elastic-viscoplasticity law. The components of the anisotropic compliance matrix were determined together with the direction-specific plastic hardening parameters.  相似文献   
59.
Erosion and sediments transport processes have a great impact on industrial structures and on water quality. Despite its limitations, the Saint‐Venant‐Exner system is still (and for sure for some years) widely used in industrial codes to model the bedload sediment transport. In practice, its numerical resolution is mostly handled by a splitting technique that allows a weak coupling between hydraulic and morphodynamic distinct softwares but may suffer from important stability issues. In recent works, many authors proposed alternative methods based on a strong coupling that cure this problem but are not so trivial to implement in an industrial context. In this work, we then pursue 2 objectives. First, we propose a very simple scheme based on an approximate Riemann solver, respecting the strong coupling framework, and we demonstrate its stability and accuracy through a number of numerical test cases. However, second, we reinterpret our scheme as a splitting technique and we extend the purpose to propose what should be the minimal coupling that ensures the stability of the global numerical process in industrial codes, at least, when dealing with collocated finite volume method. The resulting splitting method is, up to our knowledge, the only one for which stability properties are fully demonstrated.  相似文献   
60.
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