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   128747篇
  免费   1609篇
  国内免费   500篇
化学   71134篇
晶体学   2095篇
力学   5030篇
综合类   5篇
数学   12771篇
物理学   39821篇
  2016年   1345篇
  2015年   1077篇
  2014年   1415篇
  2013年   4996篇
  2012年   3555篇
  2011年   4612篇
  2010年   2838篇
  2009年   2612篇
  2008年   4106篇
  2007年   4182篇
  2006年   4220篇
  2005年   4161篇
  2004年   3637篇
  2003年   3313篇
  2002年   3167篇
  2001年   3611篇
  2000年   2719篇
  1999年   2243篇
  1998年   1926篇
  1997年   1908篇
  1996年   1866篇
  1995年   1804篇
  1994年   1598篇
  1993年   1578篇
  1992年   1794篇
  1991年   1796篇
  1990年   1714篇
  1989年   1713篇
  1988年   1726篇
  1987年   1712篇
  1986年   1625篇
  1985年   2191篇
  1984年   2324篇
  1983年   1922篇
  1982年   2257篇
  1981年   2075篇
  1980年   2105篇
  1979年   2121篇
  1978年   2239篇
  1977年   2148篇
  1976年   2151篇
  1975年   2096篇
  1974年   1938篇
  1973年   2137篇
  1972年   1314篇
  1971年   992篇
  1970年   937篇
  1969年   941篇
  1968年   1068篇
  1967年   1116篇
排序方式: 共有10000条查询结果,搜索用时 8 毫秒
11.
12.
Krabbe disease is a devastating neurodegenerative disorder characterized by rapid demyelination of nerve fibers. This disease is caused by defects in the lysosomal enzyme β-galactocerebrosidase (GALC), which hydrolyzes the terminal galactose from glycosphingolipids. These lipids are essential components of eukaryotic cell membranes: substrates of GALC include galactocerebroside, the primary lipid component of myelin, and psychosine, a cytotoxic metabolite. Mutations of GALC that cause misfolding of the protein may be responsive to pharmacological chaperone therapy (PCT), whereby small molecules are used to stabilize these mutant proteins, thus correcting trafficking defects and increasing residual catabolic activity in cells. Here we describe a new approach for the synthesis of galacto-configured azasugars and the characterization of their interaction with GALC using biophysical, biochemical and crystallographic methods. We identify that the global stabilization of GALC conferred by azasugar derivatives, measured by fluorescence-based thermal shift assays, is directly related to their binding affinity, measured by enzyme inhibition. X-ray crystal structures of these molecules bound in the GALC active site reveal which residues participate in stabilizing interactions, show how potency is achieved and illustrate the penalties of aza/iminosugar ring distortion. The structure–activity relationships described here identify the key physical properties required of pharmacological chaperones for Krabbe disease and highlight the potential of azasugars as stabilizing agents for future enzyme replacement therapies. This work lays the foundation for new drug-based treatments of Krabbe disease.  相似文献   
13.
14.
15.
16.
17.
18.
The investigation of the 1s HFS provides a good possibility for testing QED effects in a combination of a strong electric and magnetic field. Here, we report about the laserspectroscopic measurements of the ground state hyperfine splitting in 207Pb81+. To handle this M1-transition in the infrared optical regime with its long lifetime, we developed a new detection technique using a bunched ion beam. For the observation of fluorescence light, a new mirror system is adapted to the emission characteristics from an ion beam at relativistic velocities. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   
19.
The interaction of isotactic polypropylene with ethylene propylene diene terpolymer in their blends has been investigated by use of differential scanning calorimetry, dynamic mechanical analysis, wide- and small-angle x-ray scattering, and by investigating the nucleation and kinetics of crystallization of the iPP component under the polarization microscope. It is found, that the dispersion of the EPDM component in the iPP matrix is dependent on blend composition and is maximal at 10% EPDM content. An interface layer between the two components is formed by migration of iPP molecules into the EPDM phase. A model for this interface is proposed.  相似文献   
20.
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