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   6421篇
  免费   1165篇
  国内免费   1753篇
测绘学   137篇
大气科学   410篇
地球物理   1521篇
地质学   5813篇
海洋学   521篇
天文学   77篇
综合类   310篇
自然地理   550篇
  2024年   69篇
  2023年   180篇
  2022年   311篇
  2021年   343篇
  2020年   309篇
  2019年   361篇
  2018年   279篇
  2017年   329篇
  2016年   328篇
  2015年   301篇
  2014年   384篇
  2013年   356篇
  2012年   438篇
  2011年   418篇
  2010年   356篇
  2009年   388篇
  2008年   368篇
  2007年   414篇
  2006年   424篇
  2005年   320篇
  2004年   321篇
  2003年   281篇
  2002年   256篇
  2001年   184篇
  2000年   210篇
  1999年   143篇
  1998年   181篇
  1997年   197篇
  1996年   168篇
  1995年   117篇
  1994年   119篇
  1993年   83篇
  1992年   103篇
  1991年   49篇
  1990年   66篇
  1989年   58篇
  1988年   47篇
  1987年   18篇
  1986年   30篇
  1985年   10篇
  1984年   2篇
  1983年   2篇
  1982年   3篇
  1980年   8篇
  1978年   1篇
  1977年   2篇
  1954年   4篇
排序方式: 共有9339条查询结果,搜索用时 140 毫秒
71.
震源时间函数与震源破裂过程   总被引:2,自引:0,他引:2  
简要介绍了现代数字地震学的两个重要概念。一个是震源时间函数,另一个是地震震源的时空破裂过程。首先,从地震断层位移表示定量出发,介绍震源时间函数和震源破裂过程的基本概念。然后,分别介绍两种从远场地震记录中提取震源时间函数和获取有限断层面上时空破裂过程图像的反演方法。  相似文献   
72.
科技期刊发展的挑战与机遇   总被引:3,自引:0,他引:3  
中国加入世贸组织后 ,面对开放的世界性大市场的直接冲击 ,我国出版发行行业的竞争必将更加激烈。优胜劣汰 ,会直接考验每个出版社、每份期刊。为了使我国的期刊在竞争中成为胜者 ,探讨了科技期刊参与竞争的困难与优势 ,提出了如何提高我国科技期刊竞争力的粗浅看法  相似文献   
73.
李桂华  何家斌 《地震研究》2002,25(2):163-165
采用一致的地震震相和台网布局,应用昆明数字地震台网资料,对2002年月1月4日-1月7日的漾濞地震及序列作进一步核定,得出了更精确的地震震源位置,并作出三维空间图。  相似文献   
74.
This paper presents results recently obtained for generating site-specific ground motions needed for design of critical facilities. The general approach followed in developing these ground motions using either deterministic or probabilistic criteria is specification of motions for rock outcrop or very firm soil conditions followed by adjustments for site-specific conditions. Central issues in this process include development of appropriate attenuation relations and their uncertainties, differences in expected motions between Western and Eastern North America, and incorporation of site-specific adjustments that maintain the same hazard level as the control motions, while incorporating uncertainties in local dynamic material properties. For tectonically active regions, such as the Western United States (WUS), sufficient strong motion data exist to constrain empirical attenuation relations for M up to about 7 and for distances greater than about 10–15 km. Motions for larger magnitudes and closer distances are largely driven by extrapolations of empirical relations and uncertainties need to be substantially increased for these cases.

For the Eastern United States (CEUS), due to the paucity of strong motion data for cratonic regions worldwide, estimation of strong ground motions for engineering design is based entirely on calibrated models. The models are usually calibrated and validated in the WUS where sufficient strong motion data are available and then recalibrated for applications to the CEUS. Recalibration generally entails revising parameters based on available CEUS ground motion data as well as indirect inferences through intensity observations. Known differences in model parameters such as crustal structure between WUS and CEUS are generally accommodated as well. These procedures are examined and discussed.  相似文献   

75.
We study the October 18, M W = 7.1, 1992 Atrato earthquake, and its foreshocks and aftershocks, which occurred in the Atrato valley, northwestern Colombia. The main shock was preceded by several foreshocksof which the M W = 6.6, October 17 earthquacke was the largest. Inparticular, we examine foreshocks and aftershocks performing joint-hypocenter relocations using high quality Pn and Sn wave readingsfrom permanent regional networks. We observed a few hours prior to the main shock a sudden increase of foreshocks. Maybe this could be used as a predictor since foreshocks have been known for other major events in the region. Our locations align for 90 km with a trend of 5° ±4° in agreement with the Harvard CMT solution showing the faultplane trending 9° to be the plane of rupture. In relation to theepicenter of the main shock, maximum intensities were located to thesouth, consistent with a rupture that traveled from north to south witha larger energy release in the south as suggested by an empirical Green'sfunction study (Li and Toksöz, 1993; Ammon et al., 1994). The boundarybetween the Panama and North Andes blocks has been placed close to thePanama-Colombia border as either a sharp boundary or a diffuse zone. TheAtrato earthquake, however, shows that the plate boundary between thePanama and North Andes microblocks is a diffuse deformation zone. Thiszone has a width of at least 2° stretching from 78°W to 76°W. Quantification of earthquake moment release (during the past30 years) in this zone shows a similar amount of moment release in thewestern and eastern parts of this zone.  相似文献   
76.
文中回顾了1974年提出的“块、带、源、兆、触、报”六字预报思路,并基于近20年来的研究对此进行了补充和深化。  相似文献   
77.
The soil conservation campaigns that have been a prominent feature of Jamaican agricultural policy since the 1950s are frequently presented as having failed to ameliorate the problem of soil erosion in hillside agriculture. A case study of a small farming community in the Blue Mountains explores the development of the soil conservation practices currently employed by farmers. The use of trash barriers in carrot farming is described and the origins of this technology and its subsequent adaptation are considered. The study concludes that extension interventions and government policy have influenced the development of current soil conservation practices; practices which have their roots in indigenous techniques. Other factors such as the adaptation of trash barriers to suit local conditions and their importance in soil fertility management also play a role in their widespread use in the study area. The study demonstrates that to understand the process of technical change in farming communities, it is necessary to consider a range of factors, external and internal, technical and social, that have over time influenced farmers' decision making.  相似文献   
78.
79.
80.
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