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   12796篇
  免费   56篇
  国内免费   72篇
系统科学   78篇
丛书文集   29篇
教育与普及   21篇
理论与方法论   42篇
现状及发展   6052篇
研究方法   693篇
综合类   5878篇
自然研究   131篇
  2012年   249篇
  2011年   358篇
  2010年   107篇
  2009年   90篇
  2008年   281篇
  2007年   297篇
  2006年   314篇
  2005年   287篇
  2004年   254篇
  2003年   249篇
  2002年   298篇
  2001年   457篇
  2000年   462篇
  1999年   304篇
  1992年   240篇
  1991年   195篇
  1990年   219篇
  1989年   195篇
  1988年   207篇
  1987年   225篇
  1986年   194篇
  1985年   262篇
  1984年   232篇
  1983年   177篇
  1982年   186篇
  1981年   189篇
  1980年   193篇
  1979年   414篇
  1978年   354篇
  1977年   259篇
  1976年   304篇
  1975年   276篇
  1974年   274篇
  1973年   240篇
  1972年   258篇
  1971年   328篇
  1970年   390篇
  1969年   269篇
  1968年   325篇
  1967年   309篇
  1966年   263篇
  1965年   193篇
  1964年   105篇
  1959年   95篇
  1958年   166篇
  1957年   106篇
  1956年   100篇
  1955年   86篇
  1954年   85篇
  1948年   72篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
Areas of the Knysna estuarine bay in the Western Cape are dominated by three endemic South African truncatelloid microgastropods, temporarily known as ‘Hydrobiaknysnaensis (Krauss), ‘Assimineacapensis (Sowerby) and ‘Assimineaglobulus Connolly. Although first described 80–170 years ago and present in abundance (up to 100,000 m?2), they remain surrounded by confusion and still await taxonomic assignment, largely because they appear most atypical members of their groups by virtue of anatomy and/or biogeography and/or habitat. This study contributes in-life perspectives to morphological and phylogenetic analyses known to be on-going. At Knysna, they are syntopic: at least two occurring in >85% and all three in >40% of individual 0.0026 m2 samples from their region of dominance. Nevertheless, they tend to greater abundance in divergent microhabitats; ‘A.’ globulus dominating higher tidal levels, and ‘A.’ capensis and ‘Hydrobia’ lower ones; the former especially unvegetated sediment, the latter, if anything, seagrass. Interspecific feeding interactions appear unlikely to be responsible for these patterns, other evidence suggesting that all are maintained below carrying capacity. Field biology of ‘H.’ knysnaensis generally appears equivalent to that of northern-hemisphere intertidal hydrobiids and that of ‘A.’ globulus is typically assimineid, albeit at atypically low shore height. Unlike assimineids, however, ‘A.’ capensis is truly aquatic. The success of these truncatelloids in unusual circumstances may be consequent on the absence from South Africa of other microgastropod groups that fill their niches elsewhere in the southern hemisphere.  相似文献   
2.
This paper undertakes a comprehensive examination of 10 measures of core inflation and evaluates which measure produces the best forecast of headline inflation out‐of‐sample. We use the Personal Consumption Expenditure Price Index as our measure of inflation. We use two sets of components (17 and 50) of the Personal Consumption Expenditure Price Index to construct these core inflation measures and evaluate these measures at the three time horizons (6, 12 and 24 months) most relevant for monetary policy decisions. The best measure of core inflation for both sets of components and over all time horizons uses weights based on the first principal component of the disaggregated (component‐level) prices. Interestingly, the results vary by the number of components used; when more components are used the weights based on the persistence of each component is statistically equivalent to the weights generated by the first principal component. However, those forecasts using the persistence of 50 components are statistically worse than those generated using the first principal component of 17 components. The statistical superiority of the principal component method is due to the fact that it extracts (in the first principal component) the common source of variation in the component level prices that accurately describes trend inflation over the next 6–24 months.  相似文献   
3.
4.
5.
6.
7.
8.
9.
10.
Cholinesterases     
AUGUSTINSSON KB 《Nature》1948,162(4109):194
  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