首页 | 官方网站   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   239372篇
  免费   2930篇
  国内免费   424篇
工业技术   242726篇
  2021年   2094篇
  2019年   2019篇
  2018年   3489篇
  2017年   3424篇
  2016年   3685篇
  2015年   2237篇
  2014年   3900篇
  2013年   10192篇
  2012年   6150篇
  2011年   8300篇
  2010年   6552篇
  2009年   7233篇
  2008年   7588篇
  2007年   7713篇
  2006年   6890篇
  2005年   6046篇
  2004年   5818篇
  2003年   5600篇
  2002年   5676篇
  2001年   5563篇
  2000年   5388篇
  1999年   5303篇
  1998年   12587篇
  1997年   8902篇
  1996年   6861篇
  1995年   5285篇
  1994年   4697篇
  1993年   4569篇
  1992年   3598篇
  1991年   3334篇
  1990年   3546篇
  1989年   3423篇
  1988年   3238篇
  1987年   2839篇
  1986年   2890篇
  1985年   3329篇
  1984年   3178篇
  1983年   2852篇
  1982年   2694篇
  1981年   2775篇
  1980年   2678篇
  1979年   2592篇
  1978年   2655篇
  1977年   2915篇
  1976年   3779篇
  1975年   2346篇
  1974年   2224篇
  1973年   2352篇
  1972年   1957篇
  1971年   1838篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
31.
A layer-by-layer analysis of the structures, the phase compositions, and the defect substructures of differentially hardened rails has been carried by optical and transmission electron microscopy. It is found that the material volume of the rail head fillet is cooled faster than the volume located along the central axis.  相似文献   
32.
ABSTRACT

This paper deals with asymptotic stabilisation of a class of nonlinear input-delayed systems via dynamic output feedback in the presence of disturbances. The proposed strategy has the structure of an observer-based control law, in which the observer estimates and predicts both the plant state and the external disturbance. A nominal delay value is assumed to be known and stability conditions in terms of linear matrix inequalities are derived for fast-varying delay uncertainties. Asymptotic stability is achieved if the disturbance or the time delay is constant. The controller design problem is also addressed and a numerical example with an unstable system is provided to illustrate the usefulness of the proposed strategy.  相似文献   
33.
34.
35.
36.

To increase the efficiency of designing systems intended for monitoring surface cracks in aluminum structures during their working life, we have analyzed a two-dimensional symmetric problem on uniaxial extension of an Al-polyimide-Cu layered structure with ideal adhesion between layers and a model crack in the aluminum base. The problem has been first solved for a sample with the crack modeled by a zero-thickness notch using the ANSYS engineering simulation program package. It is shown that this setting of the problem can lead to inadequate results as manifested, in particular, by significantly overstated mechanical stresses in aluminum in the region of crack emergence on the surface. In order to eliminate this difficulty, we propose to use the structure with a model defect in the form of a notch of nonzero thickness in the initial unstressed state of the structure. Recommendations for selecting the thickness of a notch used in the model structure are given.

  相似文献   
37.
38.
39.
Angiotensin converting enzyme 2 (ACE2) is the human receptor that interacts with the spike protein of coronaviruses, including the one that produced the 2020 coronavirus pandemic (COVID-19). Thus, ACE2 is a potential target for drugs that disrupt the interaction of human cells with SARS-CoV-2 to abolish infection. There is also interest in drugs that inhibit or activate ACE2, that is, for cardiovascular disorders or colitis. Compounds binding at alternative sites could allosterically affect the interaction with the spike protein. Herein, we review biochemical, chemical biology, and structural information on ACE2, including the recent cryoEM structures of full-length ACE2. We conclude that ACE2 is very dynamic and that allosteric drugs could be developed to target ACE2. At the time of the 2020 pandemic, we suggest that available ACE2 inhibitors or activators in advanced development should be tested for their ability to allosterically displace the interaction between ACE2 and the spike protein.  相似文献   
40.
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-23

京公网安备 11010802026262号