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   235991篇
  免费   14762篇
  国内免费   654篇
林业   23284篇
农学   13922篇
基础科学   2934篇
  41468篇
综合类   19351篇
农作物   17096篇
水产渔业   16321篇
畜牧兽医   87357篇
园艺   6264篇
植物保护   23410篇
  2021年   2436篇
  2020年   2820篇
  2019年   3624篇
  2018年   3881篇
  2017年   4197篇
  2016年   4690篇
  2015年   4243篇
  2014年   5612篇
  2013年   16191篇
  2012年   5717篇
  2011年   7498篇
  2010年   7106篇
  2009年   7729篇
  2008年   6870篇
  2007年   5882篇
  2006年   6595篇
  2005年   5799篇
  2004年   5704篇
  2003年   5516篇
  2002年   4859篇
  2001年   5269篇
  2000年   4907篇
  1999年   4810篇
  1998年   4073篇
  1997年   4134篇
  1996年   3878篇
  1995年   4442篇
  1994年   3820篇
  1993年   3516篇
  1992年   3927篇
  1991年   4146篇
  1990年   3777篇
  1989年   3784篇
  1988年   3336篇
  1987年   3344篇
  1986年   3296篇
  1985年   3670篇
  1984年   3450篇
  1983年   3294篇
  1982年   2760篇
  1981年   2689篇
  1980年   2690篇
  1979年   2982篇
  1978年   2705篇
  1977年   2560篇
  1976年   2410篇
  1975年   2214篇
  1974年   2355篇
  1973年   2272篇
  1972年   1994篇
排序方式: 共有10000条查询结果,搜索用时 62 毫秒
991.
992.
993.
994.
The case is made that the spin-liquid state of a Mott insulator, hypothesized to exist by Anderson and identified by him as the correct context for discussing high-temperature superconductors, occurs in these materials and exhibits the principles of fractional quantization identified in the fractional quantum Hall effect. The most important of these is that particles carrying a fraction of an elementary quantum number, in this case spin, attract one another by a powerful gauge force, which can lead to a new kind of superconductivity. The temperature scale for the superconductivity is set by an energy gap in the spin-wave spectrum, which is also the fundamental measure of how "liquid" the spins are.  相似文献   
995.
996.
997.
998.
Book reviews     
The T.M.E. System of Feed Evaluation. I.R. Sibbald, Animal Research Centre Contribution 83‐1, Animal Research Centre, Ottawa, Ontario, Canada.

Physiology and Behaviour of the Pigeon, edited by M. Abs. 1983. 360 pages, illustrated. London, Academic Press Ltd. Price £34.00. ISBN 0 12 042950 0.  相似文献   

999.
1. The ovulatory cycle of the domestic hen (Gallus domesticus) was postulated to be the result of the interaction of two independent systems.

2. A circadian system was postulated to control the restriction of ovulation to an 8‐h period of the day under conventional 14 h light: 10 h dark regimes.

3. The final phase of follicular maturation was postulated to commence after ovulation of the preceding ovum in the hierarchy.

4. Ovulation was postulated to occur when a mature follicle was present in the ovary during the appropriate phase of the circadian‐linked system.

5. The predicted times of oviposition were within the standard error of the observed times of oviposition under 21‐, 24‐ and 28‐h photoschedules.

6. It was concluded that this hypothesis for the control of the ovulatory cycle of the hen is consistent with current knowledge.  相似文献   

1000.
1. To test the preferences of hens for particular social conditions when laying, they were provided with choices of nest‐sites varying in seclusion. Three experimental conditions were used.

2. In Experiment 1, nest‐site selection by members of a group of light hybrids was studied in a complex pen‐system. Eggs were clumped in distribution ; only one individual laid in the most secluded part of the system.

3. Experiment 2 provided light hybrids with an extensive outdoor area, but similarly clumped laying was observed; there was no indication that hens attempted to find concealment for nesting.

4. In Experiment 3, hens from a group of light hybrids just coming into lay and from a group of mature medium hybrids were tested singly, in an area that included a cage containing some of their flockmates. Most subjects from both groups laid near the other birds rather than in isolation.

5. In semi‐intensive conditions, the majority of hens are apparently gregarious rather than solitary in their nesting behaviour.  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