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   3104篇
  免费   590篇
  国内免费   845篇
测绘学   246篇
大气科学   651篇
地球物理   740篇
地质学   1456篇
海洋学   494篇
天文学   88篇
综合类   369篇
自然地理   495篇
  2024年   17篇
  2023年   63篇
  2022年   185篇
  2021年   240篇
  2020年   212篇
  2019年   229篇
  2018年   226篇
  2017年   200篇
  2016年   206篇
  2015年   169篇
  2014年   215篇
  2013年   199篇
  2012年   161篇
  2011年   197篇
  2010年   183篇
  2009年   213篇
  2008年   180篇
  2007年   135篇
  2006年   116篇
  2005年   96篇
  2004年   87篇
  2003年   101篇
  2002年   86篇
  2001年   83篇
  2000年   99篇
  1999年   95篇
  1998年   86篇
  1997年   74篇
  1996年   61篇
  1995年   60篇
  1994年   50篇
  1993年   50篇
  1992年   39篇
  1991年   31篇
  1990年   17篇
  1989年   19篇
  1988年   15篇
  1987年   6篇
  1986年   7篇
  1985年   5篇
  1984年   2篇
  1983年   3篇
  1982年   7篇
  1980年   2篇
  1978年   1篇
  1976年   1篇
  1962年   1篇
  1958年   5篇
  1957年   1篇
  1954年   1篇
排序方式: 共有4539条查询结果,搜索用时 15 毫秒
1.
利用内蒙古西部12个台站的地脉动噪声数据,采用噪声谱比法研究台站的场地响应情况。分析表明,台站场地响应按曲线形态可分为3类,且可能受地形地貌、局部构造和台基状况等条件影响。对比分析噪声谱比法与Moya方法的场地响应结果发现,场地响应曲线形态基本一致,只有极少数台站存在明显差异。结果表明,内蒙古西部区域大部分台站的台基状况总体较好,场地响应曲线较为平坦,无明显频率放大点。  相似文献   
2.

As well known, the methods of remote sensing and Bowen Ratio for retrieving surface flux are based on energy balance closure; however, in most cases, surface energy observed in experiment is lack of closure. There are two main causes for this: one is from the errors of the observation devices and the differences of their observational scale; the other lies in the effect of horizontal advection on the surface flux measurement. Therefore, it is very important to estimate the effects of horizontal advection quantitatively. Based on the local advection theory and the surface experiment, a model has been proposed for correcting the effect of horizontal advection on surface flux measurement, in which the relationship between the fetch of the measurement and pixel size for remote sensed data was considered. By means of numerical simulations, the sensitivities of the main parameters in the model and the scaling problems of horizontal advection were analyzed. At last, by using the observational data acquired in agricultural field with relatively homogeneous surface, the model was validated.

  相似文献   
3.
We discuss the determination of membership of 42 open clusters. Our analysis shows that Vasilevskis' mathematical model can be reasonably applied to this case. Our improved version of Sanders' method and our definition of cluster member based on the principles of discriminatory analysis effectively exclude stars of low probabilities. It is important in the study of open cluster to use only those with high probabilities. The effectiveness of the statistical method is closely related to the velocity distributions of the member and field stars. For fields where the error rate is high, it is better to combine other data than proper motion in determining membership.  相似文献   
4.
在本文中我们对两种不同的 βCephei变星的理论脉动不稳定带作了比较。它们具有明显的不同之处。为了确定这种变星的脉动不稳定带的轮廓 ,我们根据 4 9颗 βCephei变星的观测资料作了统计研究。在从样本星的色指数 (B -V) ,(U -B)和视差得到它们的有效温度和光度之后 ,我们发现在赫罗图上它们大多数是位于主序带内的。而且这些样本星的质量都位于 7M⊙ 到 30M⊙ 之间。和理论模型的比较表明我们提出的具有光度上边界和红蓝边界的 βCephei变星的理论脉动不稳定带跟观测吻合得更好  相似文献   
5.
山东小清河的原生动物   总被引:1,自引:1,他引:1  
本文根据对山东小清河多年的污染生态调整研究,报导了淡水原生动物14种。  相似文献   
6.
东海冲绳海槽深海鱼类报告   总被引:1,自引:0,他引:1  
冲绳海槽位于东海大陆架浅水区的外缘,是一北东一南西向延伸,在东南方向呈弧形突出的海槽。其北部水深在500-1000米间,南部最深达2000余米。1978年6,7月间我所“金星”号调查船在这一深水区及其附近进行了海洋综合考查。在进行底栖生物拖网时,获得一些深海鱼类标本。本文共报道深海鱼类14种,隶14属,12科,9目。  相似文献   
7.
海水网箱养殖石斑鱼病原菌研究   总被引:12,自引:0,他引:12  
从网箱养殖的石斑Epinephyelussp.中分离出一种致病菌——创伤弧菌Vibriovulnificus。本文报道该病原菌的分离、形态、毒力、生理生化特性。该菌毒力较强,感染死亡率可达80%以上。  相似文献   
8.
A nutrient dynamic model coupled with a 3D physical model has been developed to study the annual cycle of phytoplankton production in the Yellow Sea. The biological model involves interactions between inorganic nitrogen (nitrate and ammonium), phosphate and phytoplankton biomass. The model successfully reproduces the main features of phytoplankton-nutrient variation and dynamics of production. 1. The well-mixed coastal water is characterized by high primary production, as well as high new production. 2. In summer, the convergence of tidal front is an important hydrodynamic process, which contributes to high biomass at frontal areas. 3. The evolution of phytoplankton blooms and thermocline in the central region demonstrate that mixing is a dominant factor to the production in the Yellow Sea. In this simulation, nitrate- and ammonium-based productions are estimated regionally and temporally. The northern Yellow Sea is one of the highly ranked regions in the Yellow Sea for the capability of fixing carbon and nitrogen. The annual averaged f-ratio of 0.37 indicates that regenerated production prevails over the Yellow Sea. The result also shows that phosphate is the major nutrient, limiting phytoplankton growth throughout the year and it can be an indicator to predict the bloom magnitude. Finally, the relative roles of external nutrient sources have been evaluated, and benthic fluxes might play a significant role in compensating 54.6% of new nitrogen for new production consumption.  相似文献   
9.
隆头鱼亚目5科63属316种,鰧鱼亚目8科19属53种,绵鳚亚日3科7属8种,玉筋鱼亚目1科3属3种。  相似文献   
10.
The surface and bottom waters samples were collected from six locations in Xiamen western sea. The quantified estimation of bacterial production (3H-thymidine method) and observation of bacterial heterotrophic activity (14C-glucose method) have been made in order to have a better understanding of the role of marine bacteria and their activities. The results showed that the mean value of bacterial heterotrophic activity was 9×108 cells/(L.h) in the surface waters and 2.6×108 cells/(L.h) in the bottom waters. The mean value of bacterial production was 38×108 cells/(L.h) in the surface waters and 7.1×108 cells/(L.h) in the bottom waters. The relationship between bacterial production, heterotrophic activity, POC and DOC measured during this survey were discussed. The good understanding of the relationship between bacteria activity and total coliform was addressed.  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