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   946470篇
  免费   97099篇
  国内免费   483篇
  2018年   9317篇
  2017年   8828篇
  2016年   12414篇
  2015年   15757篇
  2014年   18838篇
  2013年   27110篇
  2012年   30294篇
  2011年   31269篇
  2010年   21384篇
  2009年   19684篇
  2008年   27874篇
  2007年   29000篇
  2006年   27170篇
  2005年   26057篇
  2004年   25792篇
  2003年   24883篇
  2002年   24371篇
  2001年   41374篇
  2000年   40896篇
  1999年   32762篇
  1998年   11886篇
  1997年   12062篇
  1996年   11512篇
  1995年   10662篇
  1994年   10323篇
  1993年   10277篇
  1992年   26588篇
  1991年   26121篇
  1990年   25604篇
  1989年   24920篇
  1988年   22937篇
  1987年   22063篇
  1986年   20454篇
  1985年   20572篇
  1984年   16885篇
  1983年   14695篇
  1982年   11063篇
  1981年   10035篇
  1980年   9343篇
  1979年   15691篇
  1978年   12341篇
  1977年   11164篇
  1976年   10750篇
  1975年   11993篇
  1974年   12932篇
  1973年   12784篇
  1972年   11597篇
  1971年   10421篇
  1970年   9187篇
  1969年   8866篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
1.
2.
3.
4.
5.
6.
A conceptual model is proposed, describing potential Zostera marina habitats in the Wadden Sea, based on reported data from laboratory, mesocosm and field studies. Controlling factors in the model are dynamics, degree of desiccation, turbidity, nutrients and salinity. A distinction has been made between a higher and a lower zone of potential habitats, each suitable for different morphotypes of Z. marina. The model relates the decline of Z. marina in the Wadden Sea to increased sediment and water dynamics, turbidity, drainage of sediments (resulting in increased degree of desiccation) and total nutrient loads during the twentieth century. The upper and lower delineation of both the higher and the lower zone of potential Z. marina habitats appear to be determined by one or a combination of several of these factors. Environmental changes in one of these factors will therefore influence the borderlines of the zones. The lower zone of Z. marina will be mainly affected by increased turbidity, sediment dynamics, degree of desiccation during low tide and nutrient load. The higher zone will be affected by increases in water and sediment dynamics, desiccation rates and nutrient loads. Potential Z. marina habitats are located above approx. –0.80 m mean sea level (when turbidity remains at the same level as in the early 1990s) in sheltered, undisturbed locations, and preferably where some freshwater influence is present. At locations with a high, near-marine, salinity, the nutrient load has to be low to allow the growth of Z. marina. The sediment should retain enough water during low tide to keep the plants moist. Our results suggest that the return of Z. marina beds within a reasonable time-scale will require not only suitable habitat conditions, but also revegetation measures, as the changes in the environment resulting from the disappearance of Z. marina may impede its recovery, and the natural import of propagules will be unlikely. Furthermore, the lower zone of Z. marina may require a genotype that is no longer found in the Wadden Sea. Received: 26 April 1999 / Received in revised form: 15 October 1999 / Accepted: 16 October 1999  相似文献   
7.
8.
The alga Analipus japonicus (Harv.) Wynne displays a distinct seasonal pattern in its development in Peter the Great Bay (Sea of Japan). In winter and spring, it occurs only in the form of basal crusts, and vertical axes develop in the summer–autumn period. It reproduces mostly asexually from July to November. Algae with unilocular sporangia occur very seldom, only in June and July.  相似文献   
9.
10.
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