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   1392179篇
  免费   124389篇
  国内免费   1933篇
  2021年   17977篇
  2019年   16221篇
  2018年   18006篇
  2017年   16727篇
  2016年   28304篇
  2015年   42782篇
  2014年   50863篇
  2013年   77152篇
  2012年   39536篇
  2011年   28872篇
  2010年   44522篇
  2009年   45607篇
  2008年   27006篇
  2007年   25079篇
  2006年   29946篇
  2005年   30939篇
  2004年   30188篇
  2003年   27499篇
  2002年   25478篇
  2001年   34970篇
  2000年   32307篇
  1999年   32175篇
  1998年   25631篇
  1997年   25541篇
  1996年   24991篇
  1995年   23171篇
  1994年   22912篇
  1993年   22032篇
  1992年   28096篇
  1991年   26661篇
  1990年   25352篇
  1989年   25994篇
  1988年   23890篇
  1987年   22544篇
  1986年   21629篇
  1985年   23341篇
  1984年   23005篇
  1983年   20354篇
  1982年   20598篇
  1981年   19785篇
  1980年   18521篇
  1979年   19003篇
  1978年   18042篇
  1977年   17166篇
  1976年   16323篇
  1975年   16131篇
  1974年   16652篇
  1973年   16961篇
  1972年   14404篇
  1971年   13287篇
排序方式: 共有10000条查询结果,搜索用时 812 毫秒
941.
Morphogenesis and Homology in Arthropod Limbs   总被引:1,自引:0,他引:1  
Arthropods exhibit highly diverse limb morphologies rangingfrom unbranched walking legs to multibranched swimming paddles.Understanding morphogenesis in structurally diverse limbs canbe useful for ascertaining homologies between limbs. Structurallysimilar limbs have been produced by different evolutionary modificationsof morphogenesis in certain cases. Whereas it is easy to supportthe claim that whole arthropod limbs are homologous structures,I demonstrate that it is not always possible to draw well-foundedhomologies between parts of different limbs. This result isimportant with regard to general models of appendage developmentand evolution in arthropods because it clarifies contradictoryexplanations based exclusively on gene expression data.  相似文献   
942.
943.
944.
Genetic crosses occur by transduction between the species Pseudomonas aeruginosa and P. putida. The frequency relative to intraspecific transfer is reduced and varies among markers, suggesting that these genomes contain discrete regions of homology and nonhomology.  相似文献   
945.
At Birmingham University since 1966 the major medical examinations began to be replaced by a process of continuous assessment. This is based on fairly frequent tests, usually at the end of each course, including short essay questions, multiple-choice questions, and tests of ability in wards and laboratory. At the end of the first final-year course 96 students underwent assessment. Of these 77 passed; 19 were referred for re-examination, of whom a further 12 passed subsequently. The scheme was found suitable by both teachers and external examiners.  相似文献   
946.
947.
948.
949.
950.
Hydrodynamic forces can affect survival as well as limit the movement of motile benthic animals. An animal's danger of dislodgement depends on the hydrodynamic forces it experiences in its microhabitat relative to the force required to dislodge it (tenacity) from the substratum. We measured water flow and substratum characteristics in two different habitats of the shore crab Pachygrapsus crassipes: a wave-swept rocky shore and an intertidal mudflat. The maximum water velocities and accelerations in the microhabitats of the crabs at the wave-swept site were three times and two times greater, respectively, than at the mudflat site. In the laboratory, we measured the tenacity of crabs of various sizes on different substrata, and also measured their drag, lift and added-mass coefficients. Using these data, we calculated the flow conditions under which crabs would be overturned or sheared off the substratum in their two habitats. The net horizontal force (drag plus acceleration reaction) required to dislodge a crab on a rugose rock substratum was an order of magnitude greater than on smooth rock and two orders of magnitude greater than on mud. Our calculations indicate that, under non-storm conditions, crabs will not be dislodged from the substratum in either the mudflat or the wave-swept habitat when grasping the substratum with maximum tenacity. Moving crabs have lower tenacity and our calculations predict that hydrodynamic forces will restrict the mobility of large crabs more than that of small ones on smooth, but not on rugose rock.  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